mRNA_P-fluviatile_contig14.2219.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig14.2219.1
Unique NamemRNA_P-fluviatile_contig14.2219.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig14.2219.1 vs. uniprot
Match: A0A6H5L2D9_9PHAE (GBP domain-containing protein (Fragment) n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5L2D9_9PHAE)

HSP 1 Score: 577 bits (1487), Expect = 1.460e-182
Identity = 478/1143 (41.82%), Postives = 636/1143 (55.64%), Query Frame = 2
Query:  446 APSTCDLAGSGAKTLLKWAEVTAEAGEEXXXXXXXXXXQEASRLELVLDEDALSRLSEIDTQIAVVSVAGPHRTGKSYFLNRFAERVLAASSGASVPEVLPGPF------LASATVGGDAGGA----GGEVSSRLLPACANPVPGRPGTALLLLDTPGLMAPYRSAVQDAQVMALVEAVSSVVLYNTRAVVGRVDVQALSIATDAAAAVD-SLLLSLPEGDGALAAXXXXXXXXXXXXXXXXXXXXSGTRRSGVVNRPGLVWLLQQSALETVDNKGD------YLSGVLGVGGEGAAKGTFDSFFATMDVARLPYPVTDVGRLQTLDTVPYSDLSDAYRESVREAVDKIAPACVPKEMVISGEKEKAMDGPAFVAFLRRLTRVLNIPVVVGGEPDDPLPTAFLERLEVKELEAIEAACTANWKRFADRSDS-PLRAENLKAEQARAVERADRAANPRFPS----------AADGGGVTAS-----RRSVFVDGLRAITDRAFEELCVKNARYWAGYELMEFDKEVQQLFKSRQPAPGGGAQLEGKRQVGDADGESPKPEKDYSLVLDAFNRRLERWKRELAPDLAESHPAVHAMVA---------EGGELGVAGFRSLFEQKVESLLRASLDTVRKQA----RESFDEKMFELRVELDLLRHPLQVEDVRTLSARAEAAASEATLAVQTAVGVAAAADVVAAERWVAEAAEAGAGWIRNAERALGLAHGGVESAEGGGGXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXVQRLVQTILTQHYEPCVAHVTLESAGGEKALKKCRQAAASEW----EKAENMEPMLKGQKAAALNAALSAKEAEHKEWLIQRTFTIFRDKLNEEASRLESPASEEDMDRLRSTAKTLMGPKKQEVALARKEALLSRSEVRDRLQELLNTTLEAIVSRNNNEWRRACLVAAERYAKQASRATSLFSLAPLRFSADGPPFEPARCLEGGFAHG-KAMSRLAGARAAYQRGTWGRRFLVRLILWAGALMSLVAAALLAAGRRLQHRTVATAFLVAAGFHFVVLCLSVSEGLRFGTRAWLLASGGVLAYTASGAAPAIRGKRGRRPSRAIWSTAGRKVSNSSG-AVMPLFVG 3718
            APS+C  + SG  TL +W  V  EA  E          +E +R+ L  DE AL  LS+ID+++AVVS+AGP+R+GKSYFLN  A  VLA  +G   P+  PG F        S T+  + G       G    +L+PACA P+P + GTALLLLDTPGLM P RSAVQ+AQV+AL++ VSSVVLYNT+AVV   D++AL IA DAAA+VD  L L + + DG  A                           G +NRP L+WL+QQS ++ VD +G       +L G LGV G G  K  FD FF   + ARLPYPV D+ +LQ LD + YSDLSDAYR  V+ AVD I P C PKE+       K MDG A   FLR+LTRV+N+PVV G +    L    L+ LE  EL A EAA  A W+R  +  +  P  AENLKA     V RA+  A+PR  S            DG    AS     RR  FV  L  +    + E C+ N R W+  E+   ++++  L + +Q       Q  G                +YS V   F RR +RW  ++ PD+  SHP + A++            GEL      +L+ + V+S L  SL T  +QA    +E+F+++M +L  E+  L  P  + DV  LS++A   A +A L V+ AVG   A +   A+ W  +A  A   WI  A  A+  A  G +   GG                      XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX   L + +L + + PCV  VTL++   EK+L KCR+ A  EW    E+++  E +L  +K   L+ A+  KE+EH   L+         + ++ +  LE P  ++ +DRL  T    +  + Q+    RK  LL+  E++ ++++ L   +  + ++N++ W +AC +A E+Y +QASRATS FSLAPLR+S + PPFEPARCL      G KA  R+  AR  Y RGTWGRR+LV L L    +++L A  LLAAGR+LQHR VA A L A+GFH VVLCLSVS+GL FGTR WLL SG +L    SGA   + GKRGR+P+RAIWST+GR+    +G ++MPLF G
Sbjct:   38 APSSCAASSSG--TLFQWNRVPIEAAAEGVGPEGG---KEGTRMALTADEGALEALSQIDSKLAVVSIAGPYRSGKSYFLNFLANHVLA--NGFDPPKD-PGSFDFERMFPTSPTLNTEGGXXXXXEAGLCRFQLVPACAKPLPDQEGTALLLLDTPGLMTPRRSAVQEAQVLALLQTVSSVVLYNTQAVVRWPDIEALLIAMDAAASVDVHLSLLMGDDDGTPAG------------------------EEGEINRPSLLWLIQQSTMKMVDGEGQEQSPTAHLDGALGVSGVGTVKDAFDRFFVRTNAARLPYPVNDLEKLQDLDRMRYSDLSDAYRGDVKAAVDVIVPECAPKEL-----GGKTMDGTALATFLRKLTRVMNVPVVAGNDRFSTL----LDVLEAGELRAAEAAYRAEWERGENNYEGLPTGAENLKARHNEYVRRAELVADPRSSSXXXXXXXXXXGQDGDQAGASDVRSLRRPGFVQALHTVLRGLYWEYCLTNVRLWSDAEIFGANEDLGALRREKQEQ-----QRSGXXXXXXXXXXXXXXXXEYSHVKAVFERRRQRWNGDIVPDIISSHPDMEALLVVMGDDSATPRTGELTAVHIEALW-RVVDSFLEQSLATATQQAIHSAQEAFEDRMDDLDAEVRDLPMPPHLADVDMLSSKANTTALDAYLVVKLAVGDDKAKETAIAQGWAGQAEAATRRWIMEAHEAVRRA--GNDGGSGG----------------------XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXAVALAERVLKERHAPCVEKVTLKTNHVEKSLAKCRKIADEEWAQGREESDKQE-LLDERKPTVLDKAMDEKESEHANSLVDMASAALTGRFHDMSLELELPEPDQVIDRLFVT----LSEQLQKDYPHRKGYLLASRELQHKIEQPLRKAVADLRTKNDHAWTKACRLATEKYTQQASRATSFFSLAPLRYS-EAPPFEPARCLVNSSGIGAKAPGRVRRARNTYLRGTWGRRWLVWLALRVTFVLALTAGTLLAAGRQLQHRPVAIACLAASGFHLVVLCLSVSDGLTFGTRPWLLVSGILLFCVGSGAT--VGGKRGRKPNRAIWSTSGRRAKGGNGGSLMPLFQG 1101          
BLAST of mRNA_P-fluviatile_contig14.2219.1 vs. uniprot
Match: D7FNQ2_ECTSI (Guanylate-binding protein, putative n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FNQ2_ECTSI)

HSP 1 Score: 403 bits (1036), Expect = 8.460e-119
Identity = 358/899 (39.82%), Postives = 484/899 (53.84%), Query Frame = 2
Query:  446 APSTCDLAGSGAKTLLKWAEVTAEAGEEXXXXXXXXXXQEASRLELVLDEDALSRLSEIDTQIAVVSVAGPHRTGKSYFLNRFAERVLAASSGASVPEVLPG------PFLASATVGGDAGGA-GGEVSSRLLPACANPVPGRPGTALLLLDTPGLMAPYRSAVQDAQVMALVEAVSSVVLYNTRAVVGRVDVQALSIATDAAAAVDSLLLSLPEGDGALAAXXXXXXXXXXXXXXXXXXXXSGTRRSGVVNRPGLVWLLQQSALETVDNKGD------YLSGVLGVGGEGAAKGTFDSFFATMDVARLPYPVTDVGRLQTLDTVPYSDLSDAYRESVREAVDKIAPACVPKEMVISGEKEKAMDGPAFVAFLRRLTRVLNIPVVVGGEPDDPLPTAFLERLEVKELEAIEAACTANWKRFADRSDS-PLRAENLKAEQARAVERADRAANPRFPSAADGG--GVTAS-------------RRSVFVDGLRAITDRAFEELCVKNARYWAGYELMEFDKEVQQLFKSRQPAPGGGAQLEGKRQVGDADGESPKPEKDYSLVLDAFNRRLERWKRELAPDLAESHPAVHAMVAEGGELGV--------AGFRSLFEQKVESLLRASLDTVRKQARESFDEKMFELRVELDLLRHPLQVEDVRTLSARAEAAASEATLAVQTAVGVAAAADVVAAERWVAEAAEAGAGWIRNAERALGLAHGGVESAEGGGGXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXVQR---LVQTILTQHYEPCVAHVTLESAGGEKALKKCRQAAASEW----EKAENMEPMLKGQKAAALNAALSAKEAEHKEWLIQRTFTIFRDKLNEEASRLESPASEEDMDRL 3010
            APS+C    SG  TL +W  V  E   +          +E++R+EL +DE AL  LS+IDT++AVVS+AGP+R+GKSYFLN  A  VLA  +G   P+  PG      PF  S T+  + GG   G    +L+PAC  P+P + GTALLLLDTPGLM P RS VQ+AQV+AL++ VSSVVLYNT+ VV R DV+AL IA DAAA+VD + LSL  GD                         +     G +NRP L WL+QQS ++ VD +G       +L G LGV G G  K  FD FF   + ARLPYPV D+ +LQ LD + YSDLSDAYR  V+ AVD I P C PKE+       K MDG A   FLR+LTRV+N+PV  G +    L    L+ LE  EL+A E A  A W+   +  +  P  AENLKA+ ++ VERA+  A+PR  S++  G  GV                RR  FV  L A+    + E C+ N R W+  E+   ++++  L K +Q       Q  G  +             +YS V   F+ R +RW  ++ PD+  SH  + A++   G+           AG      + V+S L  SL    +QA+E+F+++M  L  E+  L  P  + DV  LS++A+ AA +A LAV+ AVG   A +   A+ W  +A  A   W+  A++A+  A    +       XXXXX    XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX XX          V     L + +L + + PCV  VTL++   EK+L KCR+ A  EW    E+++  E +L  +K   L+ A+  KE+EH   L+         +  + +  LE P  ++ +DRL
Sbjct:   38 APSSCAAPSSG--TLFQWKRVPVEVAADGVGPEGG---EESTRMELTVDEGALQALSQIDTKLAVVSIAGPYRSGKSYFLNFLANHVLA--NGFDPPKE-PGSFDFERPFPTSPTLNAEGGGGEAGLCRFQLVPACGKPLPDQEGTALLLLDTPGLMTPRRSVVQEAQVLALLQTVSSVVLYNTQGVVSRPDVEALLIAMDAAASVD-VHLSLLAGDD----------------------DGTPAGEKGEINRPSLFWLIQQSTMKMVDGEGQDQSPAAHLDGALGVSGVGTVKDAFDRFFVRTNAARLPYPVNDLEKLQDLDPMRYSDLSDAYRGGVKTAVDLIVPECAPKEL-----GGKTMDGTALATFLRKLTRVMNVPVTAGNDRFSTL----LDVLEGGELQAAEVAYRAEWEPGENNYEGLPTGAENLKAKHSKCVERAELVADPRSASSSSSGTGGVAGQDGDQEGASDGRSLRRPGFVQALHAVLSGLYREYCIANVRLWSDAEIFGANEDLGALLKEKQEQ-----QRSGPGEQXXXXXXXXXXXXEYSHVTAVFDSRSQRWNGDIVPDIISSHADMEALLVVRGDDSAMPPTGELTAGHTGALWRVVDSFLEKSLAIATQQAQEAFEDQMDNLDAEVRDLPRPPHLADVEMLSSKAKTAALDAYLAVKLAVGDDKATETAIAQGWAGQAEAATGRWMSEAQQAVRGAGNDGDXXXXXXXXXXXXAGNGXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXAXXGGDGGDGGVGVDEAVALAERVLKERHAPCVEKVTLKTNHVEKSLAKCRKIANEEWAQGREESDKQE-LLDERKPTVLDKAMDEKESEHANSLVDAASAALAGRFRDMSLELELPEPDQVIDRL 890          
BLAST of mRNA_P-fluviatile_contig14.2219.1 vs. uniprot
Match: A0A7S4PRB5_9CRYP (Hypothetical protein (Fragment) n=1 Tax=Cryptomonas paramecium TaxID=2898 RepID=A0A7S4PRB5_9CRYP)

HSP 1 Score: 95.9 bits (237), Expect = 6.260e-17
Identity = 92/333 (27.63%), Postives = 154/333 (46.25%), Query Frame = 2
Query:  593 EDALSRLSEIDTQIAVVSVAGPHRTGKSYFLNRFAERVLAASSGASVPEVLPGPFLASATVGGDAGGAGGEVSSRLLPACANPVPGRPGTALLLLDTPGLMAPYRSAVQDAQVMALVEAVSSVVLYNTRAVVGRVDVQALSIATDAAAAVDSLLLSLPEGDGALAAXXXXXXXXXXXXXXXXXXXXSGTRRSGVVNRPGLVWLLQQSALETVDNKGDYLSGVLGV-----------GGEGAAKGTFDSFFATMDVARLPYPVTDVGRLQTLDTVPYSDLSDAYRESVREAVDKIAPACVPKEMVISGEKEKAMDGPAFVAFLRRLTRVLNIPV 1558
            ++AL+ L  I+T I +VSV G +R+GKS+ L    + ++    G         PF    TV  +      EVS  +LP CA  +     + +++LD+PGL AP R ++ DAQV+A++  +SSVVLYN+++V+ R  ++ L+ A + A     + LS  E                              +    ++RP L+ ++Q   L  ++ +G+ ++G   +            G       F  FF+++D+  LPYPV +   L  L  +P S+L  A+   V+   DKI      KEM   G K   + G    + + + T  +N+PV
Sbjct:   48 KEALTLLGTIETDITIVSVMGRYRSGKSFLL----DNLIPHDEGVY-------PFKVGDTVQAETE----EVSMVVLPPCATKL----SSTVIVLDSPGLFAPNRPSLFDAQVLAVLNLLSSVVLYNSQSVIDRDALERLAFAIETA-----MTLSYFEQH----------------------------KSDKSISRPHLLSVVQNLQLR-LEIRGNAVTGKEWIEDTLKQLDQSNNGTSRINEQFHDFFSSLDLVTLPYPVANTKDLPKLSNLPTSELEPAWLAGVKGLWDKITGLSAAKEM--GGMK---LRGAGLASMIEKWTESINVPV 322          
BLAST of mRNA_P-fluviatile_contig14.2219.1 vs. uniprot
Match: L1IUW4_GUITC (GB1/RHD3-type G domain-containing protein n=1 Tax=Guillardia theta (strain CCMP2712) TaxID=905079 RepID=L1IUW4_GUITC)

HSP 1 Score: 92.8 bits (229), Expect = 1.400e-15
Identity = 91/331 (27.49%), Postives = 152/331 (45.92%), Query Frame = 2
Query:  596 DALSRLSEIDTQIAVVSVAGPHRTGKSYFLNRFAERVLAASSGASVPEVLPGPFLASATVGGDAGGAGGEVSSRLLPACANPVPGRPGTALLLLDTPGLMAPYRSAVQDAQVMALVEAVSSVVLYNTRAVVGRVDVQALSIATDAAAAVDSLLLSLPEGDGALAAXXXXXXXXXXXXXXXXXXXXSGTRRSGVVNRPGLVWLLQQSALE-----TVDNKGDYLSGVL-----GVGGEGAAKGTFDSFFATMDVARLPYPVTDVGRLQTLDTVPYSDLSDAYRESVREAVDKIAPACVPKEMVISGEKEKAMDGPAFVAFLRRLTRVLNIPV 1558
            + L+ LSE++ ++ VVS+ GP+RTGKS+ LN+             VP     P   +  VG        EV+  ++P CA+    R     + LDTPGL AP R+++ DAQ++A++  VS+VVLYN+  V+ R  V+ LS A + A A+        E D                             ++  ++RP LVW++Q   L+     T  +   +++ +L        G       F +FF+++D   LP+PV  V  ++ L  +P S  +  Y +S+   + KI     PK  V+   K   M G +    + + +  +N+P+
Sbjct:   44 ETLNVLSELEGEVVVVSIVGPYRTGKSFLLNQL------------VPHE---PGNLTFKVGDTIKPETEEVTLVIIPPCASQGRYRHH---VFLDTPGLFAPNRASIFDAQLLAVLNLVSNVVLYNSVGVIDRAAVEKLSFAVETAFAMSYF----EEQD-----------------------------KADKISRPHLVWVVQNFHLDMSLDGTKIDGNSWINKLLTQVDDSNNGTSKISQQFHTFFSSLDAVVLPFPVDKVEDMKYLSQLPASAYTKDYHKSIDYLLMKIRSVAGPK--VLGSVK---MTGSSLANLIWKWSETINMPI 318          
BLAST of mRNA_P-fluviatile_contig14.2219.1 vs. uniprot
Match: A0A7S2HNL3_9DINO (Hypothetical protein (Fragment) n=1 Tax=Brandtodinium nutricula TaxID=1333877 RepID=A0A7S2HNL3_9DINO)

HSP 1 Score: 73.2 bits (178), Expect = 7.500e-10
Identity = 86/341 (25.22%), Postives = 133/341 (39.00%), Query Frame = 2
Query:  593 EDALSRLSEIDTQ-IAVVSVAGPHRTGKSYFLNRFAERVLAAS----SGASVPEVLPGPFLASATVGGDAGGAGGEVSSRLLPACANPVPGRPGTALLLLDTPGLMAPYRSAVQDAQVMALVEAVSSVVLYNTRAVVGRVDVQALSIATDAAAAVDSLLLSLPEGDGALAAXXXXXXXXXXXXXXXXXXXXSGTRRSGVVNRPGLVWLLQQSALETVDNKG------DYLSGVLGVGGEGAAKGTFDS-----------FFATMDVARLPYPVTDVGRLQTLDTVPYSDLSDAYRESVREAVDKIAPACVPKEMVISGEKEKAMDGPAFVAFLRRLTRVLN 1549
            E+A+ RL  +  + +A+ ++ GP+RTGKS+ LN    R++  +    +G++V     G ++            GG  SS           G  G +++ LD  G  +   + V+D+++MAL   VSSV++ NT+ V+       LS+    A  +D        G G  A                               RP L+WLL+   LE  D+ G      +YL   L       A  +              FF       L  PV D  RLQ L  + Y DL   +R     A  ++A     +   + G+    + G +F A LRRL   LN
Sbjct:   48 EEAIQRLEALGKRPVAICTICGPYRTGKSFLLNLLLGRMVRGAGRFRTGSTVRACTEGVWMWG----------GGARSS-----------GLDGNSIVFLDCEGFGSTESNRVRDSKLMALCMLVSSVLVLNTKGVLNEGLFNQLSLVCGLAEHIDE------HGAGTSA------------------------------ERPALLWLLRDFLLEMRDDGGGPLTADEYLERALRARPTSGANSSRSQAAGDVREHLLGFFPQRQCTTLVQPVIDEARLQQLSDLRYQDLRPEFRSGFEAAQAQLAALLRSRPKPVGGQP---LSGVSFAALLRRLVEALN 328          
BLAST of mRNA_P-fluviatile_contig14.2219.1 vs. uniprot
Match: A0A7S4PQV6_9CRYP (Hypothetical protein (Fragment) n=1 Tax=Cryptomonas paramecium TaxID=2898 RepID=A0A7S4PQV6_9CRYP)

HSP 1 Score: 69.7 bits (169), Expect = 6.010e-9
Identity = 64/242 (26.45%), Postives = 111/242 (45.87%), Query Frame = 2
Query:  866 LLLLDTPGLMAPYRSAVQDAQVMALVEAVSSVVLYNTRAVVGRVDVQALSIATDAAAAVDSLLLSLPEGDGALAAXXXXXXXXXXXXXXXXXXXXSGTRRSGVVNRPGLVWLLQQSALETVDNKGDYLSGVLGV-----------GGEGAAKGTFDSFFATMDVARLPYPVTDVGRLQTLDTVPYSDLSDAYRESVREAVDKIAPACVPKEMVISGEKEKAMDGPAFVAFLRRLTRVLNIPV 1558
            +++L +PGL AP R ++ DAQV+A++  +SSVVLYN+++V+ R  ++ L+ A + A     + LS  E                              +    ++RP L+ ++Q   L  ++ +G+ ++G   +            G       F  FF+++D+  LPYPV +   L  L  +P S+L  A+   V+   DKI      KEM   G K   + G    + + + T  +N+PV
Sbjct:    3 VIVLASPGLFAPNRPSLFDAQVLAVLNLLSSVVLYNSQSVIDRDALERLAFAIETA-----MTLSYFEQH----------------------------KSDKSISRPHLLSVVQNLQLR-LEIRGNAVTGKEWIEDTLKQLDQSNNGTSRINEQFHDFFSSLDLVTLPYPVANTKDLPKLSNLPTSELEPAWLAGVKGLWDKITGLSAAKEM--GGMK---LRGAGLASMIEKWTESINVPV 205          
BLAST of mRNA_P-fluviatile_contig14.2219.1 vs. uniprot
Match: A0A8J5XIY6_DIALT (GB1/RHD3-type G domain-containing protein n=1 Tax=Diacronema lutheri TaxID=2081491 RepID=A0A8J5XIY6_DIALT)

HSP 1 Score: 68.6 bits (166), Expect = 7.430e-8
Identity = 90/339 (26.55%), Postives = 142/339 (41.89%), Query Frame = 2
Query:  581 LVLDEDALSRLSEIDTQIAVVSVAGPHRTGKSYFLNRFAERVLAASSGASVPEVLPGPFLASATVGGDAGGAGGEVSSRLLPACANPVPGRPGTALLLLDTPGLMAPYRSAVQDAQVMALVEAVSSVVLYNTRAVVGRVDVQALSIATDAAAAVDSLLLSLPEGDGALAAXXXXXXXXXXXXXXXXXXXXSGTRRSGVVNRPGLVWLLQQSALETVDNKG------DYLSGVL--GVGGEGAA------KGTFDSFFATMDVARLPYPV--TDVGRLQTLDTVPYSDLSDAYRESVREAVDKIAPACVPKEMVISGEKEKAMDGPAFVAFLRRLTRVLN 1549
            L + E+A++RL  +  Q+AV +VAG +R+GKS+ LN+        + G++V     G ++             GE      P      PG P  ++L LDT GL +  +    DA++ +L   +SS+ +YN   VV    + +LS+  +        L       GA A XXXX                +    +     P  VWLL+ + LE VD++G      +YL   L    GG  AA      +G     F    +  LP+P   +DV   +       S LS A+R+++      +     PK   ++G    A+ G A+   LR   R +N
Sbjct:   26 LTVCEEAVARLCALQGQLAVCTVAGVYRSGKSFLLNQLTGAPRGFAVGSTVQACTKGIWM------------WGE------PLEVVRTPGEPPLSVLFLDTEGLSSVCQDGTHDAKIFSLAILLSSLFVYNGDKVVNNAAIDSLSLVAN--------LTERVRAGGAGAXXXXXGADGK-----------AAEEAALAAELPDFVWLLRDAFLEMVDDQGRAMSAREYLDESLRPAPGGSAAAIERNETRGAITRLFPRRRLFALPHPTVGSDVKEGELSALADLSRLSHAFRDALGALRAHVLETIRPK--AVAG---CALSGGAYAQLLRAYVRSIN 322          
BLAST of mRNA_P-fluviatile_contig14.2219.1 vs. uniprot
Match: A0A8H3L8V8_9GLOM (Guanylate-binding protein n=1 Tax=Rhizophagus clarus TaxID=94130 RepID=A0A8H3L8V8_9GLOM)

HSP 1 Score: 68.2 bits (165), Expect = 8.750e-8
Identity = 84/323 (26.01%), Postives = 129/323 (39.94%), Query Frame = 2
Query:  581 LVLDEDALSRLSEIDTQIAVVSVAGPHRTGKSYFLNRFAERVLAASSGASVPEVLPGPFLASATVGGDAGGAGGEVSSRLLPACANPVPGRPGTALLLLDTPGLMAPYRSAVQDAQVMALVEAVSSVVLYNTRAVVGRVDVQALSIATDAAAAVDSLLLSLPEGDGALAAXXXXXXXXXXXXXXXXXXXXSGTRRSGVVNRPGLVWLLQQSALETVDNKGDYLSGVLGVGGEGAAKGTFDSFFATMDVARLPYPVTDVGRLQTLDTVPYSDLSDAYRESVREAVDKIAPACVPKEMVISGEKEKAMDGPAFVAFLRRLTRVLN 1549
            ++L+ DAL+ L  I   +A++SV G +R GKS+F N    R      GA V     G ++ S     ++  + G++  +                +++LD+ G+  P +      ++  L  A+SS  +YN   +VGR D+  L + TD      S  +  PE    L                                 P LV LL+   LE+ ++  DY    L      AA G    FF   DV  LP+P      LQ ++     DL + + E V +AV  I    +P + + S      M G AFV FL  L   +N
Sbjct:   36 IILNPDALNVLKNIREPLAIISVVGSYRRGKSWFANVLHGRHDGFDLGAKVEGCTRGIYMWSPPFKLESKQSNGQLVQK---------------RVIVLDSEGIDDPKQDQNWATKLFILCLALSSTFIYNINGIVGRDDIGKLYLMTDL-----SKFIQEPENGDFL---------------------------------PRLVILLRDFTLESPESFKDYFMEKLNNVNPEAADG-IKKFFYDFDVYGLPHPGCKRKMLQHMEEAVTDDLDEEFVEEVEKAVKSIYSQ-LPLKYIGSS----TMKGSAFVKFLNDLVERMN 299          
BLAST of mRNA_P-fluviatile_contig14.2219.1 vs. uniprot
Match: A0A2Z6QVN6_9GLOM (GB1/RHD3-type G domain-containing protein n=2 Tax=Rhizophagus clarus TaxID=94130 RepID=A0A2Z6QVN6_9GLOM)

HSP 1 Score: 67.0 bits (162), Expect = 2.390e-7
Identity = 70/295 (23.73%), Postives = 117/295 (39.66%), Query Frame = 2
Query:  578 ELVLDEDALSRLSEIDTQIAVVSVAGPHRTGKSYFLNRFAERVLAASSGASVPEVLPGPFLASATVGGDAGGAGGEVSSRLLPACANPVPGRPGTALLLLDTPGLMAPYRSAVQDAQVMALVEAVSSVVLYNTRAVVGRVDVQALSIATDAAAAVDSLLLSLPEGDGALAAXXXXXXXXXXXXXXXXXXXXSGTRRSGVVNRPGLVWLLQQSALETVDNKGDYLSGVLGVGGEGAAKGTFDSFFATMDVARLPYPVTDVGRLQTLDTVPYSDLSDAYRESVREAVDKIAPACVPK 1462
            E++++E+AL  + EID  +A++SV G +R GKS+F N    R      G++V     G ++ S                              G  +++LD  G+  P ++     ++  L  ++SS  +YN   VVG+ D+  L + TD    +      +P  D                                    P +V LL+   L+  ++  DY    L    E AA+G    +F+  DV  +P P+ D  +LQ LD +P + L   +   V  AV+ +     PK
Sbjct:   36 EIIVNEEALDIIREIDGPVAIISVVGSYRRGKSWFANVLHGRHDGFMLGSTVDRCTQGIYMWSKPFDYQ------------------------GKKVIILDCEGIDDPKQNQQWATKLFVLCLSISSTFIYNLNGVVGKDDIGKLFLMTDLTKFI------VPPPDYKFL--------------------------------PRMVVLLRDFMLKNPESFKDYFLDRLNSVNERAAEG-IKKYFSDFDVFGIPIPMADRNQLQNLDKLPTAKLQPEFVTEVTRAVNNVLSTSAPK 267          
BLAST of mRNA_P-fluviatile_contig14.2219.1 vs. uniprot
Match: A0A6B2KX61_9EUKA (GB1/RHD3-type G domain-containing protein n=1 Tax=Arcella intermedia TaxID=1963864 RepID=A0A6B2KX61_9EUKA)

HSP 1 Score: 66.6 bits (161), Expect = 3.080e-7
Identity = 92/381 (24.15%), Postives = 149/381 (39.11%), Query Frame = 2
Query:  611 LSEIDTQIAVVSVAGPHRTGKSYFLNRFAERVLAASSGASVPEVLPGPFLASATVGGDAGGAGGEVSSRLLPACANPVPGRPGTALLLLDTPGLMAPYRSAVQDAQVMALVEAVSSVVLYNTRAVVGRVDVQALSIATDAAAAVDSLLLSLPEGDGALAAXXXXXXXXXXXXXXXXXXXXSGTRRSGVVNRPGLVWLLQQSALETVDNKG------DYLSGVL------GVGGEGAAKGTFDSFFATMDVARLPYPVTDVGRLQTLDTVPYSDLSDAYRESVREAVDKIAPACVPKEMVISGEKEKAMDGPAFVAFLRRLTRVLN---IPVVVGGEPDDPLPTAFLERLEVKELEAIEAACTANWKRFADRSDSPLRAENL 1708
            L ++ T  AVV+VAGP+R+GKSY LNR   R      G +V     G ++ S            E    + P     +P       +L+DT G+ +  ++   DA++ +L   +   ++YNT    G +D QA+S+         SL+  L +                           SG ++      P   W+L+   LE VD  G       YL   L      G       +    S+F+T D   L  PV D   L+ +D +P S L   +   V   + KI      K         K + GPAFV+ + +    +N   IP ++         ++  E   +K  E +++  +A  ++    ++ PL AE L
Sbjct:    2 LEKLQTPFAVVAVAGPYRSGKSYLLNRLLNRQNGFKIGQTVNPETKGIYMWS------------EPVMMVNPETRQKIP------TILIDTEGVSSIQQNKTYDAKLFSLALLLCDYLVYNTT---GVIDDQAISML--------SLIAELSK---------------------FLVSKSSGAQQEEFF--PAFGWVLRDFVLELVDESGHEITPNQYLENCLKERNTPGQEQNNQTRRALRSYFSTRDCFCLVRPVADEKDLKRVDALPESHLRKEFTTGVNNLIRKIHSNLREKRFF-----GKPLTGPAFVSLIAKYIERINHGTIPTILDTW------SSVAESENIKISERVKSLASAALEQKI--ANGPLEAEEL 317          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig14.2219.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
A0A6H5L2D9_9PHAE1.460e-18241.82GBP domain-containing protein (Fragment) n=1 Tax=E... [more]
D7FNQ2_ECTSI8.460e-11939.82Guanylate-binding protein, putative n=1 Tax=Ectoca... [more]
A0A7S4PRB5_9CRYP6.260e-1727.63Hypothetical protein (Fragment) n=1 Tax=Cryptomona... [more]
L1IUW4_GUITC1.400e-1527.49GB1/RHD3-type G domain-containing protein n=1 Tax=... [more]
A0A7S2HNL3_9DINO7.500e-1025.22Hypothetical protein (Fragment) n=1 Tax=Brandtodin... [more]
A0A7S4PQV6_9CRYP6.010e-926.45Hypothetical protein (Fragment) n=1 Tax=Cryptomona... [more]
A0A8J5XIY6_DIALT7.430e-826.55GB1/RHD3-type G domain-containing protein n=1 Tax=... [more]
A0A8H3L8V8_9GLOM8.750e-826.01Guanylate-binding protein n=1 Tax=Rhizophagus clar... [more]
A0A2Z6QVN6_9GLOM2.390e-723.73GB1/RHD3-type G domain-containing protein n=2 Tax=... [more]
A0A6B2KX61_9EUKA3.080e-724.15GB1/RHD3-type G domain-containing protein n=1 Tax=... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig14contigP-fluviatile_contig14:1856933..1873337 -
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 score420.6
Seed ortholog evalue2.4e-114
Seed eggNOG ortholog2880.D7FNQ2
KEGG koko:K20899
KEGG Pathwayko04621,map04621
EggNOG free text desc.GTPase activity
EggNOG OGsKOG2037@1,KOG2037@2759
COG Functional cat.S
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
BRITEko00000,ko00001
Hectar predicted targeting categorychloroplast
Exons18
Model size3749
Cds size3609
Stop0
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
1622815620.6661623-CDS-P-fluviatile_contig14:1856932..18572151622815620.6661623-CDS-P-fluviatile_contig14:1856932..1857215Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1856933..1857215 -
1693562479.9587905-CDS-P-fluviatile_contig14:1856932..18572151693562479.9587905-CDS-P-fluviatile_contig14:1856932..1857215Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1856933..1857215 -
1622815620.6804202-CDS-P-fluviatile_contig14:1857829..18580861622815620.6804202-CDS-P-fluviatile_contig14:1857829..1858086Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1857830..1858086 -
1693562479.9702997-CDS-P-fluviatile_contig14:1857829..18580861693562479.9702997-CDS-P-fluviatile_contig14:1857829..1858086Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1857830..1858086 -
1622815620.6962645-CDS-P-fluviatile_contig14:1858838..18590121622815620.6962645-CDS-P-fluviatile_contig14:1858838..1859012Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1858839..1859012 -
1693562480.207802-CDS-P-fluviatile_contig14:1858838..18590121693562480.207802-CDS-P-fluviatile_contig14:1858838..1859012Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1858839..1859012 -
1622815620.7089255-CDS-P-fluviatile_contig14:1859758..18598791622815620.7089255-CDS-P-fluviatile_contig14:1859758..1859879Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1859759..1859879 -
1693562480.2208917-CDS-P-fluviatile_contig14:1859758..18598791693562480.2208917-CDS-P-fluviatile_contig14:1859758..1859879Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1859759..1859879 -
1622815620.7211359-CDS-P-fluviatile_contig14:1860622..18613051622815620.7211359-CDS-P-fluviatile_contig14:1860622..1861305Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1860623..1861305 -
1693562480.2305257-CDS-P-fluviatile_contig14:1860622..18613051693562480.2305257-CDS-P-fluviatile_contig14:1860622..1861305Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1860623..1861305 -
1622815620.731095-CDS-P-fluviatile_contig14:1862127..18622871622815620.731095-CDS-P-fluviatile_contig14:1862127..1862287Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1862128..1862287 -
1693562480.2431626-CDS-P-fluviatile_contig14:1862127..18622871693562480.2431626-CDS-P-fluviatile_contig14:1862127..1862287Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1862128..1862287 -
1622815620.7426095-CDS-P-fluviatile_contig14:1864132..18642871622815620.7426095-CDS-P-fluviatile_contig14:1864132..1864287Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1864133..1864287 -
1693562480.2521286-CDS-P-fluviatile_contig14:1864132..18642871693562480.2521286-CDS-P-fluviatile_contig14:1864132..1864287Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1864133..1864287 -
1622815620.7527468-CDS-P-fluviatile_contig14:1864550..18646101622815620.7527468-CDS-P-fluviatile_contig14:1864550..1864610Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1864551..1864610 -
1693562480.266444-CDS-P-fluviatile_contig14:1864550..18646101693562480.266444-CDS-P-fluviatile_contig14:1864550..1864610Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1864551..1864610 -
1622815620.7629805-CDS-P-fluviatile_contig14:1865133..18652891622815620.7629805-CDS-P-fluviatile_contig14:1865133..1865289Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1865134..1865289 -
1693562480.273444-CDS-P-fluviatile_contig14:1865133..18652891693562480.273444-CDS-P-fluviatile_contig14:1865133..1865289Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1865134..1865289 -
1622815620.7728615-CDS-P-fluviatile_contig14:1865863..18660221622815620.7728615-CDS-P-fluviatile_contig14:1865863..1866022Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1865864..1866022 -
1693562480.2805617-CDS-P-fluviatile_contig14:1865863..18660221693562480.2805617-CDS-P-fluviatile_contig14:1865863..1866022Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1865864..1866022 -
1622815620.7825541-CDS-P-fluviatile_contig14:1867021..18671631622815620.7825541-CDS-P-fluviatile_contig14:1867021..1867163Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1867022..1867163 -
1693562480.2879827-CDS-P-fluviatile_contig14:1867021..18671631693562480.2879827-CDS-P-fluviatile_contig14:1867021..1867163Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1867022..1867163 -
1622815620.7937756-CDS-P-fluviatile_contig14:1867350..18674461622815620.7937756-CDS-P-fluviatile_contig14:1867350..1867446Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1867351..1867446 -
1693562480.2956147-CDS-P-fluviatile_contig14:1867350..18674461693562480.2956147-CDS-P-fluviatile_contig14:1867350..1867446Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1867351..1867446 -
1622815620.8044157-CDS-P-fluviatile_contig14:1868323..18684031622815620.8044157-CDS-P-fluviatile_contig14:1868323..1868403Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1868324..1868403 -
1693562480.306239-CDS-P-fluviatile_contig14:1868323..18684031693562480.306239-CDS-P-fluviatile_contig14:1868323..1868403Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1868324..1868403 -
1622815620.816724-CDS-P-fluviatile_contig14:1869188..18693931622815620.816724-CDS-P-fluviatile_contig14:1869188..1869393Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1869189..1869393 -
1693562480.315009-CDS-P-fluviatile_contig14:1869188..18693931693562480.315009-CDS-P-fluviatile_contig14:1869188..1869393Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1869189..1869393 -
1622815620.8279424-CDS-P-fluviatile_contig14:1870061..18701721622815620.8279424-CDS-P-fluviatile_contig14:1870061..1870172Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1870062..1870172 -
1693562480.3226852-CDS-P-fluviatile_contig14:1870061..18701721693562480.3226852-CDS-P-fluviatile_contig14:1870061..1870172Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1870062..1870172 -
1622815620.84949-CDS-P-fluviatile_contig14:1870835..18711101622815620.84949-CDS-P-fluviatile_contig14:1870835..1871110Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1870836..1871110 -
1693562480.330992-CDS-P-fluviatile_contig14:1870835..18711101693562480.330992-CDS-P-fluviatile_contig14:1870835..1871110Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1870836..1871110 -
1622815620.8596013-CDS-P-fluviatile_contig14:1871597..18720261622815620.8596013-CDS-P-fluviatile_contig14:1871597..1872026Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1871598..1872026 -
1693562480.3418882-CDS-P-fluviatile_contig14:1871597..18720261693562480.3418882-CDS-P-fluviatile_contig14:1871597..1872026Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1871598..1872026 -
1622815620.8730018-CDS-P-fluviatile_contig14:1873135..18731981622815620.8730018-CDS-P-fluviatile_contig14:1873135..1873198Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1873136..1873198 -
1693562480.3521693-CDS-P-fluviatile_contig14:1873135..18731981693562480.3521693-CDS-P-fluviatile_contig14:1873135..1873198Porterinema fluviatile SAG_2381CDSP-fluviatile_contig14 1873136..1873198 -


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

Feature NameUnique NameSpeciesTypePosition
1622815620.8859057-UTR-P-fluviatile_contig14:1873198..18733371622815620.8859057-UTR-P-fluviatile_contig14:1873198..1873337Porterinema fluviatile SAG_2381UTRP-fluviatile_contig14 1873199..1873337 -
1693562480.3657274-UTR-P-fluviatile_contig14:1873198..18733371693562480.3657274-UTR-P-fluviatile_contig14:1873198..1873337Porterinema fluviatile SAG_2381UTRP-fluviatile_contig14 1873199..1873337 -


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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig14.2219.1prot_P-fluviatile_contig14.2219.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig14 1856933..1873198 -


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig14.2219.1

>prot_P-fluviatile_contig14.2219.1 ID=prot_P-fluviatile_contig14.2219.1|Name=mRNA_P-fluviatile_contig14.2219.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=1203bp
MKARLLWNPVLVGAFALTAAKAGTDEASAAAVAAETAPLMPQTKARGLSA
RDAAEEVVAAGTARAKAYVQADAKAAAEASADEDERASEARRKLKRAEKI
NDAPSTCDLAGSGAKTLLKWAEVTAEAGEERGEGKGAGAGQEASRLELVL
DEDALSRLSEIDTQIAVVSVAGPHRTGKSYFLNRFAERVLAASSGASVPE
VLPGPFLASATVGGDAGGAGGEVSSRLLPACANPVPGRPGTALLLLDTPG
LMAPYRSAVQDAQVMALVEAVSSVVLYNTRAVVGRVDVQALSIATDAAAA
VDSLLLSLPEGDGALAAEAQAEAEAEAEVEAEAEAEASGTRRSGVVNRPG
LVWLLQQSALETVDNKGDYLSGVLGVGGEGAAKGTFDSFFATMDVARLPY
PVTDVGRLQTLDTVPYSDLSDAYRESVREAVDKIAPACVPKEMVISGEKE
KAMDGPAFVAFLRRLTRVLNIPVVVGGEPDDPLPTAFLERLEVKELEAIE
AACTANWKRFADRSDSPLRAENLKAEQARAVERADRAANPRFPSAADGGG
VTASRRSVFVDGLRAITDRAFEELCVKNARYWAGYELMEFDKEVQQLFKS
RQPAPGGGAQLEGKRQVGDADGESPKPEKDYSLVLDAFNRRLERWKRELA
PDLAESHPAVHAMVAEGGELGVAGFRSLFEQKVESLLRASLDTVRKQARE
SFDEKMFELRVELDLLRHPLQVEDVRTLSARAEAAASEATLAVQTAVGVA
AAADVVAAERWVAEAAEAGAGWIRNAERALGLAHGGVESAEGGGGGNGGG
TGDGDGKRDAAVGHADAKGNENGGDNAGDDKGNANADGSDGGEDGGGGDG
GVQRLVQTILTQHYEPCVAHVTLESAGGEKALKKCRQAAASEWEKAENME
PMLKGQKAAALNAALSAKEAEHKEWLIQRTFTIFRDKLNEEASRLESPAS
EEDMDRLRSTAKTLMGPKKQEVALARKEALLSRSEVRDRLQELLNTTLEA
IVSRNNNEWRRACLVAAERYAKQASRATSLFSLAPLRFSADGPPFEPARC
LEGGFAHGKAMSRLAGARAAYQRGTWGRRFLVRLILWAGALMSLVAAALL
AAGRRLQHRTVATAFLVAAGFHFVVLCLSVSEGLRFGTRAWLLASGGVLA
YTASGAAPAIRGKRGRRPSRAIWSTAGRKVSNSSGAVMPLFVGGDSGGGG
NRR
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mRNA from alignment at P-fluviatile_contig14:1856933..1873337-

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig14.2219.1 ID=mRNA_P-fluviatile_contig14.2219.1|Name=mRNA_P-fluviatile_contig14.2219.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=16405bp|location=Sequence derived from alignment at P-fluviatile_contig14:1856933..1873337- (Porterinema fluviatile SAG_2381)
GTCCGAGTCTCCAACGAGCAGGACAGACAGCATTTCTAGCTACACCTGTG CGTGGCATGGGTTTTGAGTAGCGGACCCAACACCAGAGCCTGCTTCACCA GAGCCTGTGGTTTTCACGAGGAAACGAGCTTCCTTACCGATGAAGGCTCG CCTCCTCTGGAACCCAGTGCTCGTCGGGGCATTTGCTTTGACTGCTGCCA AGGTAAGGACAGGCGCAGTTTGAAGGTAACTCTCCGCTCCAAGTTGGGTG CGGGGAGGGGGGGCGGGTACTATCCGAGACGGCAGGATGTACAAGTTTGA TAGAGTGGACTGTAACTTAGACCCTCACCGAGACCTGAGCTTTGTTCAAA GCATCATTGCTCCAAATTGCACTCGTATGATCAAAACCCCTTATAGGCGC AAGGACGGAGACTGTAGCAACCCAGCATTATAGAAAGTCCTGTGGAACAT GGTGGTGCTAGTTTTGGAGGCGTTTCGCTGCTCATCGTACAGTGAGGTTT TGAAGGCGGGGCGGAGAGGAAACCATAACTCACTGAGCCCGGCAATGTAA TTGCTTTTTTCCTTTTCGCTCCCACGTCCCACATGAGCACGCGGCGAAAA ATCCAAAAAGGAGGCTGTTGGTAGTCCAGAGGGATATCTCGGGAGCGCAC CGGCTCTTCATATCTGAAGAAAGCAAGGGTGTTCCTGTCGCGAGGATGTA TCTAGAGAGACGGATGGCGGTCAGGGAGAGAGGAAATTCCACCCAATACT AAGCTCCTCTAGGATTGCCACATCGGCGGTACATTTGTCACCAACATGAT GTTTCCGAACCGCTGAAAACCGAAAAAGGCGAGGCCAGAGCCCCTGCCAA ATGCCTTTCGCCTCCAAAGCGAGACGCTGTGAAGCGCGACGTGCTGAGTT CCCGCCTCGGACAGAGCGATAAGGGCACAGGCTAGACGCATGGATAAGAG ATTCCCTCTCGAAGCGACACATGTTCCACCAGCGTTCGTGCGATATTGCC ATCTGTTGTCCGTCTCGATCCAATTGTACTGGTCGGATGGCCCTGTGTCC AGGGTGTTGTTGACTGTGCTTCGAGTACGTAGTGCTTTCGCAGGCCGTGA TTGCTGGAGAAAACTCGAGGCAAAGGTCAAGCCGGTTTGCTCGCTGCAAT CCTGGAGGCCTCGACACGTTTTTCTTGCACATACTGTGGTAGATCACCGC CTTGTGTTACAGAACGCGAGACGCAGGGATGGAGGCCAAGGTATGGTTCA GGAGAGAGATGGAACAGCTCGACACACCGAACTCACTCCCCCCCCGCTTC GTCTGGACCAGGCTGGTACAGATGAAGCATCGGCAGCAGCGGTGGCGGCA GAGACCGCGCCTTTAATGCCCCAAACCAAGGCTCGGGGATTGTCAGCAAG AGATGCCGCAGAGGAGGTCGTAGCAGCAGGAACAGCGAGAGCAAAGGCAT ACGTACAGGCCGATGCGAAAGCAGCAGCAGAGGCGTCAGCGGATGAGGAC GAACGAGCTTCCGAAGCACGACGAAAGTTGAAGCGGGCGGAAAAGATCAA TGACGCGCCCTCAACCTGCGACTTAGCTGGATCAGGGGCGAAAACGTTGC TCAAGTGGGCGGAGGTTACCGCGGAGGCGGGGGAAGAGAGGGGGGAAGGA AAAGGGGCTGGGGCTGGGCAGGAGGCCTCAAGATTGGAACTCGTGTTGGA TGAAGACGCTCTCAGCCGGCTTTCCGAAATCGACACCCAGGTGAGAGAAA AAGATGATCATGGTAACAATGATCACTTTGCTGAATATTTTCCCTACCCA AGAAAAAGGGTTTTTTTCGGCTGCCTTATGAAGACGCTCATCGTTTACCG GACGGTACCACGGTGTCCACCCGAGAAGTTGGCTGCCTTATCTCTTTCCT CGGTTGTTGCTGTTTCCCTTTTTCATGCGCGATGAATTGTTTGTGCTCCA GAGATCTCCTTCCCGCCCCGCCCCGCCCCGCCCCGCCTGGCTCTGCCCCA CCTGCCCGCCGCCCACTCTTTGTCCCTCCCTCTCTCGCTCCTTCGCCGCG GGAACAATGCTCCACCCTCTCTAGGACGCGTGGTCAATGGTCTAGCAACT AAGGCATGCAAAACATGAGTACGCCCCCCCTCTCTCGCTCCTTCGCCGCG TTCCTCCTTCTCTTTCCCGCCCACCCGCCCGCTTGCCCACCCCCGCTGTA CCCCCTTGCGCGTCCACTCTCGAGTAGATCGCCGTCGTTTCCGTCGCCGG TCCCCACCGCACGGGCAAGTCATACTTTCTGAACCGCTTTGCAGAGCGGG TGCTTGCGGCCTCGAGCGGCGCCAGTGTACCAGAGGTGCTGCCGGGGCCT TTCCTTGCGTCGGCGACGGTGGGCGGAGACGCCGGCGGCGCCGGTGGGGA GGTGTCCTCGCGCCTGCTGCCGGCTTGCGCGAACCCGGTGCCCGGGCGGC CGGGCACGGCGCTTCTCCTGCTGGACACGCCAGGACTGATGGCGCCCTAC AGGTGCGTGTCGAAGACGGAGAGGTTTAGAGTGGGGGGAAGGGGTGGGCG GAGAGAGAAGTGTTCATTTCCTGGAGTGGGAGAGAGTGATGGAGATATAC GAGAGAGAGAGAGAGAGAGCGAGAGATAGAACGGAGAGCGGGTAAGCGAA GGAGGGACGGAGTGGGACAAGCAAGCTGGAGCGGGATAGGCAGACAGAGG AACAGAGGGTAAACAAGGGTACAGGAGGCCAAAAGATTCGAGCGAGAGTT GGACTGACAGACGGAGACAGGCATAGAGAGAAAGGGGGACACAGAGAGAT TGAAGAGGGGGAGGGCACGGCAAGGGACATGGTACCTCACATTCATGGCT GGGGAACGGATTTCCTGCAACCTTAGGCGGTCGCCGCATTCATGGAGGGA AGAAACTCCTCGTTCGAGTAGGCCACAAGCGTCGTAGGCCTGGCTTTGGT GTAGAAAGCCCGGTGCGACGGCTACAAGCTACACACCTCGTTGGGCGCTT CTCCTTGAAGATGGATGGATGAATCGAAACCGCTGGGGCAGACGACAAAA AACATGACAAGCTATTCCAATGACAACGACGAAAAAGCAACACGATAAAC TCATGCAAAGATGACGATATGCAACAGCAAGAGGAAAACCATGCATTAAC GGCATTGAACAACAGGTCGGCCGTGCAGGACGCTCAGGTGATGGCCCTGG TGGAGGCCGTGAGCTCGGTGGTGCTGTACAACACAAGGGCGGTTGTCGGA CGGGTGGACGTCCAAGCCCTATCGATGTAAGCCAGCAGGCCGCCTTCTCC TTCTTGGCGGGAAAGTTGGGGCGAATCCTGTGACATTCAAAGTGTTGGGC TTAATCACAAAGTTTATGTAGTTGTCGCTGGGATGTTTCGACGCCCGTTT TCTCCCTCAAGTCCAGACCATACCCCTCTGGCTGTTCTCCTGCCGCATGT GTCGCGTTGCTCGACAGGTTGCGCCGCGTCGCTCGCTTGCTCGCCCTTTC AGCGCCCTCTCTCCTCCTCTGCGACAGTCCGAGGAGAGCCGCAGACGCAC TCGCGCGTAGAGCAGTCCCCTCCAACAACCTGAACCCCCCTCCCCCTTCT TTCTTGTTTTCCGCCTTGGCCGGCCATCCCTTCCCCCCACACCGTCATGC ACTCGTCCGTCTCGCTTCTTTCGGTGCTGCCATCTCGGCCTTGTAATTTT TAAGATTTGGCGGTTCCGGACACCAAATTAGAACGCCGCAGCCCAGCCGG GCTCGGCCTCCTTGCGCACGGGTTTTCCCGATCGTCTTCTCGCCGCCCCT ATCGTAGAGGCACTGCCGGTTTCTCTCATCCCACCCCCAAAACGCCAATA GTCACGTGGTGCTCCCCGCGTGGGACGCCGCCGAACTCTTAAAATTTTCG CGTTGCGGGGCATCCTTGTGAATTGCTATGCGTCGCTATTGCAGAGCCAC CGACGCGGCGGCCGCCGTAGACTCGTTGTTGCTGTCACTTCCGGAGGGGG ACGGTGCACTGGCGGCGGAAGCGCAGGCTGAAGCGGAGGCGGAAGCGGAG GTGGAGGCGGAAGCGGAGGCGGAGGCAAGCGGGACGAGACGGAGCGGCGT CGTGAACCGGCCGGGCCTTGTGTGGCTTCTCCAGCAGTCGGCCTTAGAGG TGCGTGCTTGCGTGCATGCGCGTTCGTGCGTGCGCTCGGGGCTGGACAGA TAGCCGGTGAAAAAGCCGTGGAACTTTTACCTGTTTGCCTGTCTGCTTGT TCCTGCCTTGCTTTGTTGCCGTCGTTAGACAGAGGGCACGCGGGCACTGC CTCTATCCCGCAGCAACGGCAGGCAGATCATGTGGTGCACATCATAGCGT CGTATCCTTTTTTGATCGGGTGTGTGGCAGACAGCATCTCGCTGGAATGT TCGCTAAAGCGCCCGTCGCATGAGGCTAGATTATCCCTCTCCCTGGTATC GCTGGTGGACACCGTTCCGGCGCATCACGGCGTCTGTGGCACCCATGATG GTGTACCGCGTACTGAAACCTAACCGTCTGCCCGTATGAAGGGAAACCTG TCTGACTCACCTGCCGGCTCACGACCATCTAAGGCAAGCAACCAGGGAGC AAGTGAACGAGGTTGATCTAGCAGGCCGTGTCTCGAAGTGGAACTCTTGA GATATACCAGAGCAGAGGTTCACGGCAGTTGTGATCACCTTCGCTAGCAC CGCCCCTCTGGATCTTTCCCTCCTCCACCACCTCCTCCTTCTGGACACCT CTCCTGCCTTTTGCACAAAAGTACCGACTGCATAATTATCCTCGGTGAGC AGCCGATGTGCAACGGTTGCCGCTGACTGCACACTAAAATCCTTTTTGTG CTGTATCCCTCGCACCCGTCGCTGGTTATCTTCCCCCCCCGCAATGCACG GTGGGTGGGTGTGTGGGCGGGTGGGCGAGAGCAGACGGTGGATAACAAGG GGGACTACCTCAGCGGGGTGCTGGGCGTTGGGGGGGAAGGGGCTGCAAAG GGTACCTTTGACAGGTATGCGGCACTGTTTTTGGGTTAATATTATCTTCT GGAGGTATCGCTATTGATTCCTTCACCCCGAGCCTTTTTTCTTTTTCGCG CATCGATGGAACAGTTGCATGTTGTCAGCAGCGAAGTAGAGATCGGCTGG GCAAGGGCATGATAGTTTGCAGTTAAGCGAGGGTAAGGAGCAGTGGTGTT CTGGGTCGCTTGGGGTTTGACGGGGGCGGTACGACGCCCTTGGTTTACCC GCGAGTATTGGAAGTGATCGGGGAACGGGAGAGGCAGGTTGTCCAACCCG GCCGGTGTCATGTAGGCTTCGAAGATCGGAGCGAAGAAGTCGACGCAACA GAATGTGTCACGCAGAATCAGCACGATGGCTCCGCACACGATAGTCACCC CGTCCTTGAGGTGAAGGTTCGCGACGGGATCGCCGCAGCCAGGCCCACAG CCGCATGAGGTCTATCCATCCCTTTGGGCCCGGGGGGCGGCGTGCCTCAC TCGCGGGCTGCAGAGGGAGCTCTCGCGAGATACACTGTAAAAACCTCACG TGACACTCCGCCATACCTCTGTGGGATATTTTGCCCGTGGATAATCGGTC ATGCTTCGTCGCTCATGCTTTTCGATTGCATCCAAAGGACACGGACTACT GCTGTATTTCGACATTGGACGCACCACACGGGTTGCACGGTAGCTTGATG GGGTCGCGAACTCCGCGCGTGCTCGTATGAACTTTCCGTGACCCCCCCGG GTTGACTCGACGGCTGTCCGCGCCGCCGTGCACGCGCACCTTCGGCCTTT TTTCCGTTCGTTGCCCCCCCCCTTTTTGTGCGGGTGCTGGCGGCCGACCT GTCTGGCATGGAAATTGGTATGGCATCGCATGACGGGTCAGCTTCTTCGC GACGATGGACGTGGCCCGTCTCCCGTATCCGGTGACCGACGTCGGCCGGC TGCAGACGCTCGACACGGTACCCTACTCCGACTTGAGGTGGGCGAAGCTA GGTTCAAGACTACGTCTGTCTGTCGCTGGCGTGCCACGACGCCGAAGGCA TGCTTGCTCGTTACCCAGGTGTGCGCCGTAGAGATTGGCGAGCAAGTCAG CATCGCACAAAGCCCCCGTCCCATTCCCCCTCCTCCCACCCCGTTCTTCC CTTGTGGCCGTGGATTCTTCGTAGCGATGCTTACCGGGAGAGCGTGAGAG AAGCAGTCGACAAGATCGCGCCGGCGTGCGTCCCCAAGGAAATGGTGATC AGTGGGGAGAAGGAGAAGGCGATGGACGGCCCTGCTTTCGTCGCGTTCCT ACGGAGACTGACTCGGGTGTGTGTATCATTGCACGGGGCGCGAAAAGACG GGAGAGGGTGTGGGGGGGTGTACTAATAGTCGTGCATGCCGTAGTCGTTG GACCATTGACCTCGCATCCCTACAAAGCCGGGACGGAGCACGCCGGGTTC TCACCGGACCAGGCTCTCACATCACCAAGCGCGAAGCGCCGTGAGGTATT CGGCGAGTCGCATGAAGGGTGCGCTGCATCCTGCTAAGGGTGTTCGGCAT CTTGTGCTTACTTCCTTGCATACGGATGACAGCCGCGTAAGACTTAATTT ATTTTCTGGTGCTTTCACTTCCAGAGACAGTTGTAAGCACTGTGTAACTA CCTCGAGGGTGCCTGACCATTTTAACACAACGTGGTGCGATCATCCCCCT TGCGCGGAGTGAGGGTTCTCCACCCCGCACAACATGATCTTCTCGACCAC CATTATGGTTACCGCAAAAAAAACGAGGAAAAAAGAAGACGGTAACCTGG TTGCCGAGTTCACGAAGTGAATCGGCTTGTTTTACAACGGCGTTGCCAAG CGACGAAAACCCAATCCCGATGGCAAACACCGAGGTGAGAGCCAACGGGG AGAGGGTGTGGGGGGGGGGGAGCAGGGGAGGACTACGAGGCATGTCAACC ATATGCTTGTGGGCAAGTGTTGCTCACATTGTGTCGGTGCTGTTTGTTGT CTTCCTAGTTGTTGTATCGTTCATGTTATGGTGTCACATTTCAAGTATTT TTCAGAGTTCCACGGGTGATGGCCGTGAACAAAACGGTCGTGAAAGGAGA TCCTGGTTCCCTTTGCCATTCCCCCGCTCCAATTAAGAAGTCTTGTCAAT AAAGCATGTGGACACGTGTCACACGAGCTTGTCGAGGACACACATCAAGT ATGCCCAGCTGCCGGCGTAGCTGCCATCGCAATCGCGACGTCTGCCCTCC ATCGCCCCCCACCCGCCCGCCTCCAACCTCTCCTGCGGCCGCCGCCGCCG CTGCCGCTGCCTCAGGTGCTGAACATCCCCGTGGTGGTCGGTGGCGAACC CGACGACCCTCTCCCGACAGCCTTCTTGGAGAGGCTCGAGGTCAAGGAGC TGGAGGCCATCGAGGCCGCATGCACGGCCAATTGGAAGCGCTTCGCGGAC CGCTCCGACTCGCCTCTGAGAGCGGTAAGCGCGGGCTATGAAACATGACA AGCGCCCCTCCCGAGAGAGCCGAGCGGCGGCGGGCGGAAAGAGAGTTTTC CGGTTATGGGGCGATCGGAGCTGATTGTCGGTTGTCTCTCGGCTACGGTC GCGATGCAACCACCTCTACGGCGCTGCTGCTGACGGCAGCGTCATGTTGT TTGCTGCGCGCGGTGCCGCAGCCTGATCGGTGTAGAAGCTTGTCATTTGT GTTGTCAATGTGCACTTAGCATCAAGTCAAGCGGGCAAAGCCGGGTGGAC GGAAGGTGGGGGGGAAGTTATCTCTTTTGGCTCCGCCTCCCCGTTGGTGC TCTGACTGGTGGGTTGACCTACATGCTGCCTAGCTAACGCGCTTCTGCTG ATGTGTATATCGCGATCGTCCCGTCTGTTCGGTCGATCTGTCGAAGCGGT CAATCAACCGGTAGTTTCGGTGGTGCTTGGAGACACGGCGGGTGCCCTGT GCTACGCTGCTCGACGCCTGGTTCGTTCACATTTTCACTTGGTTTCGTGT TTGGTTCAAATACTAATCTGCCCTGCGCTGCCCTGCGCATAACGGCAGGA GAACTTGAAGGCCGAGCAGGCGAGAGCCGTGGAGCGCGCGGACCGGGCGG CGAACCCGCGGTTTCCTTCTGCCGCGGATGGGGGGGGGGTGACAGCCTCC CGGCGCAGTGTCTTCGTGGACGGGCTGCGGGCCATCACTGATCGCGCCTT CGAGGTGAATGAACGAACCTGCGCTAGCCATTGCCCTGGTAGTTTCGTGT TCGGAGGAGACGCGCCTGCTCTGAAGGTTCCTGCTTCTTCTTCGCGTGTG CTTTTTTGGTTAGAGGTTGCTGTTTCTCGTTTCGTTTCATTCCCTTTTGT GTTCGCGTTCTTGCGTATTTTTCTCTTTCGTTTTGTGCAGCTCTCGGCCT TGCAAGAGCAAACTTCAGACCAGAGCTCGAAGGCTAAAATTGTGTTCACG TGAAAGACCTGTGGAAACGATTGGCAGAACAGTGGGAGGCTAGTGCGTTT TTCGTCTTGAGAGAGCTGTAAACATGCGCTCTCCCTCACCGGGTTTATGG TCTAGCTGGGCTTCCGCGTGAAAACTTCGAAGCCCCTCCCGAAAAGCGGA CATCAAATGAAAGTTGGCTCTTGTTTTTTTAAACATGCGCATGCTCCTCC TCCCTCGCGCTTGTCCCTTTTGGTGTCTCGCTTACCTTTCCCCTTTTTGT CGTTTTTTTTTTTCCCGTTGACCTCAGGAGCTCTGCGTGAAGAACGCGCG ATATTGGGCGGGGTACGAGTTGATGGAGTTTGACAAGGTACGCTACCTGC TTTTGTAATCGGTTGAAATTTCGTTCTCGCAATCGCAGCTTTTTGTGCTG TTGTTGTTGTTGTTGCTGTTGCTATTGCTGTTGCTGTTGCTGTTGCTATT GCTGTTGCTGTTGCTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTCGT CGTTGTGGTTGTGGCTGTGGTTGTTGCTGTTTTTGTTGTGGTTGTTGTCG TCGTTGTGCCTGATGTTGCTGCCCCTTTCCTTCGTGGTTGGTTGCTTCAG GAGGTGCAACAGCTCTTTAAGTCTAGGCAACCCGCGCCGGGCGGAGGGGC GCAGCTCGAGGGGAAACGCCAAGTTGGAGACGCAGATGGGGAGAGCCCCA AGCCGGAGAAGGACTATTCGTTAGTCCTAGACGCGTTCAACCGCCGACTA GAGAGGTGTGTGACTTTTGTGTGGACGGGGTGGACGGGGTGGTACTCTTT TGTTGCTTGCCCTTGTCGTTTCACCATTGACCACGCATCCCTTTCGAAGA CGGAGCACCGTTGCTCCTCCTTGAGAGGCACCTCCAGCATTTGCGCGCTC GTGACGTTTTTGCTACACTTAATAAAGGATCTTGCTACTCGAGGGCTGGC CACCATCGATCCCCCGTGATAGCGACTGTTTTTTCGCTTTCATCGAGTTG ACCAATCACTTCCATGTTATACCCGATTCGCCTCAAGTCTCCTTCCAGGT CCTCACTTTCCTCCCTATACAGTTCACATACTGCAACTACGTGTGTTCTG CTTTCCTCCCGCTCTCCGCATGGGCATGCCTATCTATCCTACTCTTCCGT TCTAGTGCTGGTGTATCTTTCCCTCGTTTTGGGAAGTCTGGTCTCCGACT CAAAATCGCCATCTCAGCTTTTTCGCGTTTTGCGTCGTGCCGTTCCAAAT ACATTTTCATCCCTTGCTCCTCCTTCAGTTCCCTGTACATATCTAAGTGG TCCTCACTATTCACCTACTTTGTAAGCGCTAGTTTCCTCCTCCTCTCTTG TCATGTCGCATACTTCGCTGTTGTACCCCGCAAGCTGGTCTTTAGCCGGT GTTTCGTTGGGGTCTCCCGCAATCTCCTTCCTGATCTTCTCTGCTTCTTT TTCCCATCTCATCCCCGTTCTCCCTCTCCTCACCTTCTTCCGTGCCCCGT TGTTTAAGTGGTTGGTATTCTATCCTCCAACGCTCTGCTGGCCAAGTACT GCCATTTCGACTTCCTTGTATCTCTTTTTGGTTTCAAGCAGTCCATGCCT AGTTCTGCCGGTACAACGGTTTGCTTGCCGTGCTTGAGCACCCCAACATA CCTGTGTTGTTTTAAGCGCTTGCCCCACATCTTGTTCCCTTCCCATGCTT CTCGTGCATACTCTAGCTGGGGTACAACTACGTTCAGTAGAACAAACCGT TTAATCCTCGTGTCCAGATGTTGGTCTGTGAGAATCGCATCCATTTCTCC TTCTTGTGCCTTTCCCTTCCCGAAGACTTTTGGGATGAGCGCATCACAAC AGCAATCTTCGATATCTCTACTGTAAGGTGCGAAAATTGGTCTACAACCG GAAGCTCCTCGTCGCCCATTTCCATTTGATCTGTTCTAGGTTTCCGTGTC TCCGATGCAAATCAATATTGCACTTCTTGGGGTGTTCACGGTGAACCTCA AATTTCTCGAGTTTCCCAAGGCTTCGTCGATTTGTTGTTAAAGCCCTTCA GGTGTGTTCGACACCCCGTCCAAATCATCCGCAATATCAACCCTTTCACC TGCTTCCCCCCTACATCGACTCTTTGTTGAATCCCTTCTACAGCTACTAT CGAGTCATTGACGAATGATTCGAACAAACTCGGTGACAGCGTGCATCCCA GTGCAACTCCCTGTGAAATATCGACATGCTCCGATATCTCTTCTGTGAAC TAACTTGCCTAGTGTGTAACACGTGGTCTTCACATCTCCGTGTGGACGGG GGTTACCTTAAGCACGGGTCATGGGGGGCGAGGCGCTGGTGGGAAAGGCG TGCGGCACAAGGTTCACCCTCGATAGGAAATGTCAGCACCATGTTGGATT TCAAGTAGCTGTTGAGCTAGATTGCTCGATTCCGTTTGTGGCTGTCATAT GTCTTGTTTTTTTGTAGTATGCGTCATGTGTTGTGTGTCTTGCAGTGTGC GGCCCTCCTTTCCGTTTCTCTCCCTCTCCTTTGTTTCCTGATGATGGTGC ACCTTCCCATCCGCTCCCCATCCCGCTTGTTTTCGTTCCTCGCCGAAAAG ATGGAAGCGAGAACTAGCTCCCGACCTGGCCGAGTCACACCCAGCCGTAC ACGCCATGGTGGCCGAGGGCGGGGAGCTAGGAGTCGCGGGCTTTCGTTCT CTCTTCGAGCAGAAGGTTGAGTCCCTTCTGCGCGCTAGCCTCGACACGGT CAGAAAACAGGCGAGTACCCCCCTGCGGTAGAGCGCGTGATGGTTTAACC CCCCTTCCGAGAAATCACCCCCCGATGGCGGGAACAACGCTCCGTTCTCT CGAGGACGCGTGGTCAATGGTTTAACGACTAAGGCATGCAAAACATGAGT ACGCCCCCCCCCCGATGTACCAAAAACTCAGGGCGATACGTTTTTCAATG GCTCGAATTGCACCTGAGATGCGGAAAGAAGACCAAGCAGTCGGGAAAGC GCAAGAGGTCATCCCCGAGTGACAATTTTGCAAGAATTCCCCCCGGGGGA TACCCGATATACACGTCAAATGGCTACCACCAGCTCTTACTGTCGTGCGA TCCCGGCAGTGGGATCCGCACTTGGCGCTTGTTTGCATTCCTAGCTTTTC TTCACCCCTTCATTTCTTTCGTTCCTTTTGTAGATGCAGGAAAAACACAC ATTTTTAAATCTTTCACGCGTTGGTTGCAGCGGGACATCGACAAGTGTGG GGAGGGAAGGGGGGGAGGGAGGGAGGGGAGGGAGGAGGGACGGGGAGGGG AGGGAGAGAGAGAGTGGCACTTGACGTGCAGCGGCGCGTGGCTGCTACAT TCCGAAGTCCGACGGGCATCCCCCGAAGGAATCGCTGGAAGTGAATCACT CTCCCTGAGCATGCAAATTGCACTGAATATATACTGTTTTCACACAACGG CAACAATCTTCCACCCTCGTCTCACCCCTCTTTTTCTTCTTTCAAAGCTT CTTTTTGCTTTACTACTTCTCTTGGTCTCCGAGCGAAATCCTGACAACAT CAAACCAAGCTGAAAAACACACAAATGAACAGGCGCGCGAGTCCTTCGAC GAGAAGATGTTTGAACTAAGAGTCGAGCTGGATCTCCTGCGCCACCCCCT CCAAGTGGAAGACGTGCGGACCCTCTCGGCCCGTGCGGAGGCCGCTGCCT CGGAGGCTACCCTCGCAGTACAGACCGCGGTGGGCGTCGCCGCGGCGGCG GACGTCGTGGCGGCGGAGCGCTGGGTGGCGGAGGCGGCGGAAGCCGGCGC CGGGTGGATACGGAACGCCGAGCGAGCGCTTGGTCTTGCTCATGGCGGCG TTGAGAGCGCGGAGGGTGGTGGCGGCGGGAACGGCGGTGGCACCGGAGAC GGGGACGGCAAGAGAGATGCGGCGGTGGGACACGCGGACGCGAAAGGCAA CGAGAACGGCGGCGATAACGCAGGCGACGATAAGGGCAACGCCAACGCCG ACGGCAGCGATGGCGGCGAGGACGGCGGCGGCGGGGATGGCGGCGTCCAG CGGCTGGTGCAGACCATCCTGACCCAACACTACGAGCCTTGCGTCGCGCA CGTGACCCTCGAGAGCGCCGGCGGGGAGAAGGCTCTGAAGAAGTGCCGCC AGGCCGCGGCCAGCGAGTGGGAGAAGGCGGAGAACATGGAGCCGATGCTG AAGGGGCAGAAGGCGGCGGCCCTGAACGCCGCGTTGAGCGCGAAGGAGGC AGAGCACAAAGAATGGTGAGGAAGGCAGGCAGGTAGGCAGGCAGACAGAG GGAGGAGACGGTACTCGTGCTTTCAAGAACGGAAAATATGTGTCAAGGCC AAGCTTGCGGGACGGATTTTTATTTTTGCTCTACGCGAGCCCCGAGCTTG CTTGATTGTGGTTTGAAGTGAAAGGACCAGCACACGGGGGCCCGGGCGCT GACCGCTGGCGCGTGATCCCATTTAATGAAACCAAGAGAAACATTTCTAG TGTGGCACGGGAGAGAGACGGCCTGAGAAAGCCGAGGCAAGGGAGGGAGA TGAAGAGGCGCCAGGGTGGGGGTCTGGAGAGGGGAATACGCCAAGAGGGG GAAGCCGTGGCTCTCATAGACATCGACGGTGGGTGTAGGAAGGGGGCAAA TGGAGAAGCCTGTGACCGACGCTGGATGCTGTGTTTGCCGATCGTTGGTT AGGGTCTGGAAAAAATGGAGAAACAAGAACAGACACGGACTGCCGCGAGA AGGACCGAGACTCGCGGACCAACATTTTACTTTTTTGCGGGGGTGCCGTG GGGGGCTAGGGTTGAATGGTTCCCTGTCGTCGATGGCAAACAACCATCGC GGTTTTCACGTTTTCTCGTGAAAAATCGGGGTGCACTGCTTTGTGGTCAC GTTTTTTGTTGCTCTCTCTCGTCCTCGGCGCCTCGTCCTACAGTATCCTT ACACGCCACCAAACCCGCGCGTGATGTTTTACATCTTGTTGCGACAACAA ATGCGCAGGCTAATCCAAAGAACCTTCACGATCTTTCGAGACAAGCTCAA CGAGGAAGCATCACGGCTCGAGTCGCCAGCCTCGGAGGAAGACATGGACC GCCTGCGATCAACCGCGAAAACGCTCATGGTGGGTAGTGACAACTGTACC AGCAGCAGCAGCAGCAGCAGCAGCAGCAGCTGTATTTTCAGGGAACTTGG ACACGCCGGCCGGGGCATGCTTGAACGTGCGGATTGTTGTTCGCAGAGCG GAGCACCACGATTGGGCACAACCAACTCGAGACCCCGCAATGGAATAGCT CGGTTGTCCGGTTTTTGCGGCGGGAGTATGCTGGCATGCTCACCCAAGCG CACCGCGACGAGTTGCGTTGCTGATATTTATGTCAAAGTCGAATATGTGC GTGTTGGCCAATTCTGGGCATGCCCATATTTTCTGTTCATTTGTTTCTTC GGCTGGTTGTCCCTCGACAATTCCAGCAAGCGGGGGATCAGCTCAATATT TCGGCGGGGCTGCTGACTATTGAACTGACGTGACCCTTTTGACTGCCTTT CAGGACGAGCTACTCCTGTGGCCGGGAAGATGTTGAACTTACTTATGATG TTGTGCTCACACTCACAGGCTGGGCGGTTCAAGCATCAGGGTCGAGTCAT GCGGAGAGAGGCCCCTTGGGGGCGTGAAGTGGCGAACATGCTGAGGAATC GAGAGGGAGGAAGTGCTGTGTGATCGGTACCACTGCCAATGCCAAGTGCA TATGGTCCGCCCATCCCCATCCCTCTCTTTCCCTCCCTCTCGCGCGCACC CGAACGAATCAACCCTTCCGCCACCGCCCCGCCGCCATCGCCGGCGCCGG CGCCACCGACCGTGAACAAGCGCAGGGCCCGAAGAAGCAGGAGGTCGCGC TCGCTAGGAAGGAGGCGTTGCTCTCAAGGAGTGAGGTGCGCGACCGACTG CAGGAGCTGCTGAACACGACTCTCGAGGCGATCGTTTCCCGCAACAACAA TGAGTGGAGGCGGGCGTGCCTCGTCGCCGCGGAACGATACGCGAAGCAGG TGAGGACGGGGCGGAGGGGGAGTGGGGAGGAGGAGGAGGAGGAGGAGGAG GAGGAGGAGGCTTGGGAAGAGGTGTGTGAGAGAGGGAAATAAACGGGAGA CGAGGGACCGGAAGAGAGGGAGGAGTTGAGAGGGGGATAGCGGGAGAGCG ATCGGGAGAGGGAGAGGGAGAGGGAGAGGGAGAGTGAGGGAGAGGAAGCG AGGAGAAGAAGTGATAGAGAGAGTGGCGAGCGAAGCGTTCATCCGGCAGC GCCGACCCGTGTTTGCTCGTGTAGTAAGCACCGGATAGGTCGATTGATGA GATCGAGGGATGGGTCACGCCTGGGTTCACGAAAGCGCTGAGTAAGAGCT CGAGTCATTTGTAAGATGAATACGGCGTGACATCGTTTTTCGGAGCCAGA CACGGATGCTGAGAAAAGTGGCGTAGGGTGTGTTTCCGAAGAAGTCTCGC GGCTCTGCTGTCCACTTTTGGGAGTGATTATCGGTTGTTGTCGTCGTAGT TGCTGTTCGTGCTGCTGTTGATGCTCGTTCTATCTCTGCGCGACTCCACC AACGGCGGTGCACCGACGGATTGCGTGTCCGAATCGATCACTCTTTGCCC GCCCCCGCCGACGCCAAATCACTGGCTTTGTGCCCCCCAATCCCCCCCTC ACGTTTTATCCTCATGCGCAGACCACAACACCGCCTCGGGCCCCTCCCTC GTCCCCTCTGCCTGCCTTACTCACTCTTGTTGCGCACGTTTGCATACACA GGCGTCGAGAGCGACCTCTCTCTTCTCGCTGGCCCCTCTCCGGTTCTCGG CTGACGGCCCCCCCTTTGAGCCGGCGAGGTGCCTCGAGGGCGGCTTCGCC CACGGCAAGGCCATGAGCAGGCTCGCCGGCGCGCGGGCGGCCTACCAGAG GGGAACGTGGGGGAGGCGCTTTCTGGTGAGGCTCATCCTTTGGGCGGGCG CCTTGATGTCTCTCGTAGCGGCGGCGCTTCTGGCAGCCGGGAGGCGGCTG CAGCACAGGTTTGCAAAACAGCGTGTGTGGGGGGGGTCATGGGATCTCAT GTGAGTTGCGCGTCCAGCCTAATTTGGTTTGTTGTCATCCGGCTTTAGCA TGAAATTCATTGTTTGTTTCCATTTGTCGGGGCGAGGCCAGACGACGAGC AGCGGGAAGGAAGCTTGGGAGTTGGCGCGGGGCACGCGCACACATAATGG TTAAAGAAGGTTGCGCCGGCAGTTGCAGACAATGTAGATCGAGGCCGCAC AGGGAGAGAACCAGTACAGCGGTATTGATACTTTGTATATGTGCTGCGAG TTTCAGGCGATTTCTCATCGCTTGTCTGAGTTGCGAATCTTTTGTGGAGC GTGTGTTCCAATATATTTGTCCAGCGTGCACATGCTCGACGACCCCCCCA ATCGCAAGACTAGCCTCGTAGAACCACGCAATATGTTCTGAGCCGATCCA GTCTTCCTCTAAGTGTGCAAATCCTGACCACCTACATTCGCACATACACC CATCGCAAAATCCAGCCGACCCCTGCAACCACACTCGCCCCCTATGCCGA AGCCCCCCCCTTCCCAGTCATCCCAACATGCACCCCCAAATTTGAAGCAA TAGTATCTTCTCCCAACTACAGGACGGTGGCCACCGCTTTCCTCGTCGCG GCGGGGTTCCACTTTGTGGTGCTCTGCCTCTCCGTCTCCGAGGGACTCCG CTTCGGCACGCGCGCCTGGCTGCTGGCGAGTGGGGGAGTCCTGGCCTACA CGGCCTCCGGCGCCGCCCCCGCCATCAGGGGCAAGCGGGGGAGAAGGCCC AGCCGCGCCATCTGGAGCACGGCCGGGAGGAAAGTGTCGAACTCGAGCGG GGCGGTTATGCCTCTCTTCGTGGGCGGCGACAGCGGCGGCGGGGGGAACA GGCGA
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Coding sequence (CDS) from alignment at P-fluviatile_contig14:1856933..1873337-

>mRNA_P-fluviatile_contig14.2219.1 ID=mRNA_P-fluviatile_contig14.2219.1|Name=mRNA_P-fluviatile_contig14.2219.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=7218bp|location=Sequence derived from alignment at P-fluviatile_contig14:1856933..1873337- (Porterinema fluviatile SAG_2381)
ATGAAGGCTCGCCTCCTCTGGAACCCAGTGCTCGTCGGGGCATTTGCTTT
GACTGCTGCCAAGATGAAGGCTCGCCTCCTCTGGAACCCAGTGCTCGTCG
GGGCATTTGCTTTGACTGCTGCCAAGGCTGGTACAGATGAAGCATCGGCA
GCAGCGGTGGCGGCAGAGACCGCGCCTTTAATGCCCCAAACCAAGGCTCG
GGGATTGTCAGCAAGAGATGCCGCAGAGGAGGTCGTAGCAGCAGGAACAG
CGAGAGCAAAGGCATACGTACAGGCCGATGCGAAAGCAGCAGCAGAGGCG
TCAGCGGATGAGGACGAACGAGCTTCCGAAGCACGACGAAAGTTGAAGCG
GGCGGAAAAGATCAATGACGCGCCCTCAACCTGCGACTTAGCTGGATCAG
GGGCGAAAACGTTGCTCAAGTGGGCGGAGGTTACCGCGGAGGCGGGGGAA
GAGAGGGGGGAAGGAAAAGGGGCTGGGGCTGGGCAGGAGGCCTCAAGATT
GGAACTCGTGTTGGATGAAGACGCTCTCAGCCGGCTTTCCGAAATCGACA
CCCAGGCTGGTACAGATGAAGCATCGGCAGCAGCGGTGGCGGCAGAGACC
GCGCCTTTAATGCCCCAAACCAAGGCTCGGGGATTGTCAGCAAGAGATGC
CGCAGAGGAGGTCGTAGCAGCAGGAACAGCGAGAGCAAAGGCATACGTAC
AGGCCGATGCGAAAGCAGCAGCAGAGGCGTCAGCGGATGAGGACGAACGA
GCTTCCGAAGCACGACGAAAGTTGAAGCGGGCGGAAAAGATCAATGACGC
GCCCTCAACCTGCGACTTAGCTGGATCAGGGGCGAAAACGTTGCTCAAGT
GGGCGGAGGTTACCGCGGAGGCGGGGGAAGAGAGGGGGGAAGGAAAAGGG
GCTGGGGCTGGGCAGGAGGCCTCAAGATTGGAACTCGTGTTGGATGAAGA
CGCTCTCAGCCGGCTTTCCGAAATCGACACCCAGATCGCCGTCGTTTCCG
TCGCCGGTCCCCACCGCACGGGCAAGTCATACTTTCTGAACCGCTTTGCA
GAGCGGGTGCTTGCGGCCTCGAGCGGCGCCAGTGTACCAGAGGTGCTGCC
GGGGCCTTTCCTTGCGTCGGCGACGGTGGGCGGAGACGCCGGCGGCGCCG
GTGGGGAGGTGTCCTCGCGCCTGCTGCCGGCTTGCGCGAACCCGGTGCCC
GGGCGGCCGGGCACGGCGCTTCTCCTGCTGGACACGCCAGGACTGATGGC
GCCCTACAGATCGCCGTCGTTTCCGTCGCCGGTCCCCACCGCACGGGCAA
GTCATACTTTCTGAACCGCTTTGCAGAGCGGGTGCTTGCGGCCTCGAGCG
GCGCCAGTGTACCAGAGGTGCTGCCGGGGCCTTTCCTTGCGTCGGCGACG
GTGGGCGGAGACGCCGGCGGCGCCGGTGGGGAGGTGTCCTCGCGCCTGCT
GCCGGCTTGCGCGAACCCGGTGCCCGGGCGGCCGGGCACGGCGCTTCTCC
TGCTGGACACGCCAGGACTGATGGCGCCCTACAGGTCGGCCGTGCAGGAC
GCTCAGGTGATGGCCCTGGTGGAGGCCGTGAGCTCGGTGGTGCTGTACAA
CACAAGGGCGGTTGTCGGACGGGTGGACGTCCAAGCCCTATCGATGTCGG
CCGTGCAGGACGCTCAGGTGATGGCCCTGGTGGAGGCCGTGAGCTCGGTG
GTGCTGTACAACACAAGGGCGGTTGTCGGACGGGTGGACGTCCAAGCCCT
ATCGATAGCCACCGACGCGGCGGCCGCCGTAGACTCGTTGTTGCTGTCAC
TTCCGGAGGGGGACGGTGCACTGGCGGCGGAAGCGCAGGCTGAAGCGGAG
GCGGAAGCGGAGGTGGAGGCGGAAGCGGAGGCGGAGGCAAGCGGGACGAG
ACGGAGCGGCGTCGTGAACCGGCCGGGCCTTGTGTGGCTTCTCCAGCAGT
CGGCCTTAGAGAGCCACCGACGCGGCGGCCGCCGTAGACTCGTTGTTGCT
GTCACTTCCGGAGGGGGACGGTGCACTGGCGGCGGAAGCGCAGGCTGAAG
CGGAGGCGGAAGCGGAGGTGGAGGCGGAAGCGGAGGCGGAGGCAAGCGGG
ACGAGACGGAGCGGCGTCGTGAACCGGCCGGGCCTTGTGTGGCTTCTCCA
GCAGTCGGCCTTAGAGACGGTGGATAACAAGGGGGACTACCTCAGCGGGG
TGCTGGGCGTTGGGGGGGAAGGGGCTGCAAAGGGTACCTTTGACAGACGG
TGGATAACAAGGGGGACTACCTCAGCGGGGTGCTGGGCGTTGGGGGGGAA
GGGGCTGCAAAGGGTACCTTTGACAGCTTCTTCGCGACGATGGACGTGGC
CCGTCTCCCGTATCCGGTGACCGACGTCGGCCGGCTGCAGACGCTCGACA
CGGTACCCTACTCCGACTTGAGCTTCTTCGCGACGATGGACGTGGCCCGT
CTCCCGTATCCGGTGACCGACGTCGGCCGGCTGCAGACGCTCGACACGGT
ACCCTACTCCGACTTGAGCGATGCTTACCGGGAGAGCGTGAGAGAAGCAG
TCGACAAGATCGCGCCGGCGTGCGTCCCCAAGGAAATGGTGATCAGTGGG
GAGAAGGAGAAGGCGATGGACGGCCCTGCTTTCGTCGCGTTCCTACGGAG
ACTGACTCGGCGATGCTTACCGGGAGAGCGTGAGAGAAGCAGTCGACAAG
ATCGCGCCGGCGTGCGTCCCCAAGGAAATGGTGATCAGTGGGGAGAAGGA
GAAGGCGATGGACGGCCCTGCTTTCGTCGCGTTCCTACGGAGACTGACTC
GGGTGCTGAACATCCCCGTGGTGGTCGGTGGCGAACCCGACGACCCTCTC
CCGACAGCCTTCTTGGAGAGGCTCGAGGTCAAGGAGCTGGAGGCCATCGA
GGCCGCATGCACGGCCAATTGGAAGCGCTTCGCGGACCGCTCCGACTCGC
CTCTGAGAGCGGTGCTGAACATCCCCGTGGTGGTCGGTGGCGAACCCGAC
GACCCTCTCCCGACAGCCTTCTTGGAGAGGCTCGAGGTCAAGGAGCTGGA
GGCCATCGAGGCCGCATGCACGGCCAATTGGAAGCGCTTCGCGGACCGCT
CCGACTCGCCTCTGAGAGCGGAGAACTTGAAGGCCGAGCAGGCGAGAGCC
GTGGAGCGCGCGGACCGGGCGGCGAACCCGCGGTTTCCTTCTGCCGCGGA
TGGGGGGGGGGTGACAGCCTCCCGGCGCAGTGTCTTCGTGGACGGGCTGC
GGGCCATCACTGATCGCGCCTTCGAGGAGAACTTGAAGGCCGAGCAGGCG
AGAGCCGTGGAGCGCGCGGACCGGGCGGCGAACCCGCGGTTTCCTTCTGC
CGCGGATGGGGGGGGGGTGACAGCCTCCCGGCGCAGTGTCTTCGTGGACG
GGCTGCGGGCCATCACTGATCGCGCCTTCGAGGAGCTCTGCGTGAAGAAC
GCGCGATATTGGGCGGGGTACGAGTTGATGGAGTTTGACAAGGAGCTCTG
CGTGAAGAACGCGCGATATTGGGCGGGGTACGAGTTGATGGAGTTTGACA
AGGAGGTGCAACAGCTCTTTAAGTCTAGGCAACCCGCGCCGGGCGGAGGG
GCGCAGCTCGAGGGGAAACGCCAAGTTGGAGACGCAGATGGGGAGAGCCC
CAAGCCGGAGAAGGACTATTCGTTAGTCCTAGACGCGTTCAACCGCCGAC
TAGAGAGGAGGTGCAACAGCTCTTTAAGTCTAGGCAACCCGCGCCGGGCG
GAGGGGCGCAGCTCGAGGGGAAACGCCAAGTTGGAGACGCAGATGGGGAG
AGCCCCAAGCCGGAGAAGGACTATTCGTTAGTCCTAGACGCGTTCAACCG
CCGACTAGAGAGATGGAAGCGAGAACTAGCTCCCGACCTGGCCGAGTCAC
ACCCAGCCGTACACGCCATGGTGGCCGAGGGCGGGGAGCTAGGAGTCGCG
GGCTTTCGTTCTCTCTTCGAGCAGAAGGTTGAGTCCCTTCTGCGCGCTAG
CCTCGACACGGTCAGAAAACAGATGGAAGCGAGAACTAGCTCCCGACCTG
GCCGAGTCACACCCAGCCGTACACGCCATGGTGGCCGAGGGCGGGGAGCT
AGGAGTCGCGGGCTTTCGTTCTCTCTTCGAGCAGAAGGTTGAGTCCCTTC
TGCGCGCTAGCCTCGACACGGTCAGAAAACAGGCGCGCGAGTCCTTCGAC
GAGAAGATGTTTGAACTAAGAGTCGAGCTGGATCTCCTGCGCCACCCCCT
CCAAGTGGAAGACGTGCGGACCCTCTCGGCCCGTGCGGAGGCCGCTGCCT
CGGAGGCTACCCTCGCAGTACAGACCGCGGTGGGCGTCGCCGCGGCGGCG
GACGTCGTGGCGGCGGAGCGCTGGGTGGCGGAGGCGGCGGAAGCCGGCGC
CGGGTGGATACGGAACGCCGAGCGAGCGCTTGGTCTTGCTCATGGCGGCG
TTGAGAGCGCGGAGGGTGGTGGCGGCGGGAACGGCGGTGGCACCGGAGAC
GGGGACGGCAAGAGAGATGCGGCGGTGGGACACGCGGACGCGAAAGGCAA
CGAGAACGGCGGCGATAACGCAGGCGACGATAAGGGCAACGCCAACGCCG
ACGGCAGCGATGGCGGCGAGGACGGCGGCGGCGGGGATGGCGGCGTCCAG
CGGCTGGTGCAGACCATCCTGACCCAACACTACGAGCCTTGCGTCGCGCA
CGTGACCCTCGAGAGCGCCGGCGGGGAGAAGGCTCTGAAGAAGTGCCGCC
AGGCCGCGGCCAGCGAGTGGGAGAAGGCGGAGAACATGGAGCCGATGCTG
AAGGGGCAGAAGGCGGCGGCCCTGAACGCCGCGTTGAGCGCGAAGGAGGC
AGAGCACAAAGAATGGCGCGCGAGTCCTTCGACGAGAAGATGTTTGAACT
AAGAGTCGAGCTGGATCTCCTGCGCCACCCCCTCCAAGTGGAAGACGTGC
GGACCCTCTCGGCCCGTGCGGAGGCCGCTGCCTCGGAGGCTACCCTCGCA
GTACAGACCGCGGTGGGCGTCGCCGCGGCGGCGGACGTCGTGGCGGCGGA
GCGCTGGGTGGCGGAGGCGGCGGAAGCCGGCGCCGGGTGGATACGGAACG
CCGAGCGAGCGCTTGGTCTTGCTCATGGCGGCGTTGAGAGCGCGGAGGGT
GGTGGCGGCGGGAACGGCGGTGGCACCGGAGACGGGGACGGCAAGAGAGA
TGCGGCGGTGGGACACGCGGACGCGAAAGGCAACGAGAACGGCGGCGATA
ACGCAGGCGACGATAAGGGCAACGCCAACGCCGACGGCAGCGATGGCGGC
GAGGACGGCGGCGGCGGGGATGGCGGCGTCCAGCGGCTGGTGCAGACCAT
CCTGACCCAACACTACGAGCCTTGCGTCGCGCACGTGACCCTCGAGAGCG
CCGGCGGGGAGAAGGCTCTGAAGAAGTGCCGCCAGGCCGCGGCCAGCGAG
TGGGAGAAGGCGGAGAACATGGAGCCGATGCTGAAGGGGCAGAAGGCGGC
GGCCCTGAACGCCGCGTTGAGCGCGAAGGAGGCAGAGCACAAAGAATGGC
TAATCCAAAGAACCTTCACGATCTTTCGAGACAAGCTCAACGAGGAAGCA
TCACGGCTCGAGTCGCCAGCCTCGGAGGAAGACATGGACCGCCTGCGATC
AACCGCGAAAACGCTCATGGCTAATCCAAAGAACCTTCACGATCTTTCGA
GACAAGCTCAACGAGGAAGCATCACGGCTCGAGTCGCCAGCCTCGGAGGA
AGACATGGACCGCCTGCGATCAACCGCGAAAACGCTCATGGGCCCGAAGA
AGCAGGAGGTCGCGCTCGCTAGGAAGGAGGCGTTGCTCTCAAGGAGTGAG
GTGCGCGACCGACTGCAGGAGCTGCTGAACACGACTCTCGAGGCGATCGT
TTCCCGCAACAACAATGAGTGGAGGCGGGCGTGCCTCGTCGCCGCGGAAC
GATACGCGAAGCAGGGCCCGAAGAAGCAGGAGGTCGCGCTCGCTAGGAAG
GAGGCGTTGCTCTCAAGGAGTGAGGTGCGCGACCGACTGCAGGAGCTGCT
GAACACGACTCTCGAGGCGATCGTTTCCCGCAACAACAATGAGTGGAGGC
GGGCGTGCCTCGTCGCCGCGGAACGATACGCGAAGCAGGCGTCGAGAGCG
ACCTCTCTCTTCTCGCTGGCCCCTCTCCGGTTCTCGGCTGACGGCCCCCC
CTTTGAGCCGGCGAGGTGCCTCGAGGGCGGCTTCGCCCACGGCAAGGCCA
TGAGCAGGCTCGCCGGCGCGCGGGCGGCCTACCAGAGGGGAACGTGGGGG
AGGCGCTTTCTGGTGAGGCTCATCCTTTGGGCGGGCGCCTTGATGTCTCT
CGTAGCGGCGGCGCTTCTGGCAGCCGGGAGGCGGCTGCAGCACAGGCGTC
GAGAGCGACCTCTCTCTTCTCGCTGGCCCCTCTCCGGTTCTCGGCTGACG
GCCCCCCCTTTGAGCCGGCGAGGTGCCTCGAGGGCGGCTTCGCCCACGGC
AAGGCCATGAGCAGGCTCGCCGGCGCGCGGGCGGCCTACCAGAGGGGAAC
GTGGGGGAGGCGCTTTCTGGTGAGGCTCATCCTTTGGGCGGGCGCCTTGA
TGTCTCTCGTAGCGGCGGCGCTTCTGGCAGCCGGGAGGCGGCTGCAGCAC
AGGACGGTGGCCACCGCTTTCCTCGTCGCGGCGGGGTTCCACTTTGTGGT
GCTCTGCCTCTCCGTCTCCGAGGGACTCCGCTTCGGCACGCGCGCCTGGC
TGCTGGCGAGTGGGGGAGTCCTGGCCTACACGGCCTCCGGCGCCGCCCCC
GCCATCAGGGGCAAGCGGGGGAGAAGGCCCAGCCGCGCCATCTGGAGCAC
GGCCGGGAGGAAAGTGTCGAACTCGAGCGGGGCGGTTATGCCTCTCTTCG
TGGGCGGCGACAGCGGCGGCGGGGGGAACAGGCGAGACGGTGGCCACCGC
TTTCCTCGTCGCGGCGGGGTTCCACTTTGTGGTGCTCTGCCTCTCCGTCT
CCGAGGGACTCCGCTTCGGCACGCGCGCCTGGCTGCTGGCGAGTGGGGGA
GTCCTGGCCTACACGGCCTCCGGCGCCGCCCCCGCCATCAGGGGCAAGCG
GGGGAGAAGGCCCAGCCGCGCCATCTGGAGCACGGCCGGGAGGAAAGTGT
CGAACTCGAGCGGGGCGGTTATGCCTCTCTTCGTGGGCGGCGACAGCGGC
GGCGGGGGGAACAGGCGA
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