mRNA_P-fluviatile_contig15.2419.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig15.2419.1
Unique NamemRNA_P-fluviatile_contig15.2419.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig15.2419.1 vs. uniprot
Match: D7G5Q1_ECTSI (ATP-binding cassette, sub-family B, member 8 n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G5Q1_ECTSI)

HSP 1 Score: 1003 bits (2593), Expect = 0.000e+0
Identity = 541/678 (79.79%), Postives = 582/678 (85.84%), Query Frame = 1
Query:  418 MGFETSVWRSFGSFRRHVGETFRSSREKPETTRDAWRYMGALVRSQRGVLLASVVTLILAAGCEVAVPHYSSRALNAAAFARDRAEFARSLRGMVAYSLLASVFTGLRGACFWLAGTHVVAKVRFDLLSSLLKQDISFHDANETGALTSRLASDTAKISNVVSFHVNILCRQVIQAIGGLGYLYVLERQLSLVTLVGLVFVGVITTAYGRFSRRISAKVQTALAEAGSVAEQSLSLVRVVRAHANEEHERRRRYGRKIGESVELQETQGIAYGVARVVIGWSQAILLAAVLLLGAKRVFAGTMTGQQLTTFVFYTQFVTSASFDVGDQIQEALGAGQKVFELLDRQPVMTGHAKVQHSGGSSAENFDHAAPTSHEATGARAYPSVRQGAIGADSTGREDSGVLAPQHPQPAESPSRVSYGAEHGERERGRVDFDAVSFGYPTRPEGVLILDELSLRVRPGEKVAVVGPSGGGKSTILRLLCRFYDPDGGRIYLGGRDLSEYSPVDISNIVSWVTQEPQLFPISVGENIAYGLEPGSFGISDVHEAAKAANIHNFVCGLPDGYDTLVGEGGASLSGGQKQRVAIARALIRDPEVLLLDEPTSALDVESERLVQDALDTAGIGRTVILIAHRLATIQRADRVVVMQNGRIVESGKHNELLSLGGVYSGLYKQGEQVATVQ 2451
            MGFE S+WRSFGSFRRHVGETF SSREK +  RDAWRYMG LVRSQRGVLLAS+VTL+LAA CE+AVPHYSSRALNAAAFA DR EFARSL+GMVAYSLLASVFTGLRGACFWLAGTHVVAKVRFDLLSSLLKQDISFHD+NETGALTSRLASDTAKISNVVSFHVNILCRQVIQA+GGLGYLY+LERQL+ V LVGLV VG ITTAYGRFSRRISAKVQTALAEAGSVAEQSLSL+RVVRAHANE+HERRR YG KIG SVELQETQGIAYGVARVVIGWSQAILL AVLLLGA RVF G MTGQQLTTFVFYTQFVTSASFDVGDQIQEALGAGQKVFELLDR+P+MTG AK +  G  S E+   +  T H++T    +      ++G+   G  D     P                       GRV+FD+VSFGYPTR  GVL+LD L+L VRPGEKVAVVG SGGGKSTILRL+CRFYDP GG I LGGRDLS Y P DISN+VSWVTQEPQLFPISV ENIAYG+  GS+ + DV++AAK+ANIHNFV  LP+GYDTLVGEGGASLSGGQKQRVAIARALIRDPEVLLLDEPTSALDVESERLVQDALDTAG GRTVILIAHRLATIQRADR+VVMQNGR+VESGKH ELLSLGGVY+GLYKQGEQVAT++
Sbjct:    1 MGFELSIWRSFGSFRRHVGETFLSSREKAKAPRDAWRYMGTLVRSQRGVLLASIVTLVLAAACEIAVPHYSSRALNAAAFANDRVEFARSLQGMVAYSLLASVFTGLRGACFWLAGTHVVAKVRFDLLSSLLKQDISFHDSNETGALTSRLASDTAKISNVVSFHVNILCRQVIQAVGGLGYLYMLERQLACVALVGLVLVGGITTAYGRFSRRISAKVQTALAEAGSVAEQSLSLIRVVRAHANEQHERRR-YGGKIGNSVELQETQGIAYGVARVVIGWSQAILLGAVLLLGAGRVFDGRMTGQQLTTFVFYTQFVTSASFDVGDQIQEALGAGQKVFELLDREPIMTGQAKTE--GKQSVEHSSSSTLTQHDSTVMEEHAPPLTNSVGSKGGGDADM----PSXXXXXXXXXXXXXXXXXXXXXXGRVEFDSVSFGYPTR-SGVLVLDGLNLTVRPGEKVAVVGSSGGGKSTILRLICRFYDPQGGSILLGGRDLSTYKPADISNVVSWVTQEPQLFPISVRENIAYGM--GSYSMEDVYKAAKSANIHNFVSELPEGYDTLVGEGGASLSGGQKQRVAIARALIRDPEVLLLDEPTSALDVESERLVQDALDTAGKGRTVILIAHRLATIQRADRIVVMQNGRLVESGKHEELLSLGGVYAGLYKQGEQVATLK 668          
BLAST of mRNA_P-fluviatile_contig15.2419.1 vs. uniprot
Match: A0A7S2HIK7_9STRA (Hypothetical protein n=1 Tax=Dictyocha speculum TaxID=35687 RepID=A0A7S2HIK7_9STRA)

HSP 1 Score: 498 bits (1283), Expect = 5.300e-152
Identity = 308/662 (46.53%), Postives = 421/662 (63.60%), Query Frame = 1
Query:  415 DMGFETSVWRSFGSFRRHVGETF-RSSREKPETTRDAWRYMGALVRSQRGVLLASVVTLILAAGCEVAVPHYSSRALNAAAFARDRAEFARSLRGMVAYSLLASVFTGLRGACFWLAGTHVVAKVRFDLLSSLLKQDISFHDANETGALTSRLASDTAKISNVVSFHVNILCRQVIQAIGGLGYLYVLERQLSLVTLVGLVFVGVITTAYGRFSRRISAKVQTALAEAGSVAEQSLSLVRVVRAHANEEHERRRRYGRKIGESVELQETQGIAYGVARVVIGWSQAILLAAVLLLGAKRVFAGTMTGQQLTTFVFYTQFVTSASFDVGDQ---IQEALGAGQKVFELLDRQPVMTGHAKVQHSGGSSAENFDHAAPTSHEATGARAYPSVRQGAIGADSTGREDSGVLAPQHPQPAESPSRVSYGAEHGERERGRVDFDAVSFGYPTRPEGVLILDELSLRVRPGEKVAVVGPSGGGKSTILRLLCRFYDPDGGRIYLGGRDLSEYSPVDISNIVSWVTQEPQLFPISVGENIAYGLEPGSFGISDVHEAAKAANIHNFVCGLPDGYDTLVGEGGASLSGGQKQRVAIARALIRDPEVLLLDEPTSALDVESERLVQDALDTAGIGRTVILIAHRLATIQRADRVVVMQNGRIVESGKHNEL 2388
            D G   ++   F   +R + E   R  + K +     W  +  L  + + V+L SVV+L+LAA C+ AVPHYS+ AL A   A D      S+R +V  S+ +++FTGLRGA F +AG  VV ++R  L ++LLKQ+++F DA++TG LTSRL +D AK++NVVS+HVNI+ RQ I A  GLGYL+V++  ++  TL GLVF+ +++   G FSR +S K+Q  +A A SVAEQSLSLVRVVRAH  E+ E +R Y  ++  ++ LQETQG+AYG+ R +   S  ++  +VLL G + + AG +T  QLT+F+FY  FV+ A+FDVGDQ   IQEALGAG  +F+LL+R+  +           ++  +  ++APT+     A  + S   G++ A +   E S  +  +     ES S              R+ F+ V F YPTR +G  IL  L+L ++ GE V +VG SGGGKST+LRLL   YDPD GRI +G RD++     ++S  ++ VTQEPQLFPIS+ ENIAYGL  G + +  V  AA  AN+ +FV  LP+GY T VGEGGASLSGGQKQRVAIARA+IRDP +L+LDEPTSALD ESE LV            VI+IAHRL+TI RADR+VV+Q+GR +E G   EL
Sbjct:   58 DFGRVQTMSHFFSDVKRCIRERKPRVKKTKSQRPTGEWARLWRLAAADKNVMLVSVVSLVLAAVCDAAVPHYSAMALTAVT-ASDSNRIVTSIRSLVGVSMGSALFTGLRGAFFTVAGARVVTRLRDALFTNLLKQEVAFFDAHDTGELTSRLNADAAKLANVVSYHVNIIVRQTITATIGLGYLFVMDPLIATYTLSGLVFMSIMSWLNGSFSRWLSEKLQDEVASANSVAEQSLSLVRVVRAHTTEKTESKR-YRVRLAAALALQETQGVAYGLTRSLSVTSGLLVTLSVLLGGRQALTAGRLTAAQLTSFLFYATFVSGATFDVGDQWTKIQEALGAGTTIFDLLERKSTLK----------TADTHNSNSAPTT-----AAHHLSPEGGSLDASA---ESSTAMREE-----ESSSEYD----------NRIRFEGVHFAYPTR-KGQKILQGLNLDLKSGEVVGLVGGSGGGKSTVLRLLLHLYDPDEGRILIGDRDVASIPQAELSQRIAMVTQEPQLFPISIAENIAYGLPEGCWTMDQVKRAAVLANVDSFVKNLPEGYATPVGEGGASLSGGQKQRVAIARAIIRDPAILVLDEPTSALDGESEALVXXXXXXXXXXXXVIVIAHRLSTIARADRIVVLQSGRNIEEGSPLEL 683          
BLAST of mRNA_P-fluviatile_contig15.2419.1 vs. uniprot
Match: A0A6H5JVX5_9PHAE (ABC transmembrane type-1 domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JVX5_9PHAE)

HSP 1 Score: 480 bits (1236), Expect = 2.620e-149
Identity = 256/286 (89.51%), Postives = 269/286 (94.06%), Query Frame = 1
Query:  412 SDMGFETSVWRSFGSFRRHVGETFRSSREKPETTRDAWRYMGALVRSQRGVLLASVVTLILAAGCEVAVPHYSSRALNAAAFARDRAEFARSLRGMVAYSLLASVFTGLRGACFWLAGTHVVAKVRFDLLSSLLKQDISFHDANETGALTSRLASDTAKISNVVSFHVNILCRQVIQAIGGLGYLYVLERQLSLVTLVGLVFVGVITTAYGRFSRRISAKVQTALAEAGSVAEQSLSLVRVVRAHANEEHERRRRYGRKIGESVELQETQGIAYGVARVVIGWSQA 1269
            +DMGFE  +WRSFGSFRRHVGETF SSREK +  RDAWRYMG LVRSQ GVLLASVVTL+LAA CEVAVPHYSSRALNAAAFA DR EFARSL+GMVAYSLLASVFTGLRGACFWLAGTHVVAKVRFDLLSSLLKQDISFHD+NETGALTSRLASDTAKISNVVSFHVNILCRQVIQA+GGLGYLY+LERQL+ V LVGLV VG ITTAYGRFSRRISAKVQTALAEAGSVAEQSLSL+RVVRAHANE+HE+RR YG KIG+SVELQETQGIAYGVARVVIGWSQA
Sbjct:  134 TDMGFELCIWRSFGSFRRHVGETFLSSREKAKAPRDAWRYMGTLVRSQTGVLLASVVTLVLAAACEVAVPHYSSRALNAAAFANDRVEFARSLQGMVAYSLLASVFTGLRGACFWLAGTHVVAKVRFDLLSSLLKQDISFHDSNETGALTSRLASDTAKISNVVSFHVNILCRQVIQAVGGLGYLYMLERQLACVALVGLVLVGGITTAYGRFSRRISAKVQTALAEAGSVAEQSLSLIRVVRAHANEQHEQRR-YGGKIGDSVELQETQGIAYGVARVVIGWSQA 418          
BLAST of mRNA_P-fluviatile_contig15.2419.1 vs. uniprot
Match: A0A4D9CVG1_9STRA (Uncharacterized protein n=1 Tax=Nannochloropsis salina CCMP1776 TaxID=1027361 RepID=A0A4D9CVG1_9STRA)

HSP 1 Score: 485 bits (1248), Expect = 2.470e-146
Identity = 292/654 (44.65%), Postives = 404/654 (61.77%), Query Frame = 1
Query:  487 SSREKPETTRDA--WRYMGALVRSQRGVLLASVVTLILAAGCEVAVPHYSSRALNAAAFARDRAEFARSLRGMVAYSLLASVFTGLRGACFWLAGTHVVAKVRFDLLSSLLKQDISFHDANETGALTSRLASDTAKISNVVSFHVNILCRQVIQAIGGLGYLYVLERQLSLVTLVGLVFVGVITTAYGRFSRRISAKVQTALAEAGSVAEQSLSLVRVVRAHANEEHERRRRYGRKIGESVELQETQGIAYGVARVVIGWSQAILLAAVLLLGAKRVFAGTMTGQQLTTFVFYTQFVTSASFDVGDQ---IQEALGAGQKVFELLDRQPVMTGHAKVQHSGGSSAENFDHAAPTSHEATGARAYPSVRQGAIGADSTGREDSGVLAPQHPQPAESPSR--VSYGAEHGERERGRVDFDAVSFGYPTRPEGVLILDELSLRVRPGEKVAVVGPSGGGKSTILRLLCRFYDPDGGRIYLGGRDLSEYSPVDISNIVSWVTQEPQLFPISVGENIAYGLEPGSFGISDVHEAAKAANIHNFVCGLPDGYDTLVGEGGASLSGGQKQRVAIARALIRDPEVLLLDEPTSALDVESERLVQDALDTAGIGRTVILIAHRLATIQRADRVVVMQNGRIVESGKHNELLSLGGVYSGLYKQ 2427
            SSR  P T+     W  +  + R +  +L  S +TL+LAA  EVAVPH+SS+AL+A    + + EF R++R +    +LA++ TG+RG CF LAGT +V ++R  L  SLL+QDI+F D  ++G LT+RL +D  KISNVVS +VNIL RQ IQ +GGL YL+ L  +++L+T  G+  + ++T A+GR++R+++ ++Q  LA + +VA  SLSL+R+VR H  E  E  R Y + + +++   E     YG  R+ +  +Q  LL AVL +G +   +G M+  QLT+ +FY QFV +ASFDV DQ   IQEALG+  +VF LLDR P M                                  SV+                L+P    P   PS    S      ER    V F  VSF YP RP    IL  L L + PG++VAVVG SGGGKST+LRLL R YD D G I+L GRDL  +S  ++SN V+ ++QEP L PIS+ +NIAYGL+PG+F  +DV  AA+AANI++FV  LPD ++T++GEG   LSGG+KQRVAIARAL+R PE+LLLDEP+SALD  S+ +VQ AL+ A  GRT ++IAHRL+TI+  D ++V+++G +VE G H ELL+  GVY+    Q
Sbjct:  144 SSRLTPATSPSPAIWPRLREICRPEYPLLTLSTLTLLLAASVEVAVPHFSSQALSAILQQKGQTEFFRAVRRVFELGVLAALSTGVRGLCFGLAGTRIVCRLRHALFKSLLQQDIAFFDRTKSGELTNRLTADCVKISNVVSLNVNILLRQAIQLLGGLLYLHRLHARIALLTAGGMAVIFLVTGAHGRYNRKMAEEIQDTLASSNAVAGTSLSLIRLVRTHVGESTELER-YDQALHKTLNNMEAHDFGYGAYRLAVRLAQTGLLTAVLTVGWQLTCSGAMSMDQLTSALFYVQFVMNASFDVSDQYSRIQEALGSATQVFALLDRTPAM----------------------------------SVKP---------------LSPSPSLPTFGPSSRVTSSPPSSSERHGASVVFSNVSFTYPLRPH-TPILSSLYLNIGPGQRVAVVGASGGGKSTLLRLLARHYDVDAGSIFLDGRDLLTFSQEELSNKVAMLSQEPPLLPISIKDNIAYGLKPGTFSQADVEAAARAANIYDFVQSLPDRFETVIGEGSVGLSGGEKQRVAIARALMRKPEILLLDEPSSALDQSSQAIVQAALERAAEGRTTLIIAHRLSTIESCDSIIVLKSGAVVERGTHAELLAKEGVYAAFRAQ 746          
BLAST of mRNA_P-fluviatile_contig15.2419.1 vs. uniprot
Match: A0A6H5KA98_9PHAE (ABC protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KA98_9PHAE)

HSP 1 Score: 419 bits (1077), Expect = 9.760e-130
Identity = 214/250 (85.60%), Postives = 231/250 (92.40%), Query Frame = 1
Query: 1702 GRVDFDAVSFGYPTRPEGVLILDELSLRVRPGEKVAVVGPSGGGKSTILRLLCRFYDPDGGRIYLGGRDLSEYSPVDISNIVSWVTQEPQLFPISVGENIAYGLEPGSFGISDVHEAAKAANIHNFVCGLPDGYDTLVGEGGASLSGGQKQRVAIARALIRDPEVLLLDEPTSALDVESERLVQDALDTAGIGRTVILIAHRLATIQRADRVVVMQNGRIVESGKHNELLSLGGVYSGLYKQGEQVATVQ 2451
            GRVDF+ VSFGYPTR  GVL+LD LSL VRPGEKVAVVG SGGGKSTILRL+CRFYDP GG I LGGRDLS Y+P DISN+VSWVTQEPQLFPISV ENIAYG+  GS+ + DV++AAK+ANIHNFV  LP+GYDTLVGEGGASLSGGQKQRVAIARALIRDPEVLLLDEPTSALDVESERLVQDALDTAG GRTVILIAHRLATIQRADR+VVMQNGR+VESGKH+ELLSLGGVY+GLYKQGEQVAT+Q
Sbjct:   53 GRVDFNCVSFGYPTR-SGVLVLDGLSLTVRPGEKVAVVGSSGGGKSTILRLICRFYDPQGGSILLGGRDLSSYNPADISNVVSWVTQEPQLFPISVRENIAYGM--GSYSMEDVYKAAKSANIHNFVSELPEGYDTLVGEGGASLSGGQKQRVAIARALIRDPEVLLLDEPTSALDVESERLVQDALDTAGKGRTVILIAHRLATIQRADRIVVMQNGRLVESGKHDELLSLGGVYAGLYKQGEQVATLQ 299          
BLAST of mRNA_P-fluviatile_contig15.2419.1 vs. uniprot
Match: A0A8J2SL18_9STRA (Hypothetical protein n=2 Tax=Pelagomonas calceolata TaxID=35677 RepID=A0A8J2SL18_9STRA)

HSP 1 Score: 417 bits (1072), Expect = 3.670e-124
Identity = 260/657 (39.57%), Postives = 366/657 (55.71%), Query Frame = 1
Query:  463 RHVGETFRSSREKPETTRDAWRYMGALVRSQRGVLLASVVTLILAAGCEVAVPHYSSRALNAAAFARDRAEFARSLRGMVAYSLLASVFTGLRGACFWLAGTHVVAKVRFDLLSSLLKQDISFHDANETGALTSRLASDTAKISNVVSFHVNILCRQVIQAIGGLGYLYVLERQLSLVTLVGLVFVGVITTAYGRFSRRISAKVQTALAEAGSVAEQSLSLVRVVRAHANEEHERRRRYGRKIGESVELQETQGIAYGVARVVIGWSQAILLAAVLLLGAKRVFAGTMTGQQLTTFVFYTQFVTSASFDVGDQ---IQEALGAGQKVFELLDRQPVMTGHAKVQHSGGSSAENFDHAAPTSHEATGARAYPSVRQGAIGADSTGREDSGVLAPQHPQPAESPSRVSYGAEHGERERGRVDFDAVSFGYPTRPEGVLILDELSLRVRPGEKVAVVGPSGGGKSTILRLLCRFYDPDGGRIYLGGRDLSEYSPVDISNIVSWVTQEPQLFPISVGENIAYGLEPGSFGISD--VHEAAKAANIHNFVCGLPDGYDTLVGEGGASLSGGQKQRVAIARALIRDPEVLLLDEPTSALDVESERLVQDALDTAGIGRTVILIAHRLATIQRADRVVVMQNGRIVESGKHNELLSLGGVYSGL 2418
            RHV     +    P  ++  W  +  LVR    +L A+ V L  AA  +VAVPHYSS AL A   A+D A     L G+   SL ++ FTG+RG  FWLAGT VV ++R  L  ++L+QDI+F D+  TG L SRL+ D AK+S+VVSF++NI+ RQ +QAIGG  YL  L+  L+ ++L G+     +T AYGR SR+ S +    LA   S A++++  VRV RA    E      Y R+I    ++Q+  G+ YG++RV +G  + +   A + LGAKRV +G +    +  F FY  FV  A+FDVGDQ   +++ALGAG   FEL  R+PV  G A                 P++ +A  A A PS                                            GRV+FD + F YP R E   +L  +S+RV PGE+VA+VG SG GKST+ +LL R Y    GR+ L G D+ +    D++  V+ V Q+P LF  S+ +N+ +GL       +D  V  A  AA +      LP G +T  G  G  LSGGQ+QR+AIARAL+RDP +++LDEP+SALD  SE LVQ  LD   +  +++++AHRLATI+  DR+ V++ G +VE+G H+EL+  GGVY+G+
Sbjct:   42 RHVRYADEAVAPAPRASKAQWAQLRELVRKDWPLLGAASVALTGAALADVAVPHYSSGALTAVV-AKDAARVRAQLWGLSIASLASATFTGVRGGLFWLAGTRVVTRLRLALFGAMLRQDIAFFDSTSTGELASRLSGDAAKVSDVVSFNLNIIARQTLQAIGGCVYLVALDPPLAALSLCGMALASFLTDAYGRLSRKYSRETSDRLAATASTADEAMRNVRVARA-CGAEPALYGAYERQIARLEQVQDRAGLVYGLSRVALGGCKGLAAVATMALGAKRVASGALAPDAMVRFAFYAAFVNGAAFDVGDQLARVEDALGAGAAAFELARREPVWDGKAP----------------PSALDAHDAPASPS-------------------------------------------EGRVEFDDIRFAYPARNESQ-VLRGVSVRVDPGERVALVGASGSGKSTLTKLLLRQYGATSGRVRLDGVDVRDIPQADLARRVASVEQDPALFSGSIRDNVRFGLTKDDPRAADEKVERACAAAGLDEVAARLPQGLETAAGAAGTLLSGGQRQRIAIARALLRDPSIIVLDEPSSALDARSEALVQRTLDR--LDCSLLIVAHRLATIKACDRIYVLERGTVVEAGTHSELVESGGVYAGM 634          
BLAST of mRNA_P-fluviatile_contig15.2419.1 vs. uniprot
Match: A0A8J5X9I9_DIALT (Uncharacterized protein n=3 Tax=Diacronema lutheri TaxID=2081491 RepID=A0A8J5X9I9_DIALT)

HSP 1 Score: 384 bits (987), Expect = 2.230e-112
Identity = 251/635 (39.53%), Postives = 354/635 (55.75%), Query Frame = 1
Query:  523 WRYMGALVRSQRGVLLASVVTLILAAGCEVAVPHYSSRALNAAAFARDRAEFARSLRGMVAYSLLASVFTGLRGACFWLAGTHVVAKVRFDLLSSLLKQDISFHDANETGALTSRLASDTAKISNVVSFHVNILCRQVIQAIGGLGYLYVLERQLSLVTLVGLVFVGVITTAYGRFSRRISAKVQTALAEAGSVAEQSLSLVRVVRAHANEEHERRRRYGRKIGESVELQETQGIAYGVARVVIGWSQAILLAAVLLLGAKRVFAGTMTGQQLTTFVFYTQFVTSASFDVGDQ---IQEALGAGQKVFELLDRQPVMTGHAKVQHSGGSSAENFDHAAPTSHEATGARAYPSVRQGAIGADSTGREDSGVLAPQHPQPAESPSRVSYGAEHGERERGRVDFDAVSFGYPTRPEGVLILDELSLRVRPGEKVAVVGPSGGGKSTILRLLCRFYDPDGGRIYLGGRDLSEYSPVDISNIVSWVTQEPQLFPISVGENIAYGLEPGSFGISDVHEAAKAANIHNFVCGLPDGYDTLVGEGGASLSGGQKQRVAIARALIRDPEVLLLDEPTSALDVESERLVQDALDTAGIGRTVILIAHRLATIQRADRVVVMQNGRIVESGKHNELLSLGGVYSGL 2418
            W  +G+L      ++  S   ++ AA  E ++PHY+S AL AA     RA    +LR +V   L A++FTG RG  FW+AG  V+ ++R  L ++LL +   F DA+E+  L+SRL+SD  KIS+VVSF+VN++ RQ IQA+  L +L  +  QLSLV + GL+        Y   +R +S   QT +A A +VA +   L+R ++ ++ E  E  R Y        +LQ+ QG  YG ARVV G    +L   VL  GA    AG ++ QQLTTFV  +  +T A+  +G+Q   +QEALGA + +F L            +Q  GG + +              AR  P+     +                    AE  + V   A         ++ ++V F YP+R  G  +L  LSLRV  G+  A+VG SG GKST++RLLC  YD   G + + G +L   S  ++++ V+W+ QEPQLF  ++ +NIAYGL PGSF  +DV  AA  AN   F+  L  G    VGE GA LSGGQ+QRVA+ARAL+R  +VLLLDEPTSALD  SERL+QD +      RTV+++AHR++T+QRAD + VM+ G +VE G H  LL+ GG Y+ L
Sbjct:   66 WATLGSLCAQDLPLIALSTAFMVAAAVSEASLPHYTSAALFAATSGAPRAHVGGALRRLVGVGLAAALFTGARGCAFWIAGARVLRRLRSRLFAALLAKPAHFFDAHESSTLSSRLSSDVGKISDVVSFNVNVIARQSIQAVVALAWLVRIHAQLSLVLVSGLLLTFAANQLYSHANRELSRSTQTEVARAATVATEDFRLIRTIKVYSTEAREAAR-YDASCQRIEDLQDAQGRLYGSARVVNGALALLLSVLVLARGAHLCAAGALSAQQLTTFVLSSATITGATIGIGEQWVKVQEALGAAEDIFAL------------IQPDGGRAPDGL-----LRSSGIDARLAPAAPLRLV--XXXXXXXXXXXXXXXXXXAEPAAAVMLPARPA-----ALELESVRFAYPSR-SGSDVLRSLSLRVPEGQLAAIVGASGSGKSTVMRLLCGLYDQAEGSVKVLGDELRSLSQHELASRVAWLPQEPQLFSGTIRDNIAYGLPPGSFCDADVLRAAAQANADGFIEQL-GGLGAQVGEAGARLSGGQRQRVAVARALMRGAQVLLLDEPTSALDPTSERLLQDCVLGLVPERTVLVVAHRISTVQRADVIFVMEAGAVVEQGTHAALLAEGGTYARL 673          
BLAST of mRNA_P-fluviatile_contig15.2419.1 vs. uniprot
Match: A0A2B4SV92_STYPI (ATP-binding cassette sub-family B member 9 n=2 Tax=Stylophora pistillata TaxID=50429 RepID=A0A2B4SV92_STYPI)

HSP 1 Score: 375 bits (963), Expect = 1.480e-108
Identity = 238/639 (37.25%), Postives = 353/639 (55.24%), Query Frame = 1
Query:  520 AWRYMGALVRSQRGVLLASVVTLILAAGCEVAVPHYSSRALNAAAFARDRAEFARSLRGMVAYSLLASVFTGLRGACFWLAGTHVVAKVRFDLLSSLLKQDISFHDANETGALTSRLASDTAKISNVVSFHVNILCRQVIQAIGGLGYLYVLERQLSLVTLVGLVFVGVITTAYGRFSRRISAKVQTALAEAGSVAEQSLSLVRVVRAHANEEHERRRRYGRKIGESVELQETQGIAYGVARVVIGWSQAILLAA---VLLLGAKRVFAGTMTGQQLTTFVFYTQFVTSASFDVGD---QIQEALGAGQKVFELLDRQPVMTGHAKVQHSGGSSAENFDHAAPTSHEATGARAYPSVRQGAIGADSTGREDSGVLAPQHPQPAESPSRVSYGAEHGERERGRVDFDAVSFGYPTRPEGVLILDELSLRVRPGEKVAVVGPSGGGKSTILRLLCRFYDPDGGRIYLGGRDLSEYSPVDISNIVSWVTQEPQLFPISVGENIAYGLEPGSFGISDVHEAAKAANIHNFVCGLPDGYDTLVGEGGASLSGGQKQRVAIARALIRDPEVLLLDEPTSALDVESERLVQDALDTAGIGRTVILIAHRLATIQRADRVVVMQNGRIVESGKHNELLSLGGVYSGL 2418
            AWR M         + LASV  L+ A G E+ +P+Y+ + ++A A  +D+ +F  ++  M   SL  ++  GLRG  F L       ++   L  S++KQ+I F D+ +TG + SRL+SDT K+S+ V  ++N+  R  +Q+IG   +++ L  +L++VTLVGL  V +I+  YG + ++++ +VQ   A+A  +A + +S ++ VR+ ANE+ E  R Y  K      L+  +   YG  R    W++ + LA    VLL G   V  G +TG  L +F+ Y   ++    +VG+    + EA+GA QKVFEL+DR+P      K+Q+SG                                                     +P  VS          G V F  VSF YPTRP+ + +LD++S  ++PGE +A+VGPSGGGKST + LL  FY+P  G + +    +  +    + N V+ V QEP LF  SV ENIAYGL         V   +K AN H+F+  +P GY+T  GE G  LSGGQKQRVAIARAL+R+P++LLLDE TSALD ESE LVQDA+     G TV+++AHRL+TI++AD++VV+  G+++  GKH EL+   G+Y+ L
Sbjct:  117 AWRLMSYCKPDLPYISLASVFLLLAATG-EIFIPYYTGQVIDAIAIDKDKTKFLNAIVIMTLISLGTAIAAGLRGGLFNLIAARFTKRISNFLFGSIVKQEIGFFDSTKTGDIVSRLSSDTTKMSDQVGLNINVFLRNCVQSIGTCVFMFKLSWKLTIVTLVGLPLVALISDIYGDYYKKLATEVQEETAKANEIAAEVVSSMKTVRSFANEDGEYER-YKSKQDGIYRLKVKESFLYGGYR---WWTEILSLAIDVIVLLYGGHLVINGDLTGGYLVSFILYLLQLSFYIDEVGEIYTGLMEAVGASQKVFELIDREP------KIQNSG---------------------------------------------------VVTPGEVS----------GEVTFQNVSFAYPTRPD-ITVLDKVSFSIKPGEVIALVGPSGGGKSTCISLLEHFYEPTSGEVLIDSIPVKNFDHKYLHNKVALVGQEPVLFARSVKENIAYGLGNDEIDQCLVENVSKLANAHSFISDMPQGYNTETGEKGLQLSGGQKQRVAIARALVRNPQILLLDEATSALDAESEHLVQDAIYKNLTGHTVMIVAHRLSTIEKADKIVVIDQGQVIAQGKHKELVEQNGLYAKL 682          
BLAST of mRNA_P-fluviatile_contig15.2419.1 vs. uniprot
Match: A0A0K6S6H4_9ALVE (Uncharacterized protein n=2 Tax=Chromera velia CCMP2878 TaxID=1169474 RepID=A0A0K6S6H4_9ALVE)

HSP 1 Score: 375 bits (962), Expect = 7.490e-108
Identity = 238/577 (41.25%), Postives = 332/577 (57.54%), Query Frame = 1
Query:  721 SVFTGLRGACFWLAGTHVVAKVRFDLLSSLLKQDISFHDANETGALTSRLASDTAKISNVVSFHVNILCRQVIQAIGGLGYLYVLERQLSLVTLVGLVFVGVITTAYGRFSRRISAKVQTALAEAGSVAEQSLSLVRVVRAHANEEHERRRRYGRKIGESVELQETQGIAYGVARVVIGWSQAILLAAVLLLGAKRVFAGTMTGQQLTTFVFYTQFVTSASFDVGD---QIQEALGAGQKVFELLDRQPVMTGHAKVQHSGGSSAENFDHAAPTSHEATGARAYPSVRQGAIGADSTGREDSGVLAPQHPQPAESPSRVSYGAEHGERERGRVDFDAVSFGYPTRPEGVLILDELSLRVRPGEKVAVVGPSGGGKSTILRLLCRFYDPDGGRIYLGGRDLSEYSPVDISNIVSWVTQEPQLFPISVGENIAYGLEPGSFGISDVHEAAKAANIHNFVCGLPDGYDTLVGEGGASLSGGQKQRVAIARALIRDPEVLLLDEPTSALDVESERLVQDALDTAGIGRTVILIAHRLATIQRADRVVVMQNGRIVESGKHNELLSLGGVYSGLYKQGEQVA 2442
            SVFT LRGA F LAG  VVA++R  L  SL++Q+I F D  ++G L +RLA+D   I N  + +V++  R + QA+ GL  L+++  +L+LV +  +  V V    YG+ + ++S + Q ALAE G VA +    +R VR+ + E  +   RY  K+  + +L   Q   YG    V+G    + +A VL  G K V +G M+   LT+F+FYT +V  A   +GD   Q+ +A+GA +++F  +DR+P+      V   GG   +                      +G +G    G++  GV                     G    G + F+ V F YP R + V +   LS   +PGE VA+VGPSG GKSTI+ L+ RFYDP  G + L GR+L +  P  +   V+ V QEP LF  +V ENIAYG E GS+ + +V +AA+ AN H F+ G PDGYDT VGE G  LSGGQKQRVAIARAL+ +P VLLLDE TSALD ESE LVQ AL+    GRTV++IAHRL+T++ AD+V+V+  G++VESG H ELL  GG+Y  L ++  Q A
Sbjct:  234 SVFTMLRGAFFTLAGERVVARLRRRLFLSLVRQEIGFFDEVQSGELVNRLAADATTIQNAATVNVSMGLRWLAQAVLGLLVLFLVSWKLTLVMVAVVPPVAVFAVLYGKLAGKVSEQYQKALAEGGEVASEVFGGIRTVRSFSMEVRKEAARYNGKVDAAYKLGVKQAWYYGGFSGVVGLVAYLAIALVLWYGGKLVISGEMSPGTLTSFLFYTLYVAIAVGGLGDLFSQLMKAVGASRRIFSFIDREPL------VNCEGGERPD----------------------EGVLGRG--GKQTEGVKG------------------KGGAIAGEIVFENVEFAYPQRSD-VQVARGLSFTCKPGEVVALVGPSGAGKSTIVALIERFYDPTAGSVSLDGRNLKDLDPRWLHEKVALVAQEPALFSGTVAENIAYGREAGSWTMEEVQKAAEEANAHTFISGFPDGYDTKVGERGVQLSGGQKQRVAIARALMMNPRVLLLDEATSALDAESEALVQKALERVMKGRTVVIIAHRLSTVRDADQVLVLNQGKVVESGTHPELLKAGGLYRDLVRRQLQWA 761          
BLAST of mRNA_P-fluviatile_contig15.2419.1 vs. uniprot
Match: A0A2V0NU49_9CHLO (ATP-binding cassette sub-family B member protein n=1 Tax=Raphidocelis subcapitata TaxID=307507 RepID=A0A2V0NU49_9CHLO)

HSP 1 Score: 377 bits (969), Expect = 8.240e-108
Identity = 245/627 (39.07%), Postives = 347/627 (55.34%), Query Frame = 1
Query:  562 VLLASVVTLILAAGCEVAVPHYSSRALNAAAFARDRAEFARSLRGMVAYSLLASVFTGLRGACFWLAGTHVVAKVRFDLLSSLLKQDISFHDANETGALTSRLASDTAKISNVVSFHVNILCRQVIQAIGGLGYLYVLERQLSLVTLVGLVFVGVITTAYGRFSRRISAKVQTALAEAGSVAEQSLSLVRVVRAHANEEHERRRRYGRKIGESVELQETQGIAYGVARVVIGWSQAILLAAVLLLGAKRVFAGTMTGQQLTTFVFYTQFVTSASFDVGD---QIQEALGAGQKVFELLDRQPVMTGHAKVQHSGGSSAENFDHAAPTSHEATGARAYPSVRQGAIGADSTGREDSGVLAPQHPQPAESPSRVSYGAEHGERERGRVDFDAVSFGYPTRPEGVLILDELSLRVRPGEKVAVVGPSGGGKSTILRLLCRFYDPDGGRIYLGGRDLSEYSPVDISNIVSWVTQEPQLFPISVGENIAYGLEP-----GSFGISDVHEAAKAANIHNFVCGLPDGYDTLVGEGGASLSGGQKQRVAIARALIRDPEVLLLDEPTSALDVESERLVQDALDTAGIGRTVILIAHRLATIQRADRVVVMQNGRIVESGKHNELLSLGGVYSGL 2418
            +LLA+      AA     VP+Y+   ++ A+   +R +F  +   ++A + L  VFTG RG  F +  T +  ++R  L +SLL QD  F D  +TG +TSRLASDT+ +S+ VS ++NIL R   QA   L +++    +L++VT V +  V +++  YG + RR+S KVQTALA+A  VAE++LS +  VRAHA +   R   YG K+     L+ T+  AY        +  + +  AVL  G   V +G M+   L +F+ Y   ++ A   +GD    +  A+GA  KV EL++RQP +                                                   G LAP    PA                 GR++   V F YP RP    +L+ LS  V PGE VA+VGPSGGGKS+I++LL RFY P  G + + GRD+ +Y P  +   ++ V+QEP LF  SV  NI YGLEP     G+ G  +V  AA+ AN H FV   P+GYDT  GE G +LSGGQKQR+AIARAL+R P++LLLDE TSALD +SE +VQ+ALD    GRTV+++AHRL+TI+ ADR++V+Q G + E+G H+EL++ GG Y+ L
Sbjct:  246 LLLAAFAAGAAAALMAALVPYYTGLIIDYASIDPNRRKFNATTLRLLAVAALGGVFTGARGGLFSVCMTRLDCRLRRALFASLLAQDTGFFDTTKTGEITSRLASDTSTVSDQVSLNLNILMRSATQAAAVLAFMFSASWRLTVVTFVLVPMVLLVSKLYGVYYRRLSKKVQTALADANGVAEETLSSMPTVRAHAAQSGARAS-YGAKLDAFYALRSTEAAAYSAYAATTTFLPSCVAGAVLYYGGTLVLSGQMSPGALVSFMLYQSSLSGAFSMMGDVFSALTAAVGAADKVIELMNRQPALP------------------------------------------------PCGALAP----PALE---------------GRIELRGVRFSYPARPLHT-VLNGLSFCVNPGEVVALVGPSGGGKSSIIKLLQRFYVPQAGAVLIDGRDVGDYDPQWLRRRMALVSQEPVLFGRSVRRNIVYGLEPEDGVEGTPGQEEVEAAARLANAHAFVESFPEGYDTECGEKGLALSGGQKQRIAIARALVRKPQILLLDEATSALDADSEAVVQEALDRLMAGRTVVVVAHRLSTIRGADRIIVIQGGAVSEAGSHDELIAAGGAYAKL 803          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig15.2419.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D7G5Q1_ECTSI0.000e+079.79ATP-binding cassette, sub-family B, member 8 n=1 T... [more]
A0A7S2HIK7_9STRA5.300e-15246.53Hypothetical protein n=1 Tax=Dictyocha speculum Ta... [more]
A0A6H5JVX5_9PHAE2.620e-14989.51ABC transmembrane type-1 domain-containing protein... [more]
A0A4D9CVG1_9STRA2.470e-14644.65Uncharacterized protein n=1 Tax=Nannochloropsis sa... [more]
A0A6H5KA98_9PHAE9.760e-13085.60ABC protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 Ta... [more]
A0A8J2SL18_9STRA3.670e-12439.57Hypothetical protein n=2 Tax=Pelagomonas calceolat... [more]
A0A8J5X9I9_DIALT2.230e-11239.53Uncharacterized protein n=3 Tax=Diacronema lutheri... [more]
A0A2B4SV92_STYPI1.480e-10837.25ATP-binding cassette sub-family B member 9 n=2 Tax... [more]
A0A0K6S6H4_9ALVE7.490e-10841.25Uncharacterized protein n=2 Tax=Chromera velia CCM... [more]
A0A2V0NU49_9CHLO8.240e-10839.07ATP-binding cassette sub-family B member protein n... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig15contigP-fluviatile_contig15:880972..912924 +
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 score1003.0
Seed ortholog evalue7.6e-290
Seed eggNOG ortholog2880.D7G5Q1
KEGG koko:K05656,ko:K05657
KEGG TC3.A.1.201,3.A.1.209
KEGG Pathwayko02010,ko04142,map02010,map04142
GOsGO:0003674,GO:0005215,GO:0005575,GO:0005622,GO:0005623,GO:0005737,GO:0009507,GO:0009526,GO:0009536,GO:0009941,GO:0031967,GO:0031975,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0044422,GO:0044424,GO:0044434,GO:0044435,GO:0044444,GO:0044446,GO:0044464
EggNOG free text desc.ATPase activity, coupled to transmembrane movement of substances
EggNOG OGsCOG1132@1,KOG0058@2759
COG Functional cat.V
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
BRITEko00000,ko00001,ko02000
Hectar predicted targeting categoryother localisation
Ec32 ortholog descriptionABC transporter-like
Ec32 orthologEc-12_008700.1
Exons26
Model size6644
Cds size2385
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig15.2419.1prot_P-fluviatile_contig15.2419.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig15 881041..903255 +


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

Feature NameUnique NameSpeciesTypePosition
1622815649.868791-UTR-P-fluviatile_contig15:880971..8810401622815649.868791-UTR-P-fluviatile_contig15:880971..881040Porterinema fluviatile SAG_2381UTRP-fluviatile_contig15 880972..881040 +
1693562707.8774781-UTR-P-fluviatile_contig15:880971..8810401693562707.8774781-UTR-P-fluviatile_contig15:880971..881040Porterinema fluviatile SAG_2381UTRP-fluviatile_contig15 880972..881040 +
1622815650.0963297-UTR-P-fluviatile_contig15:903255..9038031622815650.0963297-UTR-P-fluviatile_contig15:903255..903803Porterinema fluviatile SAG_2381UTRP-fluviatile_contig15 903256..903803 +
1693562708.0902581-UTR-P-fluviatile_contig15:903255..9038031693562708.0902581-UTR-P-fluviatile_contig15:903255..903803Porterinema fluviatile SAG_2381UTRP-fluviatile_contig15 903256..903803 +
1622815650.1081774-UTR-P-fluviatile_contig15:905113..9063391622815650.1081774-UTR-P-fluviatile_contig15:905113..906339Porterinema fluviatile SAG_2381UTRP-fluviatile_contig15 905114..906339 +
1693562708.0999007-UTR-P-fluviatile_contig15:905113..9063391693562708.0999007-UTR-P-fluviatile_contig15:905113..906339Porterinema fluviatile SAG_2381UTRP-fluviatile_contig15 905114..906339 +
1622815650.1171863-UTR-P-fluviatile_contig15:908242..9084611622815650.1171863-UTR-P-fluviatile_contig15:908242..908461Porterinema fluviatile SAG_2381UTRP-fluviatile_contig15 908243..908461 +
1693562708.109478-UTR-P-fluviatile_contig15:908242..9084611693562708.109478-UTR-P-fluviatile_contig15:908242..908461Porterinema fluviatile SAG_2381UTRP-fluviatile_contig15 908243..908461 +
1622815650.133387-UTR-P-fluviatile_contig15:909009..9091741622815650.133387-UTR-P-fluviatile_contig15:909009..909174Porterinema fluviatile SAG_2381UTRP-fluviatile_contig15 909010..909174 +
1693562708.1282089-UTR-P-fluviatile_contig15:909009..9091741693562708.1282089-UTR-P-fluviatile_contig15:909009..909174Porterinema fluviatile SAG_2381UTRP-fluviatile_contig15 909010..909174 +
1622815650.1478214-UTR-P-fluviatile_contig15:909624..9097051622815650.1478214-UTR-P-fluviatile_contig15:909624..909705Porterinema fluviatile SAG_2381UTRP-fluviatile_contig15 909625..909705 +
1693562708.137687-UTR-P-fluviatile_contig15:909624..9097051693562708.137687-UTR-P-fluviatile_contig15:909624..909705Porterinema fluviatile SAG_2381UTRP-fluviatile_contig15 909625..909705 +
1622815650.1608622-UTR-P-fluviatile_contig15:910065..9101611622815650.1608622-UTR-P-fluviatile_contig15:910065..910161Porterinema fluviatile SAG_2381UTRP-fluviatile_contig15 910066..910161 +
1693562708.145687-UTR-P-fluviatile_contig15:910065..9101611693562708.145687-UTR-P-fluviatile_contig15:910065..910161Porterinema fluviatile SAG_2381UTRP-fluviatile_contig15 910066..910161 +
1622815650.176563-UTR-P-fluviatile_contig15:910879..9124191622815650.176563-UTR-P-fluviatile_contig15:910879..912419Porterinema fluviatile SAG_2381UTRP-fluviatile_contig15 910880..912419 +
1693562708.153879-UTR-P-fluviatile_contig15:910879..9124191693562708.153879-UTR-P-fluviatile_contig15:910879..912419Porterinema fluviatile SAG_2381UTRP-fluviatile_contig15 910880..912419 +
1622815650.1927478-UTR-P-fluviatile_contig15:912609..9129241622815650.1927478-UTR-P-fluviatile_contig15:912609..912924Porterinema fluviatile SAG_2381UTRP-fluviatile_contig15 912610..912924 +
1693562708.1627395-UTR-P-fluviatile_contig15:912609..9129241693562708.1627395-UTR-P-fluviatile_contig15:912609..912924Porterinema fluviatile SAG_2381UTRP-fluviatile_contig15 912610..912924 +


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

Feature NameUnique NameSpeciesTypePosition
1622815649.8796728-CDS-P-fluviatile_contig15:881040..8814001622815649.8796728-CDS-P-fluviatile_contig15:881040..881400Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 881041..881400 +
1693562707.8886993-CDS-P-fluviatile_contig15:881040..8814001693562707.8886993-CDS-P-fluviatile_contig15:881040..881400Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 881041..881400 +
1622815649.8901472-CDS-P-fluviatile_contig15:882977..8830461622815649.8901472-CDS-P-fluviatile_contig15:882977..883046Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 882978..883046 +
1693562707.8973243-CDS-P-fluviatile_contig15:882977..8830461693562707.8973243-CDS-P-fluviatile_contig15:882977..883046Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 882978..883046 +
1622815649.90023-CDS-P-fluviatile_contig15:883631..8838051622815649.90023-CDS-P-fluviatile_contig15:883631..883805Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 883632..883805 +
1693562707.9100208-CDS-P-fluviatile_contig15:883631..8838051693562707.9100208-CDS-P-fluviatile_contig15:883631..883805Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 883632..883805 +
1622815649.9098709-CDS-P-fluviatile_contig15:884852..8849681622815649.9098709-CDS-P-fluviatile_contig15:884852..884968Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 884853..884968 +
1693562707.9205334-CDS-P-fluviatile_contig15:884852..8849681693562707.9205334-CDS-P-fluviatile_contig15:884852..884968Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 884853..884968 +
1622815649.920941-CDS-P-fluviatile_contig15:885750..8857971622815649.920941-CDS-P-fluviatile_contig15:885750..885797Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 885751..885797 +
1693562707.9296844-CDS-P-fluviatile_contig15:885750..8857971693562707.9296844-CDS-P-fluviatile_contig15:885750..885797Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 885751..885797 +
1622815649.9347281-CDS-P-fluviatile_contig15:886953..8870471622815649.9347281-CDS-P-fluviatile_contig15:886953..887047Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 886954..887047 +
1693562707.9374104-CDS-P-fluviatile_contig15:886953..8870471693562707.9374104-CDS-P-fluviatile_contig15:886953..887047Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 886954..887047 +
1622815649.9470952-CDS-P-fluviatile_contig15:887923..8880521622815649.9470952-CDS-P-fluviatile_contig15:887923..888052Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 887924..888052 +
1693562707.9449813-CDS-P-fluviatile_contig15:887923..8880521693562707.9449813-CDS-P-fluviatile_contig15:887923..888052Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 887924..888052 +
1622815649.9605975-CDS-P-fluviatile_contig15:889306..8894201622815649.9605975-CDS-P-fluviatile_contig15:889306..889420Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 889307..889420 +
1693562707.9533935-CDS-P-fluviatile_contig15:889306..8894201693562707.9533935-CDS-P-fluviatile_contig15:889306..889420Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 889307..889420 +
1622815649.9736013-CDS-P-fluviatile_contig15:890594..8906881622815649.9736013-CDS-P-fluviatile_contig15:890594..890688Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 890595..890688 +
1693562707.9623473-CDS-P-fluviatile_contig15:890594..8906881693562707.9623473-CDS-P-fluviatile_contig15:890594..890688Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 890595..890688 +
1622815649.986211-CDS-P-fluviatile_contig15:891176..8913111622815649.986211-CDS-P-fluviatile_contig15:891176..891311Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 891177..891311 +
1693562707.9802136-CDS-P-fluviatile_contig15:891176..8913111693562707.9802136-CDS-P-fluviatile_contig15:891176..891311Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 891177..891311 +
1622815649.996882-CDS-P-fluviatile_contig15:893103..8932881622815649.996882-CDS-P-fluviatile_contig15:893103..893288Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 893104..893288 +
1693562707.9908388-CDS-P-fluviatile_contig15:893103..8932881693562707.9908388-CDS-P-fluviatile_contig15:893103..893288Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 893104..893288 +
1622815650.008976-CDS-P-fluviatile_contig15:893698..8938621622815650.008976-CDS-P-fluviatile_contig15:893698..893862Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 893699..893862 +
1693562708.0012774-CDS-P-fluviatile_contig15:893698..8938621693562708.0012774-CDS-P-fluviatile_contig15:893698..893862Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 893699..893862 +
1622815650.0182981-CDS-P-fluviatile_contig15:894576..8946881622815650.0182981-CDS-P-fluviatile_contig15:894576..894688Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 894577..894688 +
1693562708.01016-CDS-P-fluviatile_contig15:894576..8946881693562708.01016-CDS-P-fluviatile_contig15:894576..894688Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 894577..894688 +
1622815650.029851-CDS-P-fluviatile_contig15:895537..8956621622815650.029851-CDS-P-fluviatile_contig15:895537..895662Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 895538..895662 +
1693562708.0178182-CDS-P-fluviatile_contig15:895537..8956621693562708.0178182-CDS-P-fluviatile_contig15:895537..895662Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 895538..895662 +
1622815650.0399485-CDS-P-fluviatile_contig15:896352..8964401622815650.0399485-CDS-P-fluviatile_contig15:896352..896440Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 896353..896440 +
1693562708.0261645-CDS-P-fluviatile_contig15:896352..8964401693562708.0261645-CDS-P-fluviatile_contig15:896352..896440Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 896353..896440 +
1622815650.052276-CDS-P-fluviatile_contig15:898087..8982051622815650.052276-CDS-P-fluviatile_contig15:898087..898205Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 898088..898205 +
1693562708.0419364-CDS-P-fluviatile_contig15:898087..8982051693562708.0419364-CDS-P-fluviatile_contig15:898087..898205Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 898088..898205 +
1622815650.065008-CDS-P-fluviatile_contig15:900552..9007081622815650.065008-CDS-P-fluviatile_contig15:900552..900708Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 900553..900708 +
1693562708.0527897-CDS-P-fluviatile_contig15:900552..9007081693562708.0527897-CDS-P-fluviatile_contig15:900552..900708Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 900553..900708 +
1622815650.0772862-CDS-P-fluviatile_contig15:902339..9023881622815650.0772862-CDS-P-fluviatile_contig15:902339..902388Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 902340..902388 +
1693562708.0706468-CDS-P-fluviatile_contig15:902339..9023881693562708.0706468-CDS-P-fluviatile_contig15:902339..902388Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 902340..902388 +
1622815650.0869555-CDS-P-fluviatile_contig15:903199..9032551622815650.0869555-CDS-P-fluviatile_contig15:903199..903255Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 903200..903255 +
1693562708.0806103-CDS-P-fluviatile_contig15:903199..9032551693562708.0806103-CDS-P-fluviatile_contig15:903199..903255Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 903200..903255 +


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig15.2419.1

>prot_P-fluviatile_contig15.2419.1 ID=prot_P-fluviatile_contig15.2419.1|Name=mRNA_P-fluviatile_contig15.2419.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=795bp
MTRVEKGSGDGGGDVGGAGGGGRIRWGLAASRLCGRGFRRRGGAIGRGAG
GDESGGGGGRPVLRAAAATAAGAATAAAASGAGRREAAGTRVGADGDGGS
FQEEAGRRRGGGGASDMGFETSVWRSFGSFRRHVGETFRSSREKPETTRD
AWRYMGALVRSQRGVLLASVVTLILAAGCEVAVPHYSSRALNAAAFARDR
AEFARSLRGMVAYSLLASVFTGLRGACFWLAGTHVVAKVRFDLLSSLLKQ
DISFHDANETGALTSRLASDTAKISNVVSFHVNILCRQVIQAIGGLGYLY
VLERQLSLVTLVGLVFVGVITTAYGRFSRRISAKVQTALAEAGSVAEQSL
SLVRVVRAHANEEHERRRRYGRKIGESVELQETQGIAYGVARVVIGWSQA
ILLAAVLLLGAKRVFAGTMTGQQLTTFVFYTQFVTSASFDVGDQIQEALG
AGQKVFELLDRQPVMTGHAKVQHSGGSSAENFDHAAPTSHEATGARAYPS
VRQGAIGADSTGREDSGVLAPQHPQPAESPSRVSYGAEHGERERGRVDFD
AVSFGYPTRPEGVLILDELSLRVRPGEKVAVVGPSGGGKSTILRLLCRFY
DPDGGRIYLGGRDLSEYSPVDISNIVSWVTQEPQLFPISVGENIAYGLEP
GSFGISDVHEAAKAANIHNFVCGLPDGYDTLVGEGGASLSGGQKQRVAIA
RALIRDPEVLLLDEPTSALDVESERLVQDALDTAGIGRTVILIAHRLATI
QRADRVVVMQNGRIVESGKHNELLSLGGVYSGLYKQGEQVATVQ*
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mRNA from alignment at P-fluviatile_contig15:880972..912924+

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig15.2419.1 ID=mRNA_P-fluviatile_contig15.2419.1|Name=mRNA_P-fluviatile_contig15.2419.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=31953bp|location=Sequence derived from alignment at P-fluviatile_contig15:880972..912924+ (Porterinema fluviatile SAG_2381)
AGCCACTCGCATTCGTTCGCCTGTTCGTGCTCTCTCCCAGGCGGCCTGCC CACAGGATACGGCGTCACCATGACGCGGGTCGAAAAGGGCAGCGGCGATG GCGGCGGTGATGTTGGCGGGGCCGGAGGTGGTGGTCGCATAAGGTGGGGT CTCGCTGCGTCTAGGCTTTGCGGACGGGGCTTCCGGAGAAGAGGAGGGGC GATTGGCAGGGGCGCGGGCGGTGACGAGAGCGGCGGGGGCGGCGGCCGCC CAGTCTTGCGAGCCGCGGCGGCAACGGCGGCTGGGGCGGCGACGGCAGCG GCAGCGTCAGGGGCGGGCCGGAGGGAGGCGGCCGGGACTCGTGTCGGCGC CGACGGGGACGGAGGCTCGTTTCAAGAGGAGGCGGGCAGGCGCCGCGGAG GTGGCGGAGCGAGTGACATGGGGTTCGAGGTGAGCGCTCTTCGTGTCGCC AAAATCACTCGCCTGCTTCTTGCGTGCTTGTTGTCGTGGCCTTTCTGCGG CACAGGATCCCTGTAGGAGAGGCCACGGTCATGGGAGGGCTCGCGAGAAA AAAAAAACGACGGCTTGCTGTGCGGTTTCAGGTGTTTTTCTCTTGTTTGC CGACGCCGAATTCACCGAGGTGGCACCAGATAGGCGGCCGCGAAAAGCTC GCACAAAAAATGAAGGCGTTCCACACTGGTGTGCCTCAAAAAGAGGGCAA TGGTGTCCTAACCTGGCGTCGTGTTGCCGTTGACATGTTTCCGCTGGTGA GTGGTGACATTTTTGAGATACCTGCACTTAATATTGATATTGTTATGCTG CTCTTGCCGGGGCCGGTTCTGCTCTGCTGGCGGAGACGACGATTCTCGCC AGAGCTTCCACGACTTGCGCCTTTCGTCTGGTCTTAGCATCCTGCCCTAA ATAATGGCTGCTTTTGTTTGCGCTGGTGCTACGATAGAACACCCCCTTCT TGGATCGTAATGTTGAGGCTTGTGCCCCGTAGGCGATTGGCTGCTTTTTG AAGGGGGGGAGATTGCAACGAACATTGGTAGAGAATCAAGGTGCATCCAA ATCGAGAAAACAATTGCCAACGGATTACAAGCGTACCTTTTTCTCCACCG AGAGCGTCGAAACCGCCGCGGCTTTTGGCTACGAAAGTGCTCCCGAAGGC GCGTCGGGCGCCCTCACCGTGCAGCGACTACCGCCCAATGTATACGACGG TGTAGACCAGGTCCTGTTCAAAGCTCAATTGCTGCGCTATAGGGCAAACG CAATACGCCGAATTGTACGTTTGTGGAAAGCCCTCTATGAGTTCCTTTCA AGGCCGCCCCATTGCCCCCTGGGATTCATCCTTCTGTGGAGTTTTGCGCT CCGAAAGTTGCCACTAACGTGGGTATGATATACGTTTGCTAGTTTGCGGT AACCGCTGGCGCTGTTGGCGCCGCTCTTGACCGGCACTGTGCTGCTGTCA TTACCAGCCATCCTGCGGCCTTTGACGATATTGTCGCACTCTGACGATTC TGCCGCAAACTACCGGCGCATCGTGCGACGTTACCGTACCGCGGCTTGGT CGCCTGGCTGTTAGATCTGCTCTCGCGCTTTTGTGGCTGCCGCCGGCGCC GCTTCGTACGTCCGACGCGCTCCTGTCATGTGAAGCCATTCCTGCTTTAC GAGCACCAAGCATTTTTTATATATATTTCGAGTGTCCTTAGCGCGGGGAA GGGTCCTCAAGATTCAGTGGAAGAGGACTCATCATGACGCCGGCTTCAGA AACGAGGAATTGTCATTGCAGCGGGGATGGAGTGCCTTTAATTTTGGCGG TCATTGGCGCGGGAACGACTGTATCGTAGGTGCCCTACTTATTCCAGCGC TTGTGACACACACCAATCGCCGGTGTTGCTGCGTGCGGGGTCGTGTTCTT AAAACTAGACTTGAACCTAAGAAATATGTGCAGGATAATATTCTGTCAGA GAATACATGAGATTGTGTAATTGTATATGCTTGTTCGCTTGCGTGCTCCG TGGCAGACGTCAGTGTGGCGGTCGTTCGGGAGCTTCAGGAGACACGTGGG GGAGACGTTCCGCAGCAGCAGAGAGGTACAGTGGGCGGCCCACAATATGC TGTGTTGGAACGGGAGTTTCATCCACAGTTGAGCGACTACCCGCACTGGT CAGAAGTGGGTTATATAACACTTTTTATGTGAGAAAACGTTCGTGCCGTA CCGGGGACGCGCACTATCCAACCCGCACTTTATAGAGCCCCTGCTGTCGG CACTACTTCTGGGATCATCCTGTTGAGCGCTCTTGACCAGCATTCTCGCC ACTTTCGAGCAAGATGCGCATTATTCTCATATTTTTTTAAAGCAAATTAC TACGCAGTGGGGCTGAAATTTGCAATAGCTTAAAAAAAAAAGTCAGTTGT ACCAGAAGAAAACGGAAGATTAAGTAAGGGCGATGAGAGGCGGAGAGGTA AGCCCAGCAGAGAATGGATCTCGATACTGCTGTGCCCCCAGCATCTCGGC GTCCTGGATAATTCCCATCAGCCCCGCCCAAAATACTCCGACGTTGCATG AGTAGTATTTGGGGGCTCAGTGACTCGGACTACTAGTACCGACACTGAAG TCGATTCAAGTTTCACGGACCTCCGACCCTGCAACCCTGTGCGTTTCCGC CACCCTCCAGAAGCCGGAGACTACGCGGGATGCTTGGCGGTACATGGGGG CCCTGGTGCGGTCCCAGCGGGGCGTGCTCCTCGCCAGCGTGGTGACGCTC ATCCTGGCTGCCGGCTGCGAAGTAGCCGTCCCTCACTACTCGAGCAGGGC GCTGAACGCCGCGGCATTCGCGCGGGATCGCGCGGTGAGTCAGCGAGAGC GCGCACTTGTTCAGCTGAAGGATGGACTTGTGGAAATTTCTTCACGTTTT CATAACATTTTCATAACATTTTCATTTTTTTTCATTTTTCGCAGCACAAC GCTGCGGAAATGTGTCGTTGGAGTCTTTCCTGCTTCCTTTCTTTTGCGTC GGGCGATTTTGTCAAAACGTGATCCTCTGAACGAACGCTGCACCAGTATC CAAGGGTCGCGTGGCGAGCTTGCTAGCGAGTGCGATTTCTTGAAGCAGGT TTTGTGTCTCACTGTTGAAAGGCAACGTGACACGTGTCGTCGACGCTAAC AGTCGTTCCTCTGAAACACTGTTCTTCTTTGACACAACTGTCCTCACTCC CCGCATCATGACAGGCATTACACGTGCCCTCAGCCCCGATGCTGTTCCTC CTTTCCCTCACGGGTCGGGTTGAACAACCCGTCAGGGAATCCTGTTTCGT GCTGCACGACGAGTGTTTTTTTTTTTCAAGTTTTCGGGCGTAACGCCTAC ACGTCGTATCCCCGTATAAATCCTCTCGGGGAACCGTTTTCGGCCACATT AGCTTGCCTTACACTGTCGAGTACACGTTTCCCTTTCATCACCGAATATC CTTCTTGGACCAATCGACCGATCGTACACGCTTCCCTTTCATCGCAGAAT ATCGTTCCTCACCGGTTGATCTCTGAAGCACACCGTTATCCGTTCGTCTC ATCGCCGAACACACCCTTGGCTGACCCATCGATTGATCAGAAATGCCTTC TTTCTATCGCCGAACACCCTTCGTTCACCGTATGATCTATCAAGCGCACC TGTTACTCACTGCGGAACACCCTGCCTTCACCCGTCGATCGAAAAAAGAT ACGTTCTTCTCACACGCTTCGTTCACCTGTTGGTCGATCAAGCACGCCTT CTTCTCATCGTCGAACACCCTCCTTTCACCCATGGAATTCAACGATGCAG CTTGCGAGTCTCTGCATCGCCGATCACCCTCCTTTGGACCATGGACCAAT CAAATCGATCCCTCTCAAAAATCGGTCGCAGGAATTCGCGAGGAGCTTAC GGGGAATGGTGGCCTACAGCCTGCTCGCTTCGGTTTTCACCGGCCTGAGA GGCGCGTGCTTCTGGCTGGCGGGCACGCATGTCGTCGCAAAAGTCCGGTG TGTTGGGGGGGGGGGGGCGGTGCAGCAGTCGCTTGGAGCCTCTTTTTGGG GCCGAGTACGCACTGTCTTGGAATAATTTTGGTATGTAGAGGGGCGGTGT ATGCAGCGGCGGTTTTCGCCAGGGGTACTATTGGACAAAGTGCACTCAGG AATCACCAGAAACAAGTGAGGGCTGCTTTGCAGCAGCAGTTGTCGTGTGG AACTTGTCCTATGCCAAGCACTCGATCGTTCACGTCAGGGTGTGGACGTG TGTGCGAATGTTGCTGACGGGAGGGGGTGGCGAGGGGGTTCCAGCGGCAG TTGCGTACTTGAGATTCTGCCAAGCATGCGTTCGCCACGCCACGCAGGCG TGGATGCGCAGCAGACACGTCGTAAGCAGCACCGACCTGTTCGTGTTCTT TCGTGGTTGCCTGTCGTAGCTTCGAAATTTGTGTCAAGGCTCGGCCGATG TTTGTAGAAGTACTCTGATCCTATTCTTCTCTTTGTTACAAGCAAGAAAC TCTTGTACCCAACGTGACTGCTGTAGTCGCAAGCGGGGTCGTGGTGGCGA TTTCGATAGTGAAAGCCGCGCTGACTCGGGGAGCTTGTGCAAACCCCATG AACGCGGCGATGATGAGCCACCCTTGTGTTTTCCTCTCAGTCGAAAATGC CGTACGCATGTCCGAGGTGACCAATCTGTCGACTTGTATATTGAAGGAAC TTCTTTAAATGTTCTGAGACGGCTACCCCCCTCGCTCGCGTGCGCATCGC GATTTTCGGTGCCCCCCTCGCCTCTCCAGCTTTGATCTCCTCTCGTCTCT GCTGAAGCAAGACATCTCGTTTCACGGTGAGCTGACATGGCACGTCTTGG TTAACGTGTGGTGGGAGACGGTGGACCTGCAGGCGGCGCCCCCCCTGAAC AGCAGGAGAGGGCGACGCCGCTGCGTTTTTTTGCGCAACTCTTGATGTAG GTCTCCAGTAAAACGGTGGGTGGTGGCGCGGACGGCATGCCGGTTTTGTG TATCACATAGTTTTGCGCGATGGAAAAACAAAACCTCCCCGAGGCGGTTT TCGATGCTCGATACCTCCGGGGAAACATGAGTACTGGGACGCACCGAGGA CGGCTCTGGAAATATCCTACGGAGATCTGTTCGAAACGGCGTCGCCTGTG CTTCGTGTGCTATTACTCTTGCCGCGCATCACCTAGTGCTTCGCATTTCC GCTGCTGTTCTGAACCGTCCTCGCGCTACAGTCGCCGCAGGCACAGTAAG TCCTCCGTGTGTTTTTTTATTTCCAGCAAAGGAAGAAACATTGCAGCATG ACTGCATGCCGCACACGATCTAGTGCAACAAATGGAAGCAGAATCGTGAG TTCCCAACCTTCCTTTTCCCGTTATCATCAACCAAAAAACGTTTTTTTTC CCCTCCACGGGCTGATTGCTCTGATCCTGCGCTTCGGCAAATTGCCGACT TTGAAAGTTCTCGGCCTTATTCCAGCGTCTTCCGTCGAGCTGCTGTTGCA GTGACCGGTGTATTTGGTGGTTGATTTGCCAAAAACCAAACACGGGAAAA AGGAATAAGGACGAAAAAACCCAGTATAATATCACTCGTACGTCTTGCCG TTTTCTTTCCGAAAAACGCTTTTATAGCAAATTCTTGTTGGCGAACTTCG TCCCGAGCTCCATGCCTTGTACGACTTTGTTGCATATCGATATCTGAACA AAAAAAATCTGCCAAGCTCGAACGAGACGGTTGCAAGCTACGGGTCTGCG CCTCTATCAGTCTCGTACTAGGAAGATCCTGAACCGCGCAACTTTGTACC TCTCTCAACTCGTCTTCCCAAAAAAACAGAACAGAAACTAGGCAGCCCAC AAAAATACCATTCGATTCGTCAAAATAAGACCCTTACAATCGCAAATATT TGGTTTTGACTCACCGAAAACGAATGACATCATCGCCTTGCCTTACCACT CGCTGCCGTGACGGAATCCACTCATTTTACAGACGCAAACGAGACGGGAG CGCTAACGTCTCGGCTAGCGTCCGACACGGCCAAGATTAGCAACGTCGTC AGCTTCCACGTCAACATACTCTGCAGGTATTGCGTCTCACACCCCTCCTC AGCCGCGTTAGTATCCTCTTCCCTGCAGGAGAAGAGTCCCGAGGATGCTT GACACCCTGAGACACCCGGCAAAAGTCTGGTGCAGGAAGTGTTGTTTGCG TCGAGTCTTCCCACTTCCTGACACATGCCTCCAGCAGCACCCTTCGGCAA ACATTGATGGCGAGTTTTGGTGCTTCCCATGTCTTGCTCGTGAGGAAATT CGGACCGCCTTTGTTGTCTCTCTCTCTCCCTCTTTTTTTTTTTGAAAGCG CAATACACAAGCGACGAACTACAAATTGTCTGCTAAGTCGGGGAGACGAT CCAGATTCGCACACGCTTTCGGCGGCAACCTCAAAGAGGAAGGGTAATCG CAACAATTCGTCGAAGCGATGTCGATCGCCATGGAGAGGATATGCGTTTT TTGCCGAATGCGAAATCGACCGACGTTATTCGGAAATCGCTCCCGCCCCC CTCCCTTGATTGAAAATTCACACTGCCGACGACATTCTCGAATCAACACC CTCCCCTCCGATCATTCTCGAGCCCAACCGACGAGATTTTCAACTTGCCC TTCCCCCCTTCCCCGGACTAGATTTAAACGACCGATGTATGCTGGTGGCC AGATGGTCCTCCTTTTCAACGAGGACAGACGCCAAAGCCGCAAGCTCCGC TGGAGAATGTGTTCCTCATGGCCACGAAGCACCGACTTGCAGCCGCACGG CAAACCCCGTTGCCTATCCTCCATGTATCCCCGGCCCAAGGAGTTGGTTT AGAGACAATAATTTCGAAGTTGTTTCCAAATCGCGTCGTTTCACAAGGGA ACAAAACGAAGCTCGCGACGATATTTTTACCGGCGCTTCGCTACACGTGC AGGCAGGTGATCCAAGCGATCGGGGGTCTGGGCTACCTTTACGTTCTGGA GCGGCAGCTGTCCTTGGTCACTCTAGTCGGCCTTGTGTTTGTCGGGGTCA TCACCACCGCCTACGGCCGCTTCTCGAGACGGTGAGGATATGGGGTTGTT ACGGGCTTACCCCGGTGGCGGCCATTTTCAATTGGAGACGACGAGGTTCA ATGTTTTATTGGGACGGGTCGCGCTTTCAGATTGTGAGCGTGAAGATGGT TTGGATTCAAGCCCCTCGAGACAGTGGGAAAATGATCGTGTTCGTGAAGT CATTCATCTAGTAGCTCTGGGGGCGGTGTCTTGAAATGGTATGGATTTGT CCGGTTGCTTCTCGAGCCGGTGAACGTGAAAAAGGAGTGTGGATTTACCC ATGTGCTCATCAAGACGGTGAACTTGAGAAACTGTTGTACCTAGGGGCCG TAGGTTTACCGAGACGATGGCTTGGATGACGTGGATTCACCCAGTCGTGA TTATTTTCTCGTCGAGGCGGCGCGAGATCGAATGAGGTGGGCCCGTCCAT CAGAAAAACATCCCAGGAAGTTGCTGTATGCGACGTTAAGATTAGCTGCC AGCGCCTCGAGGCGATAAGATGAGGAGGCGTAAAGCCCAAACAATTTTTT CGTCGACACGGTGTCATGAGATGAAACGGAGGGGCAGGTTTACTCTCGGT GTGGGGCGTTTTTGTCCCCGAGATGGGCGAGATTGACGGTAGGGATTGAC CCTACGGGGGTGACCCTCTCTTTGAGTGGGAGGTATTCAAGGAGGTGGAT GCCACACAATGGCGATGTTTTTTCTCAGAGGGTGGTGCCACAGGATGTGG TTTCGCACAGTCTCTCGCTTCGTATGCTCCCTTCATGCTCTGTTTTGGAT TCGTCGCCTCTCAGGAGGCCTCCTAAGGTCCAGACCGCTTCACACCGAGG TTCACCCAGAGTGTAGTTGTCTCTACCGCCCAGTACCCGGTTTTGCATTA CACGCCCTCGTAATATCCGCGAAGGTGCAGACCTCTCAAGCGGAGGCTCA GCGTCTCGTTGCCTGTACCCCCGTTTTGTATTACACATCTTTCAGGGTAT CCGCTAGGGTGCAGACCGCTCTCGTGTAGGCCGGTACTCGCTGCCTGTGA CTCCGCGCCAACCTCTAACTCTTCGTTGGATTTGACGCCTCTTAGGATAT CCGCCAAGGTGCAGACGGCTCTAGCAGAGTCTCAGCGTCTCGTTCCCCGT ACCCCCGTTTTGCATTTTACATCTGTCAGGATATCCGCTAAGGTCCAGAC CGCTTACCGCTTCATATCAGAGGTCCATCTCGTTTTTCGCTGTCTGCACC CGCTCATACTCCAATTTTCATTACACGCCTCTCAGGATATCCGCCAAGGT GCAGACCGCTCTGGCGGAGGCCGGTAGCGTCGCGGAGCAAAGCCTGTCCC TGGTCCGCGTGGTAAGGGCTCACGCCAATGAGGAGCACGAGCGGAGACGG TGAGCTACCGCGGGTCAAGATTTGTCATCAACCAGGGTGCCGATGCCAAA AGCACGTCATTGGACATGTCGTCTTTCACGCGTCTTTCCGTCGTAATTGT AGGAGGTGCCTTTTGGCAACCTCCATGCATGGACCAATCGTACTTCGAAC GGCGGTTCAGGAGGTGTTGTACTTTTGCTACGTACGGTACCGCTGTGGCG GGCTGCGAGCAAACGTCTGGAAGTAGATAGAAGGAAGCAGCCAGCCTTCA CTTGTCCTTGTGAAAGTGCAAACAAATGAAATCCACCGAAGCACGAGCGA AGACGGTGAGCTCTGGTGTGCTGGACCAGAACTACAGCGTCGTGTTCGAA ACGAGGGTGTTTGCGGAGAGACATGCACAACTTGACTGGTTGGAACACTA CAGCTGAACAATGAAAAGGGGCACTCACTTACTCACAAAACTTTCGCCTA CTGAAGCAAGTGTGGCTGGGTTCGTGTGCACGCATTATTGTGGCCGAAAA TGCATGAAAAATATGAACATTTGACTCCGCCGATGTCAAAATCGCTAACC GCCCTTGCGCTTGCACGATATCTCATCAAGAGTTGACATCGCCAATTGGT GAGCCCTCCTCCTCCCACGCACGCACACGCCTTCAATAATCGTGCCACCG AAATCAACAATCGGAACGCACGCTTCTTCTGGCCACTTCCCAATGTCGCG ATTGTTTTGACTTTAAAACGTCTCATTTCTTGTAATTCGTATCAAGCGAG ATCCCAAAATCGTCGAAGTTGCCCCTAAACAACAACAGAAACTCAGAGAA ACGTGTACTGTCCCTTGGATGATCAAGCGACCGCAACCAGCAAGCGAAGA ACACGTTTCTTTTCCCCACCGACCGCAACCAGCAAGCGAAGAATGCGCAT CTTTATTCCACCGACCGAAACTAGACAGAGAGGAACGCGCATATTTTCCC CACCTCTCTAGCCATGATAACAGATTTTTTTCACCTTTCGAGTTATTTCT TTCATGAAGGAAGATTAAAATGAACGGGTTAAGATGATCCCAAGATCATG GACGGCCGGAGAAAACAGCAAAAAAATTAAAGAAAGGTTTGTTGCTAGAA CACAAAAAATACCACATCGGAAGAAGAACCTTCCGAGTGTTCACCATCTG CACGTGCTGGTCTGATTTCTGAGCAGATACGGCCGCAAGATTGGGGAGTC TGTGGAGCTCCAGGAGACGCAGGGCATCGCCTACGGGGTCGCTAGAGTGG TCATCGGCTGGAGCCAGGTTAGAGAATAATGTACACAAGAAGCTGTTACA AAACGAAATTTGTACTCCGTATGAAGTAACATTAAATAAATGTCTTCATT GTCTGACAACCCAGTCGAGGCGTCCTCAAGGAAGCTTGGTCGTCCCTGCA CTCAATTTCTCATCCCAGATTACTCTTGGGTTCGGCGATGCTGCTACGTT TTGGCATCTACCCGCATGTGGGTGACGCCGTTTTCAGCGATACGCACGCA GGGGCCCGAGGCGGGGTTTTGAACTTTGGCTCCGACACGAGTTTCTCGCC CAGTGTCAATCGATCCGTGGCCATTGATAGAACGAGAAGCTCGAGACTGC GGCAGAGGGATGGAACTGTACATTCTCTCTATCCCCCTCTGTCTCTCTCC CCCTCTCTCTCACTCTCTGCCTGTCTCTCTATCTGTCTCTCGGTCTCCCA TGCTGTCATCTGGTCCGCTCTTCTCCTTTCGTTTGTTCGTTCAACGGCGC TCAAGGCGATCCTCCTAGCTGCCGTCCTGCTGCTAGGGGCTAAACGGGTG TTCGCCGGCACAATGACCGGCCAGCAGCTAACCACCTTCGTCTTCTACAC ACAGTTCGTTACTTCGGCGAGCTTCGACGTCGGCGACCAGGTGCGGAAAC AGTAGTGGAAGCCGTTGCTGCCGTCCGTACAGGTGTTGTTGGTGTTGGTT GTTGCTGTTGTTGTAGTTGCTGTGGTTGTTGTAGTCGCTGTTGTTGTTGT TATTGCTGCTGCTGCTGCTGCTGCTGCTGCTGTTGTTGTTGTTGTTGTTG TTGTTGTAGTTGCTGTTGTTGCTGTTGTTGTAGTTGCTGTTGCTGTTGTA GTTGTGGTTGTAGTTGTAGTTGTAGTTGCTGCTGTTGTTGTTGTTGTTGC TGCTGTTGTTGTTGTAGTTGTAGTGGTAGTTGCAGTTGCTGTTGTTGTTG TTGTTGTTGTAGTTGCTGTGGTTGTTGTATTTGTAGTTGTTGTTGTATTT GTAGTTGCTGTTGTTGTTGTTGTAGTTGCTGTGGTTGTTGTAGTTGTAGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGCTGTTGTTGTAG TTGCTGTTGCTGTTGTTGTTGTTCTTGCTGTTGCTGTCGCTGCTGTTTTC GTTCTGGTTGTGCGATGGTCGTGGTTATTGCTGCTGCTGCTGCTGCTGCT GCTACTACTGCTGCCGTCGTTGTCGTCGGTGTTGTTGCTTTGTCCTTTAT TTGTGGTGTATGTGTGACGCCCTTCGCAACAAAATGAGGTAGATTCGAAG GCGCGGTTTTGTTGCACGACATGTTCCCGTCCAATACGTGCTCGGTTTGC TCCACGTTATTGAGGTGTCGGTCGAAAATCCTGAAGGATCCAAATGTAGC ATGGATGGAACGTGCGCAAATTGTCGTTGTTTCCCTAGTATACTCCTCCC CCGCGAGGCTTGTCCGCCCGCCTCATGCAAGCATCCTAACAACCACTGTC GTTGCATTTGTCGCTATTACAAGTATCACAATCGGCCGCACTCGCGCGAT TGGCGTTGCCCCTGCTGCTTGCTACTGCTTGCCTTTGCCTTTGCTGCTGC TTGCCTTTGCTGCTGGTGCTGCTGCCGCCGCTGCCGCTACTGGTGCTGCT GCTTGCTGCTGGTGCTGCTGCCACGGCGATCGCGACATTGCAACCTCCAC CGCCGCCCACAAAATCAAAAACAAACAACGGCGGGTCATCTTCGCCGCTC CCGTTTCGCTGCGCAACAGTGGGCGAAGGTGACCGCTGTGTACCTTCGGA ATTTTCCAGGGGTTGGTGTTATGTATGTACCTGCTTCGGCGAGACCACTT TCATGTCCGTTGATTTTGTGATCTAGCCGCACTACTTGCCGGAGATACCA TCGCGGAAATACCCCGCCTTTTGGGCGGGCTGCTTGTTACCGCCCCAATC TGTTTGATTGTTTGCGACCCGCCGTTTGCGCATATTTTGGCGTGTTCGAT TGCGCAAGATGCGATTGGGAACGATTTATATTGCGCGTGGCGTAAAACAG CGAAACACGGCGGTGTGCCGTGGTACGGTGCAGCGTAGCACGATACGGCA CGGCACGGATGGGTTGGGGTAGTGCGGCATAGCACAGAACGTTCGCGGTG ACGCGCGGCAACAGCGGCCCGATCCGCCAACGATAACACGCCGACAGATT CACGTCGATCTCGGTTCGTGGATTCGCGGATGGATTTCTCGGTTGCAGCG TTTACTTTCCCCCCGTTGTTGAGCAGCATCGCAGTCGGTTCGCATTCTGA GTCATGCCTCCTTGATACTTGCGTACAGGAATACTTTCGTATGTCCCTCA TTCTTGACATACCGTGGCTGTTCTCTTTGAAACATCCAACATTATTGTTC AACACACGTGTTGTACATACGCTACACGCTAGATCCAAGAAGCCCTTGGC GCTGGACAGAAGGTTTTCGAGCTCCTCGACAGGCAACCCGTCATGACCGG CCACGCCAAGGTACAGCATTCGGGAGGATCGTCTGCGGAAAACTTCGACC ACGCGGCGCCCACGTCGCACGAGGCTACTGGCGCTCGTGCTTATCCTTCG GTGAGGCAAGGGGCGATGTAGGAAGAAATGAACGAGTCGGTTGTGCGTTT TGGGGTGGTTTCGGTTGACAAACGGATACGATCGGTGATTTTGTTTTTTT GTACCCCGCAGAGGTCACGCGTCAGTGGGTGAAGCGAATGAAGCCCATGC GCAATACGTGCTGGCTTCGTGCCCGGTGACGGGGGGTGGGCTTGACGTGC CTTTGCTGCGAGCTTCTGTGACTCATCGCGGGAATTGCTGTGTCACTCGA GGGTGCGAGACACGTTCGAGGGGAAATTAAACGACTTGCTGGTTGCATGC ATTTTTTTTTTTTTTTTTTGCTTCCGTCTGCTGTAGCACTTCACCGAGCT TTGCTAATGCCTCCCACCCAACCCCCCCTGGATTCACCCTCGCCCTCCCT CGGCCGCCTTTCGATCACATTGCAGAGCGGCGCCGACAGCACCGGACGCG AGGACTCCGGGGTGCTAGCCCCGCAACACCCGCAGCCGGCAGAATCGCCG TCCCGTGTCTCCTACGGTGCGGAGCACGGAGAGCGAGAGAGAGGGAGGGT GGACTTCGACGCCGTTTCGTTCGGGTACCCGACACGCCCAGGTGTGAGAA ACCGGCGGTGTAACGCTTGTTTTCTAATATTATTATTATTATTATTATTA TTATTACTATTATTATTATTATTATTATTATTATTATTATTATTATTATT ATTATTATTATTATTATTATTATTATTATTATTATTATTGTTTCCGTTTT TTTTTTTTTTTTTGGGCCCGGTCACCCCTCTTGAGGTTACACCGCGCACG TGCCACACCCCCTTTTCGGTGAGAGAGCCAGAGAGGGAGGATGGTGGACT TCAAGCCGGTGCCGTCGAGATGCCCAACGCGCCAAGTTTCGAGAAAATGG TGGATGCTAAGACGATTCCTTTTCGGTATCGGTGTGTGAAGGCACAAATC GTTCCTCCTTAACCCCGCCCTAGAGGCGGGCTTTTCTTCTTGCTTTCGCT CTCGTCCCGCAGACCCCCGCGCGATGAGTGACAAGTCCTGTTGGTTTTGG AATGCACCCTTCAAACAATCGTATGCATCGTTATTAGTGTCCCTACCGCG ACGAGTTGCCAGACCACGACGAAAGTGGACGCGAAAAAAAAAAACTGCAC CTCAGTTTCTCTCTCTCTCTCTTTTTCTCTCTCCCGAGGTCGGGTCTTGT TCTCTCGCTCTCTCGCTCTCGAGGCTGAATCCTTCATATTCTTCCCTCCC ACGCCCGTCCTTTCCTCCCCTCCTTCCTTGTTCCCTTCCCTCGTTCCTCG TCGAGAAGGCGTTCTCATCCTGGACGAGCTTAGCCTCAGGGTGCGGCCGG GGGAGAAGGTTGCTGTTGTCGGGCCTTCTGGAGGAGGAAAATCGACAATC TTGCGACTTCTTTGCAGGTACGAATCAACAGAGATTTGGAATATCTTGCT TTAATCGTTCGGGATCAATCTGCGGGGGGAGTGGAATCAACAACCTTGCA TCTTGTTTGCAAATACCAATCAGACTAGATCTGGAATCATTTTCTATTGT TGTTCGGGACACAATTCGGCGAGGAATATTCATGATCGTGTACATTCGTT CTTGGCCGGTGTCAGTTCGGAGATCCGAAATGGCTAACTGTATTCGCCCG GCATATGCACCTTGGGATAACAGACGACCTGGCGATTCCTTTGCAGTGCC AAGCAGATGAAATTCAGAAAAATCCGCTGTAATCGTTCCGAATGATTGCT CCCCGTGGCGAAGAGATTCGGGGCTCCGTTAGGTTCATGCGGGTATCTTG GAGACATGCTGTGCCAACTGTGCCTCCCCCTGAGCTCCGCTCGTAGCGTC CCGTGTTTTGTTGCGTGTGTCGTGAAATTTTCGAGCGCAACGTCTCTGTT CTGGCTATCACCAGCTAGTTGATAGCACCACGCGATCGTGGGGGTTGTTG TGTAAAAGGCTCGAGAACATCGTCGTGTCTGGCAGCAACCAACAAAGGGT GAGAAGCACGACGCGGTGATGAGCATTTGTCGTGGAAAGACCACTAGGGC ACCCTTTGGTGTCTCGCCGAAAGAGGGTCAGGGCGGAATCACGGCGGGCC AGTGGACGATGCATAACTTCTGTGCAAAGGTTTTGGAACCGCGGACTGAA CACATCGTCCGCAACAGAAGACCGTCGACACTTGCTGAAAAGTAGCACGA AGCAAGGAAATGATGAAAAGTTACACTCTGATTGCGTGCGGCTTTTCTTC CGTTTCCACACGTGAGGTTTTACGATCCAGATGGCGGCCGCATTTATCTG GGAGGGCGGGATCTGTCGGAGTACAGTCCGGTGGACATCAGCAACATTGT GTCTTGGGTGACCCAAGAGCCCCAGCTGTTTCCAATATCAGGTGCGCTTT CCTTGTGATCTGTTTTTCCTGGCTCGCTGTGCAAGACGTGTGGGGATCGC GCGTCTGGTCGTTCGTTAGAGTTGCTTGTTGTCCCCGCCGTCCATGGAAG CCCCTATGCTAGCTCCATCGTCTTGTTCGCTGGGGGCTCATTCCCTGCTT GAATCGCCGGAATCCCGGCCTGCCTGTCTGCCTACCCCCCCGCTGAGTAT GCAAAGTACCGTAAGTGTTCGAGAGTTGGCACACCCGTGTTAGCGTTTTT CTAAAGCGTTTTTCTCCACAACCAGGAGGGTGCCAACATTGACTGATACC TCTCTGGAAAGCCCACGACGAGACGTTTCGAAAACCACCCTTTTTGGCAG TGGTACCCTCCTAGTTGTGGAGAAATACGCTATTGAAAAACGCTAACACG GGTGTGCCAACTCTCGAACACTTACGGTACCCAGCTGGCGTCTTCCGACC TGTGGTGGCACTTGCACCACTGCTTTGTATCATACTTTCAGAAAGAAAAA GGAAGCACTTCCTTGTATTTGATTTTTCTTTTGGGGCCGTTTTGAATGGT AAGCAATCTTGCGCCTTCAAAAAAAAGGTACACATTCGCACCCACATGAC GTCAAATTTTAGCGACACTAGCGTATGTTACAAAAAATGACAACTATTGA CAATTGTTGCGCTTATTTTTATTTGCTTCAGTGGGGGAAAACATCGCTTA CGGGCTTGAGCCCGGGTCATTCGGCATCAGCGACGTTCACGAGGCAGCGA AGGCCGCCAACATACACAAGTGAGGAATCAAGGAATTGGAGAGGTTGAGG TTGATGCAGTCGGCGCACGCGTCTCACTTCTTGCTCTTGCGGTAGTAGAA CTCAGCTTTAATCTCACTTCTCCTCCCCTGGTGGTACGGGGCCCAGGTGG TATCCGGTGGTGTGTAGTGGTCGGCAATTGCGCCAAAGCGTTTTACTGTT TTGTCTGTGATTGGCCCGCTTTCATCCCGCCATAGATGATCCCCCCCGGG AACTTAAAGTGTTATCATCCCGCCACTAGAGTACGCGGGAGAAGTTTGGG AAGGGAACAAGAAAATAGTAGGAGAGTTGGAGGCAGCGCAGATGAAAGCA GCGAAGATCATTCTAGGATGCTCCCAGCGCACAAGTAACGCAGCAGTAAC AGCAGAGTTGGGGATTTACTCCTTAAGAACGGGAAGAGACATGAGGAAGT TGACATGGCAATACCGTATGGAAAACATGGGAAAGGAGAAGTTACCGAGA ATAGCTTGGGAGGCGACATGGGTAAACAAGCCCAAGGGTAGACAACCCAT TGAGTGGGCTAAGGTTGTACAGGGAGCGTGGAGCGGGTTAGAATTGACGA ACGGGAGACGAAGGGAGCGGAAAGCTTAGAAGGGTACAAGAAGAGTATCT CAGAAGCCTTTGAAAATAGAGAAGACCAGAGCTTGCGGAAAGAGACCGAG GAAAAGGAGGTTCTAGAAGTGTACGGAAGGCTGAACGAAGGAATAGGGTT CAAGGAGTACCTGAACGGACCATTGGATGAAGGGACAAAGATGAAGGTCA AATTTAGAACGGGCGACATTGACCTTCGGGAACGTAGAAGGAGGTTTAGG AAGGTAGACGACGACGAAGACAAGTTCAAATGTGACTGCGGTGCCGAATG CGAAGACCGAGTACACGTAGTTGCAGAATGCCCGTTATACGATCAGGAGA GCGAAGGGTACATGATTGAGCTGGAAAAAGTAGACAGTCGGTATAGAGAG AAGTTTGAGGCATGGAACAAAGAGGAGAAGACGGTAGCGGTACTCGGGTG TAACATGTGGCCCAGGAAGGACAGGTATAAAGTAGACAGGTTAGGGAATA CATTTTTGAGCCACCTTTGGCAAGGTAGGAAGGAATGATTGGCCATCGGT GGTCGATCCTGCGGGAACAATGCTCCGTCCTCTCGAGGACGCGTGGTCAA TGGTCTAACAACTAAGGCATGCAAAACATGAGTACGCCCCCCCCTCCCCC CCCGGACACGTAGCCCAGCTTTTTCAGTGCTGATGCCTGAGCTACCGGCT TGTCTGGTGCAGTGTTATGCATCCATACCTACAATGGTGAGGTGCTCGTG CATCTTGTTCCAGCCGGACTGTCGTTGCTGCTCTCGTGTCTGCTCTACCT CACTTGCGTTAATCTACCTCACTTGCGGTAATCCACCTCGGTTGCGGTAA TCTACCTCACTTGCGGTAATAATTTTCGCAGCTGATGATTTCACTTCCCG CTTATGTTTTGCAGCTCCTTCGCTTGTGATCACGGTCACTTCGCGTTCCT TTCTCCTTTTCGTTTTCCAGTTGCCTCCCCCATTACTGCGGCCATTTTCT GAAATACAACGCGGTTTTGTTTCACCCTTCGCTCTTTAAATCCCTTTTTT TTTTTTCAACTTTCAGTTTTGTGTGCGGGCTACCCGACGGGTATGACACG CTCGTGGGGGAGGGGGGCGCCAGCCTTTCGGGGGGCCAAAAGCAGAGGGT GGCTATCGCCAGGGCTCTTATCAGAGATCCAGAGGTAAGGATGATCTTTT AGACTTCGCACCGACTTTTCGCAGCAGAGGGTGGCTATCCCCCGGGCTCT CATCAATACTTTATTTATGTTTCTCATCACGTTAAACCATCGTTCCTAGA GGCCTACACCTAGAACTCTGGTCCGTGGGCACACAGAAGGTCTCCTGCCC CAACCCCCCTCTTGCGGTTCATGCCTTCAATATATAACGAGAAGAGTTCA GCACTCCCTTCCCTCAAGGGTGTGTACACACGAACTATTAAATAGCGCTA TACACTGCCAGAAACGAACGCAAGAGAAAAAACTCATGTTGCAAGAAAAT GCTTACGCATGTCGAGATTCGAACTCGTGAACTGACCACTCGAAGGTTAC AAGGATACCAACTAGACCACCGGGGCGACCGGCCGATAACTTAGATCCAG AATAGGAGACCTCCAGCGGTCAGTAGACCACGTTTTGTTTTTGCTTTTTA TTCGGGTTTATGCCGCCTCGACTCTCTCATCCGAGATCCAGATTGATGAA TCGCGTTGCTGTAATTTTGGCTGCGCCGGATTCAAAAAGCAGTGGCTGGC AACCCGCCGGGGCTCTTGTCAGAGATCCAGAGGTCAAGCACTGCCGTCAT GTTATTTGTTTTTTCGAGATTATATCCGCTTCTAAGGAGCAATGAGAAGC CATCACCGGGGCTTCATGAGAGGTCCAAAAGGTGTTCATTCGATGCCTCC ATTTGTTTTGGCGATTCACACCGGTTTCTCAAAGACGATGGTCGTCGCGA GGGCTGTTACCAGAGGGGGGGGGGGGCGTGCGATTTAGAAATGGGTAATA CAGGTGAAGAGTGTGTGAGAAATTTTTCATGCCAGTTGATTTCAACCCGC AACCAAAACCACACCTGCGCTATCCAGCCCGCACTACAGAGTGCTCCCCA CTATACTTGCTTTTCGTGCTTGATTTTCGTCTTCGAGTCTTCCTCCGCCG TGTATTGACCCGTTTGTTGGTAACGTCGGGCAATCTCCACTTCAGCCCTA CGCGTCAGTGGTCCCTGATCTTGGTTTATGTCTCGCAGATTCGATTGTGG GACGGCGGGTAAATGTTCCGAATGGGGGATCACGCTTCCTCGGCAATTGT TACGTGCGTGTTGGGCTTTGCAACGTCTTTTTATTTTTTCGCGGGATGTA AAGTCTTTTTGTCCTTTCTTGGCTGGTGTTCATTTTTTTGTTTCGTCGGA TGGTTGGCCATTTTCCCCCCTTTTGTCGTTTTGAAAGGTAAATCGTAACG AAATATGCTCTTTCCACGATCACGACTTTTCTCCACGATCGTAGCGATCT TACCTTCTCATGCTGCCGCTGATCGAAAATCACTGAACCAAAGAAGGAAA CATAGTAGGGGGTCGCGCCCCTCGAGCCTGCGAACAACACGCAGGCCAGC ACAAGCATGGACCGTGCAGCAAGCACTGATCGCATCGCTCTCGTCAGGGG CTCCGAGCAACCTTTCGATCACCGTCTTGCTACCCTTGCCGCTAATATGT GACGCACGTTTGCGGGAGGTGGACGTACTCCCCGACATGACACACCCAGC CTCAGCTCCGCCGCTTGTTCGAGCCCAATGGAGGCGGCGGTTCACACACC TCCACGGGCAATACTTTCGGTTGATAGTTCCCTAGACCACCCATGAAGCG AAAGCTTGCCGGGATGAAAGCGGCAGATGGAGCCCACATCCTATCAGATT TTCGCTTCGACGGTGATCTCGGGAGCGAGCAATGAAAAAAGAGTCTCGTC GAAGTGCGGTGAAACTCTTTCTATTCTGGGCTCGAAACATCGGCGGGGGG TTCAAGGGCGTGTGGATGCGTTGTGTACATTTTTCCCGCCTTGAGGACGC CATCATCAAGAACACTCCCAGCGGTAAGGTACTTATTTTTCCAGAGCCAG GGGACATACTCTCAAGGGCACTTCACCGCGTTACGGACACTTCGAACGCT TCGCGTCCTTTCAATCATGTCGGAAGAATTTGTCTTTGTGCTCGCCCGGC CACCGCACATCGCACATCAGCGGTCGGGGGGGGCAGGACAGAGAGGCAAG GGTTGCTCGGAGCCCTTGGTGAGCGATAAGCGTCCAGTACTTCCTGCGCC ACATCGATGTTTACTCCCGCTGAAAGCAAACCTTCTTTGTCCAAAGCAAG GGTCGCGATGACTCCTCCTCCCCTGAATCCGAAGGGCACTTGCCCGAATA AAGACAATCGAACCAGAGAAAAACGGGTAAGTGTTCGTACAGCGGGCATG ATTGTGCATACACCAAGCGGTAGGCAACAAATCGGATCCGACCCTACGCG ACGCTCGTCCCCGCGCACCGCCTTTGTCAAGGTCCTACTTCTGGACGAGC CCACGAGCGCGTTGGACGTAGAGAGCGAGAGGCTTGTGCAGGACGCCTTG GATACGGCAGGGATTGGCCGCACCGTGATACTGATCGCCCACAGGCTGGC CACGATCCAGAGAGCGGACCGGGTAGTCGTGATGCAGGTGAATAGAGCTT GGAGATAGTTCGCATGGTCTTGATGCAGAAGAAGGAAGGTTGGACTTAGT TCGCATCGTCGTGATGCAGGCAAAGCGAGCTTGAAGTTAATTCGCATCGT CTTGATGCAGTCAAAAGAAGGTTTGAGGTTGGTTCGCATCGTCGTGATGC AGGTTAAGCAAGCTTGAAGTTAGTTCGCGTCGTCGTGTCGCATTTAGAGC AATCTTGAAGTTTGTTCGCATCGTCGTGATGCAGTTAAAGCAAACTTGGA GTTAGTTCGCATCGTCGTGATGCAGATAATGCAAGATTGAGGTGTGTTCG CGTTGTCGTGGGTTACCCGAAAGAAAGCGTGAAGTTCCTACGCTTGCAAA TTGCATCGGAGCAAAAAGACCATCCGCTTCACAACTTATTTAAGAATCTA CACTCAAGGGCACTGCAACAGGAGAAAACACCGTTTCTACACAACGCAAG TGTTCAGGAAAACGTACCGTGCCGTGCGAGCAGGGGGAGGGGGAATGGAC CCAGTTTGTGCTCGATCTCGACCAGATGCGCCACCATTCCATGTGTAGAT GCTGAATCGTGCGTTGGGAGGAAGCATGATAGAGTTCACGTGCATCCGTT CATTCTCCAACGGAGGGGGTGGATGAAACCACAGAACAACTTCATTTTGT GACACCATATTCAGTTACAGAAAGGAAACGCAGGTTGGAAGGAAGCTTGG GGTGTCCTCTGTGTTGTTTCGTTCTCGGCGGGAGGTATAAAAACAAGAAC AACATTATTTCCTCTGTTTTTGCGCGTCTATAATGTGCACGAAGTGACGA GGTGGTCTACGGATGCACGGCACGGAACGTTGCTTTATGTCTCATCTCCA ATCGCTGCGTATGCCTCAAGAACGCGCATGCTCTCTGCCGTGCGTCGTCC GCTCGCCGCAGACGATGACTTCGTCGTTTTTCCTTCCAATGGTTTCGCTT GTAGGGACTACACCCCCCTACGCTTTGTGATCCGATTTGGCTAGGCGGCG CACCTAACAACAACTGTGCCCTCATATCTTTTTTGCACACTTGACAAATG GTGGGCGAATCTCGGAAAGTTGCCGATGTGTCAGGGCTTGATGTATCGAC AGGGGCGCATGTTTCTCAATTGTTCGCTGCTGTAGCCGTAGACACCTTGG TCGTGTTTCCTTCCAGTGATTTCGGATGTGTATGGAATGCACGCCCCCCT CCGGTCGGAAGTAGTTTGACGAGGGCCGACAACGATTCCATAACATCAGC GACAACGCACGTGAACTTTTTATGTAACAAGGTCGACGTGTTCTCCCGAA AGGCAATGGCTTGGAATCTTCTTCTCGAGGTTTTGAACCCTAATCGCCTT TCCCCCTACAAGCAGCCATATCTGAGCAAGATCCGCTAAACCAAAGACGG CCACCAAATCATCGCCTTCTTTGTTTTTTTCAAAAGTCGCGACTACTGAT GGTCATCACCGATCAGCATTTGTCTGATCGTATACGAAAAAACGACACAC AAGTTTTTCATGTCCCTCCACAGAAATCTGGCGTATGCGCACCCGCTTCC GCGACAGCCGAAACTTCCGGTTATCGTTGTTTTTTATTTATTCATTTCCC CCCGTTTGTGTGGCGCAGAACGGGCGAATCGTGGAATCCGGAAAGCACAA CGAGCTCCTGTCCTTAGGTGAGAGCTCTCCGAACATGTGTTTTGCTGGTG ACCTTTGGTGAAGGACGCGGACGTGTGAACATCCCTTGTTTTGGGCGTGG AGTCTCGCTGCAATTGGATGTCGTGTTTGGGAGACAAATATGGGATTGTT TCGACGATTGCTTTCTTCGGTGAAATGTCAGAAGGCAAACGATGAACTGA AAAAAATGAGGAGGACCTAGCGAGCTCTCCTAACATTGGTTCAAATTTTG GCTCGTGTTTGTTTCGCGATGGATTGTTGGTGCGAACCATCGTTTTTCAG GCACCTCAAGCACAAAAAATAATTCGTGTATATCTACATTCCAACGAAAT AAGAAACATTGCTAAACTTAATGATCTTCCTCCAAATTTTAGCAGCAGGA TTGCATGGCGTACACCTCCACAGAGGGATCGTCAGCTTTCCTTCTACCTT TTTCTTTTGGACGAACGAAACACATTTCGTTTCCCTTGCGGAGGCTGCAT GATGTGTCGACTCTCGCAGCGATTGAGTAGGGAGGGCCTGCTCAACTGCT CTTCGCAGGGTTACAAATCTAGCCTGTCTGTACTGTTGTGCGAAATGTCG TTGTTCGAGGAGTGGACTCTCTACGCGATTCCAAAACACCTCAGGGAGTC GTGAGGGCCCACAAACCGTCAACAAGGTTCCATTCGATCTTTGAGCGCTA GTCTACTCAACACCTGTTTGCGCAATTCAAATCGTGGCAATGCCCGCCCT TCCCAACCCCTTCCCTCTTCCCTTACGCTGTTTTTGCGGAATGCTATTCC GCCCCTTGTTTTTTTTCGCGTTGTGAAGGCGGGGTCTACTCGGGGCTTTA CAAGCAGGGAGAGCAGGTCGCGACCGTGCAATAGAGACACTCCCCCCCCG GTCATCACGCGCGAAGAAGACGCCGCACCAATTTTGTTTCCGACCCAGGA GAATGGGAGCGGCAGACTGCACGCTAGCTGACGCGGGGGGCCACCTCCCC GAGGATTTGGTGCACGAGAAATGCCTTCCGGCTCACGTTGTATGCCTATC TGGCCCTCCGTGACCTTCTACGATGACTTCGGTGAGAAAGAGTGCCACGC GGAGGGAAATGAACAGTGGCGATGACGTCCAACCCCGCCCCCGCGATCCG ATGTTTCTCCTCTTCGTTGATTGGTGTGATTTGAATACTTGGTGCACGCG ACGGTTCACTGCGTACAGGGTGATTGACCGCAGCTGGCTGTCGAATCCGA CCGCATAGCTCTTTGCTGAAAGGTCATGATGCCGCTGAGGGTCGGTGCGA CGAGTGCGGGTGGGTGCCCCAGCGCACGATGCCACGATTTGTCCCACCTG CTGGGTTAATCGGCCGCATCTGGGTCGAGTTTGTTGGGCATCCACGTTTT GCCACGGGTCCAAAAACGCGGTGAGCGCGTGGCCTAGAAAGGAAGGCAGA TAGCGGGAAATAGGCGAGAGATGTACATGTGAGGCGCGCTCAGTTGGAAC GTCGTGGATGCAGCGCTTGATGGGTTGGCCCGAGAAACGTGTGGTTGGTA CAGTCCCCGGAGGAAAAAGGTGTTCGAAAGTGAATTGTTACACGATGGCC AAGGACCGCCCACAAAAGAGGTGCTCGTCTAGTGCAGGGGACGACTATGA ATTTTGACTACCGAGTAGGTTTGACTGCTGTGTGCAGCCTCAACGTATTC TTGGCAAGCTCTCCTTGCCAGACGGAATTGCGACCACGTACGCAAACAAA CGAAAAAACAGTGATATCCGACAGATCTTATGCGATCGTTCAGTGTGGTA AATCATGCGTTCACGTGTTGACGGTGGGAGATGTGATGGTGTAAAAGCTC AGCGACACGTGTGAAAAGGGGAAAGAGGTTGATCGGCGCTTAGAGGGGGC CTGCCTTGTCGTTGTTGAACACAACGTGGTTAGACTATGCCATGTCCACG TTAGAACCGGAATGCGTGATTGGTTCTACGAATCAAATGCATAGCGATGA CGTGCAAAATCTTGCTCATCTCAACATTGCCAGGGAATGGTAAAATCTGC CGCCCACCAATATAGAAAAAGCAAATTTAGAAGAAGGATATAAGGCGAAC AGGTGTAAAAATGACCTTGAGAGTGCGCACTCCGCGTCCCTTCGTCCGCA TTTATATCCGCACACTCACCAACACACACCACACAACTTTCGGACCAAAC GACCCCCTTTGCCTCAACCCGAACCCGAACACACAAAATTAAATATACAC ACGGGGATTCTCCATCTCCCCATAACCTCCACCCGCCCTCGCTCGCGCGT AGATTGACGATCTATTAAAAAGGCGCGTAACTTGACGACCCATCATCTCG AAGCGAACACAGATCGATCGGGGGAGAAGCGCGTGCACATGAGATCAAAT GTGTGTGTGTGTGTTGTCGTCACGCTAAAAATCAATCCGTCTCTCCGCCA AGTACCTCTATACGTCCGTACTGTTCCAACAGACAAGTGAGGCAAAAGAA ACTGAAAGAAACAGAGAGAAGGAGCGAATGATCCGTCTTGCCGGTTGCCA CGGAAAAATCGGGATCTTTAATCTTTCGGGGCGGTTCTTCGCGCAATTGT GCGCGAAATGTTGACGATTCGTGTCAGCTATCTCACGCCTGCGAAATGCC CGGACTTCGCAGCCTTATTCACACAAGTTGCACGTATGCATTCAGTATTT CTACCATGGAACGCTGCCCCGCTCGGTCCCTCTCTTGACCCACCGGTCTT GTGTCTTGCATGTTCCCCCGAATTCCAAAAAAGGTTCATTTTTGAAGACA TTTTTTTCCGTGTTGGAGCTCCCTCCAGCTCCCTCTCCCTTTCCCCCTCA CATACACACCCGCCCCGTCCAACATCCTTCGAAGAGCGAACACGCGTGAC CGTGTGCACGAGCGAGACAAAGAGAAGAGAGACGGACGAGTGAGAGAGAG AGCGAGTGAGAGATACTCGAGATTCACAAGCCGTGGCTGCTCGTTGTCAG CTCACACAGATCCATCTCTTACCAAGCAGCTCGGCAAGCAACCACAGCGC GCGGCTGCAGCAACTAACCCTGGCGTGTGTGCGAGCGCGCGTGTGTCCTC AATCGAAATGAAAGTCAGCGTTAGTGCAAACAACGCCGGAGAGGAGACGA CCAACAGGAGCAGCACCAACAAAACCGAGAAACCCCCCCGCTTCCAGAAC AACCCCCTCGTGGCAGAGGACGACATCCTCCGCCACTTGATCCCCTTCGT GGCAGAGAGCGAGGGCTACCTGTACGTGGCCGGGGTTGCCTCGACCTGGG CCCGAGGCTGGGTCGGAGACAAGACAACCAAGCTCCGCTCGGCCGTGGAA TCCGCCGCTAGACTCGAGTCCGCGAGCACCAGCGCGAGGTCCCCGAACGC TTGGGTCTGGAGCGACATGGCGACCATATGCTCGAGGGCCGCGGCGGGAG GCCACCTCGGGGCTCTCCGCTGGGCCCGCAAGCAAAATTCTCCTTGGGGA GAATCAGCCCGGGAGGCGGCGGCAAATGGTCACCTGGCGGTTCTCAGATA TTGTTATGCGAACGGGGCTCCATGGGATAAGGAGGTATGCTCCAACGCCG CCGCGAGGGGCGACCTGGAGATGCTGCGGTTCGCCCGGCGGCGCGGCTGC CCGTGGGACAAGGATGTGTGCGCTAATGCGGCGGGAGCAGGGGAGCTGGA GCTGCTGATGTGGGCCAGGAAGAACGGGTGCGATTGGGATGCAGCGACCT GCAAACACGCCGCCAGAGCTGGAGAGCTCGAGATTCTCAAGTGGGCGAGG TCGAACGGCTGCGACTGGGACGCGTGGTGCTGCACGTGGGCTGCTGGTGC AGGGCACCTGGAGGTACTAGAGTGGCTGTGGGAGAACAAGTGCCCGTGGA ATGCTACGACTTGCGCCGCGGCGTGCCGGGAGGGAAGGATAGAGGTGCTG GGATTCTTGAGGTCGAAGGTAAGCGCGCGAACTCCGAGTATCATTGAGAT TGTTCTGTCGGCCCGCCCCTCTCCAATTTCTGAGCATTAACGATGTTGTC TCTTTCTCTCTGAGTGTGCACTCGCTGCGTTTCTGTACGCGTCTTCCGCC TCCGCCGGCGCGTTGCAACGCACGCGCTCACACCACATCGGTGCAAAAGA TTCGATCGTTGCGCATGTCCCAAAAGCGGAGAAAACAGTAGCAATGGTAG TTTCATTGCACCTAAACGAAGTCCGCTGTTTCATCCCTCTTTCTTATTCT ACACGAACGACAAGTTCCCAAGTTTGCCGTCATTTTCCGCCGAACTTTCG ATGCAACGGCTGTCTTCCCCTTTCCTCCGCAATCCCTTTAGAATCTATGC GTGACAGCTGTAGTGATGCACAGGGTTTCTCCCCCCTCCCGTCTCTGCAG CGTAATTCTCATCAACACCACCACACGATGCTGTTTTTCGCCGCTGAAAA ATAATGAAGTCCCGTTGTTGCTCCGGAAGTTCAAGATTCGCTCCGTCGTC TCACATTTCACATGCGTTCTCTATTCTCTTTTTTTCTGGGGTTGTGCAGC TCACGGGCATGGATTCAATGCACCCGTGTGTGCGTATGGGACGCCAAGTT TGTTGTTGGTCGACCAAAGTTGCCGGAATTGATCGCTGCTGGTATTGTGT CTTCTCGCTTTTCAACAGCTTTCTATCGTTGGAAGTAGCTCTTGAAAAGA TGCACTCCAAGCTACGTACGCGGCCATTGCTAGCTGGAGACCACGCAGCG CTGGAGCGAACACACGCACGCCGCCATGTCGGGGGCGGGGCGGGTCACAC ACGCCGCGGTTTTATTACGCACGCCCTCACACCCTCGGCGCTAACCCTCC CGGATGAGAGCGGCGAGCACAGGAACTCCCGGGTGCTCGCCGGAGCCATT ATTTATTTGGTTCAACGCGCACGCCGGCGGGGAATTTTTTTCTCCCGAAA GGAGCAAGAGCAATGGGAGATCGAATTTTGTTGAAGAGTCGGACTGAACT TACTCCACCGTCGTGAAAAAGAACACATAGTAGAAGTAACACACCAGCGG GAGTTAGGCCGGCGCGGGAGAGAGGGTGAGGCGAACAGAGTAGGCGTTTT GCGTGATGCTCTGTTGTCTCTTTTTCTCCTGCTGTGGGCACTTTCCCCGG ATAGACGTAGATAGACGATGCTTTCTCCCACGAAATGGTTTCACACGAGG TTCAGGCGGTGTCGTTAAGATGCTGGCGGGGGCGGTGCGCCGGACGGGAA TACCCCCGCCTGTGTGGCTCGGGGAAAAGGTTGCCTCCGCCCCAGGCAAT TTCCCGAGTAATACGTTCGTCCACGTGCCATGTCCTGTATGTGGGTGGTA GCAACGGAGAAGGTGGCCTCAGCGAGATGAGGCCAGAAAAAGATAGAGCG GCAAGAACCTCACCTCTCGCCTTGGCTGGTTATCGCTTTTGTGGAATACG AAGTTGTCCTCTCTCCTTTTTCCCCTTTCCTCCTCACTTCTGTGAGTTTT CGTCCCCCATGGCGTCCTGCTTTTGTCTTTCAAGAAGGAACGGCGACGCC ATCGATGCGCAGAATCAACATGAAAATTCTTCCCCAAGCCAACCCTCCCT CCCCGTCTGAGAGTGGCGGTGAGGTTTGTTTGGAACCGTGACGAAATTTC TCCCTCGCGCGATGTGCGTCTAATCTGTCGCAACGTGCCCAATTTTTTTT TTCATTAGAGGCTCACACCAAGGAAGTGAACTCGTGCCCCAAGCAACGGA GCGATCCCCGGCCAACCCTCGACACACTCGACCCGCCTACCCCTCAGTCT TTCAACCTCGGCTCACGACCCTCCCCTCCTCCCCTTCTTCGATTCACCCC TTCCCTGCGCGCCTCGACCAGGGCTGCCCCTGGGACGGGACGGCGTGTAC CGCGGCCATCTACGAGGGGCAGTTGGAGACGCTCAAGTTCGCTCGTGCAA ACGGCTGTCCCTGGGATCCTACCTCGTGCCGGTTCGCGGCGGAGATGGGT CACCTCGAGGTGCTGGCTTGGTGCAAGGAGAACGGGGGCCACTTGGACTC CCGGGTTTCCATAAGCGCCGCCGGAAACGGCCACCTCGAGGTACTGTTGG TTGAACGATGCTGCGAAACACTTCAGCTTCTGTCGGCGTTATATCGAGAG CCGAGGCTCTGTTATGCTCCATCGACAAAAATTCGACGTGACGTATTCGG CCCATTGAGGAAGCGAAGCTTCGACGGGGAACGGCTGCTGTGCATCGTGT GTTACGCAAGCTGTGATCGGTGGCGGCCACCGCCCTCACCCGCGGAATGG AATACCTTCGCCTGGTATCCCATCGGGTATGCCCGTCACCGCAGAGCCTG CCTGCTGTGCACCAGACGGTAGCGCCGGTCGCGCCGGAGTCCAATCACCT GTCGCAAAACAGCCAGATCCTACGCACGCCGTCGCTTGCAAAAGAGTCTG AAAGCGGTTCGAGTTCTGCCCCCGGGCTCTTCGCCATTTTACATTGCCTG ATTTCTCACTGGTTTTTCATTGTTGCAAGTAGTCCAACCTGCCTGTCCCA TCGTCCTGACTGTGACCTACGTGTCCCGTCGTGCCTCTCCTTCCCCCCCT CCCCTCCGTATCTCCTTTCCTCTCCTATTCTGCTGAAGATTTTGAAGTGG GCGCGAGCGAACGGGTGCGCTTTTTTCGACGAGGAGGTGGTAGCGTCGGC GGCCGGCGGCGGTCACCTGGAGGTAGTCAAGTACTGCTGGGCTCAGCGGT GCCCCTGGAACGAGTATACCACCGAGCTTGCGGCCGAGGGCGGCCACCTC GAGGTCAGCCAGGGATTTCAATATGCTCGAAAATACGTATATATTCTTCG TAGCGTGGGGTGGGGGGGACATCGTGAGAGCAGCCAACGAAATGATACGT GGGGGGAGGTCGGCCATATTGAGGTCAGACAGAGACATGATGAGATGTGT TCTGGAGGGGGGGGAGGGTTAGAAGGCATCACCGAGCTCGCGGCGGAGGA CGGCCACGTTGAATTCAGCCGCACAAAAACGAGAAATGTGGTGGCCGGGC GGCCTGAAAGGCCAAGGTGGGGGCAGACCTAAATAGAAGGCACACCGAAA GAGGTTGATGAACATGTTTTTTGTTGGTTCCCTCGGTTACTTGAGTGGCT TCGTCCTGATGTCGTTTTTTCCCTCCTATTGGCTTGGTTCCGTGCGTCAT ACGTCAGCTCGGATCCCGCTTCCCTCCTACAAACTCCCCCACTTTCCTCA CAGGTGCTCAAATGGTGCCGGTCGAAGGGCTGCCCCTGGGACGAGGACGT GGCCGCGTTCGCTGCCGCGGAGGGGCACATTGACGTGAGAGCCGGTTGAA TCCCCCCCCCTTCTTCGTCTCGTTGCCTCATGATGCTGTTGTGTTCACGT TGTTTTTCGCATAATGGTAGCCCGGTCACTCTTCCGGGTCTTTGCTCTTG GACCTACGCGCGCCCCTATTCCCGGCCACCTCTCGTATGTCGGACCTCGT GTGTTTTCTGCTGTTGAGGGTTCTCGCACGAAGCCCCGCATGTGATGGTT TGACAGCATGTTCCTAGCCCCATTGTTGTGACCCCACCCCCCCCACACAC GCGGGCACCACCGCCCCCCCCTACCTGCCGCCCGATATCTGATCGGATGT GTGATTCCGCGCCCCTGTCGCACTCAATCTGGTCGGAATTCCAGGTCCTC AACTGGGCGGTGGCGAACGGGTGCCCCTGGGATAAAAGGGTGCGTGACTT CATGCCCAGCGGCGCTTGCGGCGCGGTTGCCCTCCAGCAGGTACTTGCAG TCTCCTGTCCTTCTCGTGCGGCTCGTCCACGTCATGTGGCCTGCGCGTGT GTTTCTGATGCCCTGAGGTACTCTTGTCAACGATCGCCGAAGTGGCTGTT TCCGCCGTCTGCGCCGCTTTTGCTCGCAATGTCGTCGATCGATGCGAACA TTTTCCATTCTTTTTTTTTGCTTGCATCGCAACGTAGGTGGGGATGCAGC CATTTGTTTTGCTGTTGTTCGTGATATTTTGGTAGTTCGCGTGAGCTGGC CGGCATTGTCATTTGCAATTTTTTCGTTGAGCGCCAGTGGGTGTCCTCAT CCCATCTCATCCCATCTCTCGTGTTGTTGCTCACAAACAGTTTAGGGCGC CTATTAACGCTCCAAATTTTGCTTCCAAATTTCCAAACCCCGCAAAGAAG CTCGATTTCTGGCTCCGAAAAAATGGAAAGCCTCCAACTTTGGAAGCACC TCACCCGCGAAGAAAGACGGAGCCACACCCTTTCACATATTTTCCAAGAA TTCGTAAAAGGACGATTTCATGGAAACACGGAATTTCGGGAAATTGGAAG AAAGTTTGGAACGACCCTGTCTTTGCTCGACTGTTGTCTCCTCGCCTGGC TCCCTCGGCCCCCTTTCGCTGTTGCTGTATTGTCCTTTTGTTGAAGTTCG ACCCTAACAGTCCTACGTTCTGCGTTTTCTTGATTTCTTGACCGTTTTTT TTCTACAGGCAAGCCCGAACAAGGCCTCTTCCCATGAATCGGACGTAAGC GGGAATCCTACCGTTCTCCCCTCTACTAGCGGAATCCCCGAGCCTGCTAG ATCGACCATTCCCGTGGGAAATCCAATATGCTGAGAACGCCTCTAAAACG CAAGGGTAGATCATAAGACTTAACATGAAGAGAGAGTTGTCGCCTACATC GTTTGTAATCTTGTTTCTCCATGGCGCAGTTTTTTCGGGGTGCGATTGGT ACATGTTCGAGGGATGGAGGCGGGGGATTCGGGAGTCGTGGTGCGGTTTA GCCTCCCGCCCCCGCGCTGTTGGGGTCTACGGAGCTGGCTGTGATCACTT GCGCAAGTAGGGACCCAGACCAACCCGTTCTCTTTGAAGTGTGAACGAGG TCGGCGGAGGCTTTTCGCGGAAGCTGTTCTGTCGCCGCGATCGTGATGTG TTCGTCTCGAAGAACGTGCTCTATTTTTCATTATGGCTTGTTGTCGTTCA TAGGGTGTGGGCGGTTCTTGCGGAAAGCTTGACACGCAGCCTGGGTGTTT TTTGATACCGGTGAGTTCCCAAAACGGAATCAAGCGCAAAGTTTCGCCGG CGTTTATTTATTTATTGGTTGCGCGGGAATCGCCCCCCCCCTTTTTTTTT TCATTGCGCGTGATTTCCATCGTTCCATTATTTTACGTTTGGGTATGTTT TTACATAATTTGGTAGCCTTGTTATGGTTCGCCCTTCCTTGCACAATTCT ATGTTCTGTATTACGTGGAATGCATTGTACTGCTGTAGTGTCCGCAAATT TGGAGATAAGCAATCGGTGTGATTTGGCGTCAGTCTAAGTGGGGGCGATT GTCATCCCGTGAGAGACAGTGCGCTCCTTGACTCGCGGAGTGAAGCGTGA TTATTTGGAGGCACAAGATCCGTCCCGACATTGAACGGCCGAGAAGCGTC TTTCGCTACCAGACGGGAAGAAAGTTACATAAATCCCATCTAAGTGCATT AGTCGAGTGGGGTGAATCTTTGCTGTCTCTAACGCTCAGAGAAGTATGTG GTAGACTTGTCGATGGTGACACACAAACCAGCACGCGTAGCGGTAACGGG TTGCCGACAGGGGTTTCATTCAGGTCGGGGGGAAAGGTCGGGGGGTGGGG TGGAAGTGGATTTCGGCGTGTGTTATCTTCCAGGAAAGAGAGCCGCGTGC CACGTACAAGGTAATTTACGTGATTTCGGACCGAGTTTGCTTGCGCATCA AATGTTTGACCCTGGTGAGGGTTCCCTCCCAAGGTAGTCACTTGTTTCAT GTGCATGGACGAGTCGGCGTGGGTTGCCCGTGGGCGATGTTTCATTCAGA CGAGGGGGGTTGATTAAACATGGAGAAATTGGGTGGGGAGTGGGTGCTCA CTCTTGAGCAATTGAACAAGAGGTTCCGTGGATTCACGCATATTGGCTCA TTCAGGCGGCGAACGGCGACCATTTTCTGATGCCGAGATATTTTTGAGGG ATGCAAGAATACGTGATTCACGTGGAACCTGCGGCTGGTTCGCTCTTGGC GGGAACGTAGCTTGAATGTACATGTGCGAGGTAACGCGGGCTGACTTCGG GTCAGAATGTCGGAATGGTATCTAGGCCGGCCGGATTGGTCGAAGTTCTG ATGTGGTCACATCGGAGATCGGTCGAGTTTTTTGAAGGGTTGAAGACGGA GTTCCTTTGAAATGCTCATCATGACCCACTGATGTCAGACCGCATTTTTT TTTTTTTTTTTTTGAAAAATTTTGCAGGGGAATCCTCGGAGATTTTTTTG TACTGATCCAAACGGGACGGTATTTCAATATGATAGTAGACTATGTCTTT TGCCGAGTGACGGTATCCCAAAGTTCGATGACATCGTGTTGGCGGTAGAC GGTATATCCAAAATGTGACGGTATCTCGACGTTACATCGAATCCATGGTG CATTACGCTAGGTCGACGGTACACCAGATCCCCTCTGCAGAATGGCGCCG AAGGTGGGTGATAAAAAACATAAACAGAACAGCGAAGACGGTGTTCACTT TTC
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Coding sequence (CDS) from alignment at P-fluviatile_contig15:880972..912924+

>mRNA_P-fluviatile_contig15.2419.1 ID=mRNA_P-fluviatile_contig15.2419.1|Name=mRNA_P-fluviatile_contig15.2419.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=4770bp|location=Sequence derived from alignment at P-fluviatile_contig15:880972..912924+ (Porterinema fluviatile SAG_2381)
ATGACGCGGGTCGAAAAGGGCAGCGGCGATGGCGGCGGTGATGTTGGCGG
GGCCGGAGGTGGTGGTCGCATAAGGTGGGGTCTCGCTGCGTCTAGGCTTT
GCGGACGGGGCTTCCGGAGAAGAGGAGGGGCGATTGGCAGGGGCGCGGGC
GGTGACGAGAGCGGCGGGGGCGGCGGCCGCCCAGTCTTGCGAGCCGCGGC
GGCAACGGCGGCTGGGGCGGCGACGGCAGCGGCAGCGTCAGGGGCGGGCC
GGAGGGAGGCGGCCGGGACTCGTGTCGGCGCCGACGGGGACGGAGGCTCG
TTTCAAGAGGAGGCGGGCAGGCGCCGCGGAGGTGGCGGAGCGAGTGACAT
GGGGTTCGAGATGACGCGGGTCGAAAAGGGCAGCGGCGATGGCGGCGGTG
ATGTTGGCGGGGCCGGAGGTGGTGGTCGCATAAGGTGGGGTCTCGCTGCG
TCTAGGCTTTGCGGACGGGGCTTCCGGAGAAGAGGAGGGGCGATTGGCAG
GGGCGCGGGCGGTGACGAGAGCGGCGGGGGCGGCGGCCGCCCAGTCTTGC
GAGCCGCGGCGGCAACGGCGGCTGGGGCGGCGACGGCAGCGGCAGCGTCA
GGGGCGGGCCGGAGGGAGGCGGCCGGGACTCGTGTCGGCGCCGACGGGGA
CGGAGGCTCGTTTCAAGAGGAGGCGGGCAGGCGCCGCGGAGGTGGCGGAG
CGAGTGACATGGGGTTCGAGACGTCAGTGTGGCGGTCGTTCGGGAGCTTC
AGGAGACACGTGGGGGAGACGTTCCGCAGCAGCAGAGAGACGTCAGTGTG
GCGGTCGTTCGGGAGCTTCAGGAGACACGTGGGGGAGACGTTCCGCAGCA
GCAGAGAGAAGCCGGAGACTACGCGGGATGCTTGGCGGTACATGGGGGCC
CTGGTGCGGTCCCAGCGGGGCGTGCTCCTCGCCAGCGTGGTGACGCTCAT
CCTGGCTGCCGGCTGCGAAGTAGCCGTCCCTCACTACTCGAGCAGGGCGC
TGAACGCCGCGGCATTCGCGCGGGATCGCGCGAAGCCGGAGACTACGCGG
GATGCTTGGCGGTACATGGGGGCCCTGGTGCGGTCCCAGCGGGGCGTGCT
CCTCGCCAGCGTGGTGACGCTCATCCTGGCTGCCGGCTGCGAAGTAGCCG
TCCCTCACTACTCGAGCAGGGCGCTGAACGCCGCGGCATTCGCGCGGGAT
CGCGCGGAATTCGCGAGGAGCTTACGGGGAATGGTGGCCTACAGCCTGCT
CGCTTCGGTTTTCACCGGCCTGAGAGGCGCGTGCTTCTGGCTGGCGGGCA
CGCATGTCGTCGCAAAAGTCCGGAATTCGCGAGGAGCTTACGGGGAATGG
TGGCCTACAGCCTGCTCGCTTCGGTTTTCACCGGCCTGAGAGGCGCGTGC
TTCTGGCTGGCGGGCACGCATGTCGTCGCAAAAGTCCGCTTTGATCTCCT
CTCGTCTCTGCTGAAGCAAGACATCTCGTTTCACGCTTTGATCTCCTCTC
GTCTCTGCTGAAGCAAGACATCTCGTTTCACGACGCAAACGAGACGGGAG
CGCTAACGTCTCGGCTAGCGTCCGACACGGCCAAGATTAGCAACGTCGTC
AGCTTCCACGTCAACATACTCTGCAGACGCAAACGAGACGGGAGCGCTAA
CGTCTCGGCTAGCGTCCGACACGGCCAAGATTAGCAACGTCGTCAGCTTC
CACGTCAACATACTCTGCAGGCAGGTGATCCAAGCGATCGGGGGTCTGGG
CTACCTTTACGTTCTGGAGCGGCAGCTGTCCTTGGTCACTCTAGTCGGCC
TTGTGTTTGTCGGGGTCATCACCACCGCCTACGGCCGCTTCTCGAGACGG
CAGGTGATCCAAGCGATCGGGGGTCTGGGCTACCTTTACGTTCTGGAGCG
GCAGCTGTCCTTGGTCACTCTAGTCGGCCTTGTGTTTGTCGGGGTCATCA
CCACCGCCTACGGCCGCTTCTCGAGACGGATATCCGCCAAGGTGCAGACC
GCTCTGGCGGAGGCCGGTAGCGTCGCGGAGCAAAGCCTGTCCCTGGTCCG
CGTGGTAAGGGCTCACGCCAATGAGGAGCACGAGCGGAGACGGATATCCG
CCAAGGTGCAGACCGCTCTGGCGGAGGCCGGTAGCGTCGCGGAGCAAAGC
CTGTCCCTGGTCCGCGTGGTAAGGGCTCACGCCAATGAGGAGCACGAGCG
GAGACGCAGATACGGCCGCAAGATTGGGGAGTCTGTGGAGCTCCAGGAGA
CGCAGGGCATCGCCTACGGGGTCGCTAGAGTGGTCATCGGCTGGAGCCAG
CAGATACGGCCGCAAGATTGGGGAGTCTGTGGAGCTCCAGGAGACGCAGG
GCATCGCCTACGGGGTCGCTAGAGTGGTCATCGGCTGGAGCCAGGCGATC
CTCCTAGCTGCCGTCCTGCTGCTAGGGGCTAAACGGGTGTTCGCCGGCAC
AATGACCGGCCAGCAGCTAACCACCTTCGTCTTCTACACACAGTTCGTTA
CTTCGGCGAGCTTCGACGTCGGCGACCAGGCGATCCTCCTAGCTGCCGTC
CTGCTGCTAGGGGCTAAACGGGTGTTCGCCGGCACAATGACCGGCCAGCA
GCTAACCACCTTCGTCTTCTACACACAGTTCGTTACTTCGGCGAGCTTCG
ACGTCGGCGACCAGATCCAAGAAGCCCTTGGCGCTGGACAGAAGGTTTTC
GAGCTCCTCGACAGGCAACCCGTCATGACCGGCCACGCCAAGGTACAGCA
TTCGGGAGGATCGTCTGCGGAAAACTTCGACCACGCGGCGCCCACGTCGC
ACGAGGCTACTGGCGCTCGTGCTTATCCTTCGGTGAGGCAAGGGGCGATA
TCCAAGAAGCCCTTGGCGCTGGACAGAAGGTTTTCGAGCTCCTCGACAGG
CAACCCGTCATGACCGGCCACGCCAAGGTACAGCATTCGGGAGGATCGTC
TGCGGAAAACTTCGACCACGCGGCGCCCACGTCGCACGAGGCTACTGGCG
CTCGTGCTTATCCTTCGGTGAGGCAAGGGGCGATCGGCGCCGACAGCACC
GGACGCGAGGACTCCGGGGTGCTAGCCCCGCAACACCCGCAGCCGGCAGA
ATCGCCGTCCCGTGTCTCCTACGGTGCGGAGCACGGAGAGCGAGAGAGAG
GGAGGGTGGACTTCGACGCCGTTTCGTTCGGGTACCCGACACGCCCAGCG
GCGCCGACAGCACCGGACGCGAGGACTCCGGGGTGCTAGCCCCGCAACAC
CCGCAGCCGGCAGAATCGCCGTCCCGTGTCTCCTACGGTGCGGAGCACGG
AGAGCGAGAGAGAGGGAGGGTGGACTTCGACGCCGTTTCGTTCGGGTACC
CGACACGCCCAGAAGGCGTTCTCATCCTGGACGAGCTTAGCCTCAGGGTG
CGGCCGGGGGAGAAGGTTGCTGTTGTCGGGCCTTCTGGAGGAGGAAAATC
GACAATCTTGCGACTTCTTTGCAGAAGGCGTTCTCATCCTGGACGAGCTT
AGCCTCAGGGTGCGGCCGGGGGAGAAGGTTGCTGTTGTCGGGCCTTCTGG
AGGAGGAAAATCGACAATCTTGCGACTTCTTTGCAGGTTTTACGATCCAG
ATGGCGGCCGCATTTATCTGGGAGGGCGGGATCTGTCGGAGTACAGTCCG
GTGGACATCAGCAACATTGTGTCTTGGGTGACCCAAGAGCCCCAGCTGTT
TCCAATATCAGGTTTTACGATCCAGATGGCGGCCGCATTTATCTGGGAGG
GCGGGATCTGTCGGAGTACAGTCCGGTGGACATCAGCAACATTGTGTCTT
GGGTGACCCAAGAGCCCCAGCTGTTTCCAATATCAGTGGGGGAAAACATC
GCTTACGGGCTTGAGCCCGGGTCATTCGGCATCAGCGACGTTCACGAGGC
AGCGAAGGCCGCCAACATACACAATGGGGGAAAACATCGCTTACGGGCTT
GAGCCCGGGTCATTCGGCATCAGCGACGTTCACGAGGCAGCGAAGGCCGC
CAACATACACAATTTTGTGTGCGGGCTACCCGACGGGTATGACACGCTCG
TGGGGGAGGGGGGCGCCAGCCTTTCGGGGGGCCAAAAGCAGAGGGTGGCT
ATCGCCAGGGCTCTTATCAGAGATCCAGAGTTTTGTGTGCGGGCTACCCG
ACGGGTATGACACGCTCGTGGGGGAGGGGGGCGCCAGCCTTTCGGGGGGC
CAAAAGCAGAGGGTGGCTATCGCCAGGGCTCTTATCAGAGATCCAGAGGT
CCTACTTCTGGACGAGCCCACGAGCGCGTTGGACGTAGAGAGCGAGAGGC
TTGTGCAGGACGCCTTGGATACGGCAGGGATTGGCCGCACCGTGATACTG
ATCGCCCACAGGCTGGCCACGATCCAGAGAGCGGACCGGGTAGTCGTGAT
GCAGGTCCTACTTCTGGACGAGCCCACGAGCGCGTTGGACGTAGAGAGCG
AGAGGCTTGTGCAGGACGCCTTGGATACGGCAGGGATTGGCCGCACCGTG
ATACTGATCGCCCACAGGCTGGCCACGATCCAGAGAGCGGACCGGGTAGT
CGTGATGCAGAACGGGCGAATCGTGGAATCCGGAAAGCACAACGAGCTCC
TGTCCTTAGAACGGGCGAATCGTGGAATCCGGAAAGCACAACGAGCTCCT
GTCCTTAGGCGGGGTCTACTCGGGGCTTTACAAGCAGGGAGAGCAGGTCG
CGACCGTGCAATAGGCGGGGTCTACTCGGGGCTTTACAAGCAGGGAGAGC
AGGTCGCGACCGTGCAATAG
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