mRNA_P-fluviatile_contig14.2301.1 (mRNA) Porterinema fluviatile SAG_2381

You are viewing an mRNA, more information available on the corresponding polypeptide page

Overview
NamemRNA_P-fluviatile_contig14.2301.1
Unique NamemRNA_P-fluviatile_contig14.2301.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig14.2301.1 vs. uniprot
Match: D8LFA5_ECTSI (Phospho-2-dehydro-3-deoxyheptonate aldolase n=2 Tax=Ectocarpus TaxID=2879 RepID=D8LFA5_ECTSI)

HSP 1 Score: 915 bits (2366), Expect = 0.000e+0
Identity = 470/536 (87.69%), Postives = 489/536 (91.23%), Query Frame = 2
Query:    2 MRTAAAAGVLAAGLATAGALQPSGFLGR-SMARGQAPVKGTS--RTTMVAQPPTKAAEAAXXXXXXXXXXXXXXXXXXISAIGWSPASWRKMVARQMPKYDDEGLVTEVEGILAKQAPLVFAGECRELTSELSKATRGEAFVLMGGDCAESFSEFKVDDVRDTFRSILQMSLVMTYGGSMPVVKIGRAAGQFAKPRSEDFETINGVTLPSYRGDIVNGLEFTATARRNDPYRMLSAYHQSAQTINLLRAFASGGFADIHKLNAWNMDFVQNTPEGSKYRELASKIEDTLRFMTAIGVDTTSAPFRTTKFYTAHEALLLSYEQALTREDSLTGKFYDCSAHMLWIGERTRQLDGAHIEFLRGVDNPIGIKVSQKCPPEELIEILETVNPANKAGKVTLITRMSSKYLNEHLPKLILAVQKAGLNVLWVSDPVHGNTIKTDSGYKTRRMEDIRSELRTFFDVHQRMGTHAGGIHIEMTGKDVTECTGGDVDEVRESDLKNRYLTQCDPRLNGKQSLELAFHIANRLRRDQGLPPVLGD 1600
            MRTA A GVLAAGLATAGAL+PSGF+ R S  RGQA V+G+S  RTTMVAQPPTK AEA                   +S+ GWSPA+WR   ARQMPKYDD  LVTEVE ILAKQAPLVFAGECREL ++LSKATRGEAFVLMGGDCAESFSEFKVDDVRDTFRSILQMSLVMTYGGS+PVVKIGRAAGQFAKPRSEDFETING TLPSYRGDIVNGLEFT  ARRNDPYRMLSAYHQSAQTINLLRAF+SGGFADI+KLNAWNMDFVQNTPEGSKYRE+ASKIEDTLRFMTAIGVDTTSAPFRTT FYTAHEALLLSYEQALTREDSLTGKFYDCSAHMLWIGERTRQLDG+HIEFLRGV NPIGIK+SQKCPPEEL+EILETVNP NKAG+VTLITRMSSKYL EHLPKLILAVQKAGLNVLWVSDPVHGNTIKTDSGYKTRRMEDIRSELRTFFDVHQRMGTHAGGIHIEMTGKDVTECTGGDVDEV E +LK RYLTQCDPRLNGKQSLELAFHIANRLRRDQGLPP+LGD
Sbjct:    1 MRTA-AVGVLAAGLATAGALRPSGFVARGSPGRGQASVQGSSGARTTMVAQPPTKPAEAEVAPSSP------------VSSTGWSPATWRNREARQMPKYDDPALVTEVEDILAKQAPLVFAGECRELMADLSKATRGEAFVLMGGDCAESFSEFKVDDVRDTFRSILQMSLVMTYGGSVPVVKIGRAAGQFAKPRSEDFETINGQTLPSYRGDIVNGLEFTEVARRNDPYRMLSAYHQSAQTINLLRAFSSGGFADINKLNAWNMDFVQNTPEGSKYREMASKIEDTLRFMTAIGVDTTSAPFRTTSFYTAHEALLLSYEQALTREDSLTGKFYDCSAHMLWIGERTRQLDGSHIEFLRGVSNPIGIKISQKCPPEELVEILETVNPDNKAGRVTLITRMSSKYLEEHLPKLILAVQKAGLNVLWVSDPVHGNTIKTDSGYKTRRMEDIRSELRTFFDVHQRMGTHAGGIHIEMTGKDVTECTGGDVDEVTEENLKQRYLTQCDPRLNGKQSLELAFHIANRLRRDQGLPPMLGD 523          
BLAST of mRNA_P-fluviatile_contig14.2301.1 vs. uniprot
Match: A0A835Z444_9STRA (Phospho-2-dehydro-3-deoxyheptonate aldolase n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835Z444_9STRA)

HSP 1 Score: 654 bits (1686), Expect = 4.670e-216
Identity = 303/453 (66.89%), Postives = 374/453 (82.56%), Query Frame = 2
Query:  233 AIGWSPASWRKMVARQMPKYDDEGLVTEVEGILAKQAPLVFAGECRELTSELSKATRGEAFVLMGGDCAESFSEFKVDDVRDTFRSILQMSLVMTYGGSMPVVKIGRAAGQFAKPRSEDFETINGVTLPSYRGDIVNGLEFTATARRNDPYRMLSAYHQSAQTINLLRAFASGGFADIHKLNAWNMDFVQNTPEGSKYRELASKIEDTLRFMTAIGVDTTSAPFRTTKFYTAHEALLLSYEQALTREDSLTGKFYDCSAHMLWIGERTRQLDGAHIEFLRGVDNPIGIKVSQKCPPEELIEILETVNPANKAGKVTLITRMSSKYLNEHLPKLILAVQKAGLNVLWVSDPVHGNTIKTDSGYKTRRMEDIRSELRTFFDVHQRMGTHAGGIHIEMTGKDVTECTGGDVDEVRESDLKNRYLTQCDPRLNGKQSLELAFHIANRLRRDQGLPPV 1591
            A GW P SWR   A QMP+Y+D   + + E ILA+Q+PLVFAGECR+L  EL  AT G+ F+LMGGDCAESF EF V+ VRDTFR ILQM+L+MT+GG+MP+ KIGR AGQFAKPRS+ +E   GV LPSYRGDIVNG EFTA AR NDPYRM++AYHQS+QT+N+LRAFA+GG+ADI +L+AWN+DFV  T  GS+YR++A+K+++++RFM AIGVDT  A F+ TKFYTAHE LLL YEQ+LTR DS TGK+YDCSAHM+W+GERTRQLD AH+EF+RG+ NP+G+K+S KC P+EL+++L+ +NP N  G+VTLITRM+   L +HLP+LI AVQ+ G  VLW+SDPVHGNTIKTDSGYKTR  + IR+ELR FFDVH  MG+HAGG+H+EMTG+DVTEC GG V E+ E+DL  RY T CDPRLNG QSLELAF IA+R+R+DQGLPP+
Sbjct:   44 APGWRPDSWRSRKAYQMPEYNDGEKLADAERILARQSPLVFAGECRDLHQELVAATNGQGFLLMGGDCAESFQEFNVNHVRDTFRVILQMALIMTFGGAMPITKIGRMAGQFAKPRSDPYEDRKGVKLPSYRGDIVNGEEFTAEARENDPYRMVAAYHQSSQTLNILRAFATGGYADISRLHAWNLDFVDQTEPGSRYRQMATKVDESMRFMKAIGVDTADARFKQTKFYTAHECLLLPYEQSLTRLDSTTGKWYDCSAHMVWVGERTRQLDAAHLEFVRGIGNPLGVKISDKCTPDELLQLLDVINPTNTPGRVTLITRMNPDKLRKHLPELIRAVQREGRQVLWISDPVHGNTIKTDSGYKTRPFDKIRAELRAFFDVHAEMGSHAGGVHVEMTGEDVTECIGGSVSEILEADLAKRYHTYCDPRLNGMQSLELAFLIADRMRKDQGLPPL 496          
BLAST of mRNA_P-fluviatile_contig14.2301.1 vs. uniprot
Match: A0A7S2V0I5_9STRA (Phospho-2-dehydro-3-deoxyheptonate aldolase n=1 Tax=Fibrocapsa japonica TaxID=94617 RepID=A0A7S2V0I5_9STRA)

HSP 1 Score: 624 bits (1608), Expect = 2.530e-204
Identity = 295/450 (65.56%), Postives = 359/450 (79.78%), Query Frame = 2
Query:  242 WSPASWRKMVARQMPKYDDEGLVTEVEGILAKQAPLVFAGECRELTSELSKATRGEAFVLMGGDCAESFSEFKVDDVRDTFRSILQMSLVMTYGGSMPVVKIGRAAGQFAKPRSEDFETINGVTLPSYRGDIVNGLEFTATARRNDPYRMLSAYHQSAQTINLLRAFASGGFADIHKLNAWNMDFVQNTPEGSKYRELASKIEDTLRFMTAIGVDTTSAPFRTTKFYTAHEALLLSYEQALTREDSLTGKFYDCSAHMLWIGERTRQLDGAHIEFLRGVDNPIGIKVSQKCPPEELIEILETVNPANKAGKVTLITRMSSKYLNEHLPKLILAVQKAGLNVLWVSDPVHGNTIKTDSGYKTRRMEDIRSELRTFFDVHQRMGTHAGGIHIEMTGKDVTECTGGDVDEVRESDLKNRYLTQCDPRLNGKQSLELAFHIANRLRRDQGLPPV 1591
            W PASWR   A QMP Y+DE  + +VE  L K APLVFAGE R L+  L+KAT G+ F+LMGGDCAESF EF VD +RD+FR ILQM+LV+T+GGSMPV+K+GR AGQFAKPRS   E +NGV LPSYRGDI+N  + T  AR+N+P  M+  YHQSAQT+N+LRAFA+GG+ADI +L+AWN+DFV+ TPEGSKYRELASK++++LRF+ AIG+DT+S+ F  T FYTAHE LLL YE+ALTR+DS TG +YDCSAHMLW+GERTRQL GAH+EFL+G+ NP+G+K+S KC   EL+++L+ +NP N  GKV++I RM ++ L E+LP LI AVQ+ G NVLWVSDPVHGNT+K  +GYKTR  E IR ELR FFDVH  MG+H GG+H+EMTGKDVTEC GG V  V   DL  RY T CDPRLNG QSLELAF IA+RLRR QGLPP+
Sbjct:   65 WYPASWRGREALQMPLYEDEEELAKVEAKLRKVAPLVFAGEARSLSEALAKATMGQGFLLMGGDCAESFKEFNVDTIRDSFRVILQMALVLTFGGSMPVIKVGRMAGQFAKPRSAPTEMVNGVELPSYRGDIINTEDPTPEARKNNPNLMVECYHQSAQTLNILRAFATGGYADISRLHAWNLDFVEQTPEGSKYRELASKVDESLRFLKAIGIDTSSSTFSQTNFYTAHECLLLPYEEALTRQDSTTGHWYDCSAHMLWVGERTRQLGGAHLEFLKGIGNPLGVKISDKCTETELLDLLDVLNPDNIPGKVSIIVRMGAEKLRENLPTLIRAVQREGRNVLWVSDPVHGNTVKAPNGYKTREFEKIRDELRAFFDVHAEMGSHPGGVHLEMTGKDVTECVGGSVGNVEFDDLSKRYDTHCDPRLNGAQSLELAFLIASRLRRQQGLPPL 514          
BLAST of mRNA_P-fluviatile_contig14.2301.1 vs. uniprot
Match: A0A4D9DEW1_9STRA (Phospho-2-dehydro-3-deoxyheptonate aldolase n=1 Tax=Nannochloropsis salina CCMP1776 TaxID=1027361 RepID=A0A4D9DEW1_9STRA)

HSP 1 Score: 617 bits (1592), Expect = 4.100e-203
Identity = 289/440 (65.68%), Postives = 357/440 (81.14%), Query Frame = 2
Query:  281 MPKYDDEGLVTEVEGILAKQAPLVFAGECRELTSELSKATRGEAFVLMGGDCAESFSEFKVDDVRDTFRSILQMSLVMTYGGSMPVVKIGRAAGQFAKPRSEDFETINGVTLPSYRGDIVNGLEFTATARRNDPYRMLSAYHQSAQTINLLRAFASGGFADIHKLNAWNMDFVQNTPEGSKYRELASKIEDTLRFMTAIGVDTTSAPFRTTKFYTAHEALLLSYEQALTREDSLTGKFYDCSAHMLWIGERTRQLDGAHIEFLRGVDNPIGIKVSQKCPPEELIEILETVNPANKAGKVTLITRMSSKYLNEHLPKLILAVQKAGLNVLWVSDPVHGNTIKTDSGYKTRRMEDIRSELRTFFDVHQRMGTHAGGIHIEMTGKDVTECTGGDVDEVRESDLKNRYLTQCDPRLNGKQSLELAFHIANRLRRDQGLPPVLGD 1600
            MP YDDE  + +VE  LAK +PLVFAGECR+L   L+KA  G++F+LMGGDCAESF EF VD +RDTFR +LQM+LV+T+GGSMPV+K+GR AGQFAKPRSE  E +NG+ LPSYRGDI+N   FT  ARRN+P+RML AYHQS QT+N+LRAFA+GG+ADI +L+AWN+DFV+ + EGS+YR+LASK++++LRFM AIGV+T SA F+  +FYTAHE LLLSYEQALTR+DS TGK+YDCSAHMLWIGERTRQLDGAH+EF RG+ NP+G+K+S K  P+EL+E+++ +NP N  G+++LI RM +  L EHLP LI AVQK G  V+WVSDPVHGNTIK ++G KTR  E IR ELR FFDVH +MGTH GG+H+EMTGKDVTEC GG + +++  DL  RY T CDPRLNG Q+LELAF IA R+R   GLPP+  D
Sbjct:    1 MPIYDDEEELVKVEHALAKSSPLVFAGECRQLHEHLAKAAMGQSFLLMGGDCAESFKEFHVDTIRDTFRVLLQMALVLTFGGSMPVIKVGRMAGQFAKPRSEPQEEVNGLKLPSYRGDIINSESFTEEARRNNPWRMLDAYHQSTQTLNILRAFATGGYADISRLHAWNLDFVEKSEEGSRYRKLASKVDESLRFMKAIGVNTESATFKQAQFYTAHECLLLSYEQALTRQDSTTGKWYDCSAHMLWIGERTRQLDGAHLEFTRGIGNPLGVKISDKITPDELLEVIDNLNPNNIPGRLSLIVRMGADKLREHLPALIRAVQKEGRFVVWVSDPVHGNTIKAENGLKTRPFEKIRDELRAFFDVHDQMGTHPGGVHLEMTGKDVTECIGGTIQDIKVDDLNKRYHTHCDPRLNGVQALELAFLIAERMRSRTGLPPLFND 440          
BLAST of mRNA_P-fluviatile_contig14.2301.1 vs. uniprot
Match: B8BVC7_THAPS (Phospho-2-dehydro-3-deoxyheptonate aldolase n=1 Tax=Thalassiosira pseudonana TaxID=35128 RepID=B8BVC7_THAPS)

HSP 1 Score: 615 bits (1586), Expect = 1.470e-201
Identity = 293/458 (63.97%), Postives = 366/458 (79.91%), Query Frame = 2
Query:  242 WSPASWRKMVARQMPKYDDEGLVTEVEGILAKQAPLVFAGECRELTSELSKATRGEAFVLMGGDCAESFSEFKVDDVRDTFRSILQMSLVMTYGGSMPVVKIGRAAGQFAKPRSEDFETINGVTLPSYRGDIVNGLEFTATARRNDPYRMLSAYHQSAQTINLLRAFASGGFADIHKLNAWNMDFVQNTPEGSKYRELASKIEDTLRFMTAIGVDTTSAPFRTTKFYTAHEALLLSYEQALTREDSLTGKFYDCSAHMLWIGERTRQLDGAHIEFLRGVDNPIGIKVSQKCPPEELIEILETVNPANKAGKVTLITRMSSKYLNEHLPKLILAVQKAGLNVLWVSDPVHGNTIKTDSGYKTRRMEDIRSELRTFFDVHQRMGTHAGGIHIEMTGKDVTECTGGDVDEVRESDLKNRYLTQCDPRLNGKQSLELAFHIANRLRRDQGLPPVLGD*PISW 1615
            WSP+SW+  VA+QMP Y+DE  + +    L + APLVFAGE R L  +L++ ++G+ FVLMGGDCAESF EF V+ +RDTFR I+QM+LVMT+G SMPVVKIGR AGQFAKPRSE  E I+GV+LPSYRGD VN  EFT  ARRNDP+ M+ AY+QSAQT+N+LRAF++GGFADI +L+AWN+DFV+NT EGS+YR LA+K++++LRFM AIG+DT+   F +  FYTAHE LLL YEQALTR+DS TGK+YDCS+HMLW+GERTR LDGAH+EF RG+ NP+G+KVS KC PEELI I+ET+NP N  GK+++I RM ++ L ++LP LI AVQ+ G  V+W+SDPVHGNT KT+SG+KTR  ++IR+ELR FFDVH  MG+H GG+HIEMTG+DVTECTGG V  V +  LK RY T CDPRLNG Q+LELAF IA R+R   GLPP+     +SW
Sbjct:   21 WSPSSWKNAVAKQMPIYEDEAELEDAIKALDRVAPLVFAGEVRSLHEKLARVSQGQGFVLMGGDCAESFKEFHVNHIRDTFRVIMQMALVMTFGSSMPVVKIGRMAGQFAKPRSEPNEVIDGVSLPSYRGDNVNREEFTPEARRNDPHLMVDAYYQSAQTLNILRAFSTGGFADISRLHAWNLDFVENTEEGSRYRLLAAKVDESLRFMKAIGIDTSKPEFTSVDFYTAHECLLLPYEQALTRQDSTTGKWYDCSSHMLWVGERTRDLDGAHLEFTRGIGNPLGVKVSDKCTPEELIRIIETMNPQNVPGKLSIIVRMGAEKLRKNLPGLIRAVQREGKAVVWISDPVHGNTRKTESGFKTRDFDNIRAELRAFFDVHDEMGSHPGGVHIEMTGEDVTECTGG-VSSVTDETLKTRYNTACDPRLNGSQALELAFLIAERMRLRTGLPPLTSREAVSW 477          
BLAST of mRNA_P-fluviatile_contig14.2301.1 vs. uniprot
Match: A0A7S4VHK6_9STRA (Phospho-2-dehydro-3-deoxyheptonate aldolase n=2 Tax=Ditylum brightwellii TaxID=49249 RepID=A0A7S4VHK6_9STRA)

HSP 1 Score: 612 bits (1577), Expect = 5.670e-200
Identity = 287/450 (63.78%), Postives = 363/450 (80.67%), Query Frame = 2
Query:  242 WSPASWRKMVARQMPKYDDEGLVTEVEGILAKQAPLVFAGECRELTSELSKATRGEAFVLMGGDCAESFSEFKVDDVRDTFRSILQMSLVMTYGGSMPVVKIGRAAGQFAKPRSEDFETINGVTLPSYRGDIVNGLEFTATARRNDPYRMLSAYHQSAQTINLLRAFASGGFADIHKLNAWNMDFVQNTPEGSKYRELASKIEDTLRFMTAIGVDTTSAPFRTTKFYTAHEALLLSYEQALTREDSLTGKFYDCSAHMLWIGERTRQLDGAHIEFLRGVDNPIGIKVSQKCPPEELIEILETVNPANKAGKVTLITRMSSKYLNEHLPKLILAVQKAGLNVLWVSDPVHGNTIKTDSGYKTRRMEDIRSELRTFFDVHQRMGTHAGGIHIEMTGKDVTECTGGDVDEVRESDLKNRYLTQCDPRLNGKQSLELAFHIANRLRRDQGLPPV 1591
            WSP SW+K VA QMP YDD+  +      L+K +PLVFAGE R L  +L++ T+G+ F+LMGGDCAE+F EF VD VRDTFR ILQM+LV+T+G +MPVVK+GR AGQFAKPRSE  E  +GV+LPSYRGDI+N  EFT  ARRN P+ M+ AYHQS+QTIN+LRAFA GG+ADI +L+AWN+DFV+NTPEGS+YR+ A+K++++LRFM AIGV+T S  F  T FYTAHE LLL YEQALTREDS TGK+YDCSAHMLW+GERTR+LDGAH+EF++G+ NP+G+K+S KC P+EL+ I++ +NP N  G++T+I RM ++ L ++LP LI AVQ+ G +VLW+SDPVHGNT KT++G+KTR    IR ELR FFDVH  MG+H GG+H+EMTG+DVTECTGG +  V E  LK+RY T CDPRLNG+Q+LELAF IA R+R+  GLPP+
Sbjct:   52 WSPKSWQKKVASQMPVYDDKEELDAAVDKLSKCSPLVFAGEVRSLHEQLARVTQGQGFLLMGGDCAEAFKEFNVDHVRDTFRVILQMALVLTFGSAMPVVKVGRMAGQFAKPRSEPDEVRDGVSLPSYRGDIINNEEFTPDARRNRPFNMVEAYHQSSQTINILRAFAHGGYADISRLHAWNLDFVENTPEGSRYRQFATKVDESLRFMKAIGVNTASPQFTETDFYTAHECLLLPYEQALTREDSTTGKYYDCSAHMLWVGERTRELDGAHLEFVKGIGNPLGVKISDKCTPDELLRIIDNMNPNNIPGRLTIIVRMGAEKLRKNLPGLIRAVQREGKSVLWISDPVHGNTFKTETGFKTRDFNAIRDELRAFFDVHDEMGSHPGGVHLEMTGEDVTECTGG-LSGVTEDTLKDRYHTFCDPRLNGEQALELAFLIAERMRQRTGLPPL 500          
BLAST of mRNA_P-fluviatile_contig14.2301.1 vs. uniprot
Match: A0A6V1PHE5_HETAK (Phospho-2-dehydro-3-deoxyheptonate aldolase n=1 Tax=Heterosigma akashiwo TaxID=2829 RepID=A0A6V1PHE5_HETAK)

HSP 1 Score: 608 bits (1568), Expect = 1.100e-198
Identity = 294/450 (65.33%), Postives = 356/450 (79.11%), Query Frame = 2
Query:  242 WSPASWRKMVARQMPKYDDEGLVTEVEGILAKQAPLVFAGECRELTSELSKATRGEAFVLMGGDCAESFSEFKVDDVRDTFRSILQMSLVMTYGGSMPVVKIGRAAGQFAKPRSEDFETINGVTLPSYRGDIVNGLEFTATARRNDPYRMLSAYHQSAQTINLLRAFASGGFADIHKLNAWNMDFVQNTPEGSKYRELASKIEDTLRFMTAIGVDTTSAPFRTTKFYTAHEALLLSYEQALTREDSLTGKFYDCSAHMLWIGERTRQLDGAHIEFLRGVDNPIGIKVSQKCPPEELIEILETVNPANKAGKVTLITRMSSKYLNEHLPKLILAVQKAGLNVLWVSDPVHGNTIKTDSGYKTRRMEDIRSELRTFFDVHQRMGTHAGGIHIEMTGKDVTECTGGDVDEVRESDLKNRYLTQCDPRLNGKQSLELAFHIANRLRRDQGLPPV 1591
            WSP+SWR     QMP Y+DE  + EVE  L K  PLVFAGECR+L  ELSK  RG+ F+LMGGDCAESFSEF VD +RDTF+ ILQMSLV+T+G  +PV KIGR AGQFAKPRSE  ET +GVTLPSYRGD VNG +FT  ARRNDP RM++AY+Q AQT+N+LRAFA+GG+ADI KL  WN++FV  T EGSKYR+LA K+ +++RFM AIGV+T    F+T  FYTAHE LLL YEQALTR DS +G++YDCSA MLWIGERTRQLD AH+EF+RGV NP+G+KVS K  PE L+ +L+T+NP N  G+VT+ITRM ++ + EHLP LI AVQ AG NV+W+SDPVH NTIKTD+G+KTR  + IR ELR FFDVH+ MG+H GG+H+EMTG+DVTEC GG+V+EV   DL   Y T CDPRLNG Q+LELAF I+ R+R+ QGL P+
Sbjct:   51 WSPSSWRGKDVAQMPVYEDEAELEEVEARLRKVTPLVFAGECRKLQDELSKVCRGQGFLLMGGDCAESFSEFSVDHIRDTFKIILQMSLVLTFGSGLPVTKIGRMAGQFAKPRSEPTETKDGVTLPSYRGDNVNGEDFTPEARRNDPERMMTAYNQCAQTLNILRAFATGGYADITKLQRWNLEFVDKTEEGSKYRKLAEKVAESIRFMKAIGVNTRGENFKTVDFYTAHECLLLPYEQALTRVDSTSGRYYDCSASMLWIGERTRQLDMAHLEFVRGVGNPLGVKVSDKSTPEGLLGLLDTINPDNIPGRVTIITRMGAEKIREHLPVLIEAVQDAGRNVVWISDPVHANTIKTDAGFKTRPFDRIRDELRAFFDVHEAMGSHPGGVHLEMTGEDVTECIGGNVNEV--IDLSENYKTACDPRLNGAQALELAFLISERMRKAQGLEPL 498          
BLAST of mRNA_P-fluviatile_contig14.2301.1 vs. uniprot
Match: A0A7S4JFB4_9STRA (Phospho-2-dehydro-3-deoxyheptonate aldolase n=1 Tax=Odontella aurita TaxID=265563 RepID=A0A7S4JFB4_9STRA)

HSP 1 Score: 608 bits (1567), Expect = 1.390e-198
Identity = 282/450 (62.67%), Postives = 363/450 (80.67%), Query Frame = 2
Query:  242 WSPASWRKMVARQMPKYDDEGLVTEVEGILAKQAPLVFAGECRELTSELSKATRGEAFVLMGGDCAESFSEFKVDDVRDTFRSILQMSLVMTYGGSMPVVKIGRAAGQFAKPRSEDFETINGVTLPSYRGDIVNGLEFTATARRNDPYRMLSAYHQSAQTINLLRAFASGGFADIHKLNAWNMDFVQNTPEGSKYRELASKIEDTLRFMTAIGVDTTSAPFRTTKFYTAHEALLLSYEQALTREDSLTGKFYDCSAHMLWIGERTRQLDGAHIEFLRGVDNPIGIKVSQKCPPEELIEILETVNPANKAGKVTLITRMSSKYLNEHLPKLILAVQKAGLNVLWVSDPVHGNTIKTDSGYKTRRMEDIRSELRTFFDVHQRMGTHAGGIHIEMTGKDVTECTGGDVDEVRESDLKNRYLTQCDPRLNGKQSLELAFHIANRLRRDQGLPPV 1591
            WSP+SW+  V +QMP YDDE  +      L + +PLVFAGE R L  +L++A  G+ F+LMGGDCAE+F+EF VD +RDTFR +LQMSLV+T+G +MPV+K+GR AGQFAKPRSE  E  +GV LPSYRGDI+N  EF+A ARRN+P  M+ AYHQSAQT+N+LRAFA+GGFADI +L+AWN+DFV+NT EGS+YR+ A K++++LRFM AIG+DT++  F  T FYTAHE LLL YEQALTR+DS+TGK+YDCSAHMLW+GERTR+LDGAH+EF  G+ NP+G+KVS KC P+EL+ I +T+NP N  G++T++ RM ++ L ++LP LI AVQ+ G +V+W+SDPVHGNT KT++GYKTR  E+IR+ELR FFDVH+ MG+H GG+H+EMTGKDVTEC GG + +V E  L +RY T CDPRLNG+Q+LELAF IA R+R   GLPP+
Sbjct:   47 WSPSSWKGKVPKQMPVYDDEEELDAAVKRLERCSPLVFAGEVRSLHEQLARACHGQGFLLMGGDCAEAFNEFNVDHIRDTFRVLLQMSLVLTFGSAMPVIKVGRMAGQFAKPRSEPDEVRDGVALPSYRGDIINSEEFSAEARRNNPNNMVEAYHQSAQTLNILRAFATGGFADISRLHAWNLDFVENTDEGSRYRKFAVKVDESLRFMKAIGIDTSNPTFTQTDFYTAHECLLLPYEQALTRQDSITGKWYDCSAHMLWVGERTRELDGAHLEFTSGIGNPLGVKVSDKCTPDELLRICDTMNPGNIPGRLTIVVRMGAEKLRKNLPGLIRAVQREGKSVIWISDPVHGNTRKTENGYKTRDFENIRAELRAFFDVHEEMGSHPGGVHLEMTGKDVTECVGG-ISDVTEESLGDRYHTHCDPRLNGQQALELAFLIAERMRVRTGLPPI 495          
BLAST of mRNA_P-fluviatile_contig14.2301.1 vs. uniprot
Match: A0A7S2XS61_9STRA (Phospho-2-dehydro-3-deoxyheptonate aldolase n=2 Tax=Attheya septentrionalis TaxID=420275 RepID=A0A7S2XS61_9STRA)

HSP 1 Score: 604 bits (1557), Expect = 9.360e-198
Identity = 287/451 (63.64%), Postives = 359/451 (79.60%), Query Frame = 2
Query:  239 GWSPASWRKMVARQMPKYDDEGLVTEVEGILAKQAPLVFAGECRELTSELSKATRGEAFVLMGGDCAESFSEFKVDDVRDTFRSILQMSLVMTYGGSMPVVKIGRAAGQFAKPRSEDFETINGVTLPSYRGDIVNGLEFTATARRNDPYRMLSAYHQSAQTINLLRAFASGGFADIHKLNAWNMDFVQNTPEGSKYRELASKIEDTLRFMTAIGVDTTSAPFRTTKFYTAHEALLLSYEQALTREDSLTGKFYDCSAHMLWIGERTRQLDGAHIEFLRGVDNPIGIKVSQKCPPEELIEILETVNPANKAGKVTLITRMSSKYLNEHLPKLILAVQKAGLNVLWVSDPVHGNTIKTDSGYKTRRMEDIRSELRTFFDVHQRMGTHAGGIHIEMTGKDVTECTGGDVDEVRESDLKNRYLTQCDPRLNGKQSLELAFHIANRLRRDQGLPPV 1591
            G +P SW    A QMP YDD   +      L K +PLVFAGE R L  +L++A +G+ F+LMGGDCAE+F+EF VD VRDTFR ILQMSLV+T+G +MPV+K+GR AGQFAKPRS+  E I+GV+LPSYRGDI+N  +FTA ARRN+P  M+ AYHQSAQT+N+LRAF++GG+ADI +L+AWN+DFV NT EGS+YR+ A+K++++LRFM AIGVDT S  F  T FYTAHE LLL YEQALTR+DS TGK+YDCSAHMLW+GERTR+LDGAH+EF+RG+ NP+G+KVS KC PEELI I +T+NP N  G++T+I RM +  L ++LP LI AVQ+ G +VLW+SDPVHGNT KT SG+KTR  E+IR+ELR FFDVH  MG+H GG+H+EMTG+DVTEC GG + +V E  LK+RY T CDPRLNG Q+LE+AF IA R+R   GLPP+
Sbjct:    5 GGTPESWTAKKASQMPVYDDPEELAAAVTRLEKCSPLVFAGEVRSLHEQLARACQGQGFLLMGGDCAEAFNEFNVDHVRDTFRVILQMSLVLTFGSAMPVIKVGRMAGQFAKPRSDPDEVIDGVSLPSYRGDIINREDFTAEARRNNPANMVEAYHQSAQTLNILRAFSTGGYADISRLHAWNLDFVDNTDEGSRYRKFATKVDESLRFMKAIGVDTASPAFTQTDFYTAHECLLLPYEQALTRKDSTTGKYYDCSAHMLWVGERTRELDGAHLEFIRGIGNPLGVKVSDKCTPEELIRICDTMNPNNTPGRLTIIVRMGADKLRKNLPGLIRAVQREGKSVLWMSDPVHGNTYKTTSGFKTRDFENIRAELRAFFDVHDEMGSHPGGVHLEMTGEDVTECVGG-LSDVTEDSLKDRYKTYCDPRLNGAQALEIAFLIAERMRIRTGLPPI 454          
BLAST of mRNA_P-fluviatile_contig14.2301.1 vs. uniprot
Match: A0A7S1UVZ6_9STRA (Phospho-2-dehydro-3-deoxyheptonate aldolase n=2 Tax=Grammatophora oceanica TaxID=210454 RepID=A0A7S1UVZ6_9STRA)

HSP 1 Score: 603 bits (1555), Expect = 7.710e-197
Identity = 280/454 (61.67%), Postives = 362/454 (79.74%), Query Frame = 2
Query:  230 SAIGWSPASWRKMVARQMPKYDDEGLVTEVEGILAKQAPLVFAGECRELTSELSKATRGEAFVLMGGDCAESFSEFKVDDVRDTFRSILQMSLVMTYGGSMPVVKIGRAAGQFAKPRSEDFETINGVTLPSYRGDIVNGLEFTATARRNDPYRMLSAYHQSAQTINLLRAFASGGFADIHKLNAWNMDFVQNTPEGSKYRELASKIEDTLRFMTAIGVDTTSAPFRTTKFYTAHEALLLSYEQALTREDSLTGKFYDCSAHMLWIGERTRQLDGAHIEFLRGVDNPIGIKVSQKCPPEELIEILETVNPANKAGKVTLITRMSSKYLNEHLPKLILAVQKAGLNVLWVSDPVHGNTIKTDSGYKTRRMEDIRSELRTFFDVHQRMGTHAGGIHIEMTGKDVTECTGGDVDEVRESDLKNRYLTQCDPRLNGKQSLELAFHIANRLRRDQGLPPV 1591
            S+  WSP+SW+  VA QMP YD++  + +    L K +PLVFAGE R L  +L++A  G+ F+LMGGDCAE+F EF VD VRDTFR ILQM+LV+T+G +MPV+K+GR AGQFAKPRSE  E  +GV LPSYRGDI+N  +F+A ARRN+P+ M+ AYHQSAQT+N+LRAF++GG+ADI +L+AWN+DFV+ T EGS+YR+ A+K++++LRFM A GVDT+S  F  T F+TAHE LLL YEQALTR+DS TG++YDCSAHMLW+GERTRQ+DGAH+EF RG+ NP+G+K+S KC P+ELI I++T+NP N  G++T+I RM +  L ++ P+LI AVQ+ G +VLW+SDPVHGNT KT+SG+KTR  E IR ELR FFDVH  MG+H GG+H+EMTG+DVTEC GG + +V+E  L +RY T CDPRLNG Q+LELAF IA R+R   GLPP+
Sbjct:   42 SSPDWSPSSWQDKVALQMPVYDNQAELDDAVSTLEKNSPLVFAGEVRTLHEQLARACSGQGFLLMGGDCAEAFDEFNVDHVRDTFRVILQMALVLTFGSAMPVIKVGRMAGQFAKPRSEPDEVRDGVALPSYRGDIINREDFSAEARRNNPFNMVQAYHQSAQTLNILRAFSTGGYADISRLHAWNLDFVEQTEEGSRYRQFANKVDESLRFMKACGVDTSSDDFTKTNFFTAHECLLLPYEQALTRQDSTTGRWYDCSAHMLWVGERTRQMDGAHLEFTRGIGNPLGVKISDKCTPDELIRIIDTMNPQNIPGRLTIIVRMGADKLRKNFPELIRAVQREGKSVLWISDPVHGNTYKTESGFKTRSFEKIRDELRAFFDVHDEMGSHPGGVHLEMTGEDVTECVGG-LSDVKEDTLGDRYNTHCDPRLNGAQALELAFLIAERMRIRTGLPPI 494          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig14.2301.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D8LFA5_ECTSI0.000e+087.69Phospho-2-dehydro-3-deoxyheptonate aldolase n=2 Ta... [more]
A0A835Z444_9STRA4.670e-21666.89Phospho-2-dehydro-3-deoxyheptonate aldolase n=1 Ta... [more]
A0A7S2V0I5_9STRA2.530e-20465.56Phospho-2-dehydro-3-deoxyheptonate aldolase n=1 Ta... [more]
A0A4D9DEW1_9STRA4.100e-20365.68Phospho-2-dehydro-3-deoxyheptonate aldolase n=1 Ta... [more]
B8BVC7_THAPS1.470e-20163.97Phospho-2-dehydro-3-deoxyheptonate aldolase n=1 Ta... [more]
A0A7S4VHK6_9STRA5.670e-20063.78Phospho-2-dehydro-3-deoxyheptonate aldolase n=2 Ta... [more]
A0A6V1PHE5_HETAK1.100e-19865.33Phospho-2-dehydro-3-deoxyheptonate aldolase n=1 Ta... [more]
A0A7S4JFB4_9STRA1.390e-19862.67Phospho-2-dehydro-3-deoxyheptonate aldolase n=1 Ta... [more]
A0A7S2XS61_9STRA9.360e-19863.64Phospho-2-dehydro-3-deoxyheptonate aldolase n=2 Ta... [more]
A0A7S1UVZ6_9STRA7.710e-19761.67Phospho-2-dehydro-3-deoxyheptonate aldolase n=2 Ta... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig14contigP-fluviatile_contig14:2586598..2642005 +
Analyses
This mRNA is derived from or has results from the following analyses
Analysis NameDate Performed
Diamond blastx: OGS1.0 vs UniRef902022-09-19
OGS1.0 of Porterinema fluviatile SAG_23812021-02-24
Properties
Property NameValue
Taxonomic scopeEukaryota
Seed ortholog score915.2
Seed ortholog evalue1.4e-263
Seed eggNOG ortholog2880.D8LFA5
Preferred nameDHS2
KEGG rclassRC00435
KEGG koko:K01626
KEGG ReactionR01826
KEGG Pathwayko00400,ko01100,ko01110,ko01130,ko01230,ko02024,map00400,map01100,map01110,map01130,map01230,map02024
KEGG ModuleM00022
GOsGO:0003674,GO:0003824,GO:0003849,GO:0005575,GO:0005622,GO:0005623,GO:0005737,GO:0005739,GO:0006082,GO:0006520,GO:0006725,GO:0006807,GO:0006950,GO:0008150,GO:0008152,GO:0008652,GO:0009058,GO:0009072,GO:0009073,GO:0009423,GO:0009507,GO:0009534,GO:0009536,GO:0009579,GO:0009611,GO:0009987,GO:0016053,GO:0016740,GO:0016765,GO:0019438,GO:0019752,GO:0031976,GO:0031984,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0043436,GO:0043648,GO:0043650,GO:0044237,GO:0044238,GO:0044249,GO:0044281,GO:0044283,GO:0044422,GO:0044424,GO:0044434,GO:0044435,GO:0044444,GO:0044446,GO:0044464,GO:0046394,GO:0046417,GO:0050896,GO:0071704,GO:1901360,GO:1901362,GO:1901564,GO:1901566,GO:1901576
EggNOG free text desc.3-deoxy-7-phosphoheptulonate synthase activity
EggNOG OGs2QPP7@2759,COG3200@1
Ec32 ortholog description3-deoxy-7-phosphoheptulonate synthase
Ec32 orthologEc-01_004250.1
EC2.5.1.54
COG Functional cat.E
BiGG ReactioniRC1080.CRv4_Au5_s17_g7580_t1
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
BRITEko00000,ko00001,ko00002,ko01000
Hectar predicted targeting categorysignal peptide
Exons17
Model size5065
Cds size1602
Stop1
Start1
Relationships

The following UTR feature(s) are a part of this mRNA:

Feature NameUnique NameSpeciesTypePosition
1622815632.251189-UTR-P-fluviatile_contig14:2586597..25865981622815632.251189-UTR-P-fluviatile_contig14:2586597..2586598Porterinema fluviatile SAG_2381UTRP-fluviatile_contig14 2586598..2586598 +
1693562575.0275145-UTR-P-fluviatile_contig14:2586597..25865981693562575.0275145-UTR-P-fluviatile_contig14:2586597..2586598Porterinema fluviatile SAG_2381UTRP-fluviatile_contig14 2586598..2586598 +
1622815632.4333386-UTR-P-fluviatile_contig14:2598649..26004571622815632.4333386-UTR-P-fluviatile_contig14:2598649..2600457Porterinema fluviatile SAG_2381UTRP-fluviatile_contig14 2598650..2600457 +
1693562575.1695573-UTR-P-fluviatile_contig14:2598649..26004571693562575.1695573-UTR-P-fluviatile_contig14:2598649..2600457Porterinema fluviatile SAG_2381UTRP-fluviatile_contig14 2598650..2600457 +
1622815632.4430354-UTR-P-fluviatile_contig14:2600545..26009521622815632.4430354-UTR-P-fluviatile_contig14:2600545..2600952Porterinema fluviatile SAG_2381UTRP-fluviatile_contig14 2600546..2600952 +
1693562575.1832647-UTR-P-fluviatile_contig14:2600545..26009521693562575.1832647-UTR-P-fluviatile_contig14:2600545..2600952Porterinema fluviatile SAG_2381UTRP-fluviatile_contig14 2600546..2600952 +
1622815632.45248-UTR-P-fluviatile_contig14:2601415..26015731622815632.45248-UTR-P-fluviatile_contig14:2601415..2601573Porterinema fluviatile SAG_2381UTRP-fluviatile_contig14 2601416..2601573 +
1693562575.1918159-UTR-P-fluviatile_contig14:2601415..26015731693562575.1918159-UTR-P-fluviatile_contig14:2601415..2601573Porterinema fluviatile SAG_2381UTRP-fluviatile_contig14 2601416..2601573 +
1622815632.4635909-UTR-P-fluviatile_contig14:2640836..26414091622815632.4635909-UTR-P-fluviatile_contig14:2640836..2641409Porterinema fluviatile SAG_2381UTRP-fluviatile_contig14 2640837..2641409 +
1693562575.1999772-UTR-P-fluviatile_contig14:2640836..26414091693562575.1999772-UTR-P-fluviatile_contig14:2640836..2641409Porterinema fluviatile SAG_2381UTRP-fluviatile_contig14 2640837..2641409 +
1622815632.476869-UTR-P-fluviatile_contig14:2641489..26420051622815632.476869-UTR-P-fluviatile_contig14:2641489..2642005Porterinema fluviatile SAG_2381UTRP-fluviatile_contig14 2641490..2642005 +
1693562575.2088313-UTR-P-fluviatile_contig14:2641489..26420051693562575.2088313-UTR-P-fluviatile_contig14:2641489..2642005Porterinema fluviatile SAG_2381UTRP-fluviatile_contig14 2641490..2642005 +


The following CDS feature(s) are a part of this mRNA:

Feature NameUnique NameSpeciesTypePosition
1622815632.26577-CDS-P-fluviatile_contig14:2586598..25867231622815632.26577-CDS-P-fluviatile_contig14:2586598..2586723Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 2586599..2586723 +
1693562575.0395062-CDS-P-fluviatile_contig14:2586598..25867231693562575.0395062-CDS-P-fluviatile_contig14:2586598..2586723Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 2586599..2586723 +
1622815632.2762535-CDS-P-fluviatile_contig14:2589821..25900591622815632.2762535-CDS-P-fluviatile_contig14:2589821..2590059Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 2589822..2590059 +
1693562575.048423-CDS-P-fluviatile_contig14:2589821..25900591693562575.048423-CDS-P-fluviatile_contig14:2589821..2590059Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 2589822..2590059 +
1622815632.2866368-CDS-P-fluviatile_contig14:2590730..25908261622815632.2866368-CDS-P-fluviatile_contig14:2590730..2590826Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 2590731..2590826 +
1693562575.063614-CDS-P-fluviatile_contig14:2590730..25908261693562575.063614-CDS-P-fluviatile_contig14:2590730..2590826Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 2590731..2590826 +
1622815632.2962117-CDS-P-fluviatile_contig14:2591451..25915351622815632.2962117-CDS-P-fluviatile_contig14:2591451..2591535Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 2591452..2591535 +
1693562575.0744965-CDS-P-fluviatile_contig14:2591451..25915351693562575.0744965-CDS-P-fluviatile_contig14:2591451..2591535Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 2591452..2591535 +
1622815632.306544-CDS-P-fluviatile_contig14:2591956..25920331622815632.306544-CDS-P-fluviatile_contig14:2591956..2592033Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 2591957..2592033 +
1693562575.0843866-CDS-P-fluviatile_contig14:2591956..25920331693562575.0843866-CDS-P-fluviatile_contig14:2591956..2592033Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 2591957..2592033 +
1622815632.317205-CDS-P-fluviatile_contig14:2592560..25926571622815632.317205-CDS-P-fluviatile_contig14:2592560..2592657Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 2592561..2592657 +
1693562575.0939395-CDS-P-fluviatile_contig14:2592560..25926571693562575.0939395-CDS-P-fluviatile_contig14:2592560..2592657Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 2592561..2592657 +
1622815632.3278286-CDS-P-fluviatile_contig14:2594816..25949691622815632.3278286-CDS-P-fluviatile_contig14:2594816..2594969Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 2594817..2594969 +
1693562575.1033247-CDS-P-fluviatile_contig14:2594816..25949691693562575.1033247-CDS-P-fluviatile_contig14:2594816..2594969Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 2594817..2594969 +
1622815632.3381453-CDS-P-fluviatile_contig14:2595227..25953421622815632.3381453-CDS-P-fluviatile_contig14:2595227..2595342Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 2595228..2595342 +
1693562575.1137807-CDS-P-fluviatile_contig14:2595227..25953421693562575.1137807-CDS-P-fluviatile_contig14:2595227..2595342Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 2595228..2595342 +
1622815632.3483098-CDS-P-fluviatile_contig14:2596146..25962701622815632.3483098-CDS-P-fluviatile_contig14:2596146..2596270Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 2596147..2596270 +
1693562575.12516-CDS-P-fluviatile_contig14:2596146..25962701693562575.12516-CDS-P-fluviatile_contig14:2596146..2596270Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 2596147..2596270 +
1622815632.3580582-CDS-P-fluviatile_contig14:2596612..25967631622815632.3580582-CDS-P-fluviatile_contig14:2596612..2596763Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 2596613..2596763 +
1693562575.1323159-CDS-P-fluviatile_contig14:2596612..25967631693562575.1323159-CDS-P-fluviatile_contig14:2596612..2596763Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 2596613..2596763 +
1622815632.39992-CDS-P-fluviatile_contig14:2597064..25972051622815632.39992-CDS-P-fluviatile_contig14:2597064..2597205Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 2597065..2597205 +
1693562575.1393874-CDS-P-fluviatile_contig14:2597064..25972051693562575.1393874-CDS-P-fluviatile_contig14:2597064..2597205Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 2597065..2597205 +
1622815632.4123135-CDS-P-fluviatile_contig14:2597481..25975911622815632.4123135-CDS-P-fluviatile_contig14:2597481..2597591Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 2597482..2597591 +
1693562575.1464286-CDS-P-fluviatile_contig14:2597481..25975911693562575.1464286-CDS-P-fluviatile_contig14:2597481..2597591Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 2597482..2597591 +
1622815632.4225676-CDS-P-fluviatile_contig14:2598558..25986491622815632.4225676-CDS-P-fluviatile_contig14:2598558..2598649Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 2598559..2598649 +
1693562575.1565678-CDS-P-fluviatile_contig14:2598558..25986491693562575.1565678-CDS-P-fluviatile_contig14:2598558..2598649Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 2598559..2598649 +


The following polypeptide feature(s) derives from this mRNA:

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig14.2301.1prot_P-fluviatile_contig14.2301.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig14 2586599..2598649 +


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig14.2301.1

>prot_P-fluviatile_contig14.2301.1 ID=prot_P-fluviatile_contig14.2301.1|Name=mRNA_P-fluviatile_contig14.2301.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=534bp
MRTAAAAGVLAAGLATAGALQPSGFLGRSMARGQAPVKGTSRTTMVAQPP
TKAAEAAAAASAAVASSSTASSSSSISAIGWSPASWRKMVARQMPKYDDE
GLVTEVEGILAKQAPLVFAGECRELTSELSKATRGEAFVLMGGDCAESFS
EFKVDDVRDTFRSILQMSLVMTYGGSMPVVKIGRAAGQFAKPRSEDFETI
NGVTLPSYRGDIVNGLEFTATARRNDPYRMLSAYHQSAQTINLLRAFASG
GFADIHKLNAWNMDFVQNTPEGSKYRELASKIEDTLRFMTAIGVDTTSAP
FRTTKFYTAHEALLLSYEQALTREDSLTGKFYDCSAHMLWIGERTRQLDG
AHIEFLRGVDNPIGIKVSQKCPPEELIEILETVNPANKAGKVTLITRMSS
KYLNEHLPKLILAVQKAGLNVLWVSDPVHGNTIKTDSGYKTRRMEDIRSE
LRTFFDVHQRMGTHAGGIHIEMTGKDVTECTGGDVDEVRESDLKNRYLTQ
CDPRLNGKQSLELAFHIANRLRRDQGLPPVLGD*
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mRNA from alignment at P-fluviatile_contig14:2586598..2642005+

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig14.2301.1 ID=mRNA_P-fluviatile_contig14.2301.1|Name=mRNA_P-fluviatile_contig14.2301.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=55408bp|location=Sequence derived from alignment at P-fluviatile_contig14:2586598..2642005+ (Porterinema fluviatile SAG_2381)
GATGAGGACAGCAGCAGCCGCAGGAGTGTTGGCAGCCGGGCTGGCGACAG CGGGCGCCTTGCAGCCGAGCGGTTTCCTAGGGAGGAGCATGGCTAGGGGC CAAGCACCCGTCAAAGGCACCAGCAGGTGTGACCGACTTCACAATTTCCT TCACTCTCCCCCCCCCTTCTGCCGCCCACCACCACACTTTACACCCGCCC TTCAGCTGGGGGCGCGTTTCTCTTGATATAGCGTGTGTGTCTGGAACGCA ATGGAAGGTTCAGGGGCATGATAAGTGCGTTCACAATCTAGAGGGGCTTG GAGGTCCAAGGAGGATGTGGCTAGTGCTTGGTGTCTCCCGTGCAGACTTG ACAGAGACACGTGCGACGATCATGATGAGATCCATGCGCATTTGGCTTTG CCAAGGTCGAAGAAAAAACATGAGATCCAAGGGTTTGAATGTTCGAGCCC TTGTCGTGGCTTATTGTGCTCTCACACATGTTGCTACCTTTAGATGATCT TTAGGCACGCACAGCACAGCTGGAGCATGCGTCCTCTGCTTGTCTGATTG TCTGGATTATAAATGTCAGCTCGAAGGAGAATCCCCCGACCCCTGGCTCT CACGTGCTACTTCTACGGCTGCATGCGGGGGGGTGTACTCGTAGTCGTGC ATGCCGTAGGCGTTAGACCATTGACCTCGCATCCCTACAAAGCCGGGACG GAGCACGCCGGGTTCTCACCGGACCAGGCTCTCGCATCACCAAGCGCGAA GTGCCGTGAGGTATTCGGCGAGTCGCATGAAAGGTGGCTCTGCATCCTGC TAAGGGTGTTCGGCATCTTGTGCTCACTTCCTTGCATACGGATGACAGCT ACGTATGACATAATTTATTTTCTGGTGCTTTCACTTCCAGAGGCAGTTGT CAGCACTGTGTAACTGCCTCGAGGGTGCTTGACCAATTGAACACAACGTG GTGCGATCATCCCCCTTGCGCGGAGTGAGGGTTCTCCACTACGCACAACA TGATCTTCTCGACCACCATTATGGTTACCGCCAAAAAAACAGAGGAAAAA AAAGACGGTAACCTGGTTGCCGAGTTCACGAAGTGAATTGGCTTGTTTTA CAACGTCGTTGCCAAGCGACGAAAACCCAATCCCGATGGCAAACACCGAG GTGAGAGCCAACGGGGGGGGGCTGCATGCGGGGGGCGTACTCATGTTTTG CATGCCTTAGTTGTTAGACCATTGACCACGCGTCCTCGAGAGGACGGAGC ATTGTTCCCGCAGGATCGATCACCGATTGCTAATCGTTCCTTCCTACTTT GCCAAAGGTGGCTCAAAAATGTTTTCCCTAACCTGTCTACTTTATACCTG TCCTTCCTGGGCCACAACTTACACCCGAGTACCGCTACGGTATTCTCCTC TTTGTTCCATGCCTCAAACTTCTCTCTATACCGACTGTCTACTTTTTCCA GCTCAACCATGTACCCTTCTCTCTCCTGATCGTATCACGGGCATTCCGCA ACTACATGTACCCGGTCTTCGCATTCGGCGCCGTAGTCACATTTCGAACT TGTCTTCGTCGTCGTCTACCTTCCTAAACCTCCTTCTACGTTCCCGTAGG TCAATGTCGCCCGTTCTAAATTTGACCTTCATCCAATGGTCCGTTCAGGT ACTCCTTGAACACTATTCCTTCGTTCAGCCTTCCGTACACTTCTAGAACC TCTTTTTCCTTGGTCTCTTTCCGCAAGCTCTGATCTTTTCTATTTTCAAA GGCTTCTGAGATACCCTTCTTGTACCCTTCTAAGCTTTCCGCTCCCGTCG TCTCCCGTTCGTCAATATCTATCCCACTCCACACTCCCTGTACAACCTTA GCCCACTCAATGGGTTGTCTACCCTTGGCCTTGTTTACCCATCTCGCCTC CCAAGCTATTCTCGGTAACTCTCCTTTCCCATGTTTTCCATACGGTATTG CCATGTCAACTTCCTCCTGTATCTTCCCGTTCTTAAGGAGTAAATCCCCA ACCCTGCTCTTACTGCTGCGTTACTTGTGCGCTGGGAGCATCCTAGAATG TTCTTCGCTGCTTTCATCTGCGCTGCCTCCAACTCTGCTACTATTTTCTT GTTCCCTTCCCAAGCTTCTCCCGCGTACTCTAGTGGCGGGATGATAACAC TGTTAAGAATGGTCATTTTGACGCGTGTATCAAGGTGCCGGTCTGCTAGG ATTGGGTGCAACTTCCCTGCCCTTGCTTTGCCCTTGTCCGCTATTTTGTG CATGTGTGCATCCCATTTACAGTCTTTTGCTGTCTCTACTCCGAGGTATG TGTATTTTCATGCGGGAGGGGGGGAGAGAGAGGGGCGGCGGCGGCCGAAA AGTTTACACCCACGGACTCCCTCCAAGCCTTTGTGGGTAACTGCACTCGA CCTTTGCATTTGTGATGACTGAACTCTTCTGCTGCCCCACTGCCGGCGGG CCAACCTTGCTGGGGCGGTCGCATCGATATACTCAAGCATTTTTTTAAAG GAAAGTATGTCCGCGCCCATTAGCCAGCAGCAGTGTATCGGTAAATGAAA TCCGCTTGACCGTTCGCACCCATGCGAATACCCCGCGCCGGGAAAACGCA GCAGCCGTCGTAAGCATCCGATGGCACATGGTTCAAGGGGTCGTACCTCT TCAAAACGACAGAAGACTTCCCTGCCGATTTCGAATACGCGATACGCGTA GCCCTGCGAAGGCGTGTCGCTTTTAGGTACAAGTTGTGACCAGCAAGCCG CCGCTCGACACACGGCAGTCGACCGTCTGGACCAAGACGCAGATCGGAAA GTATACGCCCAAGCCCGGTCGTCGTAGCAAGGCTCATCAGTTATATATTT CGCCCTCCGTTTTTTACCTGTCACTAGCACGGGGGTTGCCGCGATGGGGG TCTGCTTCAAGACAAATAAAGGTACACGGCGACAAAAGGAATGATACGGA CAAGTGATGGCGTTCAGAGGCGTATTTACAAGCGGTTCCTTACAATGGGA TATTCCACACATGCCCGTTTGGGAAGCAGAAACACCTCAGTTTTTTTCGG TTTCGCGTTCGCCTGGTGAATCCCAGCGTGATCGCGCTGTCACAGCTGGA GGTTCGTCGTTTTCTTTTGCTGTCTTGCTTCGCCTTCAGATACGAACACG AACACATCGATTCCCTCGCCTAAACGTGACAAATAATGTTGGGTGACGGG CTTTTGTTCGCCCTTCAATCGCAGGACGACCATGGTCGCGCAGCCCCCTA CGAAGGCCGCGGAAGCAGCAGCAGCGGCGTCGGCAGCAGTGGCGTCGTCG TCGACGGCCAGCTCCTCCTCCTCCATTTCTGCGATCGGCTGGTCGCCTGC CTCCTGGCGCAAGATGGTCGCCCGGCAGATGCCCAAGTACGACGACGAGG GGTTGGTGACGGAGGTGGAGGGCATCCTGGCCAAGCAGGCCCCCCTCGTG TTCGCAGGAGAGGTGCGTTCGTTCGGGAGGGGTCGCATATGGGTTGTAAT GGGTGTTATCGCGTATGCGTGTGTGGCTCCCTGAACATCGACAAAGGCGC TCAACGGCTGACGGCCGAAATGAGATGTCCGTTTTTGTGTGCGATGCGTG AAATCAATTCGTGCTTGCAACGACTGCGCTAGTACGTAGCCGGCTGAAGG ACGAGGAAGCATCTGTATCTCTGCAGGGCGAAAATCAAAACCGCTTCTCC TAAACGCGACACCTGAGGTGGGGGGGGCCGCACGTGTTGTGCGTTGAATG AACTTGTCAAAGGTCCCCGACAGAGGGCTAGAGCGACGGCCGCGGGGAGA ATGTGAAAATTGTGTACCTAAGAAGCTTGCAGCTACGCTGCCGGCATTTT GTCGACGGCATCAGTGTGTATGCTATGGTTTTGTTCTTTGCCGTTTTATT TGCGCGCTGGCTGGCTTCGAGCTCTTCCCGACCCCCACACATCTCAACGT ATTTGCTCCGCCTCACACGCACCATTTTCTAAATTCCGCCGCGTCTGCCT TTCCTCCTGCTTCCTCAGTTTTTTAACTCTTTTATTTTCACCGCAGTGTG GTTGTTTCCGTTCATCCTCACCCCCTTTTCTCTGTTGGCCCTTGCGGTCG TCGTCGTGTGCGATTCATCTCCTCTCTACGCAGTGCCGGGAGCTAACCTC TGAGCTGTCGAAGGCGACAAGAGGGGAGGCGTTCGTCCTCATGGGAGGGG ACTGCGCCGAGAGCTTTTCGGAGTTCAAGGTGGGGAAAGAAATGTCCAAT TGCTTGCAAAAAAAATGAAATTAACTGTGAATGAGTAATTGAATGTTTTA CTATCGCCAGTTGTTTTCGCCCCCCAATGCGTCCCCGGCTCGTTCGCGCA AAGACTGAGGAAGATTGTAGACTGGCGGCTGGATAACAATGGGTGAACAC AAGAACAAAAAAGCTGAACAAAATCGGGGAGTTCTGGCATGTTCCTTTCC GCCTTCCCTCATTTCCCTTTCTTTACCTTTTTTTGAAGCGCTGGGTGTGC AGCATCTGTTCGCAGCCGCTTGTTATATCCCCGAGATCTTATATCGCCGA TGCGCTCTGATGTCTGGCGCGTCGGTTGGATGCCTGCCAAATCGGGGAGC ATAGCGGAGCAGGAAGAAGGAGAACTGAGGAAGCATGTGTTGGTTAAAAA GTCTTCAGATTTCTCCAGCACCCGCGGTCGTTGTAGCTTGGGTTGAACCG TGCGCTGATTAGGGTTCTCAAGGTTTTTCTTAGTCATCCCTTGCTTGGAA GTCGAGACGATCCTGCACTGCTGTGATTTTTTTGCCCTCGCGAAATTTGT CATGGAATGCCTTTTCACGCCTGCTCCATCCCGCGTACGCTCGGCCTGCA CCAGGTGGACGACGTGCGAGACACGTTCAGATCCATCCTTCAAATGTCTC TCGTCATGACTTACGGAGGATCGATGCCCGTGGTAAAGGTGAGAAGATCA AAATAGAGAGGGACGAGGGAGGGGGGGTTGAGAGAAGGAGGGGGGTACAT GGAGCGGGAGAGAAAGACCGAGATATGCAGAAGTAAAGGTCACACGAGGT GTAGAAATGGACACAGCGAGGCCGAGTGGTAGAGGGAAGGAGCGTTGGTT ATGATGGAGGCAGATTGAGTGCCGAGAGCTGCAGAAGCGGTTTGGGTCAA GGATTTAACAGACGCATGGCGAATCGCTCATTGAGCGAGGAAAACGAGGT GTCGTGTCCTGTCACGAAAGTGGTTGCATCTAGGAGGGCGGAGAGTAATG AACGTTTATTGAAACTCGCGTCTACTTCGTGCAGGATTCATGCTGCAGTT CTGGCACGGCTGTGACGATTGCCAACGCCTCTTGATGCACCCATATCATT GTTTCTCAGATTGGTCGCGCAGCGGGGCAGTTCGCGAAGCCGCGATCAGA GGACTTCGAGACCATCAACGGGGTTACTCTTCCCAGGTCAGTCGATCAAG CTTTCCGTTCCTTATTTTCGTGAAAACACAAGACGTGTATGGGTCCGAAC CCCTGGCCATGCTTCCTGCAGGACCCGACATGTCCAAGGGCATAAGCCTG ACCCCCACCCCACTGCACACTCTCGCAACATTGGTGCAAAAATCGGAATC GCGGTTTGTTGCAGACATGGCGTGATCTTACTCTAGCCGATCAAAGTTGC TGCTCCACTTACTTTGATGCTCCCTTGGCGAGACAACGACATACACGTCG CTCAGGACTGTTTTTTATTTCCTTCTTCCTGGATTATTTCCTTCTCTTCT TTTGATCTGATTGTCCGGGAATGGAATGGAATGAACCGCGCTTTTTTCTT CCATATATTGATCGTGCCGCGCCGCGATCACAGAACGTTGAACTGCAGTT ACCGTGGGGGACATAATAACGGGCTAGAGCTTTTTGTTTCTTCTTGTTTC GTTGTTTGACCTTCGATTTGATCGCGCCACGCCACGCCACGATCACAAAA TGTGAAACCTCAGCTACCGCGGGGACATCGTAAACGGGCTCGAGTTCACG GCTACTGCGAGGCGAAACGACCCCTACCGCATGCTCTCCGCCTACCACCA GTCTGCCCAGGCGAGTGCAGGTGGTTCCGACGACAAGGGGCGATGGTGGT GTGTTGGCCACGGCACTTGACGTAGGGCACCGGCGTCGATGCTTCTGTCC AGTTTCGTATCGTCTTATTGCATACAACCCTAGATTCTGGAGCGCCGTCG TCGAGCGCCGTCCCTTCGCCGGCGAGGTATCCGGCGTCCGTCCGGACTGT GTTGAACGCTCGACGACGACGCTGTTCGGAACCCTGCGGCGCATGCAGCG AGCCCTTAGCGAAGCCGGGTGGGCACCCTCGGAGACGGAGCTACCCGTCG CCGGTGCCGAGTGAGATTAGCGCCTTGCAACCTCCCCCCCGGCGAGAAGC CGCTGAAGCGAGCGCGCTCCGATTTTTTTTTCCGAGCTTGCTGCGAAGCC GGAAAAATCGGGCCATAAGCGCAGAAACTGAAATACTAAAAAACACGCGG AGGTAGTGTGAGCATTGCTGCAGCGATTGCATCCTTAGCCTGGGGTTAGT TGGAGTGCCCTTGCGCCTGGCCAGGGCCTTGGTGAGTCGACTGTGAGCTC CAAAAATGAGAAAACATAGGACTGTACGTTGACACCGCACCGCATGTGGA TCGGTCAGACCAAGGAGGACGGCTATCGAGTACTGTAGCGATGGCGCTCT GGAAGAATCTCGCCCAGAGCCCGAAAGAATGAGGGGAGACCACCGATTCC AAGCTTGTTGAACTCGGAATTTTTACGAGTGTGACCCCCTCGGTCCACGT CTGCAAGCGCGAGAACACGATGGCAATCACCACCTTTTACGTCGACCGCG AGCAGCAAGTGGCATTCGGACTCCTCTCTCGCGCATGAAGTTCCGTCCAG AAGTGGAAGGGGAGGCAGAAAGACACCCTCGCAAGCCCGACAAGAGTCAG AAACGCATACAGGAGTGATCAGGATATCGTGCTGATGCCCGGTGGCCGGG CGCCCGACATGCTCCTACGATGGCAGCGGTAACTGCTCTCTGCCACGAAC GTTCGCATTGCAACGTCGACGAAGCATTTCCGAGCAGCTGGAGGTGTAGA ATAGGCTGTGAAACTGAAGTTGAAGGCCCATCAATTGGAAAGATGGAAGT AACCTTCAGTGACCGAGGTGCTACCGCAACTGCTTGAAGGACGCTATCGC ATGAATTCGATCGTCCCCAAGTAGTTGCGGTACCACTGCGGTCCATGAAT GACACACATTTTTGCAGAGAGTTGGCACTCACCGGCAGTATCGTAGTCTG TTATGTACAGCAGACATCGCAGTCTGTTATGTACAGCAGGCGTCGCAGTC TGGTCTAACTCAGCAGGCGCCAATCGCTGAAGAATGTCACACCGATGTCG GTAGCAAACGGCTGTGGCTGAGAGCAGTTGTGGGTGTCGAGGTGGGACCT TGTCGGACGCCACGGCCACTTGGCGTCGGTTACTCGAACGTCATCAATCG TTCAACACTTTCCAGCCAAGAATCTCGTCAAGCAGCCGTGGTGCTCGACA TTCTCCCACCGTGTGACGGTCGACTCTTCGCAGCCACAAGCCTGATGTAG CTGCAAAGAGATTCCTTGTCACAAGGTGGGAGAATATCGGGCGCCGTGGC CACTTGGCGTCGGCTACGGAAGCCCCAACCGGTGCATGTTTTGCGAATCT CTTCGAGCTTGCTAGAATGTCTCCTCGTCTGCCCTTCCACTTTCCGAGAG CAGCCCTTGCGAAGTTCTCAGTGTAAACTGGTGTTCACGCTCAAGCTTAA AGGGTGATGACTGCGATCGTGCCGTTGTGCGTGGAGGTGCCGGCCGATTA CGATCCGTGGCAGCCAGTGGTGAAGGTTAAGGATAAAATGAAGACAATGT TAACAATCAGCGGCCCATTCGCGTTTCAGCCGTCTCCTGACACCTGTGGG GTGCATTGAGTTTGTGGCCAACAATCCTGCCTGCAGCTGAAGTGTTTTGC CGTACGGTCACCGCCGGTGGTACTGATCTCGAATCTACGTCATGCTCTTT TTGTGTGCAAACTCTCCCCGCCCTCTCGTCGCTCTGTACTCCGCTTTATT CCGCCCGGGCTGTCTCGATGACGGCTGTCTCGATGACGCATGACAGACAC ACCGATGCCGATACCTCGTCTGACGCCGCACTTTTTTTCTTCGTTGTTGT TGGTCGCGGCGGACGGCAGACGATCAACCTCCTACGCGCCTTCGCGTCGG GGGGGTTCGCCGACATCCACAAGCTCAACGCCTGGAACATGGACTTCGTC CAGAACACGCCGGAGGGGTCCAAGTACCGCGAGCTCGCGTCCAAGATTGA GGACACTCTTCGCTTCATGACCGTAAGCGTTGTTGAATATGCTCATGCAC GCCGATGCCTCTCTTGGCGTGGGCAGATCGGTTCCTTGTGTGTTGTACGT GCGCGTGTGTGCTCGATATCTGGCCCGTGTTTTTCGCTAGTGCCACTACC CTTGAAAATTATTCGAATATTTTGAGGCGATCGTCGTGGAAATCAGTATG AAATATTGAAATGTCTTTCTTGTTGAGGCAATCGGAGTCGACACGACGTC TAATATTCCCCCTTGATTTATGTTGTTCAGGCGATTGGTGTCGACACGAC GTCCGCCCCCTTCCGCACGACCAAGTTCTACACGGCGCACGAGGCGCTGT TGCTCTCTTACGAACAGGCCCTTACCCGAGAAGACTCGCTCACAGGTGAG TCGTTTGCCGAGTTTCCGCAGTCGACGGTGTAAACCAGACCCCCCACAGG CCGAATTTCGAAGTTCGCTTGTGCAAACGCCACCACAGATCGCTCGTAGA TAGTGACGTAATTGAATGACTCGTCAGAGGCGTTTTTCTGTCGTGTTGTT GTCGCTTATTGCCGGTGAGCCTCTTTCGAGCGGCCCACTTCCGAAGAGCA TACTCCGGGGTGTCGGAAAGCCCCAGATGAGATCTTTGTTGGCGGCATTG TTGCCCCCCCTGCCCTCATTCTTGCGTGGATCGTCCGAGCCCCGGAGTCT CGTCGAAGGGTCTGCATGTGCGGTTATGAGAGTGAGCGAATTATTTGAGA AAGCGCGACAATCGTCACTGGATGGACAACATGAGGGAACAGGAGAAAGG CAAAACGGATATTTTTGGTTTGGATTGAGCCCAAAGACGAATAGTATGAA GTTGGCTTTGGCATGTAAAGGGGCGATTGAGCGCAGGTATGAAGCGGAGC CCCGACTTTTTTCTACAAGGGTTATCGCTCGATTATTTCGTGCGCGGGGT GCGATAAGATGACGGGTCAAAATTGCCGCAAGTGCACAATCAAGGTGAGG GGGTACGGATTCCAGTGTCTGTAGCTTCAGTTGCTCTTTTATTTTGGCAA TAGCCGCGTGTGTCAGAGTTAGACGGCGCTTTGGACGGAAAGTGTCTCAA ACGGAACTAGTGCTGCCGCAGCGGTTGATGCCGTCGCTGTCTGTTGCTGA TTTTGAACCTGTCTCTGACCGATGTCTTGCTCCGGCTACACGAGTGTAGG CAAGTTCTACGACTGCTCGGCCCATATGCTGTGGATCGGCGAGCGCACGC GGCAGCTTGACGGCGCCCACATCGAGTTTTTGCGTGGGGTGGACAACCCC ATCGGCATCAAGGTTTCCCAGAAGTGAGAGGCTGTTGGATTCGTGCTGCG TGTTACTGATGATGTCTGTGTTGCTGTTCCTGTGGCTACTGCTGCCTGAT GACGGCCACGACGATGATGCTTGGCTCCTGCTGCCGCTGCAGCGCTAGCT GCAGCTTGTAGTATGTCACCGCCATTTCGGGAAGATTGAACCCACAAAGA TTCAAGGGTAGCCGAATGTCACCCGGCCGAGTGTCGAACACGTGAAATAT CCCGACGTAGTGTTTGCAGAACTCTGTCCTTCACGAACCACGATGTGTGT CTCTCGTGTGTATTTCAGTTGCTGACTATGCGAACGTCCGCATTTTACAC CCACGGAAAAAACAGGTGCCCCCCCGAGGAGTTGATAGAGATCCTCGAAA CGGTGAACCCCGCCAACAAGGCCGGCAAGGTGACCCTCATCACGCGCATG TCTTCCAAGTACCTCAACGAGCACCTGCCGAAGCTCATCCTTGCGGTACA GAAGGCAGGACTCAACGTGAGTTTGGTTCCCGTATGTGTCGCGCCCGATC GGTCGCACCGCGTCCGTTCCGTGCTCTTGCTTGTCATGTCTGTTTCATTT CCGTGTGTTATGTCCTCTTGTTCGGTTCCGTGTTTCTTCCGGTCCGTTTC ACTCCGTACCATTGTGCGTTTTTGTGCCTTACGCCCAGGCCTTGACCATT TTCGTGACCCGGCTAAGAGTAAAAGGTGTGCTTGTTTGTCTTCAACCGAA TCCCCATTTCCTCGCCGCTCCCATATCCATTTTTGTCCATCGTGATTGGT TGGTCGGTCTGTTGCAGGTGCTGTGGGTGAGCGACCCCGTCCACGGTAAT ACGATCAAGACCGACAGCGGCTACAAGACCCGCCGGATGGAGGACATACG GTCGGAGCTGCGGACGTTCTTCGACGTGCACCAGAGGATGGGCACGCACG CGGGGGGGGTGAGTCTAGATGCTCGATGCGGGAGGAATGCAGGGTGCAGA TTGGGCAGGGCAGAGGGTAGGGGAGCGGCGGAGTGGAGGGAGATAGACAT GTAGATTTGTGGAACGCAAACGCTCTGAGGTTGCGAATCGTGATGGAGCT TGGGCCACTGCTGTGTACACAACGAGCCGGTTGCACATGAGCCGCAATAA GTATTTCGTTGTCCTCGGGTCAATTGAGCGGTACATCAAAAATTAGCTTG CCTCGTACGACGCAAACATTGCTTTTTGAATCAGATCCACATAGAGATGA CGGGGAAGGACGTGACGGAGTGCACGGGCGGTGACGTGGACGAAGTCAGG GAGAGCGACCTCAAGAACCGCTACCTCACCCAGTGCGACCCTAGGTGAGG TATACACCTTTGGCGTCGATGTCGATAAAGTTAGGAGCAAAAGCGGCATG AACCACCGCAGTTTCAAATCTCGTATCGCCTTGTTGTCGGAAATCATGGA TCGCATGTACAGCGCAGTGCGTCAAGGAAATTGGTTGAAGGGAAAGCATT CCTGTCCCGAATGCGACCGTGCCTCGGGCAGGACAGGGGTTGTTCGAGTT TCGACCCAACTTCCAGATTGTAAGAGGTGCATGGGAACGCGCGGCGTACT GCGGAATGCGCAGTAGATGGAGAGCGTGGAAAAGTGGGGTGGAGATTGCG AGATTTTCCCGCGTGCTCTGCAAGTAGTCCCGGCCTCTACTGGCAGGTGC CGTTTCCTAAACGCACTCTTTTTTTGAAAGGGATTCGTGTTTCGTGTCGA AGTGGATGCAGAGTGGATGTTCAGACAAGTCGCTGCGGCAAGAAAATTCG GCGTGGTGTTGAATAGCCGGATTAACTCCGTCGTGCACGGAGGAACTGGG AACCGAGAGCAGTCGCCGAGATATTTCCCGGGTTTGAACTCTGCTTTCTT TTCTCCCAAACGCCAAGACAAAGAATGCCCTTCTTTGTTCCGCATCGCCT CAGCGATGCCCAAAGCACGGCACACGGTCAGCGACACTCGCTGATATGCA GATGCATGAAGCATCTTGACACCTTGGCACTCGGTCGACGACCCGGTGAA TCGTGCAAATGCGCTCAGGTTGAGCTCCTTACGGCGAGTCGTTCACGAAC TAGTCGAGTCCACCTGCCCCTTTTTGTTTTTCATTTTTACTGGTCGCAGA GTACGCCGCCTCCTAGAGAAGCTTGTGACCTTGCCGAGGCTTGCTTGTCG ATGTTCTTTGATAATGCGAGTCAACCGGTGGGCGTGACTCGCCCGCCCGA CTACTTTACTAATACTTCCCCCGCCCGACCGCTACGGGAAAATAAAAACT CGAAAAAAAAGGTTGAACGGCAAGCAATCGCTGGAGCTGGCCTTCCACAT CGCCAACCGCCTTCGCCGCGACCAGGGCCTGCCCCCTGTGCTGGGTGACT GACCAATTTCCTGGTAGAAGACAATGTTATCCGCTTCACTAGATTTTTTG TCCTTTGACAATATTGAGACTGGTTCACCTTTGGTTTGTGTGGAGCGAAC AACAGAGGGCCGAGGGGCTGTTTAAGGTGCTACACGCAGGCAGGCAGGCA GGCCGGGAGAAGGGGGGGGGAGTAGCAACTCCTTGAGGGCGATTCTGGGG CTTTCAAAGACAGAGTTCGGAGGTCGGGGTGACACAGGAGAAATATGAAG AGATGTGAGGGGACTGAGAGGAAACGGTTCGTCTGGTACCTTGACCTCCT GTCGATGTGACTGTTCGCTGGGCTGGACTGTTGCATGTGCACGTCCCGCA GCAATAACCGGGCGCTTTGTGTCAAGGTCACCACACTAAGTTCGAATTGC GCGCATGGTGCTCGGTTCCTTGACGCCGTGTCTCAGCTAGAGATGGAGCA TGGAATGCCCTGCGAGTGCGTATCCTCAAGGTGCAGTGTCAAGGCGGGAA GACTGGGCTCCATCCGTACGTTGGCACAGTGGCGGTAGAGGAGGGGCTTG TGTCGCCGGTTCGTGCAGCCACGAGGTCAACTCTTGTATTCTTGGCTTGC ACGGTTTGGGATATTTCCGAAAGCGACATCGTCGTTTTTTGTTGACGGGC GAGGATGAGTGTATTATGCAAACTTTCATTTGGCCTGTGGTCTGCGTGCC TGTCTGCCTGCCTGCCGGCACCCCCCTCCGCCCCTAGTGTAGGTGGAGGG AAATTAATTCATTTCGGCGTTGGTGCCGAGTTAGCACCCGCCCCACAAGT GCACCTCTCGCAGCCCGCGACTTCCCTATGTGGACGATTTTGAGAGAAGA TGCCGTCGATTTCGACTGTGTCCAGAAATGGACGAGAAGGGTGTAGGCAA CTGCGCAAGTAGAACGCGGTGTGAGGGGAAGCGAAGAGAGGACGATGCAG GAGAGAAGAAAAGGAGGCGGGGTGGTGGGAGAGACTGGGTGATTAGGGCG GCGTGTTGTGTGGTGTTGCTGTGCTGTTTTGTCTTGGAAAAAATTGTTGA TGTTCGTTTAAGTACGTACGGTGGCCATGAAGCATTTGGAGAAGGGCGGG AGACATGGAGTTGCTTGGTGCCGCTTGGCTCGACCATCCAACGATGTCTT TTTGAGCGTGTCATGCGCGGCTCGCCCACCATTGTGCGCCGCCTCTCCTG CGGGCGCGAATCCCGCTCCCGCTCTCGCGTGTAGATATACACGTGGGTCG CAAATAAATGGAGAACGGAAGAATTTCGGAAGGACCCTCGAGGAATCGAG TGGTCTCGTGTATCTTTTGGCGCGCCGGTGGGTACGCCTCAGGAGATCTG GCGAAGGTCGGAGCTAAAAGCAGCAGCTAAGGGACCGGAAGTGACTGCGT GTTGCGGAATATGTTGCGGGTTGGCGTGCAAATATGCCGTGGTACTTGCG TCGTGATCTTGCGATCTTTTTCTCACCGCGAGATAAGGACCTTTCTTCAG ACAAGTGAACTCCAGAAACTTACTGTATCAATGTTTCCATCCTGTATTAC AGTACGCGCCCGTACTTAGGAACCGCTCATCTTTTTGCGTGAGACTCGAC CCTCATTAACTGCCTCAACCTGAGCACATGTTCTTATCTGCCAAGTTCTT ACTTTGACCCGGCACTCGCCGCCGAACACAGGGGTGCTTGTTCTTTTTTC AAGTTCGAGTGCTCTCGTCGCCGAGCGTTCTTGTTCTTATTTCAACATGG TGTAGTACACGTACGAAAACGCCCACTAGCATGATGCATGGAGCAACTCT CAACCTTCTTGGTCCTCAAGAGTCACGTTGGGGATGCGCACCCTTCCCGC TCCACTAACGCCCAACTTGGCTGCGGCGCCGACCTCATCCACCTGCTCTT CCGTTCTGCTCTCAAGCGAACCCATGAGCCTACCACCGCATCCGGATCTC CGCTGTACAGTTCCAACGGCAGCTTCATGCTGCGTGTACTTTGGTCTACT TCGAAGTGCACACGGTAGCCGTAACGTGGCGTGTACGCTCCTGAGATTGT CGAGTGATCACCCCACCAAACCACCCCATGCCCAGCCTAGCGAGTAATCC ATGCTGCAGCAACGAACTGTCAAGAGCAGCGGGTGCAGATGCTTGAATGC GAAAACCGTCCGGGATCTCCATGACTTGGATCTCATCGTCCGAATCCACG CTCTTGTCCTCGTCCACGAGGCTCACTCAGCTCGTCGATCTGGTCGCACC GGCTCTTGCCTGCGAAATCTTCTGTGGAACCGCTTGATGATCTCCGGCAG GCGTTCTGGGAAGTGGGGGGGGGATGACGGTACGACGGTACGACCCACCG ACTTTTTATCTTCCAGCTTTGGACCCGGTTCTTATCTTGACCTCGAGTTG AAGACCTGGTCATGGGTTCTTGTTCTTATTGGCGCCTCCAGATTGAGCGC ATGGTCTTATCGGCAGGTTCTTGATTTGTTGAAGTTTAGAAACCTCGAAT TCTTAACTGCGGGTGCGCTGCTATAGTTTATATCTTGGCAATGCCCTTTC TACATATCTAACCCAATACATGCATGGATGCCGTCTGGGAACACCAACGA CGTACTGCTGCCTGCGGGTCAATCGCTGGGATATTTCCTTCATGCTGGCC TTGGACTCTTCAAACATCGAAGTTGGCAATCTATTTTTGTACACCCCTCG GCATCCAAACTATCCCCGACACAAATCTTGGAAGGCTACATAAGGCACGA ACGAAGGGGATGACCCACCGTCGACTGGTTGTCGAACACCCCACCAGAGG CTCCCTCCTTCTTAGCGTCCGGCTTCACGTGCTTGTCGAACCTAGAACCC TTGCTCTTGCCCTTGCCCTTGAGCTTCGTGTGGGAAGATCGTTGCTCCTC CTCCTCCTCGTCCACGGCCTTTTTCAGCTGTTCATCGTGAAGGGCAGCAG CGGTGGCGGCGGAAACAGCAATAGCATTCTCCCTTTCAGCAGCCTCCCGA GCAGCGGCTTCCTTCATAGCGGCAGCCTTGTTCTCTTTGTCAGGGGTTCC CGCGAGCTGGCGGTACCGCCTGGCATATAATGCACTACAAACTTTTCGAA CGTCCAGAAGAGGTACCTTGGGCAAGGTCCGTAGCGAGGCCGCGCCCAAC CAAACCAACCCCACCACAACGGCGGCAAGCTGCGCACCATCTTTGGACTC GGAGGACGCGCGCTGGTTGTGGATGAACGTGCGCACCAGCTGGGGGCAAC AGGAGGTAGAGACGCGGGGTGTTGTTGTTGCTGGTCGGCAGAGGCTGTCC GCAGGAGTCAGTCACGTTCCACTTCTTCTGTCGATGTTTTGACCCCGAAC GCCGCGTCTGGCCGATAAGCGAGGTTCGGAGGCTCGAGCGGATTTCGCCA TTGCTTGTGCGAGTGTGGCCTTGCCCTTCGCTACGGTAAGAACGCTGTCA GATAAGGTGAAGTGTGAACTTCACACCTGCGAATTTTTGTCCCTAATTTT CCGAGGGGGTGCGTGGTGAGAACGGATTTTTTTCGGGAACAGAGCTGCTG CTATCGAGTCGGCAATATTCCGTTTTTGATTTTTTGGAAATTGATTGGTC GAAGGGGCAGAACGTCAACCATTATGAAACAGAATTTCTGAAAATCTGTT TTTGAGCAAGAAGTCCCCAAGGACTTCTTTTGAGGGCCCGTCGTATCAAG TCGGTAAAATCTGTTTTTGATTGTTGGAAATTCAAATTTTAGTTCAGTAC AGCATGCAGACCTCCAAGCAGTAACCTCTGGAATAGGCCGCGCAGCATAC CACTACTGTATTACCATCTGCAGCAGCACCGTTCTTCTGCTGGTGGTGTG GTACATAGCGATTTCGCTGACACACCGGGTGGGTGGGTGTCGTTGACCGC CGTAACGTTGGGAGGGGCGCTGGGAGACACGGATGCCCTGCAAGGCCCTA TATATAGCTACGCACCGATTGCTGCTGTCGAGTGCGCTGCTGCCCTGATA TGCGGCCTCCGTATTGAACACTGCCTGTACTTGTCCCTATTTCAAGCCTG CGTCATCTCGAGGTACTTCTGAGGTCCTCCACTCGTGACGCTCTTGGCGA GATTCTGGAGGTTCTTCTCTTCTACCTACCTGCCTCCACTCACTCACTCG GGAACGGTCTTGCACTTACTTACTCCTACCATCGGGAACGACCCGGAACA CGACAACAAGCCATTTGCTCACAACACGGTCTGCAGACTCTATCGAACAC GCTCTCACAGGCGTTCGTGCTTCGCGCTTTCCCAATGTCATAGACTACAT CTCAACTTCAGCCCCCCAACAACAACCATACATCTCGCTCTTGGCGAGGA GACTGGATGGAACCAGCCACCGCCAAAGTCGACGACTCCAACACAACAAA CCGGCGACAACGACAACTGTTACAGTAGCGGCGGCGGCAGCAGCGGCACA GGGCACAGCTGACTCAGTCAGGTACGAGATTTTATGTAGACTAGACTACG CAACTTGATGATGCTGTTTGTTATTGACACTGCAACGTGATCATACTGCT GCTGTGTGAATCGACAGGCAGTAAAGTAGCAGTAGTAGCGTAGTTGTAGT CTAATCTAGTAGTAGTAGCGTGATGAAGCGACAGTACTCGAGTAGTTAAC CTCTGGGTGCCATGACGACGGGCAGAAGCTCACACTTTACTGTACACGAA AGGAGGAGGGCACGACGACTACGCGCTACGTACGGTGGTGTGCGCGTGTG TGTGAGCCTCCACTCCCCCCCTTTTATTCTTTTTTTGCTTTACTCCGAGT ATTTTTTTTAGTTTACGGGTGGTCCAGAGTCCATGTACTACGTCAAATGT AAATAATGCTCCAGAGTAATAAACTGCTTGTTGTGAACAAAACGGCTGTT GATCCGTCTAACGGGTTGCTTGCGTGTGGGCCTTGAACTCTACGCCTCCC GAGACTCTGTTGCTGGTTGCGCGTGTACGTGAGACTACGTCTCATTCCCG CCCGCCCCTTTGCGGGTCTGTGGGTGCATGACCCTATCTTGCTTATCGCT CGCAGTTTTCGTTTCAGCGCGCATAATTTTGAAGTATTCTTTCTGACCTT TCTCAATAAACGACCGCGCGCAATTAATTGAGCGGAGTTTCTTTTTTTTA TATGCGCCGCTGTGACACACACCTATTTGGATGTCTATTGGTTCCGCACC GTTCCGAGCAACGCCGCGCATACACAATATGTGTCGTAGGGACAAACACA CACTCTAGAGTGTTGAAGCAACCCGCTTATTTACTTGGTCTTGGATGTTT AAGAGTCTTGATTGTGCCGCGTGGGGACAAAGTCCGAGCCTTGGACAAGG ACGAGGAGGAGGATTAGGAGAGCACACATCGTGCCAAAGGGGCCCGATGG ACGAAGCTAACATACCCCCTGAAGTCACATCCACGGCACAGCATAAAACC GTCAAGCCGACATTTCCAGAATATCGTACTACCACGAACATGCAAATCCC AAACTAACAGTCACAAATCCATGGTCATACCGTAAGTACACTCAACAGCC CCCCTGCGTGTGGAAAGATCAACACTCAATGACCAACCCGAAATTCCTAC ACTTTGTTCCCGTTCACCCCTACAAGCATGCACCGTAGACGACACAAAAT ACCACACCCCCTGAACCGATTTTCAAAGCTCCATTTCTCCACATCAAGGA TGGTGCCAATGACTTGCGATAGAATCTACAGAGAGGCATCGACTAAACCT CTTCGACCACACCCATTTGGGCATCATAACTCTATTCGATGCTGAGAAAT TTGAAAATCTGTCCAAGGGGTGTGTTATCTTGTGCCGTACACGGTCGTAG CAAGAAAAACACAACAAGTATTTGCTGCTGGCAGAAAGTTTGCGAGATAA AAGGTGCTTGTCAGAAACAACGCGTTTTCAGTGGTAAAATTACCTCCTCG TGCGAAAATTCATGCAAAAAAACAGGGGCAAAGCTTTCCCGTGCTTCCGA AACATACATGTTGGGCTTGCTAAAAATTACTTTTTTGTGCTCCTGGTCCG GATCCGGCATCTATCTCTCTTCAAGATATTAGTAGACTGTATGCCGCTTT GTTTTTGCTAATCTTGTCGGATATGCAAACAAGCATGATGCATGTCCTGC CGATCGTTTCAACGTATACGTACTACGTGTAAATTTATCGCTACGCCCCA TCCACTACGAAAATTTGAAAAAAATCTAGTCAAATATCGAAACAATGAAG AAGCAATCCAATGTCGGGGTGTGGTCCACGCAGTATAGATACACACTGAC CGGCAGCTGATGTGGATGTTTCTTCCTCGGGGCGCCCTTCCATCCCGGCC TGTTTCACGTCTTCGTCAGGGTGTCGAATGCTTGATTGTTTCGTGTTGGA ACGCTTCTTGTGCTGTGTGTCGTGGTCTAGACCGACGTACGTGTGTTTCT CAGCCCTTCTCATGAAATTTGAGCTTCCGTGTCTGTACAACATGTTTTTG TGCGTTCAAGGAAGAGGGTCGGCATCTCCCCTCAAACAAACCCTTCATTG TGGAACTGCCGAGAAAGCCAGCTCTTCACACTGGGCCCTTCGTCATGTGA TCGCAGGTGCTTGCTGAGCTATGTGCCGATATCATCCGATAGCGTGACAT GCCCCTTGCTCTGTGGCAGGCGCACGTATTTTGCTCCGAATAGATATAGA CTAGTCTAGACTGTGGGGCTGAAATGCCGCGACCACGCATTCATGTTCTG GCAGCTGTTGGCCATACTTCGGTTGCCGCACCTTTTTTTTGAATCGGCAG AAATACGAACCTCGACGTCGACACTCCATTGGGCACTCTATCCATCCCTG AGATTGAGATATGTCTTTCTTTGAGCTGGAATTTGAAGTGAGGTTGAGGG GCGTTGGGCCCTCCTTGTCTTTCCGAGACCTCCTATTTTCCAGAGGCTAA ACGAGGTGTTGCCTCTCTCTGCAAAGCACCTGGTAGTGTAAAAATATAAA TCGTCTCTATTTCATTTCGCGTCAATCTACAAATAATGTTTATTTCATAT CCTCGCTTCTTGGCTGCGAGACACATCGAAGAAAATCAGCCATGGCTCTT TCTATGGCACAGAAACATCGGAAATTCTTTGGACACCTCAGGATTTTTCT TCTCGCCTGCCTACTCCAACTAAATGGTCTGATCACCACATTAAAGTGGG GCACGGTGAATTTCAATTCATACAATCATGCTTTCTCTTAAGCTTTGACT GTTTTCTTTCACAAGGACTTCACAAACCCTGCCAACGGAGTTCCAACCGA AGGTATACTCGACATTGTATCGCATCTACAGCAGGCGCCTGCTGGCAAGA CAAAAATCCCAAAGAAAAAGGCTCAATTCTTCACGAAAAATTGAAAAAAT GGCTAAGCAACATAGCTCAATCTGGACCACAAAATATGGAACACCCCAAT GAGCAACTGAGCACACGACAGCTGCGAAGTACAAGAATCGAAGTGCAATA GAGAGGGCTTGCCAACCAGAAAAGCCCCATTACTTCCCGTTATCCGCCCC TACCCCCCAAGTGTGTGCATTTTTTGCATGCAATAATGGGAGGACTTGGT ATGAAACTGCCATTGGAGTCGTACGGCACGGTTGAAAACGCGGAAGTGGG GGCGTGGGTGCAGCTAGAAGCAGAGGAAGAAAGGAGAGACGGGTCAGGAG GTCCACAAGGCCGACAACCCCAATGTTCGCAGCATGTAGCTTTCGGCTTT GTGTCGGGTGACTGTTGGTGTGTTCCGTCGATGCAAGTTTTGCGGTGTGG TTCTTGCCGCCTTGGAGCGACTGAAACAGGTTCCACTTTATCACTGCTTG CCTTTTCTTGTGGTTTTCGGTACCTGGCATATACCGCTCTTCGGCAGCCG CGGTAAGAGACGTGTGAGTGACATCCTTGACAACAGAGGCAACAAGTACG AGACACAACGCGAATGGACGAGACGTGAGCACACGGCCGACCGACGGAAG CCGCGTAGGAAACTGAAAAAAACGACAGTAGATAAAGTGAGCAAGATTCT GCAGGATTGAAACAAGAATCTTCTCAAAATAAAGCATCCAATTTTTGGCT GGTGCTTCCGTCGAAAATAGGAAGTTGAGGCTAGAACAATATTGCATGTT CTTGTCAGCGGACGCGCACAATACCACAACGTAACATATGGGTCGTGTTG CAATTTGAGACACCACTCCAAAATACGCACTCAGAATACGTATGAAGTTG CATCCCTGTGGCGCTGAATGCATCAAGATGCCTGCAATTCAATTCCACCA CTTTTCTGTGGCCAGCCCAACGCGGACCAAGGGTTGTAGACAACTAAACA ATTACATGGAACACAATATCAAGTGACCTCAGAAATTTTCCAAAGCAAGA CCGCTAAGGATCACTTACGGGAGGAGGAAGCCAACAACATTCAAGTTTTC GAATCCGTTTGCGGGCTTCCCGAATACTAACTCCCATAACCCGACCAAAC CCAACGAAAGCCCACCAATCAACAAGAGAAGACAGCCTTCAAAGCAAAAT GACCCCACCCCGTGTCAAGCTTTGCAGAGAGGCCGGCCACCCAGCCCCAG CGATGGTCTGGTTAAAGTGGCGCCCGAACGAAAGCCGTCGCAATGAGACA GGCCACAAAACATCAGCAATTGGCTGGTTGAATTTGTCACCGAAAAAGCG CCCTTGCAGGGAGGCCGGCCACGCAACTCCGGTGATAGGCTGGTTGAACT CAGCCCCGAACATAATAATCACCAGGGAGGCTGGCCACACAACCGCGGTG ATGGGCTGGTCGAAGCTACGGACGAAAAAAAGCGACTGCAAGCACGGCCA CGCGACCCCGGCGACGGGTTGGTTGAAACAATGTCCGAAGGACAGTAAGT AGTCGGAGAGAGGCCGGCCAAACAACTTCGGCCAAAGGTTGGTTGAACTG CGGCCCGAACGAGAGTTCCAGCAGAGCAGACGGCCACGCAACTTCTGCGA TGGGCTGGTTAAAATAACACCCAAATGTTAGCCGCTGCAGGGCTTCCGGC CACACGACCCCGGCTATTGGCTGGTTGAACCGAAAGCCAAACTTCAGCTG CTAAAGGCAGAAAAATAATTAGCCCCCTAAGATAAAAATTCTCCTAAATT CAAACTCCTGGAAATCATTGTTTGGATGAAAACGATGAAAGATAAAACCA CACAAAACCCTGTTCGTGCAAGTCAGCAAATTATCACTTCTTCAAAGTCA TAGCAAACTTGTGGGGAAAGTCGAAAGGTTCGAACGGCAGTGCAATCGCA AGAAACTGGGCGTGTTGAAGCGCCGTCGGTACATGGATGATCGAATTCTG CTTCCTCGCTACGAGATCCCTTGACAAAGTGATGTCGCACGTCGACGACC TTCGACTTCGAGTTCGAAATCGGATTCTGCCAAATCTGAATCGCACCTTC ATTGTCCTCAAACAACAACGGAATGCATGGGTCCCCTGCCTCAGGTAACA TGAACGTCCACACCTGCCTGATAAACTGTAACTCCTTCAACGCGTCACTA AGATTGAGACACTTGACGAAGTGATGCATTTTTGCTCTCTCGAGAAAGAA ATGACTACTTACTGCCCCCCCGCACAGCACGATTCCTCCCGACACGGACC TCCTCCCTGCCGGGATACTGGCGTAGTCAGAGCTTCCAGAAGCCTGCAAG CCGATGCTAGACGCCGTACCTCTCTCAAACGTAATCCCCATGTGACTTGT CCTGCTAATGTATCCTAAGGTCCCCAATGAATCTCGCCAGTGTCCCAACC GGGGGGCGCTGCAACATCTCGGTACCGGTCTCACAGCATTCGCGATATCT GGTCGGGTTTGTTTGGCAGGCCAGCCACATCATTGCTCCAATGAGGGAAC TGAAAGGAATCGAATCACGCAGGCACTCTTCACGCTCGAAGTCCCAAAGT TTCACGGTCGTGGGGAGCGGAAATTCCTTTCCCCCGCAAACTCCTTACTG GTTGACAAGCCCCTCTGCGTATTTTTTCCGCGAATTTGTCAACATGCCTG CTTCCCAGTTCCTCCTGTACACGCATCCTGCGTAAACTTTCAACTCTCCG AAGTTTTTAGTCGCCCCCTTCTTCCCAAGGTCAGTCGGTCGCAAACTGGT CACATTTGTCCTGTGTCCCTACTGCGAAAAGGCCATCCACCAAAATCACG ATTATTAGAGAAACCTTTCCATCTTCAAGCAGTCTGAAGTCGCACGTGTC GGCGAGGCACTGCATGAAATCCAAAGCCAGCAAGCACTCCACCAGAAGCG CTTGCCATTGCCTCGACGCTTGCTTCCATCCGTCAATACTCTTGATCAAC CGTACTACATTTCCCGAGAGGCAACCACATCCGTTTGGCAATCGAAAACG AGACCATACAGCAAAGATCGTTCAAAGCCTGCTCCATATCGGTGTGACAT TCGTAGAAGTCCCTTTTGTACGCAAGGGCAGCCAGCAAACGAACGCTGGA CGCGGAAACGGTAGGTGCATATATCTCACCGAAGCCGAAGTCAAAACCCG GCCTCTGCTTGAAACCACGCGCACACAACCTAGCTTTGAGTTCACAGGCA TACCGTTTTAATCAGTCTTAAACGAAAACACCCACTTGCCGTCAATCGCA TAAGCCGGTCGCTGCTAGACATATCCATACGAGTCGGCCCTGATGAGGCC GCCGAATTCCTCTTGCCGCGTAGCTCCAGGACTCCGCTTGCTCTGATCGC ATGGCCTCGTCGTACGTGAGGGGACCCCGAAGCTGGCTGGCTGGGCTGCG AAAACGATGAAAAATCGCCAGCAGCTGCTGCCAGATCCTCTCTCGAAGCC GGCTCCGCGAAGAACCCGCACTATATCTCACCGTGTTGGGGGTCGCCGTC GTCCTGCTCCTCCTGCTCGCGCTGCCCCCCTCCCCGGTGGTGAATGGCCG CCTGGGTTTTGAGCATGCCGATGAGACACTCCTTGTCCAGGTGTGCCAGG TGGTGCGACATGGCGTCGAAGAGGGCGCCGTCGCTATCGTCGCTGCCGCT TGTTGGGGACCCCGGCGGTGGCGGTACATTATTATGAGGGAGAAGGGGGC CGCTCGAGAGGGCCCGACCTAGATCTCACCGGCGTGTGCCGGCGCCCATA CCTCGAGGTGATGATGGCTCCCCCACAAGGCCTTCAGGCGGGATCTGCGG CGGTGGTTAATTTGAAAACAGAAACAAAACTTTGCTGGCGTACCAGCCAA TACAGAAGTTCATGTCTTAGGCACACGTACGTGGTGACACCGAGACTGCT GCTGCGCGTGTTACCATACATGTCATGTAGCACAGCCCCCACCGCAAAAC AAAAATAGCGTGGCGGGTGAAGCGGCCCGCCAGAGGCTCAGGAGACGGTT GTTCTCGACAGTCACAGCGAAGTGGCGTGTGTGTGTTGTGAGCTCACAAC GGCCACTGGTTGCGCCGCGGAAAGTACAGCATTTGGAATCGCGGCGATTT AATAGAGTTCCTCCACGGGGAGGGGGAGCCCCTTTCTAAAACCCCTCCGC CAGGCACAGCGTTACGAGGAGGCTTAAACCGCAGCTGCCAGTCCCCTTTT TATACCTTTTCGAGGTCGTTCGGGCGTTTGGTGCATCAACGACACCTTGC CACATCGCAATGTCGCCCACAAGGTCCTATTTGAGAGTCGCGAGTGAGGT GAATGAAGTTGCTAGACTCCACCTCTTGGGGTGGGAAGATGAGGTGGGAA TGCGTCAGTCGGCCATTACATACACTGCGCAAGACCAACCTTGCAAGGCT CATTTTCTCCTCCAAGCGCCCTCGTTTAGGCGTCGCCGGCTGGTTTTGGA GCGAAACGCAAGAAGACCCGAAACCGCAGTCACCATCGCCTCTCCTAGAC AATGCGGGGTGTCTGGTACGTCCTTGTTAGCGGGATAAGAGAGTCCAGCA CGGAGCAAGTACATTGTGTTTGATAAAGGCTTATCAAACACATTACATGG TGCTTTTCTTGATATGTACATTTCTATTACAGTAATAGTTCGCACATGGG TCTTATTTTTGGATCTTGTATGTGGATGTCGGGTGTAGCATGGCGTACCC AGATATAAATACACACACCTAGACAGGAAGAGCCGATCTTCCTCGGCGTA TACCTGTGACCTTCATTTGGCACAAGAAACTCCGCTCGGAAGTCAACTCT TCCATGCTAACCTGAAGATGTGGCGGACCTCTCATGTAGGGGCCGCCCTC CCCTTCACTCTCCCTTTTGGGATCTCTCCTCTCTCTCTAAATACCAACGG AGGAAACATGCCTGCCCCGGTAGTGGCCTTAAACTTCCACCACCTTGGCT CCCGTAGCTAGGGTCCTCATGCAGAGGGAATTATTTTTGTCCGCGAACCA TTCGCGCACGGATAGGAAGGAATCGTTTCAGTTCCCGAACCTAAATTCGT GCACCTCTTACAGGGGTCGGCCCACGTCTCTCGTACGTCACTCTTTGTAT GCCGGGTATCAATGTGACACACACTTACGCACACCGGAGGACGGGGGGGG GGCTTTCGGATTTGTTTTGTTGGCAGGGATTACGGAGCAAGAGGAGCATA TCAAGTTTTTTTTTTCCTGTGAAAGGACCCGGAACTACAAACCCACAACG AGAGTCGAAGTCATGGCGGGACAGGATATGGACGGAATTCGCAATGATGC ACTATGCTGTGAAAAACTCCTTTCTGTGTACAAACAATCAAGACGAAGCA CCCGGGCACGGAGGAAGAACGATAAGTAAGTAGGTATCCCTCCCCACCTG CCATTTTATCAGTTTGTACAACTTCAAGGGAAAACGTAAGATCGGGTTTT CATTGCGGTGAACGAAGCGGCGCATGGGGCAAGGGGAAGACAGGAGAGGG CAGGACGGGAGGGAGGGGAGAGACAGAGGGCGCAGAGACCATGCAGAGCA AAGAGTCGCTTGGTCAGGCACACGGCGGAACAAGCCGTGTCATCAGACAC GGAGCGTAGGTTGGAGGAGAAGAACCGAAGAAAAATGCGAGGGAACCTGC CGTTACCACTAAATGTTTTCGCTACGATTCGCAACTCATCTTCCACAAAC AAGCAACCCTAGTCTAACCAACACAATATATATCACGCAGAGGACCGCAC GCCGATTCCGTCATAGAGTTGCACACTACATCTACTCCTCCATTACTCCT GTGACATTCTGGCCCCCCGCTCCCCCCACTCAAATCCACCCCAGCTCGTT TGTGATTATTTTGTTGGCAAACGTTTGGTTTGTTTTCTTTTCTTTTTTTT CTGGATATAGTCTAGTCTCGCCATTGCTCATACGATGGATAATATGTACA CAGTAGGTTCAGGAATTGACTACAGCGTCTCTGGTCCATCATCCAAGGAT CTCCCCTTTCGATGCCGAGCCATATCGCACCTCAATCACCACTGACTGGT CCGCTCTATTGCTTTGCCAGGGAGTACGTCGATGCTTCGTTCGCCATAAC AATGGGGGAAGTGGTAATGTTTGCGCCAACAATAACGATGGAAGTGGTGT CCATCTCGGGCAAAATTTTGGGGCATCTTTTCGGTATCGGAAGAATTGTG CGTGAAGTTAGAGAAAACGAACGAGAAGCCCAAGATCTGTGGCGGAGGGC TGAGGACATCCAGCCTACCATGCAGTCCATCAGGCAGCAACACTTGAGGT TGTCTTCTTCACAGCCGATGCAGAAGCTAGAGGAGACCGTGTTTAAAATC AAGTTCACCTTAGAACAGTTCGCACGTAAGTCTAAATTCAACAAAGCTTG GAACCGGGACAGCTACACCAAGGAGTTCTTACGGCTCTCCAGGAAACTGA GCGAAAATATGGCTGCTGTTATGCTGGTCAAGTTGGTCATCGACGAAGAG CAGCGCAGAATTGAGGCCGACGCGGACCAGCTCAGGATTAAAGCCGGCAG CCGCATGGACTCCTCCTCCTCCTACTCTTCCCTGTGGGCCATTTCGGCTG TAACAGTTCATCGTGTTGCGACGAAGAGCAGCGCAGAATTGAGGCCGAGG CGGACCAGCTCAGGATTAAAGCCGGCAGCCGCACGGACTCCTCCTCCTCC TCCTCCTGTTCCCCGTGGGCCTTTTGCTGTAACAGTTCATCGTGGTGCGA CGAAGAGCAGCGCAGAATTGAGGCCGACGCGGACCAGCTCAGGATTAAAG CCGGCAGCCGCATGGACTCCTCTTCCTCCTCCTGTTCCCCGTGGGCCTTT TACGGCTGTAACAGTTCATCGTGGTGCGACGAAGAGCAGCGCAGATTTGA GGCCGAGGCGGACCAGCTCAGGATTAAAACCGGCAGCCGCACGGACTCCT CCTCCTCCCTCATCCTGTTGTTCCCCGTGGGCCTCTTGCTGTAACAGTTC ATCGTGGTGCGACGAAGAGCAGCGCAGATTTGAGGCCGAGGCGGACCAGC TCAGGATTAAAGCCGGCAGCCGCACGGACTCCTCCTCCTCCTCCTTCTCC TCCTCCTCTGCCACGGCTTTTTTCAGCTGTTCATCGTGAAGGGCAGCAGC GGCGGCGGTGAAAACAGCAGCAGCATCCTCCCTTTCAGCAGCCTCCTGGG CAGCGGCTTCCTTCATAGCGGCAGCCTTGTTCTCTTTGTCAGGGATTCCT GCGAGCTGGGGGCACTGCCTGGCACATAAATACATTATATAAACCTTTCG AACGCCCAGAAGAGGTACCTTGGGCAAGGTCCGTAGCGAGGCCGCGCCCA ACCAAACCAACCCCACCACAACGGCGGCAAGCTGCACCATCTTTGGACTC GGAGGACGCGCGCTGGTTGTGGATGAACGTGTGCACCAGCTGGAGGCAAC AGGAGGTAGAGACGCGGGGTGTTGTTGTTGCTGGTCGGCAGAGGCTGTCC GCAGGAGTCAGTCACGTTCCACTTCTTCTGTCGATGTTTTGACCCCGAAC GCCGCGTCTGGCCGATAAGCGAGGTTCGGAGGCTCGAGCGGATTTCGCCA TTGCTTGTACGAGTGTGGCCTTGCCCTTCGCTACGGTAAGAACGCTGTCA GATAAGGTGAAGTGCGAGCAACTTAACACCTGCGAATTTTTACCCTAATT TTCCGAGGGGTGCGTGGTGAGAACGGATTTTTTCAAGAACAGAGCTGCTG CTATCGAGTCGGCAAAAATCCGTTTTTGATTTTTGGAAGTTCAGTGTTTG TGTTACTTGACGGAAGATATCGCTTATCGGTCACTTGATGTGGCTGGCCA ACCAGACTAGACCTGACATCCTCAACGCCGTGTGCGCCCTTGCGCGCTTC TGCAACGCTCCCACTATGGGGCACTGGAAGGCCGCGTTGCATGTATTGAT GTATGTGCGTGGGACAATTGATATTGGGATTACATTTGAGCGGGGAGGAA ACCTTGATTTGGTGTTCCATGTCGACGCTGACTTTGCCAGCAAGGAGACA GGAAGGAAGTCGGTATCTGGGGGGCTTCTAATGTGTGCGAGTGCATGTGC TGGATATTTCTCGAAAACGCAGCAGAGCGTTACCACGGCGACTAGCGAGG CAGAATATGCCGCCATGGCACAGGGGCTGAAAGAGATGATTTTTATGAGT TATGTCTGGAGTTTTGTCCTTCCGGACACGGATGTTGGATGCACGACAGT GTACGAGGACAACGAGGGGGCGCGACATCTGGTGATCAACCCCGCCACCA CCCCCAACTCGAAACATGTAGACATCCGGCACCACTTTATTCGCGAGCGC GTAGAGCGGGAAGAATTTAATATCGTTCAAGTGACGTCCCGATTCCAGCA TGCTGATTTCCTGACGAAGCCGCTACACCAAGGCGCATTCTTTTTCCACC GACAGTTTGCAATGAATCTGTAGTGGCATCATGTGTATTTGTTTTTGAAT GCCCCAGGACGCCGCATCAGGTATCTTTTCGAACTGTATTCCTGTCCATG TGTTTCGTTTTTTTTTTTTTTTTTGGTATTTTTCTCTGAGTGTGAAGCAC CGTGCGATGCAACACCGTGGTGAAGGGTAGGTGAGGCTCAGAATGGAGAT GCCTGAGGTCACTGCCCGGCTATCATGACGATGTGTTGGCGGTCTGACAG CACCTGGTGTTCCTGGTTTCTTTAATCGTACTGCATACAAGAATCATGGG GGGGGGGGGTGCACTCATAGTCGTGCATGCTTTAGTCGTTAGACCATTGA CCTCGCATCCCTACAAAGCCGGGACGGAGCACGCCGGGTTCTCACCGGAC CAGGCTCTCACACCACCAAGCTCGAAGCGCCGTGACGTATTCATCATGGG GGGGGGGGAAGAAATGCTGGACCATGCTCCTTGTTGCAGTAATTTGATGT TTTGTATTATTCGCTCTGCGTTCGACCTGGATGTTCGATGAATTTTGCGT TGAATGCGAGTTGGCTTTACCTATACCTCAGGGCGCAGGGGGGCCAATGG TTGAAACGAACTGCATGATGGATTCTCCGTGTTTTAACTTTGAGCAGTAT ACTTCAATATTTGATATGGCTTGCAGGACGAGGATTTGGGTAATGATTGC TTGCGCTTGATATTTCTGAATATTGAATTGAAGGAAGGATTCGGCATGAA CTTTCTGGTAATGGTTGGGGCCCGCGTGCTTTCCGAATGCTAGAGTGTTC TGGCCGAGAAGTTGAAATTTCGGTCCTATTTGAGGATTCTGATGCCAATT GAATGATACATTTCCGGAATTGCCCGTCGTTGTGCAAGACGCAATACTAA GGTGGTGTTGACCTATATTTGGGTATGTTTCTGAGGATATTTCTGATGTT TTGGCGTCTTGAGAATTTCTCAAGAGGATAAAAAGCAAGCGTCGGTTTAG TATAGAGAATAGTAATATTACCTAATCAGGATCTTTAAGTTTCAAGGAGA TCAGCCTGAATTTCGGCGCCCGGACACCTTTCGGTGCGAATCGAAGCCCG TGAGCGTTCTGCTGTGTTCAGCGGTAACAGCGCGCCTGCTCCGGCCCCGG GACTCGCCCTACACGCCGAGCTACGGCCGCTGAAAGCCGGAAGCGGGCGT ACCCCGTGACGTCATCCCATTCATTTAGCAAGACAGGCGTCTGCGACAGA TTGTGGATCTTTGAGAAAAACAGGAATCAGCGATAGCTCGGCGCACACAC GCGCTCAGAACGTCCCCGAAGCGTCCATGTGTTCCGTTGAGTCTGGCCGT CATGACGCGCCGCCTTCCGTCTCGAGACTCCCCCTGCTCGCTGAGATGTG GCGGCAAAGAGGTGGGTTGCGGGGAGCCTCCCGTTCATTTTGCAAGACAG GCGATTCCGCCTCTTTCGGGGGGCAGCTGGAAACTCACACATCTGCTGGC GCTCAGCGACGACAAGATATGCGCAGCTCTCCTTTGGGATGTCTCATCTT CGGGGATTTGGGGTTCGGCGCGCCACTTCCCGCGTCGATCTTCGACGTCG TGGCGGGCCGCGTCTGTTTGAAGCCGTCAGCTCGAGTTTTTGGTGACGTC ACCTATAGTAATTCTACATTGTTGGTTTTGGCTCTTCCGCGGAGATGCTG TTTTTCGTGAACTCGCGATTTTATCGTCCGTACGCACGCTTTTCCCGAAA AAAACGCGCGTGGCGTGCTGCCCACAGTCTCGCGGTGTCGTGGCACCCGT TTTATAGCGTCGGCGTCGATCTACACGTGCAGTTTGTTGGGTATGAAGTT CGTGTGTGTCAGTGGATCTTCAGACACGTGTCGACGGAGCGACTTTACAA ATTTTTGGTTCTGTGCAATATGTTAAACGGGACGTAGGGAAGGAGCTGTA GGGAAGTCTCTTCGGGCTATTGTCTGATTCGTGAATTCAGTGACGCGCCG CCATGTTGGGTGGAGTTTGTCGGATCAGCATTCTCGCTGCTGCCCCCCGA TCCTCACATTTCATCAGCTCCCCCACTGCCAACATTAAAGATCGAGCTTC GAACACCATGTTCAGAGGATCCCCTTGAAGAAGATCAGGACTGAAGAACC ATCTTCCTCAAAGCGGAAGTTCCTCGCCGGGAATCCACTCTGGCCGTGCC CCAGCAACTACTGCGACGGCCTTTTGAAGAAGATCCCCAAGACCAAGAGT GGATTTTTCACGCCTTGCGACCAGAAGCAGTCCAACGATCTGAACACCTG TCAGGTCTCGTGCTCTTTTTTGAGCGAGCGAGGACCAAACCCCGTCAAGT GCGAACTGTGCTTGACGCCTGTAGGAGGGACACCTTCTCTCGGTGTTCTG TCCGAGAGAAGACCGATCAAGGCCGAGACGGTGAGCCACGCACATAAAGA TAAGCCTAAAGATATCCTAAGATGCTCAGCCCTTTTGCTGTATCTTTGCT CGGTTGCTCTATCTTAAGATGCACGCCCCTTTTGCTGTATCTTTGCTGGG AGCAACCGATTGTATACGACATAAACGTCACTCCATTTCACAGCCCCGCG GAAACTAACCGTTGCAAGGATCGCAAACAATACAGAGTGGCTGAATATAC ACGCGGTGTGGAAGTTGTGCGCCGGGGCGACGACATCTGACGGTGGAAAG TACAAGAACGCCACCCTCGCCAACGGGGAAATCGTTGGGGTAAGTTATCC AGTCTGCGTTCTACCTGATGAAATTTGTGCATAAGTTGTACTGTGTGTGA TCGTACTATCCGGAGCCTCTTTTTTCTTCCCGCATCTGCCGGATTTCCTC GCATTTTCGTGGACGTCTATACTGCTGTATCAATCATCCTTTTTTTCCCC CCGTATTTTGTTTGTCCGGGTTTTCAGCGCCCGTGTAGCTGCTTCGACCC GGAGAAACACGTCGACGACATCAAAGAGGGGTGCACGGGAGACATCCAAG AGGGCGAGTACGTCGTCAAGGATTGGATCGACCCTCCCCTCCACCTCCAC TGTGCGAAGCGCCTCTGGCGGGCGAAGGTCGACGAGATCCTCAGGGAGAA GAAGATCCTGAAGGACATCGGTACTACCGCGGAGAAGGAGAGCTCCCAGC CTTCGGCGCCAGCCATCGACGTTTAAAGTGAGATCTTTCCCTGTATTTCG CAATCTCTCAAGTGATATCATTTCAAGTCAACACTGTCAAGTCATAAATC ATAAGTCATAAGTCAATGCGTCCAACGCAAGTGTCAATGCGTCCAACGCA AGTGCCGAGCTCTCGTGTTACACGATCGACGTCTCGACAGCACTCGGAAC CACCATGTTCAAACCCTCACAATACACGCGCAGCTTCCAACCGTCAACAA TCGACTCAGCGTCCTGTTTCTCGCCAACATTCACCGCCTGTATCGAGTTC TCGTGTTACGCGATCGGCATCCCGGGTTAGGTCTCCGTGTGTACAATCTA ATATCTCTTCCAGGCGAGCTTCAATTAGACAATCTGCACGAAGACAACAA ATTCTGCAACACAAAGATTACGAAACACCCAACATACAAATGACGTTGCG GGTTCCGATTCTAGGCGAACCTCTGCAAGAATAGCTGAGAGAAGAGCACA AAATACCCGGCGACCCCTTCAGGATGAACCGACTGATTCTGATGACGACA GTGATACATCCCGCGAACGTAGTGTACACGACGAAAACGACAATGCTCTT AGAACGATCCGAGAACACTTCAACAACATGCGCGGACGTCAACCTAGACT GCCAGAAAGAGGCGTGGATGGTGAATCTCGTGACGATGACGACAATTTGT CTTATGGGGTGCAGCCTTTCAACTGCCTTCACCCCTACACTCCATTGTCT TCGCACCAACTCAAATATCCTTCCCTCGAACACGAAATGAATCATGTCTG CAAGCACTGCGACGCCATTTTGTGGAAAGAAGAAAATAACACATACAACT GTTGCAACGGGGGCAGATCTGCCTTGCCGCGTCTTCGACCAATTTCCTCC GACCTCATGTCCACATTCAGCTCGCCCAGGTTCAGTGCAGGACAAAGAAG ATATAACGGTTTGTTTGCGTTTACTGGACTGGGTGCAGGAGGTATCGAAA AACGGACATGGACTGGGCCCCCCGCCCCTTCGATGCTGACGTTGCACGGC AGAGCGTACCATAGAATATTTGACCTGCAGCAACAATACACTGACATGAA CGTTTCCAACAGCTCCCGTTTTTACATCTATGACTCGGACTTTAACTCTC AAGCAGCTTCGTTGAAACTCGACACTCAAATCGCACATACACTGAGAACT CACGTCAACACCAACATTCCCTGGGCACAGCAGTACCGTTCGGCTGTGGG TTTAATCAACCAACCTTCCGCTGACGATGACAACACACCGTTCATAGAAT TCGCACAAGTAAGTCGGGCCAACGATGGGCTAACGTTGGCGACGCCGTAT CAGCCCCCGAAATCGCGGCTTTACTTTACACCTCGAACGCTCAAAATCCC GGGCCCAGAACAGTGGTCACCTACCCCAGAAATAGTCCAGACGACAAACC AAGGTTCCTCCCGCTCTGGAGTCCAACATACGAGACTCTTCAGTTCCCGA TGCTAATGCTGCACGGGGAAGCGGGATGGAGCAAGGGACACCGTCACGAG GACCCCCCATATAAATCTAAGACTATGAATAGAGACAATACATCACACGT AACATTTCCCTTTTACTGCCGCCAACGTCTACTGTGTGAACCAGTTTTCA AGCGAAACAGCCGCATCACCCAAGAATGGGCTTGCGACTCCTTGAGTCGA ATGGAAGAGGAGAGACTGACCTTTGTTGAGCACGGCCCTTTACAACGACG ACTCGCAACGGACCGTTCCATTAGACAGACCTCTTCGGGCACGCCACCCG GGAAGCTCCTGCCAGAAAGTCACCCAGGCTCAATGGCCAAAAGAAAATCC GACACCGAGGATGCATTAGCCATTGTAAACAGAAAGGGAAAACCTCACAT CTTCGTAACCGTCACCTTCAACGCTGACTGGAAAGAGGTCAAGGACAACC TTTTGAACGGCCAGACCGCGTACGACCGCCCGGACCTTTGTTGTCGTGTT TTTAAGATTAAATTGAACGCGATAATGAAAGAAATCAAGAGTGGAAGAGT TTTCGGAGAGTATGACAGTCATCTAAGTGTAATCGAGTTTCAGAAGAGGG GCTTCCCTCACGCACACATCATCTTCACCTTCAAAAATGATGGTCCGGAT AACCTCAACCAAATCGACGAGTGGGTTTGGGCCCGACTTCCATCTGCAGA CCTTGCTGGTGGAAAACTCCGGGAAAAGGTTTTGAAATATATGATCCACA AGCCTTGCGGGAAGCACAATGTTAACGCGCCCTGTATGGAGCTCAACCGC GAAACCAACACAAAGCGATGCGGAAAATACTATCCTCAACCGTTTAGGAG TACGGCCACGATTAACGACCGCACCGGACGTGCAGAATACAAACGGACAG ACAATGGCGACAATCCCACCATTAGAGTACGCGTAGACGGGGAATGGCAA GACGTTCGAATCGGTCATGAGTGGGTTGTCCCGTACAACCCGTACTTGCT GTTGATGTTTGACTGTCATATCTGTGTCGACGTCGTCACCGCCACTTCGT GCGTTAAGTATCTCTTCAAGTACGTGCACAAAGGGGCCGACTACGCTAAA GCAAGGATTCAAGGTATCACAAGCGAGATAGAACAATATCGAAAAACAAG ATACATATCTGCCGCCGAGGCCATATCGGATATCAGATGGTTAGCAGATT TCCGGCCGTGGCAAAGATCCACGCACACCTCGAGGGTGAACAGTACGTCA CTTACCCCGATGATGCCACGCCTGAAATGCGTCTGGAAATTGCCGATAAC TCTCCGTCTTCCCTCATGACTTATTTCCAACGCCCAACTGACGCATTGTT CGACCAACTCACCCTATTAGACTACTACGAACAGTTCACCATCACAAAAC CGAAGAAAGGCTTGCCAAAAACCGACTTCCGCACCACCAGGGAAGTTCTT AGACTCTTATGGCAACATCATATCATCCAGATCACAAAATAATCAACATG TGTGTCGCATCGTCTTCCAAAGCCCCGCCATCGGAGACTTATTTTATCTC CGCCTTTTATTGCACACCATTCCTGGAAGGTGTTTCGATGATCTCCTACT AGTGCCTCAACCTGACTCTACGTCCTTCAAACACGCAACTTTCCATGATG CCGCCCGAGCTCGGGGGTTGGTTACTGGTGACGAAGAGTACACCATTTCC ATGGAGGAAGCAGCCTCTTTCCAAGTCGGACACAGCCTTCGCGCACTTTT CGTTACCCTGATTTTAGATGGTGCTTCAGCCCCAAAATTGTGGGATGAGT TCAAAGTAAATTTGATAGAAGACTTCGCCCATTTCATGACACAAGACGAA GCAGTCCAGCAGGCCCTTAACGAGATCGATTTAAAGCTTCAATTGCACGG TAAAAACAACGAGCAGGTTAATCTTCCAGCTGCTGTGCACTCAAGAACGG AGTATGAAAGAATGAAAAACGCTTTTAACTTGGACGACTGCAAGACATAC GCTGCGACTCACGAGCGCAATCTCACCGTTGAACAACGTCACGTATACGA CACGGTTATCCGTTCGGTTAACGGCGAGCAACGACAACCTTATATGATCG ATGCGCCGGCAGGCACAGGGAAAACATACACAGAGAAATGCCTTGCTGCA AAGCTTAGAGGTGACGGGAAGATTGTCTTGATTGTTGCGTCGACAGGAAT CGCTGCTCTGCAGCTACCCGGTGGGTGGACGGCTCACTCCATGTTCAAGC TTCCCATGGACGAAAAGATGTCCCTTCGTGTGTGTGTAACATCAGCGCCC AAACCCAACGAGCAGAGTTAATTCGTAAGAGCGACCTCATTATCTGGGAT GAGCTTCCCATGACTCACCGGTTCTGTGTTGAGGCTCTCGACCGAACACT AAAGGACCTCATGCGTAACTCTTTGCTCTTCGGTGGCAAGACCATCTTAT TTTCCGGTGATTGGAGACAGACTGGACCCATTGTCAAATTTGGGTCTCCT ACTGACACCGTTGACGCAGCAATTATTTCGAGCCATCTATGGAGTAGTAT CTTCCGCCTCAGGCTCACCAAATCTCAACGTGATAGAAGCGATCCTGCCT ACGCTTCATTTGTGCGAAATGTGGGAGAGGACACTGTGCCTCCAGAAACC ATGCCCGACGGCAGCAAGCTCATCCCTTTGAGCAACAGCTCCACAGATTC GCCAGACCAATTCCAGCTGCAATACACGACCGACTTTAACGATTTAGTCC GCTTCGTGTACCCTGACATGTCCCAAGACGCTACAGCGTGGAGCGACCGA GCTATATTAGCCACAACCAACAACGCCATTGATCGTTCCAACGAACTCAT TTCTGACAACCGACCGGGAAGATCTGTGTCCTTCTTCAGCTCTGACTCAC TCATCAAAGACGAAAATTCGGGCTCGACCGCTTTCGCCGCCCCTGAACAT CTCAATCAACTAAACGTGACCGGTGTGCCTCCCCATGACCTCAAACTGAA ATCCAACGGCCTGGCCATGATTGTAAGGAATCTAAACTTTTCCGAAGGGT TGGTAAACGGCCAAAAGTGCATTTTGAAATCGCTTTCCCCCAACAGCCGT GTAATTCATGCTGAACTTCTCACAGACGAACTACCTCATCCTGTCGTGCT AATCCCAAGGATAAGTTTCTCTGCCCAAGTTGGAAGGAATGGCATTAACT TCATGCGCGTGCAGTTTCCTCTACGTACTGCTTATGCCATGACCATAAAC AAGAGTCAGGGCCAAACTCTTACCAGGATAGGGTTGGATCTTCGTTCGTC TCCCTTTGCACATGGCCAACTGTACGTTGCTCTCACCCGTGCTCAAAACG ATCAACTGTAATGCTGCTTTTGCCACACACACAGGTTGTCGATGGTACTC CTTACACTGAAAATATTGTCTACAAGCCATTCACAGACGCCGCAACTGGC GAGACGCACAGTGGCTCTTCCGCGACTCTCCCCTCCTGCCTTATCTTCCT CCTACTCCTCCCCGCCGCCTCCCCTCCTCCTCATTGGCTCATTCAGCCGG AGTTGGGGGATGGCAACTGCGGCTTTAGGACCATTGCCCGCCGGGTGTTC GGTGACCCTGACCTACACCACCAAGTTCGAACTCAAATTGTGCAATACAT TTCCAACAACAAACACAATCCGGACCTGCACATTTACGATGGTGTTGGGA CTGAACTTCTACACAGATTATGCTATCCGCCTTCTGCCTATCATTCTTAC GAAGAGTACGTCGCAATAATGTCCATGCCTCTCACGTACATGGGTCAACC CGAGATTACTGCTGCAAACGCTCTCTATGACATCTCCATTCAGGTTCATT TCGATCAATCCTCTGTACCGCTTCCTCAAAACACCCTACCGAACCAGCTC CATGTCCGGTTGAATCCCGTCAGTCTTCACTATGACACCATCTTACTTTC GCAACCTCCCCCTTACCTCCGTAATTGCCAGCGTCCTTCATTCTACTGCG CAGGTCAACCCACCTTCATGCCTGGCGTTACCCTGCGACACATCCCTGCA CCTCCGGGAACATTGGCTTCTTCGTGCCTGTTGCCGGACTACTCGCTGTA TCGTGTGCATTGTCTACAGTAGAATTACCATCGTTTGCGTTGGGAACACT CTGCTGTGGCAGCAAATGTCTGGGTTGTGGGGAGCCCTTCGGTCATTTTG CGGAACGGGCTTTTTCGCTTCTTTCGAGGGGCTGCGAGTGATGGTTTGGG CATCGCCGCGCCCCTTGCCGCTTGGGCCTTCCGCATAGTCGCGTCTACAG TAGAATTATCGTCATTTGCGTTGGGAATTTCAACAACTTTTGCCGTGTTA CGAATTGCCTTTCGTCTACCTCAGCCACTCTGCTGTATGTCTCTCGGGTT TGTGCTTCAAGTTTCTGTCACATACATGCTGAATGCAACACACAATAAAT ATTTCTGCCGCCTGCATTTCATCACATTGCGCAAGGCTCTCCATCCACAT TTTCAGCCTGCATACGGCTTCGTCTGCTCTGGGAGTTCTACCGCTCGCCA GATCCTAAACCCTACGCCATATTCACCCATCCCTCTTACTCCCTTCCAAC CCCACTTGGTATCAACACATCCCCTTCTAAACACGCATTTTTCGGCGTGC GGCCTACCCAAGGGGGCCTCTTTTTCATATATATCAAGAAAAGCGCGTAG GGGGGGCATGGCCCCCCGGAGCGCTTGTAGTATCTACTATTAGTACTGAC CCCAGTATTTAGTAAGTATCTGGCCCTTTTCGCCCAGTAGAGTAATACTC ACACTTTCGTATAGCTTTTTATACTCTACTAAACATACTGTGGCGTTTAG TACGGCTCTTCATACTCTACTAAAACTTTTGTAAGTACGGCTCTTCAATA CTCTACTAAACATCTTTTTGATAAAAAGGCTCTCGGCGTACGGGTGGATA TGTTTTACGTGTTTGATGTTTTCAGTTTCGAAAGGAGGAGAGATGATTAT CTGGACTTGGCATTTGATGACTTGAATTTTGCATTTGCTAAGACAATTTC TTCTGCCAAGCAGGGGGGCTGTTTGTGGTACTTGACGGAAGATACTGATC TGGGGTAGATATGGGGGTTACGCAGTTGAGGTAGCGGTATGACGGCTGTA TGTCACGGGGACCCTTCTTCCCTGTGGGCTGCAGTCACTTCTTTCGTTTT CCACGAGAGTCAGCCGGGCTTACCGAGATAATACAAGAGCACATTTATAC AAGAACGCCTTCAACAAGTCCTAAGCGGGCTAACATATGCCCCGCACCAA CAACACAAACATTCAAAATATGGCTCTGATTGGTCGAAGGGGCAGAACGT CAACCATGCATTGTGAAACAGATTCTCCGAAAATCTGTTTTTGAGGGACT TTTATTTTTAGGGCCCGTCGTATCAAGTCGGTAAAAATCCGTTTTTGATT GTTGGAAATTCAAATCTTAGTTCAGTGCAGCATGCAGACCTCCAAGCAGT AACCTCTGGAATATAGGCCGCGCAGCATACCACTACTGTATTATTACCAT CTGCAGCAGCACCGTACTTCTGCTGGTGGTGTGGTACATAAGCGATTTCG CTGACACACCGGGTGGGTGGGTGTCGTTGACCGCCGTAACGTTGGGAGGG GCGCTGGGAGACACAGACGCCCTGCAAGGCCCCATAGCTACGCACCGATT GCTGCTGTCGAGTGCGCTGCTGCCCTGATATGCGGCCTCCGTATTGAACA CTGCCTGTACTTGTCCCTATTTCAAGCCTGCGTCATCTCGAGGTACTTCT GAGGTCCTCCACTCGTGACGCTCTTGGCGAGATTCTGGAGGTTCTCCTCT TCTACCTACCTGCCTGCACTCGGGAACGGTCTTGCACTTACTTACTCCTC ATCATGGGGAACGACCCGGAACACGACAAGCCATTTGCTCACAACACGGT CTGCAGACTCTAGCGGACACGCTCTCACAGGCGTTCATGCTTCGCGCTTT CCCAATGTCATAGACTACATCTCAACTTCAGCCCACATACAACCATATCT CGCTCTTGGCGAGGAGACTGGAACCAGCCACCGCCAAAGTCGACGACTCC AACACAACAAACCAGCGACAACGACAACTGTTACAGTGGCGGCGGCGGCA GCAGCGGCACAGGGCACAGCTGACTCAGTCCAGGTACGATACTTTACTAC AGTGGGCGCCCGCTCGTGAGAAAAATTTTCATAAGAAAAAAAGCTCACCT GTCCCCGAAAAATAAGAAAATTTGCGCAAGAAACAGGGCTCAATCTGGGC GACAAGTTAAGAAACGCCCCAATAAGAAAACCAGCGCAGAACAGCTCCAC AAATAAGAAACGAAGACTGGAGAGGGAGTGGAAATAAAGAAACGGCCGTT TTCTCCCCAGGAGGCCCATCCCTACCCCCATGCGTATTTTGTTTATGATA GGGAGGGGGTGTGCAAACAGTTTCATCTTGGCAATGCCGAACGCAACAAC AAAAACGATCGAACCCACACGGAAACCAACAAAGTAGTACGCAATATCCC GGAATGAAACAAGAAAGTGGATTTAAGAAAATCACCGTCGTAGGCTCATC TTTGGCCGAAAATAAGAAATTGAGACTCGACCCATATTATTTGACGTTTC TTGTCAGCGGGCGCCCACTGTATAATTTTATGTAGACTACAGTGCCGGCC TGCACTTAAGAATATGGCACTTAAGAATTTGATGCTAAAAAAATCCAAAA CTTTAGAATTTACCGATAAGAACACGTGCTCAGCTTCACGACCTGTTGGG AACAAGAACACATACCTGAGGTGCAAAACTGCTGCTACAAATAAGAACGA CAGCAGCAATGTAGCGGCTGCCGGATAAGAATACTCGCAGGGGGAGGGAG GGAAGAGGGGGGAGCGCCAACAACGAAAATGGGCCAAGAGGCATAACCTG TCCAAAAGACGCCGGACCAACCTCAAGAACAAGTCTGTCGAAGAGCGGCT TCCAAAGATCCACCGCTTCCACCGGCTGTTTCGCAAGCTCCTGCAAGACA AGAGCCGGTGCGGTACAGGGCACCCGATGAGTCCGACGTGTCGGCAGTCG CGACGGTCGCGGAGAGAGAGTCCAGGGTTCCCAAATACGGTCAATTCCAG CTCTGGGAGCGTTGGAATGTGGATCAAGTGTCTTTGGCATTCGTGAACGG GCTGCTCGAAACGTGGGACAAGAGAGGTGCGTTGCGGGTAGCAATCTCGC AGCCCTTTCCTGGCCTAGAGAAAAGGCAGTGAACGATACAAGGCAGCTTT GGTCCGGGTGAGAAGACCATGCGCATTTCGGTGATTTTCCGAGGCGCGGG AAAGCAGATCTCGCCGGTGGAGAAGGCGGCGTATCACGAGGACGTGGACG TGTTTTTCCAGGAGAACGCGTGGGCCGACCAAAAGTTCTGCATGGATGGG TGGGCGAAGAGGTCCTACCGCGAAGGCCTGATGCGCGGGCGGGTGTACTC CCCAAGGCGAGGCCCATTCTTATCATGGACAACTTGCACGCGCAGACCAC GGACGAGTTCAAGGGTATCTTGCGAAGCACTGCAACACTCTCGCCTGGTA TGGCCCTTCGGAGTGCACGGACGAGGTGCAGCCAGTTGATGCAGGAGCCG GACGATTTCTCAAGGTGGAAGTCGGGAGCAGGTGGACATATGGCTCGAGC AGTCGGACAACCTCGAGAGGTGGGAAACCGCGTCGCTGACAGCTTCTGAT CGGCGCGTCCTGATCACTCAGTGGATGGGAGCGGCCATGGCAAGACTCAA CAGCCAACAGGCGTACCGATACCGTCTTTTCGAAAAGTGCGGGATGTGGC CATGACCGTGGACGGCTCGGGCGATGATCGAATCACCTTGGAGGGTTTGG ACAAGCCGTATACCTTCGCTGACGATGAAGACAGTAGCGACGACGAACAA GGTTCGGAGAACGGCAACGATGAGCCTGAGGGGCGGGCGGAGGAGGGCGA TGGAGGACGTGAGACGCTCATGGAGGACGTTGACTCCAGCGATGAAGACG ACGGCGGTAAGTTTGTTTTGCACAAAACCAACTCTTCATCTTCTTTTTGT TGGTGACGATGTCCTTCATGTTGACGTTAGCTTGTTTCCGCGCACGGCTA CACTCAAATTATGATAAGTTCAGGTTGAGTTTGGCGACGTGACACCCTAA CTTCTACCGTTTCCCGTTGCCTCGTTCGCATACACCTCTCAACCCTAGAC CGACGAGCTAGCTCTTCTGGACGACGACGACAGCATGGACCCACAAGACC CGGAGGATGAGATACAGGGAATGGAGATCCCGGCAGCCTTTCGTATTCGA GAAGCTAAACCCGTTGCTCTTGACAGATTGCTTTTGCGGCGTGGAGTGCT CTTTAGGCTGAGCATGGGGTGGTTTGGAGGGCTGATCACTCAACAATCTC AGAAGGACACTCGCCATCTGTTCGCCTACTGTGTGCAGCTGGAGCTAGAC CAGCGTACGCGCAAGATGAAGTTGCCCTTAGACAAGTACAGCGGAGATTC GGATGCGGCTGTAGGCTCCTGGATTTTGCTTGAGAGCATTAGTAGATCAG GAAGGGTACGCAGGACCAACGTCACCCTTGTGGACCAAGAAGGTTGACAG TTGCTGCTCCATGCGTTGGTATTTTCTTGTATCGACAGCAGTACTAGTGT TGCTCATGGTTGACAGCCGACAATATAACAAATAATGATGCTAAAATACT GTAAGAACAAGAACGCCCCTGTCTGGAGAAGAATGGACGACGAAATAAGG ACTTGGCAAATGAGAACTGGTGCTCGGGTTGGGGCAGCCAAGAAGAACTA AGCCTCGCCCAATAAAGGAGGTTCTTAAGTGCGGGCCGGCACTGTACGCA ACTTGATGCTGTTATTGACACTGCAACGTGATCATACTGCTGCTGTGTGA ATCGACACTAGTAGTAGTAGTAGTAGTAGCGTAGTTGTAGTCTAATCTAG TAGTAGTAGCGTGATGAAGCGACAGTACTCGAGTAGTTAACCTCTGGGTG CCATGACGACGGGCAGAAGCTCACACTTTACTGTACACGAAAGGAGGAGG GCACGACGACTACGCGCTACGTACGGTGGTGTGCGCGTGTGTGTGAGCCT CCACTCCCCCCTTTTTCTTCTTTTTTGCTTCTATTTATTTTAGTTCACAG CAGTAGTCCAGAGTCCACGTACTACGTCCAATGTGAACAATAAACTGCTT GTTGTGAACAAAACGGCTGTTGATCCGTCTAACGGGTTGCTTGCGTGTGG GCCTTGAACTCTACGCCTCCCGAGACTCTGTTGCTGGTTGCGCGTGTACG TGAGACTACGTCTCATTCCCGCCCGCCCCTTTGCGGGTCTGTGGGTGCAT GACCCTATCTTACTTATCGCTCGCAGTTTTCGTTTGAGCGCGCATAATTT TGAAGTATTCTTTCTGACCTTTCTCAATAAACGACCGCGCAATTGAGCGG AGTTTCTTTTTTTTATCTGCGCCGCTGTGACACACACCTATTTGGATGTC TGTTGGTTCCGCACCGTTCCGAGCAACGCCGCGCATACACAATATGTGTC GTAGGGACAAACAAACACTCTAGTACTAGATTGTTGAAGGAACCCGCTTA TTTACTTGTGTTATGGAAATGTTGGCTCATGTCCACGTACTAGTCAATGT TCAGTTCCGTAGCACTGCTGTTGTAGCATAGCAGGCCTCATCGGTCTAAT AAGTGTCGGTTCATCTGTAACGTATGGTATGCGGAGGAACTGCTTTGTTG TGTGTTCTCTCGTGAGGATCACTCCTCGCTCTGATCTTTCTGGATGATCA CGGTATCATAGCCGTCCTGTCGTCTGGACTTCACTGTACGCTGTGGATTA CATCTGTGTGTGTGTATTGGCCGCAAGCGCCACTGTTCAATATAACATCA TCGTCTCTACAGAACAGAGGTATCTTCCTACTTCTCTTCTGCTGGTCACC AACGCGTGTCATTACGTCTCGAGTAACTTCGAGAGACACAGCCACTGCCC ACAGTGCCTGGAATATTCCCAATATCCATAACAGGTTATGTAAGCCTCGA GTGTGGGTGGCTTGTTAGTGGAGACTTTCGGTGAACGCGACTGGCTTGGG TCGCGTGCTGCTGTTGTGCGCACACATAATCTACGATTCACGGAGCATTC AGCTGGAGGCAGCTTTACTGCTGGAGCCAGTTCTACTGCTGGAGGTTCGG CACGGAGTCAACCCGCTTGTCATCGGACCCGGACTGATCACTCGGGTTCA CGGCTGCACATTCGGTACGCTACTGATTTATGTAAGGCATTCGGGGTGCA TGATCTCTAGGCGTTGATCCAGGTCAGCGAATAGAGTTGTGCAACGTTTG GTAGGCCGCGTGCGGAGACCTGAGTACGCGACCAACATCCAAACAGCCTG CGCGGTGTTTATCGCGAGGCAGGGCAAGTCTTTCCAAGACATCTTCCACG TGCTGAGTGCCGTCTCAGTAGTGCGTGTAGGTTGAGGAACTGACTTCGCG GGCTGGCATTTAACTTTGCGGCAGCCTCACCATCAAACCTGTAGTGAATT GCTTCACACAGTCGCCTGCGCGTGGTATACGCGAGGTGGAATCGTCCAAG ATACCTTTCGCGTGTTTTGTCCGGCACGTGAGTATAGGTTGAGGTTTCCA AGACCCCTTAAGTGGGTGAGGATAGCACTCGGCCTGCACGAGCTGCAAGC CAAGTCTGCACTGAAAGACGTGTAGCAACTCAAGCAATACACCTGACCCG TGTGATTGCAGGACGTGACCGGAGTTGGTACCTCCGTCAAACAAACGCCG CAGCCTAACCAACTGTGGTAGGTCAAAGCTGTGTCCTTTCGGGAGGAACA CAGGAGTCCGGGCGGAAGCTGGAAGGGCAACCGACGGACGTGGGTTGTAG GCTGACGAGCTGCAATCTGAAACGCACAAGCTGCGTAAAGCACTATTTTC CCCTAGCACTGTTGCTGCGCATCGAGCCTCTTAGGTATTCGGGGCGTTAC AGGGGTGTGCACGGTCTACGCGTCCTGCGCGTAGCACCAGTTGGTCGACT TCAACGGCGGGTGAGGGCCACGGAACCATGACGGATCCAACCCCCACCGC GTTTAACCGTGCGCTAGACAACATCGGCAAGTGGAAAGGCCCGGGGGGTT TTCGCGATTGGTCGGGGAAACTCCGCCAAGCGTTTAGCCTTTACGCGCGG CCGATGCTTCTCGTTATCGACGGAGCGCCACGTCCAACCGATCCGCCGGA GGAACGTGAAGATTGGGAGAAGGCCAACGCCAACTTGTTCTCCATACTGT TCTTCATGACCGAGGGGTCTGCTTTCGTGACCGTCAAGGAACGCGAGGGC ACGACAGCGGGCGTAGCGGGGGCCGGTGCGGCCGCCTGGAACGCCCTCAA GGAGCGCTTCGACGGCAACACCAAAGAAGCCCGCCGCTCGTGCCGCGACC AATTATTTAACAACCCCATGAAGCCAGGTAGCGATCTGGTGGACCACTTC GCCGCCATGGACGACATGCGGCTGCGGCTGAAGGGCTACGGGGAGACGAT CATCGATGACAGCTACGCAGATGCTCTGCTTCGTTCTCTCCCCAAGGAGT ACGACTTTATACTCCAGATCAACCATCGCGACCGTTCCTTCGGCCTGGAG GACATCAAACGGACGGCGATCAACTTCTACATCGACGAATTGTCCCGCAA GCCGTCGCAACCTTCCATAGCCGGGCGTGGAGCGGCGATGGCCGTTGCTT CCGGCGGCGACCAATGCCACAATTGTCTAGGCTACGGACACTTCCGAAAG GATTGCCCTAAGCCTGTGCAGAAGAAACGGCCGACGAAGTGGAAGAAGAA GAGGGGCCCGAAACCCGGTGGCGGCGGTTCTTCGCAAAAGTGGTGTTCAT GCCACAAAACCACAAACCACCGCGACTCCGAATGTAACAAGCAGAAGGAA CTCAAGAAGGCGGAACTCAACCAGCTGGCTGCCAACTTGGCTCTTCTCAA CATCAAACCCCAGGCTGGACAATTCTCCAACATCGGGAGTGCGCTTGTCG CACAAAATCCTCCACCGGAACCTGAATCCGAGCCTATTACTTTCGGGTTC TCGTACTGTGCGATTGGTTCTTCCTCGGCCGGGACGACAGCGGCGGCTTC TACCACCGCGTCACCTTCTTCTGCGGAATCAGCTGGGAAGCAGGCAGCTC CGACGTCTCAACAGACCAGCGCGCCTGAAGGAATCTTTGGCGCGTTCATG GTAGCATCCACCGCCCTGTCGGCCGGAATCTTCTGGTCGGGGGCGACACG GTCACCATGCTTGTGGACAGCGGGGCCACAGAGAACTTTATCGACCCGCT TCTCACCCCTGGACTGGAGGACTCCATGCGCGACTTTCGCACTCTCGACG TCCCGCATCTGGTCGAGGGAATCGGTGGTAAAATTCTCAACGGCGTAGCG ACGGGAACGGTCCACGGGACCGTTGTCGATGACAGCGGTCTCAAGAAGCC GTTCTCCTTCAACGCCATTGTTGTACCCGGGCTTGGCTCTAACCTTTTCT CTGTCTGCACCGCGTGGGAGCAGGGAATAGCTTCGATATTTCATCCTAAG AAGCCCAGGTTGGAGTACAACGATTCGGCGTTCGGGAACGTGGCTCTGCC GATGAACGTGGTTGGCTTGGACAAAAAGACCGGGAAGCTACTGTGTACGT TCGCCTTGCAGCTAGGGAGACGGCTCTGGAGGCGGTTCCAGTGCTCTTGC ACTGCGGGCTGCATCCGCGGAGCTGTGGCACCGGCGCATGGGACATATCA ACCGCAGGAGCTTGGACGTTCTTCGGAGACTACCGGGCAACGGGGTCGAG TACGATGTGGACATGGATGCTTGTAGTGTCTGCGCCGTCGGTAAGAGCGA GCAGCAAGCTCACCCTAAACAGGCGACGCATCATGCACAGCACCCGTTCC AATCCATCACCGTGGACCTCATGGGTCCAATCTCTCCCGAAGCAATCGGT GGGTTCCGAATGGTAGCAAAATATGTCGATCAGGCTACCAAGTGGAAGGA GATTTTTCTCCTGAAGGACAAAACGCAAACAACCGACTCTCTGAAGCTGT TCAACACGGGACTTGTAGCTCCTTCCGGATATCGCGTGGAACGCGCGAAA GCGGACAGAGGTACGGAGTTTACTAGTGCTGAGTTCCGTCAGTACTGTCG AGAGGTCGGCATCAAGCTAGTGTTTGCTTCCACCAACACACCGCAGCAAA TTGGGGACAACGAGCGGGCAGGAAAGACGATTATGGGGATCGTGCGCTGC TTGCTCGCGGATTCTGGTCTTCCCAACAAACTCTGGGGAGAGCTGATGAG GGCGGCTGTATACATCAGCAACCGGACTCCACACGCGGCATTACAGAACG AGACGCCGTACAAACGCCTCTACGGCAAGGACGCAAACCTCGGACATTTT CGGACGATCGGGGCAAGGGCGTTCGTGCACGTGGAGACGCACGGCAGGAA GCTGGACCAGCGGGCCTGGGAAGGAAGGCTCGTGGGGTACAGCTTAGATA GCTTGTCGTACCGGGTCTACAACCCAGCGACAGGGGATGTAAGGGAAAGC AGGAACGTGATCTTCATCGAGACTCCTACAGCCATGCCTGAGCCTGACTT GGCGAATGGTCTCGAGGAGGGCGAGTTCACGTACGACGACGTCGATGACA TGGTCCGGGATATCCGGAACTATTCGTCTAACATCGATCTCAGTTCGTCC CCTGCTACCGGTCAAACGATTAACCCTTCTGTCCGAGAATTACTGAATCA GATCAAGGAAACGACCGAACGCGACGCCACACCAACCAACCACCAATCGG GTGATCCGCCTGGGGAGACGACCCTGGAGGAGACAGCCCTGGTGATTCAC CTGGGGAGAAAGCCCTACTCCATCAGAGGGAGGGGAGCCCTGCAGGTTCA GGTGGTGGTTCTGAGTCGGGTGGTAACGCCGGTGATTCGGGGTCTGGTTC GACTTCGCAAGGCGGGGGTAGCTCCACGGAGGTACTGCGTCACGTGGTGG GCGAGGTGGCACGACATCTCGTGGCGGTCGTGGTGGTTCTACACCGCAGC GTCCCGCTACCAGGTCGATGACACAAGGCCCCAACGCCAGGACCCTCCGA GAACTAAAACGGCTAGGACTTCACACGAAGGGGGAGAGACAGGACATCGC CCACAAGGACGAGTTCGTGTATTTCGTCCACTATGCCTTGGCTGCACAAA ACGTACAGCAGAAAGTTCCCAGGACATTCCCGGAGGCCATGAAGCTAGCT GACGCGAAAGAGTACGCTTTACATCATATGCATTATTGGCAGATAACACA TTAACGCGTGTACGTTATAGCACGTAGTAGAAGGAAATATTTGTGGAACG GAATAAATTGTTTGATTCTCATCAGGATTACTATTCGATTGATTCTTTGT TTCACTGCACTTTCATTGAAGGGGAGTGTTATGGAAATGTTGGCTCATGT CCACGTACTAGTCAATGTTCAGTTCCGTAGCACTGCTGTTGTAGCATAGC AGGCCTCATTGGTCTAATAAGTGTCGGTTCATCTGTAACGTATGGTATGC GGAGGAACTGCTTTGTTGTGTGTTCTCTCGTGAGGATCACTCCTCGCTCT GATCTTTCTGGATGATCACGGTATCATAGCCGTCCTGTCGTCTGGACTTC ACTGTACGCTGTGGATTACATCTGTGTGTGTGTATTGGCCGCAAGCGCCA CTGTTCAATATAACATCATCGTCTCTACAGAACAGAGGTATCTTCCTACT TCTCGTCTGCTGGTCACCAACGTGTGTCATTACGTCTCGAGTAACTTCGA GAGACACAGCCACTGCCCACAGTGCCTGGAATATTCCCAATATCCATAAC AACTTGGTCTTGGATGTTTAACTGTCTTGATTGTGCCGCGTGGGGACAAA GTCCGAGCGTTGGACAAGGACGAGGAGGAGGATTGGAGAGCACACATCTG ACATCGTGCCAAAGAGGGGCCCGATTGACGAAGCCAACATATCCCCTGAA GTCACATCCACGGCACAGCATAAAACCGTCAAGCCGACATATCCAGAATA TCGTACTACCACGAACATGCGAATCCCAAACTGACAGTCACAAATCCATG GTCATACCGTAAGTACACTCAACAGCCCCCCTGCGTGTGGCAAGATCAAC ACTCAATGACCAACCCGAATATGCCTACACTATGTTCCTGTTCACCCCTA CAAGCATGCACCGTAGACGACACAAGATATCACACCCCCTGAACCGATTT TCAAAGCTCCATTTCTCCACATCAAGGATGGTGCCAATGACTTGCGATAA ATCTACAGAAAGGCATCGACTAAACCTCTTCGACCACACCCATTTGGGCA TCATAACTCTATTTGATGCTGAGAAATTGACCTTTGAAAATCTGTCCAAG GGGTGTGTTATCTTTTGCCGTACTACACGGTCGTAGCAAGAAAAACACAA CAAGTATTTGCTGCTGGCAGAAAGTTTGCAAGATAAAAGGTGCTTGTCAG AATTGACGCGTTTTCAGTAATAAAATTACCTCCTCGTGCGAAAATTCATG CAAAAAAACAGGGGCAAAGGCAGAAAAATAATTAGCCCCCTTGTGGGTAC CACATGTCTGAATATAAGGCTTGGGGCACCTTATCTCATGTCGGGCAAAC ACCCTTTTCACAAGTGGCGTCGACGGCAGGATTGTCATCTCTGCAATGAT GTCGAAGTCCCGGGTTCGAATCCGAGCACGTGAAAATGGGTGGTTTTTTG TCCGCCGCCAGCAGGTCGGGTTCGGGTTACCGTACATGCTACGGGGGGTG CGTCGTGGTACCCGCGTATTTGTCTACGATGCTGAGCTGCCCGCTCGCTC GCATCCGGGGGGTATTTGGGTACCACATGTCAGTATAAAAGGCTTGGGGC GCCTTATCTCATGTCGGACAAACACCCTTTTCGCACCCTAGGATAAAAAA TCTCCTAAATTCAAACTCCTGGAAATCGTTGTTTAGATGAAAATGATGAA AAAAGATGAAACCACACTAAACCCTGTTCGTGCAAGTCAGCAAATTATCA CTTCTTCAAAGTCATAGCAAATTTGTGGGGAAAGTCGAAAGGTTCGAACG GCAGTGCAATCGCAAGAAACTGGGCGTGTTGAAGCGCCGTCGGTACATGG ATGATCGAATTCTGCTTCCTCGCTACGAGATCCCTTGACAAAGTGATGTC GCACGTCGACGACCTTCGACTTCGAGTTCGAAATCGGATTCTGCCAAATA ATCTGAATCGCACCTTCATTGTCCTCAAACAACAACGGAATGCATGGGTC CCCTGCCTCAGGTAACATGAACGTCCACACCTGCCTGATAAACTGTAACT CCTTCAACGCGTCACTAAGATTGAGACACTTGACGAAGTGATGCATTTTT GCTCTCTCGAGAAAGAAATGACTACTTACTGCCCCCCACACAGCACGATT CCTCCCGACACGGACCTCCTCCCTGCCGGGATACTGGCGTAGTCAGAGTT TCCAGAAGCCTGCAAGCCGATGCTAGTCGCCGTACCTCTCTCAAACGTAA TCCCCATGTATGTGACTTGTCCTGCTAATGTATCCTAAGGTCCCCAATGA ATCTCGCCAGTGTCCCAACCGGGGGGCGCTGCAACATCTCGGTACCGGTC TCACAGCATTCGCGATATCTGGTCGGGTTTGTTTGGCAGGCCAGCCACAT CATTGCTCCAATGAGGGAACTGAAAGGAATCGAATCACGCAGGCACTCTT CACGCTCGAAGTCCCAAAGTTTCACGGTCGTGGGGAGCGGAAATTCCTTT CCCCCGCAAACTCCTTACTGGTTGACAAGCCCCTCTGCGTATTTTTTCCG CGAACTTGTCAACATGCCTGCTTCCCAGTTCCTCCTGTACACGCATCCTG CGTAAACTTTCAACTCTCCGAAGTTTTTAGTCGCGCCCTTCTTCCCAAGG TCAGTCGGTCGCAAACTGGTCACATTCGTCCTGTGTCCCTACTGCGAAAA GGCCATCCACCAAAATCACGATTATTAGAGAAACCTTTCCATCTTCAAGC AGTCTGAAGTCGCACGTGTCGGCGAGGCACTGCATGAAATcCAAAGCCAG CAAGCACTCCACCAGAAGCGCTTGCCATTGCCTCGACGCTTGCTTCCATC CGTCAATACTCTTGATCAACCGTACTACATTTCCCGAGAGGCAACCACAT CCGTTTGGCAATCGAAAACGAGACCATACAGCAAAGATCGTTCAAAGCCT GCTCCATATCGGTGTGACATTCGTAGAAGTCCCTTTTGTACGCAAGGGCA GCCAGCAAACGAACGCTGGACGCGGAAACGGTAGGTGCATATATCTCACC GAAGCCGAAGTCAAAACCCGGCCTCTGCTTGAAACCACGCGCACACAACC TAGCTTTGAGTTCACAGGCATACCGTTTTAATCAGTCTTAAACGAAAACA CCCACTTGCCGTCAATCGCATAAGCCGGTCGCTGCTAGACATATCCATAC GAGTCGGCCCTGATGAGGCCGCCGAATTCCTCTTGCCGCGTAGCTCCAGG ACTCCGCTTGCTCTGATCGCATGGCCTCGTCGTACGTGAGGGGACCCCGA AGCTGGCTGGCTGGGCTGCGAAAACGATGAAAAATCGCCAGCAGCTGCTG CCAGATCCTCTCTCGAAGCCGGCTGCGCGAAGAACCCGCACTATATCTCA CCGTGTTGGGGGTCGCCGTCGTCCTGCTCCTCCTGCTCGCGCTGCCCCCC TCCCCGGTGGTGAATGGCCGCCTGGGTTTTGAGCATGCCGATGAGACACT CCTTGTCCAGGTGTGCCAGGTGGTGCGACATGGCGTCGAAGAGGGCGCCG TCGCTATCGTCGCTGCCGCTTGTTGGGGACCCCGGCGGTGGCGGTACATT ATTATGAGGGAGAAGGGGGCCGCTCGAGAGGGCCCGACCTAGATCTCACC GGCGTGTGCCGGCGCCCATACCTCGAGGTGATGATGGCTCCCCCACAAGG CCTTCAGGCGGGATCTGCGGCGGTGGTTAATTTGAAAACAGAAACAAAAC TTTGCTGGCGTACCAGCCAATACAGAAGTTCATGTCTTAGGCACACGTAC GTGGTGACACCGAGACTGCTGCTGCGCGTGTTACCATACATGTCATGTAG CACAGCCCCCACCGCAAAACAAAAATAGCGTGGCGGGTGAAGCGGCCCGC CAGAGGCTCAGGAGACGGTTGTTCTCGACAGTCACAGCGAAGTGGCGTGT GTGTGTTGTGAGCTCACAACGGCCACTGGTTGCGCCGCGGAAAGTACAGC ATTTGGAATCGCGGCGATTTAATAGAGTTCCTCCACGGGGAGGGGGCCCT TTCTAAAACCCCTCCGCCAGGCACAGCGTTACGAGGAGGCTTAAACCGCA GCTGCCAGTCCCCTTTTTATACCTTTTCGAGGTCGTTCGGGCGTTTGGTG CATCAACGACACCTTGCCACATCGCAATGTCGCCCACAAGGTCCTATTTG AGAGTCGCGAGTGAGGTGAATGAAGTTGCTAGACTCCACCTCTTGGGGTG GGAAGATGAGGCGGGAATGCGTCAGTCGGCCATTACATACACTGCGCAAG ACCAACCTTGCAAGGCTCATTTTCTCCTCCAAGCGCCCTCGTTTAGGCGT CGCCGGCTGGTTTTGGAGCGAAACGCAAGAAGACCCGAAACCGCAGTCAC CATCGCCTCTCCTAGACAATGCGGGGTGTCTGGTACGTCCTTGTTAGCGG GATAAGAGAGTCCAGCACGGAGCAAGTACATTGTGTTTGATAAAGGCTTA TCAAACACATGGTGCTTTTCTTGATATGTACATTTCTATTACAGTAATAG TTCGCACATGGGTCTTATTTTTGGATCTTGTATGTGGATGTCGGGTGTAG CATGGCGTACCCAGATATAAATACACACACCTAGACAGGAAGAGCCGATC TTCCTCGGCGTATACCTGTGACCTTCATTTGGCACAAGAAACTCCGCTCG GAAGTTAACTCTTCCATGCTAACCTGAAGATGTGGCGGACCTCTCATGTA GGGGCCGCCCTCCCCTTCACTCTCCCTTTTGGGATCTCTCCTCTCTCTCT AAATACCAACGGAGGAAACATGCCTGCCCCGGTAGTGGCCTTAAACTTCC ACCACCTTGGCTCCCGTAGCTAGGGTCCTCATGCAGAGGGAATTATTTTT GTCCGCGAACCATTCGCGCACGGATAGGAAGGAATCGTTTCAGTTCCCGA ACCTAAATTCGTGCACCTCTTACAGGGGTCGGCCCACGTCTCTCGTACGT CACTCTTTGTATGCCGGGTATCAATGTGACACACACTTACGCACACCGGA GGACGGGGGGGGGGCTTTCGGATTTGTTTTGTTGGCAGGGATTACGGAGC AAGAGGAGCATATCAAGTTTTTTTTTTCCTGTGAAAGGACCCGGAACTAC AAACCCACAATGAGAGTCGAAGTCATGGCGGGACAGGATATGGACGGAAT TCGCAATGATGCACTATGCTGTGAAAAACTCCTTTCTGTGTACAAACAAT CAAGACGAAGCACCCGGGCACGGAGGAAGAACGATAAGTAAGTAGGTATC CCTCCCCACCTGCCATTTTATCAGTTTGTACAACTTCAAGGGAAAACGTA AGATCGGGTTTTCATTGCGGTGAACGAAGCGGCGCATGGGGCAGGGGGAA GACAGGAGAGGGCAGGACGGGAGGGAGGGGAGAGACAGAGGGCGCAGAGA CCATGCAGAGCAAAGAGTCGCTTGGTCAGGCACACGGCGGAACAAGCCGT GTCATCAGACACGGAGCGTAGGTTGGAGGAGAAGAACCGAAGAAAAATGC GAGGGAACCTGCCGTTACCACTAAATGTTTTCGCTACGATTCGCAACTCA TCTTCCACAAACAAGCAACCCTAGTCCAACCAACACAATATATATCACGC AGAGGACCGCACGCCGATTCCGTCATAGAGTTGCACACTACATCTACTCC TCCATTACTCCTGTGACATTCTGGCCCCCCGCTCCCCCCACTCAAATCCA CCCCAGCTCGTTTGTGATTATTTTGTTGGCAAACGTTTGGTTTGTTTTTC TTTTTTTTTTTTCTGGATATAGTCTAGTCTCGCCATTGCTCATACGATGG ATAATATGTACACAGTAGGTTCAGGAATTGACTACAGCGTCTCTGGTCCA TCATCCAAGGATCTCCCCTTTCGATGCCGAGCCATATCGCACCTCAATCA CCACTGACTGGTCCGCTCTATTGCTTTGCCAGGGAGTACGTCGATGCTTT GTTCGCCATAACAATGGGGGAAGTGGTAATGTTTGCGCCAACAATAACGA TGCAAGTGGTGTCCATCTCGGACAAAATTTTGGGGCATCTTTTCGGTATC GGAAGAATTGTGCGTGAAGTTAGAGAAAACGAACGAGAAGCCCAAGATCT GTGGCGGAGGGCTGAGGACATCCAGCCTACCATGCAGTCCATCAGGCAGC AACACTTGAGGTTGTCTTCTTCACAGCCGATGCAGAAGCTAGAGGAGACC GTGTTTAAAATCAAGTTCACCTTAGAACAGTTCGCACGTAAGTCTAAATT CAACAAAGCTTGGAACCGGGACAGCTACACCAAGGAGTTCTTACGGCTCT CCAGGAAACTGAGCGAAAATATGGCTGCTGTTATGCTGGTCAAGTTGGTC ATCGACGAAGAGCAGCGCAGAATTGAGGCCGACGCGGACCAGCTCAGGAT TAAAGCCGGCAGCCGCATGGACTCCTCCTCCTCCTACTCTTCCCTGTGGG CCATTTCGGCTGTAACAGTTCATCGTGTTGCGACGAAGAGCAGCGCAGAA TTGAGGCCGAGGCGGACCAGCTCAGGATTAAAGCCGGCAGCCGCACGGAC TCCTCCTCCTCCTCCTCCTGTTCCCCGTGGGCCTTTTGCTGTAACAGTTC ATCGTGGTGCGACGAAGAGCAGCGCAGATTTGAGGCCGACGCGGACCAGC TCAGGATTAAAGCCGGCAGCCGCATGGACTCCTCTTCCTCCTCCTGTTCC CCGTGGGCCTTTTACGGCTGTAACAGTTCATCGTGGTGCGACGAAGAGCA GCGCAGATTTGAGGCCGAGGCGGACCAGCTCAGGATTAAAACCGGCAGCC GCACGGACTCCTCCTCCTCCTCATCCTGTTGTTCCCCGTGGGCCTCTTGC TGTAACAGTTCATCGTGGTGCGACGAAGAGCAGCGCAGATTTGAGGCCGA GGCGGACCAGCTCAGGATTAAAGCCGGCAGCCGCACGGACTCCTCCTCCT CCTCCTCCTCCTCCTCTGCCACGGCTTTTTTCAGCTGTTCATCGTGAAGG GCAGCAGCGGCGGCGGTGAAAACAGCAGCAGCATCCTCCCTTTCAGCAGC CTCCTGGGCAGCGGCTTCCTTCATAGCGGCAGCCTTGTTCTCTTTGTCAG GGATTCCTGCGAGCTGGGGGCACTGCCTGGCACATAAATACATTATATAA ACCTTTCGAACGCCCAGAAGAGGTACCTTGGGCAAGGTCCGTAGCGAGGC CGCGCCCAACCAAACCAACCCCACCACAACGGCGGCAAGCTGCACCATCT TTGGACTCGGAGGACGCGCGCTGGTTGTGGATGAACGTGTGCACCAGCTG GGGGCAACAGGAGGTAGAGACGCGGGGTGTTGTTGTTGCTGGTCGGCAGA GGCTGTCCGCAGGAGTCAGTCACGTTCCACTTCTTCTGTCGATGTTTTGA CCCCGAACGCCGCGTCTGGCCGATAAGCGAGGTTCGGAGGCTCGAGCGGA TTTCGCCATTGCTTGTACGAGTGTGGCCTTGCCCTTCGCTACGGTAAGAA CGCTGTCAGATAAGGTGAAGTGCGAGCAACTTAACACCTGCGAATTTTTA CCCCTAATTTTCCGAGGGGGTGCGTGGTGAGAACGGATTTTTTTCAAGAA CAGAGCTGCTGCTATCGAGTCGGCAAAAATCCGTTTTTGATTTTTGGAAG TTCAGTGTTTGTGTTACTTGACGGAAGATATCGCTTATCGGTCACTTGAT GTGGCTGGCCAACCAGACTAGACCTGACATCCTCAACGCCGTGTGCGCCC TTGCGCGCTTCTGCAACGCTCCCACTATGGGGCACTGGAAGGCCGCGTTG CATGTATTGATGTATGTGCGTGGGACAATTGATATTGGGATTACATTTGA GCgGGGAGGAAACCTTGATTTGGTGTTCCATGTCGACGCTGACTTTGCCA GCAAGGAGACAGGAAGGAAGTCGGTATCTGGGGGGCTTCTAATGTGTGCG AGTGCATGTGCTGGATATTTCTCGAAAACGCAGCAGAGCGTTACCACGGC GACTAGCGAGGCAGAATATGCCGCCATGGCACAGGGGCTGAAAGAGATGA TTTTTATGAGTTATGTCTGGAGTTTTGTCCTTCCGGACACGGATGTTGGA TGCACGACAGTGTACGAGGACAACGAGGGGGCGCGACATCTGGTGATCAA CCCCGCCACCACCCCCAACTCGAAACATGTAGACATCCGGCACCACTTTA TTCGCGAGCGCGTAGAGCGGGAAGAATTTAATATCGTTCAAGTGACGTCC CGATTCCAGCATGCTGATTTCCTGACGAAGCCGCTACACCAAGGCGCATT CTTTTTCCACCGACAGTTTGCAATGAATCTGTAGTGGCATCATGTGTATT TGTTTTTGAATGCCCCAGGACGCCGCATCAGGTATCTTTTCGAACTGTAT TCCTGTCC
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Coding sequence (CDS) from alignment at P-fluviatile_contig14:2586598..2642005+

>mRNA_P-fluviatile_contig14.2301.1 ID=mRNA_P-fluviatile_contig14.2301.1|Name=mRNA_P-fluviatile_contig14.2301.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=3204bp|location=Sequence derived from alignment at P-fluviatile_contig14:2586598..2642005+ (Porterinema fluviatile SAG_2381)
ATGAGGACAGCAGCAGCCGCAGGAGTGTTGGCAGCCGGGCTGGCGACAGC
GGGCGCCTTGCAGCCGAGCGGTTTCCTAGGGAGGAGCATGGCTAGGGGCC
AAGCACCCGTCAAAGGCACCAGCAGATGAGGACAGCAGCAGCCGCAGGAG
TGTTGGCAGCCGGGCTGGCGACAGCGGGCGCCTTGCAGCCGAGCGGTTTC
CTAGGGAGGAGCATGGCTAGGGGCCAAGCACCCGTCAAAGGCACCAGCAG
GACGACCATGGTCGCGCAGCCCCCTACGAAGGCCGCGGAAGCAGCAGCAG
CGGCGTCGGCAGCAGTGGCGTCGTCGTCGACGGCCAGCTCCTCCTCCTCC
ATTTCTGCGATCGGCTGGTCGCCTGCCTCCTGGCGCAAGATGGTCGCCCG
GCAGATGCCCAAGTACGACGACGAGGGGTTGGTGACGGAGGTGGAGGGCA
TCCTGGCCAAGCAGGCCCCCCTCGTGTTCGCAGGAGAGGACGACCATGGT
CGCGCAGCCCCCTACGAAGGCCGCGGAAGCAGCAGCAGCGGCGTCGGCAG
CAGTGGCGTCGTCGTCGACGGCCAGCTCCTCCTCCTCCATTTCTGCGATC
GGCTGGTCGCCTGCCTCCTGGCGCAAGATGGTCGCCCGGCAGATGCCCAA
GTACGACGACGAGGGGTTGGTGACGGAGGTGGAGGGCATCCTGGCCAAGC
AGGCCCCCCTCGTGTTCGCAGGAGAGTGCCGGGAGCTAACCTCTGAGCTG
TCGAAGGCGACAAGAGGGGAGGCGTTCGTCCTCATGGGAGGGGACTGCGC
CGAGAGCTTTTCGGAGTTCAAGTGCCGGGAGCTAACCTCTGAGCTGTCGA
AGGCGACAAGAGGGGAGGCGTTCGTCCTCATGGGAGGGGACTGCGCCGAG
AGCTTTTCGGAGTTCAAGGTGGACGACGTGCGAGACACGTTCAGATCCAT
CCTTCAAATGTCTCTCGTCATGACTTACGGAGGATCGATGCCCGTGGTAA
AGGTGGACGACGTGCGAGACACGTTCAGATCCATCCTTCAAATGTCTCTC
GTCATGACTTACGGAGGATCGATGCCCGTGGTAAAGATTGGTCGCGCAGC
GGGGCAGTTCGCGAAGCCGCGATCAGAGGACTTCGAGACCATCAACGGGG
TTACTCTTCCCAGATTGGTCGCGCAGCGGGGCAGTTCGCGAAGCCGCGAT
CAGAGGACTTCGAGACCATCAACGGGGTTACTCTTCCCAGCTACCGCGGG
GACATCGTAAACGGGCTCGAGTTCACGGCTACTGCGAGGCGAAACGACCC
CTACCGCATGCTCTCCGCCTACCACCAGTCTGCCCAGCTACCGCGGGGAC
ATCGTAAACGGGCTCGAGTTCACGGCTACTGCGAGGCGAAACGACCCCTA
CCGCATGCTCTCCGCCTACCACCAGTCTGCCCAGACGATCAACCTCCTAC
GCGCCTTCGCGTCGGGGGGGTTCGCCGACATCCACAAGCTCAACGCCTGG
AACATGGACTTCGTCCAGAACACGCCGGAGGGGTCCAAGTACCGCGAGCT
CGCGTCCAAGATTGAGGACACTCTTCGCTTCATGACCACGATCAACCTCC
TACGCGCCTTCGCGTCGGGGGGGTTCGCCGACATCCACAAGCTCAACGCC
TGGAACATGGACTTCGTCCAGAACACGCCGGAGGGGTCCAAGTACCGCGA
GCTCGCGTCCAAGATTGAGGACACTCTTCGCTTCATGACCGCGATTGGTG
TCGACACGACGTCCGCCCCCTTCCGCACGACCAAGTTCTACACGGCGCAC
GAGGCGCTGTTGCTCTCTTACGAACAGGCCCTTACCCGAGAAGACTCGCT
CACAGGCGATTGGTGTCGACACGACGTCCGCCCCCTTCCGCACGACCAAG
TTCTACACGGCGCACGAGGCGCTGTTGCTCTCTTACGAACAGGCCCTTAC
CCGAGAAGACTCGCTCACAGGCAAGTTCTACGACTGCTCGGCCCATATGC
TGTGGATCGGCGAGCGCACGCGGCAGCTTGACGGCGCCCACATCGAGTTT
TTGCGTGGGGTGGACAACCCCATCGGCATCAAGGTTTCCCAGAAGCAAGT
TCTACGACTGCTCGGCCCATATGCTGTGGATCGGCGAGCGCACGCGGCAG
CTTGACGGCGCCCACATCGAGTTTTTGCGTGGGGTGGACAACCCCATCGG
CATCAAGGTTTCCCAGAAGTGCCCCCCCGAGGAGTTGATAGAGATCCTCG
AAACGGTGAACCCCGCCAACAAGGCCGGCAAGGTGACCCTCATCACGCGC
ATGTCTTCCAAGTACCTCAACGAGCACCTGCCGAAGCTCATCCTTGCGGT
ACAGAAGGCAGGACTCAACGTGCCCCCCCGAGGAGTTGATAGAGATCCTC
GAAACGGTGAACCCCGCCAACAAGGCCGGCAAGGTGACCCTCATCACGCG
CATGTCTTCCAAGTACCTCAACGAGCACCTGCCGAAGCTCATCCTTGCGG
TACAGAAGGCAGGACTCAACGTGCTGTGGGTGAGCGACCCCGTCCACGGT
AATACGATCAAGACCGACAGCGGCTACAAGACCCGCCGGATGGAGGACAT
ACGGTCGGAGCTGCGGACGTTCTTCGACGTGCACCAGAGGATGGGCACGC
ACGCGGGGGGGGTGCTGTGGGTGAGCGACCCCGTCCACGGTAATACGATC
AAGACCGACAGCGGCTACAAGACCCGCCGGATGGAGGACATACGGTCGGA
GCTGCGGACGTTCTTCGACGTGCACCAGAGGATGGGCACGCACGCGGGGG
GGATCCACATAGAGATGACGGGGAAGGACGTGACGGAGTGCACGGGCGGT
GACGTGGACGAAGTCAGGGAGAGCGACCTCAAGAACCGCTACCTCACCCA
GTGCGACCCTAGATCCACATAGAGATGACGGGGAAGGACGTGACGGAGTG
CACGGGCGGTGACGTGGACGAAGTCAGGGAGAGCGACCTCAAGAACCGCT
ACCTCACCCAGTGCGACCCTAGGTTGAACGGCAAGCAATCGCTGGAGCTG
GCCTTCCACATCGCCAACCGCCTTCGCCGCGACCAGGGCCTGCCCCCTGT
GCTGGGTGACTGAGTTGAACGGCAAGCAATCGCTGGAGCTGGCCTTCCAC
ATCGCCAACCGCCTTCGCCGCGACCAGGGCCTGCCCCCTGTGCTGGGTGA
CTGA
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