mRNA_P-fluviatile_contig81.14770.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig81.14770.1
Unique NamemRNA_P-fluviatile_contig81.14770.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig81.14770.1 vs. uniprot
Match: D7FRW0_ECTSI (Glycine cleavage system P protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FRW0_ECTSI)

HSP 1 Score: 1744 bits (4518), Expect = 0.000e+0
Identity = 869/992 (87.60%), Postives = 930/992 (93.75%), Query Frame = 1
Query:    1 QASIRSALTLRKAAALTSTRQLSARADEIFAAKDTFARRHIGPSDADVEAMMKVVGVTSLDNLVDRTVPQSIRLDKPLELAEPMTESEALAAIRAIADKNKVMKNFIGLGYSETTVPPVILRNMLENPGWYTAYTPYQAEISQGRLQSLLNFQTMVADLTGMDMSNASLLDEATAAAEAMSMCNGLKNGKRKKFFVSEDCHPQTIALVQTRGSAINLDIVVGDPDTADFSCKGYSGALIQYPNTYGDVNSPEAFVKKAHEFDTLVVAATDLMSLTMLKPPGEFGVDIAVGSAQRFGVPLGYGGPHAAFMATKTAYSRRMSGRIIGVTIDSRGAPCLRMAMQTREQHIRRDKATSNICTAQALLANMAASYGVYHGPAGIKDIAQRIHGMAAVTAAALKGAGFGVPSQQFFDTFSVDVSAKGMTAKSVADKCEANGVNVRIIDDKTVGLSFGESITKDDVCALLEGFGVKASALESAAGSAKMGFSDDVVRTSDYMTHPVFNSHHSETQMLRYLKSLENKDLSLNTSMISLGSCTMKLNATSEMIPVTWPEFANIHPFAPAHQCQGYKEMIDSLHEDLAKITGFAACSAQPNSGAQGEYAGLLCIREYHRSRGEFDRNVCIIPVSAHGTNPASAVLAGMKVVVVKSDTKGNIDMDDLKEKATKHKDKLAALMVTYPSTYGVFEEGIKEICQITHDNGGLVYMDGANMNAQVALTSPGHIGADVCHLNLHKTFCIPHGGGGPGVGTIGVVPRLAPFLPGHPVIPSSGEGAGVVAKRTGAVAAAPFGSAAILPISWMYIKMLGEPGLKKSTQMAILNANYMASKLDGHFKVLYRGREGLSAHEFIVDLRPFKASAGIVEEDVAKRLQDYGFHSPTMSWPVPGTLMIEPTESEDKAELDRFCWAMIKIREEIDDIVEGRVAMEKSPLKAAPHTWEMCFEDDWDRPYTRTQAAFPAPWVKANKFWPTVGRVDNVHGDRNLICSCPPMDTYTDELIAA 2976
            +A+++S LTLRK A L STR LSA AD+IFAAKDTFARRHIGPSDADVE MMK VGV SLD+LVDRTVP SIRLD+PL+L + ++ESEAL AIR IADKN+VMKNFIG+GYSETTVPPVILRNMLENPGWYTAYTPYQAEISQGRLQSLLNFQTMVADLTGMDMSNASLLDEATAAAEAM MCNGLKNGKRKKFFV+EDCHPQ I LV+TRG A+NLDIVVGDP T DFS + YSGALIQYPNTYGDV +PE FVKKAH+  TLVVAATDLMSL+MLKPPG+FGVDIAVGSAQRFGVPLGYGGPHAAFMA+K +YSRRMSGRIIGVTIDSRGAPCLRMAMQTREQHIRRDKATSNICTAQALLANMAASYGVYHGP GIK IA+RI+GMAAVTAAALK AGFGV S+QFFDTFSVDVSAKG ++ ++A  CEA G NVR+IDDKT+GLSFGESITKDDV ALLEGFGV  S+L+SAA SAK+GFSDD+VRTS+YMTHPVFN +HSETQMLRYLKSLENKDLSLNTSMISLGSCTMKLNATSEM+PVTWPEFAN+HPFAPAHQC GYKEMIDSLH+DLAKITGFAACSAQPNSGAQGEYAGLL IR YH SRG+ DRNVCIIPVSAHGTNPASAVLAGMKVVVVKSD KG+ID++DL+ KA K+KDKLAALMVTYPSTYGVFEEGIKEIC+ITHDNGGLVYMDGANMNAQVALTSPGHIGADVCHLNLHKTFCIPHGGGGPGVGTIGVVPRLAPFLPGHPVIPS GEGAGVV K TGA+AAAPFGSAAILPISWMYIKMLGEPGLKKSTQ+AILNANYMA+KL GH+ V+YRGR+GLSAHEFI+DLRPFK + GIVEEDVAKRLQDYGFHSPTMSWPVPGTLMIEPTESEDK ELDRFCWAMIKIREEIDDI EGRVA+E+SPLKAAPHTWE CFED+WD+PYTRTQAAFPAPWVKANKFWPTVGRVDNVHGDRNL+CSCPPMD YTDE IAA
Sbjct:   10 RAALQSTLTLRKTAVLASTRPLSATADDIFAAKDTFARRHIGPSDADVEVMMKTVGVKSLDDLVDRTVPHSIRLDEPLDLEDALSESEALTAIRKIADKNQVMKNFIGMGYSETTVPPVILRNMLENPGWYTAYTPYQAEISQGRLQSLLNFQTMVADLTGMDMSNASLLDEATAAAEAMFMCNGLKNGKRKKFFVAEDCHPQNITLVETRGGALNLDIVVGDPKTVDFSGEDYSGALIQYPNTYGDVINPEEFVKKAHDAGTLVVAATDLMSLSMLKPPGDFGVDIAVGSAQRFGVPLGYGGPHAAFMASKHSYSRRMSGRIIGVTIDSRGAPCLRMAMQTREQHIRRDKATSNICTAQALLANMAASYGVYHGPEGIKGIAERINGMAAVTAAALKEAGFGVSSEQFFDTFSVDVSAKGTSSTAIAQACEAKGANVRVIDDKTIGLSFGESITKDDVVALLEGFGVSGSSLDSAAASAKIGFSDDLVRTSEYMTHPVFNMYHSETQMLRYLKSLENKDLSLNTSMISLGSCTMKLNATSEMMPVTWPEFANMHPFAPAHQCLGYKEMIDSLHDDLAKITGFAACSAQPNSGAQGEYAGLLAIRSYHLSRGDTDRNVCIIPVSAHGTNPASAVLAGMKVVVVKSDDKGDIDIEDLRTKAIKNKDKLAALMVTYPSTYGVFEEGIKEICKITHDNGGLVYMDGANMNAQVALTSPGHIGADVCHLNLHKTFCIPHGGGGPGVGTIGVVPRLAPFLPGHPVIPSGGEGAGVVPKTTGAIAAAPFGSAAILPISWMYIKMLGEPGLKKSTQLAILNANYMAAKLAGHYNVVYRGRDGLSAHEFILDLRPFKHT-GIVEEDVAKRLQDYGFHSPTMSWPVPGTLMIEPTESEDKGELDRFCWAMIKIREEIDDISEGRVAVEQSPLKAAPHTWEACFEDEWDKPYTRTQAAFPAPWVKANKFWPTVGRVDNVHGDRNLVCSCPPMDVYTDEHIAA 1000          
BLAST of mRNA_P-fluviatile_contig81.14770.1 vs. uniprot
Match: A0A835ZCN8_9STRA (Glycine cleavage system P protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835ZCN8_9STRA)

HSP 1 Score: 1504 bits (3893), Expect = 0.000e+0
Identity = 754/972 (77.57%), Postives = 840/972 (86.42%), Query Frame = 1
Query:   67 SARADEIFAAKDTFARRHIGPSDADVEAMMKVVGVTSLDNLVDRTVPQSIRLDKPLELAEPMTESEALAAIRAIADKNKVMKNFIGLGYSETTVPPVILRNMLENPGWYTAYTPYQAEISQGRLQSLLNFQTMVADLTGMDMSNASLLDEATAAAEAMSMCNGLKNGKRKKFFVSEDCHPQTIALVQTRGSAINLDIVVGDPDTADFSCKGYSGALIQYPNTYGDVNSPEAFVKKAHEFDTLVVAATDLMSLTMLKPPGEFGVDIAVGSAQRFGVPLGYGGPHAAFMATKTAYSRRMSGRIIGVTIDSRGAPCLRMAMQTREQHIRRDKATSNICTAQALLANMAASYGVYHGPAGIKDIAQRIHGMAAVTAAALKGAGFGVPSQQFFDTFSVDVSAKGMTAKSVADKCEANGVNVRIIDDKTVGLSFGESITKDDVCALLEGFGVKASALESAAGSAKM--GFSDDVVRTSDYMTHPVFNSHHSETQMLRYLKSLENKDLSLNTSMISLGSCTMKLNATSEMIPVTWPEFANIHPFAPAHQCQGYKEMIDSLHEDLAKITGFAACSAQPNSGAQGEYAGLLCIREYHRSRGEFDRNVCIIPVSAHGTNPASAVLAGMKVVVVKSDTKGNIDMDDLKEKATKHKDKLAALMVTYPSTYGVFEEGIKEICQITHDNGGLVYMDGANMNAQVALTSPGHIGADVCHLNLHKTFCIPHGGGGPGVGTIGVVPRLAPFLPGHPVIPSSGEGAGVVAKRTGAVAAAPFGSAAILPISWMYIKMLGEPGLKKSTQMAILNANYMASKLDGHFKVLYRGREGLSAHEFIVDLRPFKASAGIVEEDVAKRLQDYGFHSPTMSWPVPGTLMIEPTESEDKAELDRFCWAMIKIREEIDDIVEGRVAMEKSPLKAAPHTWEMCFEDDWDRPYTRTQAAFPAPWVKANKFWPTVGRVDNVHGDRNLICSCPPMDTYTDELIAA 2976
            SA  D++FA  DTFARRHIGPS+AD + MMKVVGV+SLD+LVD+TVP +IRL KPL L  P++ESEALA +RAIADKN+V K+FIG+GYSET  PPVILRNMLENPGWYTAYTPYQAEISQGRL SLLNFQTMVADLTGM MSNASLLDEATA AEAMSM   L   KR KFFVS D HPQ++ALV+TRG AI L+IVVGD D+ DFS K + GAL+QYP T+GDV    AF K+AH    LVVAATDLM+LT++KPPGE+G DIAVGSAQRFGVP+G+GGPHAAFMAT   Y+RRM GRIIGVT+DSRG P LRMAMQTREQHIRRDKATSNICTAQALLANMAASYGVYHGP G+K IA RIHGMA  TA ALK AG+GVPS  FFDTF+VDVSAKG TA ++A     +GVNVR+IDDKTVGLSFGE+ TK DV ALL  FGV A ALE AA +A    GF     RT+ YMTHPVFN+HHSETQMLRYLKSLENKDLSLNTSMISLGSCTMKLNATSEMIPVTWPEFAN+HPFAP  Q  GY E+ID+L++DLA+ITGF+A SAQPNSGAQGEYAGLLCIREYH +RG+  RN+C+IPVSAHGTNPASAVL+GMKVVVVKSD  GN+D+DDL+ KA KHKD LAALM+TYPSTYGVFEEGIK+I    H  GGLVYMDGANMNAQVALTSPGHIGADVCHLNLHKTFCIPHGGGGPGVG+IGV  +LAPFLPGHPVIP+ GEGAGVVAK +GAV+AAPFGSAAILPISWMYIKMLGEPGL+K+T+ AILNANYMA++LDG F +LYRGR GLSAHEFIVDLRPFK   GIVEEDVAKRLQDYG+HSPTMSWPV GTLMIEPTESEDKAELDRFC AM+ IR EI+D+V GRV  + SPLKAAPHTW+MCF+D+W + Y+R QAAFPAPWV+ANKFWPTVGRVDNV+GDRNL+CSCPP++ Y +EL  A
Sbjct:   39 SAAVDKVFAPCDTFARRHIGPSEADTKEMMKVVGVSSLDDLVDKTVPAAIRLSKPLTLDAPLSESEALAKLRAIADKNQVKKSFIGMGYSETVTPPVILRNMLENPGWYTAYTPYQAEISQGRLTSLLNFQTMVADLTGMAMSNASLLDEATACAEAMSMTYSLGGQKRNKFFVSADVHPQSLALVRTRGGAIGLEIVVGDADSVDFSGKDFCGALVQYPTTFGDVQDYAAFTKRAHAGQALVVAATDLMALTLIKPPGEWGADIAVGSAQRFGVPMGFGGPHAAFMATSEKYARRMPGRIIGVTVDSRGKPALRMAMQTREQHIRRDKATSNICTAQALLANMAASYGVYHGPEGVKAIATRIHGMAKTTAIALKEAGYGVPSTPFFDTFTVDVSAKGATASAIAAAAANHGVNVRVIDDKTVGLSFGEAHTKGDVEALLGAFGVGAGALEGAAAAAAGDGGFGAPFARTTPYMTHPVFNTHHSETQMLRYLKSLENKDLSLNTSMISLGSCTMKLNATSEMIPVTWPEFANMHPFAPREQWAGYMELIDTLNKDLAEITGFSAVSAQPNSGAQGEYAGLLCIREYHIARGDSHRNICLIPVSAHGTNPASAVLSGMKVVVVKSDEAGNVDIDDLRAKADKHKDNLAALMITYPSTYGVFEEGIKDITSHVHKCGGLVYMDGANMNAQVALTSPGHIGADVCHLNLHKTFCIPHGGGGPGVGSIGVNAKLAPFLPGHPVIPTGGEGAGVVAKTSGAVSAAPFGSAAILPISWMYIKMLGEPGLRKATEYAILNANYMAARLDGKFNILYRGRSGLSAHEFIVDLRPFK-DFGIVEEDVAKRLQDYGYHSPTMSWPVGGTLMIEPTESEDKAELDRFCDAMLAIRAEIEDVVTGRVKADDSPLKAAPHTWDMCFKDEWTKSYSREQAAFPAPWVRANKFWPTVGRVDNVYGDRNLVCSCPPLEDYDEELPKA 1009          
BLAST of mRNA_P-fluviatile_contig81.14770.1 vs. uniprot
Match: A0A835ZE30_9STRA (Glycine cleavage system P protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835ZE30_9STRA)

HSP 1 Score: 1477 bits (3823), Expect = 0.000e+0
Identity = 737/974 (75.67%), Postives = 835/974 (85.73%), Query Frame = 1
Query:   58 RQLSARADEIFAAKDTFARRHIGPSDADVEAMMKVVGVTSLDNLVDRTVPQSIRLDKPLELAEPMTESEALAAIRAIADKNKVMKNFIGLGYSETTVPPVILRNMLENPGWYTAYTPYQAEISQGRLQSLLNFQTMVADLTGMDMSNASLLDEATAAAEAMSMCNGLKNGKRKKFFVSEDCHPQTIALVQTRGSAINLDIVVGDPDTADFSCKGYSGALIQYPNTYGDVNSPEAFVKKAHEFDTLVVAATDLMSLTMLKPPGEFGVDIAVGSAQRFGVPLGYGGPHAAFMATKTAYSRRMSGRIIGVTIDSRGAPCLRMAMQTREQHIRRDKATSNICTAQALLANMAASYGVYHGPAGIKDIAQRIHGMAAVTAAALKGAGFGVPSQQFFDTFSVDVSAKGMTAKSVADKCEANGVNVRIIDDKTVGLSFGESITKDDVCALLEGFGVKASALESAAGSAK-MGFSDDVVRTSDYMTHPVFNSHHSETQMLRYLKSLENKDLSLNTSMISLGSCTMKLNATSEMIPVTWPEFANIHPFAPAHQCQGYKEMIDSLHEDLAKITGFAACSAQPNSGAQGEYAGLLCIREYHRSRGEFDRNVCIIPVSAHGTNPASAVLAGMKVVVVKSDTKGNIDMDDLKEKATKHKDKLAALMVTYPSTYGVFEEGIKEICQITHDNGGLVYMDGANMNAQVALTSPGHIGADVCHLNLHKTFCIPHGGGGPGVGTIGVVPRLAPFLPGHPVIPSSGEGAGVVAKRTGAVAAAPFGSAAILPISWMYIKMLGEPGLKKSTQMAILNANYMASKLDGHFKVLYRGREGLSAHEFIVDLRPFKASAGIVEEDVAKRLQDYGFHSPTMSWPVPGTLMIEPTESEDKAELDRFCWAMIKIREEIDDIVEGRVAMEKSPLKAAPHTWEMCFEDDWDRPYTRTQAAFPAPWVKANKFWPTVGRVDNVHGDRNLICSCPPMDTYTDELIAA 2976
            R +SA  D++FA  DTF RRHIGPS+AD E MMK+VGV+SLD+LV +TVP +IRL +PL L  P++ESEALA +RAI+ KN+V K+FIG+GY ET  PPVILRNMLENPGWYTAYTPYQAEISQGRLQSLLNFQTMVADLTGM MSNASLLDEATA AEAMSM + L   K KKFFV++D HPQ++ALV+TRG AI LDI+VGDPD+ DFS   + GAL+QYP+T+G V    AF ++ H    LVVAATDLM+LT+++PPGE+G DIAVGSAQRFGVP+G+GGPHAAFMAT   Y+RRM GRIIGVTIDSRG P LRMAMQTREQHIRRDKATSNICTAQALLANMAASYGVYHGP G+K IA RIHGMA  TA AL  AGF V S  +FDTF+VDV++KG  A +VA K  + GVNVR++D  TVGLSFGE+ TKDDV ALL  FGV+ASAL++AA +A   G      R + YMTHPVFN+HHSETQMLRYLKSLENKDLSLNTSMISLGSCTMKLNATSEMIP+TWPEFANIHPFAP  Q  GY E+ID+L+ DLA+ITGFAA SAQPNSGAQGEYAGLLCIREYH SRG+  RN+C+IPVSAHGTNPASAVL+GMKVVVVKSD  GN+D +DLK KA KHKD LAALM+TYPSTYGVFEEGIK+I    H +GGLVYMDGANMNAQVALTSPGHIGADVCHLNLHKTFCIPHGGGGPGVG+IGV  +LAPFLPGHPVIP+ GEG+GVVAK +GAV+AAPFGSAAILPISWMYIKMLGEPGL+K+T+ AILNANYMA++L+G + +LYRGR GLSAHEFIVDLRPFK  AG+VEEDVAKRLQDYG+HSPTMSWPV GTLMIEPTESEDKAELDRFC AM+ IR EI DI++G+V    SPLKAAPHTW+MCF D W +PY+R QAAFPAPWV+ANKFWPTVGRVDNV+GDRNL+CSCPP++ Y +EL  A
Sbjct:   26 RAMSAAVDKVFAPCDTFQRRHIGPSEADTEEMMKLVGVSSLDDLVSKTVPHAIRLSEPLSLDAPLSESEALAKLRAISLKNEVKKSFIGMGYCETITPPVILRNMLENPGWYTAYTPYQAEISQGRLQSLLNFQTMVADLTGMAMSNASLLDEATACAEAMSMTHSLGGHKCKKFFVADDVHPQSLALVRTRGGAIGLDIIVGDPDSVDFSAGDFCGALVQYPSTFGAVKDYAAFTERVHAGKALVVAATDLMALTLIRPPGEWGADIAVGSAQRFGVPMGFGGPHAAFMATSEKYARRMPGRIIGVTIDSRGKPALRMAMQTREQHIRRDKATSNICTAQALLANMAASYGVYHGPEGVKAIATRIHGMAKTTATALSQAGFKVSSAPYFDTFTVDVASKGKDAAAVAGKAASLGVNVRVVDSATVGLSFGEAHTKDDVEALLGAFGVEASALDAAAAAAAGSGVDAAFARATPYMTHPVFNTHHSETQMLRYLKSLENKDLSLNTSMISLGSCTMKLNATSEMIPITWPEFANIHPFAPPSQWPGYMELIDTLNRDLAEITGFAAVSAQPNSGAQGEYAGLLCIREYHISRGDHHRNICLIPVSAHGTNPASAVLSGMKVVVVKSDEAGNVDFEDLKAKADKHKDNLAALMITYPSTYGVFEEGIKDITNYIHKSGGLVYMDGANMNAQVALTSPGHIGADVCHLNLHKTFCIPHGGGGPGVGSIGVNAKLAPFLPGHPVIPTGGEGSGVVAKTSGAVSAAPFGSAAILPISWMYIKMLGEPGLRKATEYAILNANYMAARLEGAYDILYRGRSGLSAHEFIVDLRPFK-EAGVVEEDVAKRLQDYGYHSPTMSWPVGGTLMIEPTESEDKAELDRFCDAMLAIRGEIQDILDGKVKSADSPLKAAPHTWDMCFTDKWTKPYSREQAAFPAPWVRANKFWPTVGRVDNVYGDRNLVCSCPPLEDYDEELPKA 998          
BLAST of mRNA_P-fluviatile_contig81.14770.1 vs. uniprot
Match: I2CQP8_NANGC (Glycine cleavage system P protein n=1 Tax=Nannochloropsis gaditana (strain CCMP526) TaxID=1093141 RepID=I2CQP8_NANGC)

HSP 1 Score: 1368 bits (3540), Expect = 0.000e+0
Identity = 682/986 (69.17%), Postives = 801/986 (81.24%), Query Frame = 1
Query:    7 SIRSALTLRKAAALTSTRQLSARADEIFAAKDTFARRHIGPSDADVEAMMKVVGVTSLDNLVDRTVPQSIRLDKPLELAEPMTESEALAAIRAIADKNKVMKNFIGLGYSETTVPPVILRNMLENPGWYTAYTPYQAEISQGRLQSLLNFQTMVADLTGMDMSNASLLDEATAAAEAMSMCNGLKNGKRKKFFVSEDCHPQTIALVQTRGSAINLDIVVGDPDTADFSCKGYSGALIQYPNTYGDVNSPEAFVKKAHEFDTLVVAATDLMSLTMLKPPGEFGVDIAVGSAQRFGVPLGYGGPHAAFMATKTAYSRRMSGRIIGVTIDSRGAPCLRMAMQTREQHIRRDKATSNICTAQALLANMAASYGVYHGPAGIKDIAQRIHGMAAVTAAALKGAGFGVPSQQFFDTFSVDVSAKGMTAKSVADKCEANGVNVRIIDDKTVGLSFGESITKDDVCALLEGFGVKASALESAAGSAKMGFSDDVVRTSDYMTHPVFNSHHSETQMLRYLKSLENKDLSLNTSMISLGSCTMKLNATSEMIPVTWPEFANIHPFAPAHQCQGYKEMIDSLHEDLAKITGFAACSAQPNSGAQGEYAGLLCIREYHRSRGEFDRNVCIIPVSAHGTNPASAVLAGMKVVVVKSDTKGNIDMDDLKEKATKHKDKLAALMVTYPSTYGVFEEGIKEICQITHDNGGLVYMDGANMNAQVALTSPGHIGADVCHLNLHKTFCIPHGGGGPGVGTIGVVPRLAPFLPGHPVIPSSGEGAGVVAKRTGAVAAAPFGSAAILPISWMYIKMLGEPGLKKSTQMAILNANYMASKLDGHFKVLYRGREGLSAHEFIVDLRPFKASAGIVEEDVAKRLQDYGFHSPTMSWPVPGTLMIEPTESEDKAELDRFCWAMIKIREEIDDIVEGRVAMEKSPLKAAPHTWEMCFEDDWDRPYTRTQAAFPAPWVKANKFWPTVGRVDNVHGDRNLICSCPPMDTYTDE 2964
            S+  A TLR + +L+++ +L A   ++F   D FA RHIGPS A+   M+K+ G  +L+ L +  VP  IRL  P++L    +ESEAL  ++AIA KNKV+K+ IG+GY ET  P VILRNMLENPGWYTAYTPYQAEISQGRL+SLLNFQTMVADLTGM MSNASLLDEATAAAEAMSMC  LKN KRKKFFVS+D HPQ I L+QTRG  + +++VVGD  T DF+ K Y GALIQYPNTYG V++ + FV++AH  D LVVAATDLM+LT ++ PGEFGVDI VGSAQRFGVP+ YGGPHAAFMA+K AYSR+M+GRIIGV++DSRG P LRMAMQTREQHIRRDKATSNICTAQALLANMAASYGVYHGP G+K IA RIHG+A VTA+AL  AGF V    FFDT  VDV + G+TA  VA+     G+N+R+ID   VGL+FGE++TK +V  LL  FG++   +E+ A  A+     ++ R + +MTHPVFNSH SETQMLRYLK LENKDLSLNTSMISLGSCTMKLNATSEM+P+TWPEFAN+HPFAP HQ  GYKEMI+SLH+DLA ITGFAA S+QPNSGAQGE+AGLLCIR+YH +RG+  RN+C+IPVSAHGTNPASAV+ G KVVVV SD KGNID++DLK KA +HKD LAALMVTYPSTYGVFE+ I +I  + H NGG VYMDGANMNAQVALTSP  IGADVCHLNLHKTFCIPHGGGGPGVGTIGV   LAPFLPGHPV    GEG  V  K    V+AAP+GSAAILPISWMYIKM+GEPGLK++TQ+AILNANYM+ +L+ +F +L+RG  G  AHEFI+DLRPFK   G+ EEDVAKRLQDYGFHSPTMSWPV GTLM+EPTESEDK ELDR C A+I IR EI+DI  G++A+E+SPL+ APHT +   + DW++PY+R  A +PAPWVKANKFWP+VGR+DNV+GDRNLICSCPP++TY DE
Sbjct:   39 SLPKAWTLRPSHSLSTSARLGA---DVFTPTDQFAHRHIGPSVAEEAEMLKLCGFKTLEALTEAAVPGHIRLKAPVDLEPAKSESEALTELKAIASKNKVLKSLIGMGYYETATPGVILRNMLENPGWYTAYTPYQAEISQGRLESLLNFQTMVADLTGMAMSNASLLDEATAAAEAMSMCYSLKNQKRKKFFVSKDAHPQNIGLLQTRGKPLGIEVVVGDHRTVDFTSKEYCGALIQYPNTYGKVDAYDEFVQRAHAADVLVVAATDLMALTTIRSPGEFGVDICVGSAQRFGVPMAYGGPHAAFMASKAAYSRKMAGRIIGVSVDSRGKPALRMAMQTREQHIRRDKATSNICTAQALLANMAASYGVYHGPDGLKKIAARIHGLACVTASALSSAGFAVDPAPFFDTLCVDVGSTGLTAAGVAEAAAEEGLNIRVIDPTHVGLAFGETVTKAEVEGLLRAFGLEGVDVEAVAAKAESPLPAEMARKTPFMTHPVFNSHQSETQMLRYLKKLENKDLSLNTSMISLGSCTMKLNATSEMLPITWPEFANMHPFAPPHQALGYKEMIESLHKDLAAITGFAAVSSQPNSGAQGEFAGLLCIRQYHEARGDEHRNICLIPVSAHGTNPASAVMCGYKVVVVASDDKGNIDINDLKAKAEQHKDNLAALMVTYPSTYGVFEDKIIDIIDLVHQNGGQVYMDGANMNAQVALTSPARIGADVCHLNLHKTFCIPHGGGGPGVGTIGVARHLAPFLPGHPVQAVGGEGLDVQEKEILPVSAAPYGSAAILPISWMYIKMMGEPGLKRATQVAILNANYMSKRLEPYFPILFRGSNGQCAHEFIIDLRPFK-KLGVTEEDVAKRLQDYGFHSPTMSWPVSGTLMVEPTESEDKGELDRLCDALIAIRGEIEDIATGKLAVEESPLRHAPHTIDTILQADWNKPYSRETACYPAPWVKANKFWPSVGRLDNVYGDRNLICSCPPLETYLDE 1020          
BLAST of mRNA_P-fluviatile_contig81.14770.1 vs. uniprot
Match: A0A7S2XXQ1_9STRA (Glycine cleavage system P protein n=1 Tax=Fibrocapsa japonica TaxID=94617 RepID=A0A7S2XXQ1_9STRA)

HSP 1 Score: 1352 bits (3500), Expect = 0.000e+0
Identity = 670/961 (69.72%), Postives = 785/961 (81.69%), Query Frame = 1
Query:   82 EIFAAKDTFARRHIGPSDADVEAMMKVVGVTSLDNLVDRTVPQSIRLDKPLELAEPMTESEALAAIRAIADKNKVMKNFIGLGYSETTVPPVILRNMLENPGWYTAYTPYQAEISQGRLQSLLNFQTMVADLTGMDMSNASLLDEATAAAEAMSMCNGLKNGKRKKFFVSEDCHPQTIALVQTRGSAINLDIVVGDPDTADFSCKGYSGALIQYPNTYGDVNSPEAFVKKAHEFDTLVVAATDLMSLTMLKPPGEFGVDIAVGSAQRFGVPLGYGGPHAAFMATKTAYSRRMSGRIIGVTIDSRGAPCLRMAMQTREQHIRRDKATSNICTAQALLANMAASYGVYHGPAGIKDIAQRIHGMAAVTAAALKGAGFGVPSQQ-FFDTFSVDVSAKGMTAKSVADKCEANGVNVRIIDDKTVGLSFGESITKDDVCALLEGFGVKAS--ALESAAGSAKMGFSDDVVRTSDYMTHPVFNSHHSETQMLRYLKSLENKDLSLNTSMISLGSCTMKLNATSEMIPVTWPEFANIHPFAPAHQCQGYKEMIDSLHEDLAKITGFAACSAQPNSGAQGEYAGLLCIREYHRSRGEFDRNVCIIPVSAHGTNPASAVLAGMKVVVVKSDTKGNIDMDDLKEKATKHKDKLAALMVTYPSTYGVFEEGIKEICQITHDNGGLVYMDGANMNAQVALTSPGHIGADVCHLNLHKTFCIPHGGGGPGVGTIGVVPRLAPFLPGHPVIPSSGEGAGVVAKRTGAVAAAPFGSAAILPISWMYIKMLGEPGLKKSTQMAILNANYMASKLDGHFKVLYRGREGLSAHEFIVDLRPFKASAGIVEEDVAKRLQDYGFHSPTMSWPVPGTLMIEPTESEDKAELDRFCWAMIKIREEIDDIVEGRVAMEKSPLKAAPHTWEMCFEDDWDRPYTRTQAAFPAPWVKANKFWPTVGRVDNVHGDRNLICSCPPMDTY 2955
            +IF   D F  RH+GP + ++  M++ VG +SLD LV +TVP  I  DKPL +   M+ESEAL  IR I  KN V K+ IG+G+ ET  P V+LRNMLENPGWYTAYTPYQAE+SQGRLQSLLNFQTMVADLTGM +SNASLLDE+TA AEAMSMC GLKN KRKKFFV+ DCHPQ +ALVQTRG A+ ++I+VGDP TADFS   + GAL+QYPNTYG +   E FVK+AH   T+VVA+TDL++ T++KPPGEFGVDIAVG+AQR GVP+ YGGPHA +MAT   YSR++ GR+IGV++DS+G P LRMAMQTREQHIRRDKATSNICTAQALLANMA++YGVYHGP G+K IA RIH M   T AAL+ AG+ + ++  FFDT +VDV +KG T+  V     A+G+N R++D+ TVGLSFGE+I KDDV ++L  FG  A   A+ S    A  G     +R+S++MTHPVF+SHHSETQMLRYLK+LENKDL+LNTSMISLGSCTMKLNAT EM PVTWPE  N+HPFAPA QCQGY E+I+SLH+DLA+ITGFAA S+QPNSGAQGEYAGLLCIR+YH++ G+  R +C+IPVSAHGTNPASAV+AGMKVVVV SD  GNID+ DLK KA KH D LAALM+TYPSTYGVFEEG+KEI    H  GG VYMDGANMNAQV LTSPG IGADVCHLNLHKTFCIPHGGGGPGVG+IGV   LAP+LPGH V+ + GEG  V AK  GAVAAAPFGSAAILPISWMYIKMLG  GLKK+T +AILNANYMA +++  F VL+RG +G+ AHEFI+DLRPFK   GIVEEDVAKRLQDYGFHSPTMSWPVPGTLM+EPTESEDK ELDR C +++ IR+EI+D+V+GR+A+E SPLKAAPHT EM   + WDR Y+R  AA+PAPWVKANKFWPTVGRVDNV+GDRNL+CSCPPM+ Y
Sbjct:   44 DIFKPTDQFLHRHLGPREVELGDMLRTVGCSSLDELVQKTVPAHIIRDKPLNMEPSMSESEALNKIREITSKNTVNKSLIGMGFYETMTPGVVLRNMLENPGWYTAYTPYQAEVSQGRLQSLLNFQTMVADLTGMAVSNASLLDESTACAEAMSMCYGLKNQKRKKFFVASDCHPQNVALVQTRGEALGVEIIVGDPMTADFSQGDFCGALLQYPNTYGSITDLENFVKEAHASQTMVVASTDLLACTLIKPPGEFGVDIAVGTAQRLGVPMNYGGPHAGYMATSMKYSRKLPGRLIGVSVDSQGKPALRMAMQTREQHIRRDKATSNICTAQALLANMASAYGVYHGPEGMKQIAARIHYMTHATKAALEEAGYAIKTEGVFFDTITVDVGSKGKTSSEVQSALAASGLNCRVVDEATVGLSFGETINKDDVKSILCAFGSDADVDAMASTPQCAITG--TPFLRSSEFMTHPVFHSHHSETQMLRYLKALENKDLALNTSMISLGSCTMKLNATVEMQPVTWPEICNMHPFAPADQCQGYMELIESLHKDLAEITGFAAVSSQPNSGAQGEYAGLLCIRKYHQANGDHHRKICLIPVSAHGTNPASAVMAGMKVVVVNSDENGNIDLVDLKAKADKHADNLAALMITYPSTYGVFEEGVKEIIDHVHSKGGQVYMDGANMNAQVGLTSPGTIGADVCHLNLHKTFCIPHGGGGPGVGSIGVAKHLAPYLPGHNVVKTGGEGDNVAAKVDGAVAAAPFGSAAILPISWMYIKMLGGEGLKKATSIAILNANYMAKRVENAFPVLFRGSQGMCAHEFIIDLRPFK-QYGIVEEDVAKRLQDYGFHSPTMSWPVPGTLMVEPTESEDKQELDRLCDSLLLIRQEIEDVVQGRLAVEDSPLKAAPHTLEMALAETWDRKYSREVAAYPAPWVKANKFWPTVGRVDNVYGDRNLVCSCPPMEDY 1001          
BLAST of mRNA_P-fluviatile_contig81.14770.1 vs. uniprot
Match: A0A7S2SFF7_9STRA (Glycine cleavage system P protein n=1 Tax=Rhizochromulina marina TaxID=1034831 RepID=A0A7S2SFF7_9STRA)

HSP 1 Score: 1301 bits (3368), Expect = 0.000e+0
Identity = 653/975 (66.97%), Postives = 778/975 (79.79%), Query Frame = 1
Query:   67 SARADEIFAAKDTFARRHIGPSDADVEAMMKVVGVTSLDNLVDRTVPQSIRLDKPLELAEPMTESEALAAIRAIADKNKVMKNFIGLGYSETTVPPVILRNMLENPGWYTAYTPYQAEISQGRLQSLLNFQTMVADLTGMDMSNASLLDEATAAAEAMSMCNGLKNGKRKKFFVSEDCHPQTIALVQTRGSAINLDIVVGDPDTADFSCKGYSGALIQYPNTYGDVNSPEAFVKKAHEFDTLVVAATDLMSLTMLKPPGEFGVDIAVGSAQRFGVPLGYGGPHAAFMATKTAYSRRMSGRIIGVTIDSRGAPCLRMAMQTREQHIRRDKATSNICTAQALLANMAASYGVYHGPAGIKDIAQRIHGMAAVTAAALKGAGFGVPSQQFFDTFSVDVSAKGMTAKSVADKCEANGVNVRIIDDKTVGLSFGESITKDDVCALLEGFGVKASA--LES-AAGSAKMGFSDDVVRTSDYMTHPVFNSHHSETQMLRYLKSLENKDLSLNTSMISLGSCTMKLNATSEMIPVTWPEFANIHPFAPAHQCQGYKEMIDSLHEDLAKITGFAACSAQPNSGAQGEYAGLLCIREYHRSRGEFDRNVCIIPVSAHGTNPASAVLAGMKVVVVKSDTKGNIDMDDLKEKATKHKDKLAALMVTYPSTYGVFEEGIKEICQITHDNGGLVYMDGANMNAQVALTSPGHIGADVCHLNLHKTFCIPHGGGGPGVGTIGVVPRLAPFLPGHPVIPSSGEGAGVVAKRTGAVAAAPFGSAAILPISWMYIKMLGEPGLKKSTQMAILNANYMASKLDGHFKVLYRGREGLSAHEFIVDLRPFKASAGIVEEDVAKRLQDYGFHSPTMSWPVPGTLMIEPTESEDKAELDRFCWAMIKIREEIDDIVEGRVAMEKSPLKAAPHTWEMCFEDDWDRPYTRTQAAFPAPWVK---ANKFWPTVGRVDNVHGDRNLICSCPPMDTYTDELIA 2973
            ++R+    A  DTF  RH GPSD +V+ M+  V V+SLD L+D TVP  IRLD  L L   M+ES+AL+ ++ +  KN+V K+FIG+GYSET  P VILRNMLENPGWYTAYTPYQAEISQGRL+ LLN+QTMV+D+TG+ M+NASLLDEATAAAEAMSM   L  GKR KFFV    HPQT  L++TR  A  +++VVGD  +A+   +G++GA++QYP+TYG V    A V K H    LVVAATDL++ T LKPPGE+G DIA+GS+QRFGVP+G+GGPHAAFMAT   Y+RRM GRIIGVTIDSRG P LRMAMQTREQHIRRDKATSNICTAQALLANMAA+YGVYHGPAG+  IAQR+H +AA TAA+LK +GF V +  FFDTF+VDVS+KG+TA++V D   A G NVR++++ TVGLSFGE+   +D+ ALL  FGV A+   LES AA S   GF   + R SDYMTHP+FNS  SE+QMLR+L  LE KDLSLN SMISLGSCTMKLNAT+EMIPVTW E AN+HPFAP  Q +GY EMIDSL++DLAKITGFAA SAQPNSGAQGE+ GLLCI++Y  ++GE  RN+C+IPVSAHGTNPASAV+AG+KVV V++   G+ID DDLK K  KH + LAALMVTYPSTYGVFEEGI +IC I H++GG VYMDGANMNAQVALTSPG IGADVCHLNLHKTFCIPHGGGGPGVG+IGV   LAP LPGH V+  SGEGA VV+K  GA+AAAPFGSAAILPISWMYIKMLGEPGL ++TQ+AILNANYMA +L+  + +L+RG  G+ AHEFI+D+RPFK   G+ EEDV KRLQDYGFH PT SWPV GTLM+EPTESEDKAELDRF  A++ IR+EIDD+  GRV+   SP+  APHT +M   ++WDRPY+R  AAFPAPW+K     K WPT GRVDNV+GDRNL+C+CPP+  Y ++++A
Sbjct:   51 ASRSSSALAPTDTFDHRHNGPSDKEVQEMLAAVNVSSLDALIDTTVPPPIRLDDKLSLEPAMSESQALSTLKTMMSKNEVKKSFIGMGYSETITPAVILRNMLENPGWYTAYTPYQAEISQGRLEMLLNYQTMVSDITGLPMANASLLDEATAAAEAMSMSFALTKGKRNKFFVDSKIHPQTRGLIETRAGASGVEVVVGDLASAELD-QGFAGAIVQYPDTYGSVEDLSALVDKVHGVGALVVAATDLLACTQLKPPGEWGADIAIGSSQRFGVPMGFGGPHAAFMATSDKYARRMPGRIIGVTIDSRGKPALRMAMQTREQHIRRDKATSNICTAQALLANMAAAYGVYHGPAGLDAIAQRVHMLAATTAASLKDSGFAVSTAPFFDTFTVDVSSKGLTAQAVQDAAAAAGCNVRVVNESTVGLSFGEAHITEDLVALLSAFGVDATTEGLESIAAASPSPGFGA-LARKSDYMTHPIFNSMRSESQMLRFLHRLETKDLSLNHSMISLGSCTMKLNATAEMIPVTWDEVANMHPFAPESQTKGYMEMIDSLNDDLAKITGFAAVSAQPNSGAQGEFTGLLCIKKYLEAKGEGHRNICLIPVSAHGTNPASAVMAGLKVVTVQTLPNGDIDFDDLKAKVEKHSNDLAALMVTYPSTYGVFEEGIVDICNIIHEHGGQVYMDGANMNAQVALTSPGFIGADVCHLNLHKTFCIPHGGGGPGVGSIGVAAHLAPHLPGHNVVACSGEGANVVSKDEGAIAAAPFGSAAILPISWMYIKMLGEPGLLRATQLAILNANYMAKRLEDQYSILFRGPTGMCAHEFILDMRPFK-EFGVTEEDVCKRLQDYGFHGPTQSWPVSGTLMVEPTESEDKAELDRFVDALLMIRQEIDDVASGRVSYADSPIHNAPHTMDMVASENWDRPYSREVAAFPAPWLKNASTTKMWPTCGRVDNVYGDRNLVCTCPPLSAYEEDVVA 1022          
BLAST of mRNA_P-fluviatile_contig81.14770.1 vs. uniprot
Match: A0A7S2C4K9_9STRA (Glycine cleavage system P protein n=1 Tax=Dictyocha speculum TaxID=35687 RepID=A0A7S2C4K9_9STRA)

HSP 1 Score: 1296 bits (3354), Expect = 0.000e+0
Identity = 658/978 (67.28%), Postives = 769/978 (78.63%), Query Frame = 1
Query:   55 TRQLSARADEIFAAKDTFARRHIGPSDADVEAMMKVVGVTSLDNLVDRTVPQSIRLDKPLELAEPMTESEALAAIRAIADKNKVMKNFIGLGYSETTVPPVILRNMLENPGWYTAYTPYQAEISQGRLQSLLNFQTMVADLTGMDMSNASLLDEATAAAEAMSMCNGLKNGK-RKKFFVSEDCHPQTIALVQTRGSAINLDIVVGDPDTADFSCKGYSGALIQYPNTYGDVNSPEAFVKKAHEFDTLVVAATDLMSLTMLKPPGEFGVDIAVGSAQRFGVPLGYGGPHAAFMATKTAYSRRMSGRIIGVTIDSRGAPCLRMAMQTREQHIRRDKATSNICTAQALLANMAASYGVYHGPAGIKDIAQRIHGMAAVTAAALKGAGFGVPSQQFFDTFSVDVSAKGMTAKSVADKCEANGVNVRIIDDKTVGLSFGESITKDDVCALLEGFGVKASALESAAGSAKMGFSDDVV-RTSDYMTHPVFNSHHSETQMLRYLKSLENKDLSLNTSMISLGSCTMKLNATSEMIPVTWPEFANIHPFAPAHQCQGYKEMIDSLHEDLAKITGFAACSAQPNSGAQGEYAGLLCIREYHRSRGEFDRNVCIIPVSAHGTNPASAVLAGMKVVVVKSDTKGNIDMDDLKEKATKHKDKLAALMVTYPSTYGVFEEGIKEICQITHDNGGLVYMDGANMNAQVALTSPGHIGADVCHLNLHKTFCIPHGGGGPGVGTIGVVPRLAPFLPGHPVIPSSGEGAGVVAKRTGAVAAAPFGSAAILPISWMYIKMLGEPGLKKSTQMAILNANYMASKLDGHFKVLYRGREGLSAHEFIVDLRPFKASAGIVEEDVAKRLQDYGFHSPTMSWPVPGTLMIEPTESEDKAELDRFCWAMIKIREEIDDIVEGRVAMEKSPLKAAPHTWEMCFEDDWDRPYTRTQAAFPAPWVK---ANKFWPTVGRVDNVHGDRNLICSCPPMDTYTDELIA 2973
            T  L  R+    A  DTF  RH+GPSD +++ M++ VG +SL++L D TVP  IRLDK LEL   M+E+EALAA++AI  KN+V  +FIG+GY ETT P VILRNMLENPGWYTAYTPYQAEISQGRL+ LLN+QTMV DLTG+ M+NASLLDEATAAAEAMSMC  L  GK R KFFVS+ CHPQTIAL++TR +A+ +++V+G  + A+F    Y+GAL+QYP+T G V    +F  K H    LVVAATDL++LT+LKPPGE+G DIAVGSAQRFGVP+G+GGPHAAFMAT   YSRRM GRIIGVTIDS+  P LRMAMQTREQHIRRDKATSNICTAQALLANMAASYG+YHG  G+  IA R H +AAVTAAALK AG+ VP   FFDT +VDVS+KG TA  V     A G NVR IDD TVG+S GE +T  D+  LL  F V A+     A ++ +G  D    RTS+++THPVFNS+ SE+QM+R+L+ LENKDLSLN SMISLGSCTMKLNA SEM+PVTW   A +HPFAP  Q +GY E+I+SL+ DLA ITGF A SAQPNSGA GE+AGLLCI++Y   RG+  RN+C+IPVSAHGTNPASAV+AGMKVV VK+   G+ID +DL  K  KH D LAALMVTYPSTYGVFEEGI +IC   HD+GG VYMDGANMNAQV LT+PG IGADVCHLNLHKTFCIPHGGGGPGVG+IGV   LAPFLPGH V+P SGEG  VV K  GA+AAAPFGSAAILPISWMYIKMLGE GL KSTQ+AILNANYM+ +L+ HF +L+RG+ G+ AHEFI+DLRPFK   GIVEED+AKRLQDYGFHSPTMSWPV GTLMIEPTESED+ ELDRFC A+I IR EIDD+  GR+A+E SPL  APHT  M   ++WDR Y+R  AAFP  W++    +K WPTVGRVDNV+GDRNL+C+CPPM  Y D+  A
Sbjct:   22 TGALVTRSASALALNDTFVERHVGPSDEEIKDMLQTVGCSSLEDLSDTTVPGMIRLDKKLELDGAMSETEALAALKAIMSKNEVKTSFIGMGYYETTTPSVILRNMLENPGWYTAYTPYQAEISQGRLEMLLNYQTMVTDLTGLPMANASLLDEATAAAEAMSMCTALTKGKNRNKFFVSDLCHPQTIALIETRANAVGIEVVIGKLEDAEFDTT-YTGALVQYPDTRGSVVDLTSFTDKVHAEGALVVAATDLLALTVLKPPGEWGADIAVGSAQRFGVPMGFGGPHAAFMATSDKYSRRMPGRIIGVTIDSQSKPALRMAMQTREQHIRRDKATSNICTAQALLANMAASYGIYHGKDGLVAIADRTHKLAAVTAAALKDAGYAVPEGAFFDTITVDVSSKGKTAAEVQAAAAAAGCNVREIDDTTVGISMGEPVTAHDLVQLLSAFDVTATTASLEASASTVGGVDSSFKRTSEFLTHPVFNSYRSESQMMRFLRRLENKDLSLNHSMISLGSCTMKLNAASEMLPVTWETTARLHPFAPKDQVKGYYELIESLNSDLAMITGFDAVSAQPNSGATGEFAGLLCIKDYQEERGQGHRNICLIPVSAHGTNPASAVMAGMKVVTVKTLDNGDIDFEDLSAKVEKHSDNLAALMVTYPSTYGVFEEGIVDICDKIHDHGGQVYMDGANMNAQVGLTAPGFIGADVCHLNLHKTFCIPHGGGGPGVGSIGVKSHLAPFLPGHAVVPCSGEGDNVVVKSGGAIAAAPFGSAAILPISWMYIKMLGEAGLTKSTQVAILNANYMSKRLEEHFPILFRGKTGMCAHEFIMDLRPFKEH-GIVEEDIAKRLQDYGFHSPTMSWPVSGTLMIEPTESEDQGELDRFCNALIAIRGEIDDVASGRMALEDSPLHHAPHTMGMVMSENWDRAYSRETAAFPGQWLRDGSTSKHWPTVGRVDNVYGDRNLVCTCPPMSVYEDDEAA 997          
BLAST of mRNA_P-fluviatile_contig81.14770.1 vs. uniprot
Match: A0A1Z5JR60_FISSO (Glycine cleavage system P protein n=2 Tax=Fistulifera solaris TaxID=1519565 RepID=A0A1Z5JR60_FISSO)

HSP 1 Score: 1274 bits (3296), Expect = 0.000e+0
Identity = 644/964 (66.80%), Postives = 751/964 (77.90%), Query Frame = 1
Query:  100 DTFARRHIGPSDADVEAMMKVVGVTSLDNLVDRTVPQSIRLDKPLELAEPMTESEALAAIRAIADKNKVMKNFIGLGYSETTVPPVILRNMLENPGWYTAYTPYQAEISQGRLQSLLNFQTMVADLTGMDMSNASLLDEATAAAEAMSMCNGLKN--GKRKKFFVSEDCHPQTIALVQTRGSAINLDIVVGDPDTADFSCKGYSGALIQYPNTYGDVNSP----EAFVKKAHEFDTLVVAATDLMSLTMLKPPGEFGVDIAVGSAQRFGVPLGYGGPHAAFMATKTAYSRRMSGRIIGVTIDSRGAPCLRMAMQTREQHIRRDKATSNICTAQALLANMAASYGVYHGPAGIKDIAQRIHGMAAVTAAALKGAGFGVPSQQFFDTFSVDVSAKGMTAKSVADKCEANGVNVRIIDDKTVGLSFGESITKDDVCALLEGFGVKASALESAAGSAKMGFSDDVVRTSDYMTHPVFNSHHSETQMLRYLKSLENKDLSLNTSMISLGSCTMKLNATSEMIPVTWPEFANIHPFAPAHQCQGYKEMIDSLHEDLAKITGFAACSAQPNSGAQGEYAGLLCIREYHRSRGEFDRNVCIIPVSAHGTNPASAVLAGMKVVVVKSDTKGNIDMDDLKEKATKHKDKLAALMVTYPSTYGVFEEGIKEICQITHDNGGLVYMDGANMNAQVALTSPGHIGADVCHLNLHKTFCIPHGGGGPGVGTIGVVPRLAPFLPGHPVIP-SSGEGAG---VVAKRTGAVAAAPFGSAAILPISWMYIKMLGEPGLKKSTQMAILNANYMASKLDGHFKVLYRGREGLSAHEFIVDLRPFKASAGIVEEDVAKRLQDYGFHSPTMSWPVPGTLMIEPTESEDKAELDRFCWAMIKIREEIDDIVEGRVAMEKSPLKAAPHTWEMCFEDDWDRPYTRTQAAFPAPWVKANKFWPTVGRVDNVHGDRNLICSCPPMDTYTD 2961
            DTFARRHIGP+  + ++M+  +G  S D L   TVP  I   K ++L  P++ESEALA ++ +A+KNKVMK++IG GY +T VPPVILRN+LENPGWYTAYTPYQAEISQGRL+ LLNFQT+V DLTG+ M+ ASLLDE++AAAEAM M   LK   G + KFF+S+D HPQTI L+QTR  AI +D++VGD    DFS K Y GAL+QYPNTYG + S      +F  +AHE D +VVAATDLM+LT L PP  +G DIAVGSAQRFGVP+G+GGPHA F+AT   YSR+M GRIIGVTIDS+G PCLRMAMQTREQHIRRDKATSNICTAQALLANMAASY +YHGP G+ DI+ RIH +A V    +  AGF V +  FFDTF+VDVS+KGMTA  V     + G NVR+ID+ TVG+S GE IT+DD+ ALLEG   K S  + AA  +         R  + +THP+F  HHSETQMLRYLK+LEN+DL+LN SMISLGSCTMKLNATSEMIPVTW EF NIHPFAPA Q  GY EMI+ L++DLA+ITGFAA SAQPNSGA GEYAGLL I  Y  S GE  RNVC+IP SAHGTNPASAV+AGMKVVVV++D  GNID DDL  K  KHKD LAA MVTYPST+GVFEE I ++C+  H  GG VYMDGANMNAQV LTSPG IGADVCHLNLHKTFCIPHGGGGPGVG+IGV   LAPFLPGH + P +SG+  G    V K+ GAVA APFGSAAILPISWMYIKMLG  GLK +T  AILNANYMA++L+G + VL+ G  G  AHEFI+DLRP KA+ G+ EEDVAKRLQDYGFHSPTMSWPV GTLM+EPTESED AELDRFC AM+ IR EIDDI  GRV +E SPL+ APHT ++   + WDRPY+R  AA+PAPW++ NKFWPT GRVDNV+GDRNL+C+CPP++ Y D
Sbjct:   38 DTFARRHIGPTPEEAKSMLATIGFDSFDALTKSTVPAKILTSKQMKLDAPLSESEALAKLKGMANKNKVMKSYIGAGYYDTQVPPVILRNVLENPGWYTAYTPYQAEISQGRLEMLLNFQTLVVDLTGLPMAVASLLDESSAAAEAMQMAFALKGKKGTKNKFFISQDVHPQTIGLIQTRAKAIGIDVIVGDHSQLDFSGKDYCGALVQYPNTYGSIESSGESYASFADRAHEADAMVVAATDLMALTKLSPPSSWGADIAVGSAQRFGVPMGFGGPHAGFLATSDKYSRKMPGRIIGVTIDSQGKPCLRMAMQTREQHIRRDKATSNICTAQALLANMAASYAIYHGPQGLTDISSRIHALAKVAHREIGKAGFKVSNDAFFDTFTVDVSSKGMTAAEVQSGAVSVGANVRVIDNNTVGISMGEGITRDDLKALLEG-AFKVSNPDLAADDSVKNVEGKYAREGEILTHPIFRQHHSETQMLRYLKTLENRDLALNHSMISLGSCTMKLNATSEMIPVTWSEFCNIHPFAPADQVLGYHEMIEDLNKDLAEITGFAAVSAQPNSGATGEYAGLLAITAYLESIGEGHRNVCLIPKSAHGTNPASAVMAGMKVVVVENDDNGNIDFDDLTAKINKHKDHLAAFMVTYPSTFGVFEERIVDVCEAIHAAGGQVYMDGANMNAQVGLTSPGLIGADVCHLNLHKTFCIPHGGGGPGVGSIGVREHLAPFLPGHFLEPQASGKLCGSDLCVPKKEGAVAGAPFGSAAILPISWMYIKMLGAEGLKSATGNAILNANYMAARLNGAYDVLFVGANGQCAHEFILDLRPLKAATGVTEEDVAKRLQDYGFHSPTMSWPVAGTLMVEPTESEDLAELDRFCDAMLAIRAEIDDIGAGRVPLENSPLRNAPHTMDVILSEKWDRPYSREVAAYPAPWIRTNKFWPTCGRVDNVYGDRNLVCTCPPLEAYED 1000          
BLAST of mRNA_P-fluviatile_contig81.14770.1 vs. uniprot
Match: B8BX31_THAPS (Glycine cleavage system P protein n=1 Tax=Thalassiosira pseudonana TaxID=35128 RepID=B8BX31_THAPS)

HSP 1 Score: 1270 bits (3286), Expect = 0.000e+0
Identity = 636/966 (65.84%), Postives = 756/966 (78.26%), Query Frame = 1
Query:  100 DTFARRHIGPSDADVEAMMKVVGVTSLDNLVDRTVPQSIRLDKPLELAEPMTESEALAAIRAIADKNKVMKNFIGLGYSETTVPPVILRNMLENPGWYTAYTPYQAEISQGRLQSLLNFQTMVADLTGMDMSNASLLDEATAAAEAMSMCNGLKN--GKRKKFFVSEDCHPQTIALVQTRGSAINLDIVVGDPDTADFSCKGYSGALIQYPNTYGDVNSPEA----FVKKAHEFDTLVVAATDLMSLTMLKPPGEFGVDIAVGSAQRFGVPLGYGGPHAAFMATKTAYSRRMSGRIIGVTIDSRGAPCLRMAMQTREQHIRRDKATSNICTAQALLANMAASYGVYHGPAGIKDIAQRIHGMAAVTAAALKGAGFGVPSQQFFDTFSVDVSAKGMTAKSVADKCEANGVNVRIIDDKTVGLSFGESITKDDVCALLEG-FGVKASALESAAGSAKMGFSDDVVRTSDYMTHPVFNSHHSETQMLRYLKSLENKDLSLNTSMISLGSCTMKLNATSEMIPVTWPEFANIHPFAPAHQCQGYKEMIDSLHEDLAKITGFAACSAQPNSGAQGEYAGLLCIREYHRSRGEFDRNVCIIPVSAHGTNPASAVLAGMKVVVVKSDTKGNIDMDDLKEKATKHKDKLAALMVTYPSTYGVFEEGIKEICQITHDNGGLVYMDGANMNAQVALTSPGHIGADVCHLNLHKTFCIPHGGGGPGVGTIGVVPRLAPFLPGHPVIP-SSGEGAG---VVAKRTGAVAAAPFGSAAILPISWMYIKMLGEPGLKKSTQMAILNANYMASKLDGHFKVLYRGREGLSAHEFIVDLRPFKASAGIVEEDVAKRLQDYGFHSPTMSWPVPGTLMIEPTESEDKAELDRFCWAMIKIREEIDDIVEGRVAMEKSPLKAAPHTWEMCFEDDWDRPYTRTQAAFPAPWVKANKFWPTVGRVDNVHGDRNLICSCPPMDTYTDE 2964
            DTF+RRH+GPSD D + M++ +G    ++L+  TVP +I    PL L  P+TESEAL+ I ++A+KNK+MK++IG+GY +T VP VILRNMLENPGWYT+YTPYQAEI+QGRL+ LLNFQT+ +DLTG+ MS +SLLDE+TAAAEAM MC  LK   GK+ KFFVS+D HPQTI+L+QTR   I +D++VGD   ++     Y GA++QYPNTYG V SP      F K+AH+   +V+ ATDLM+LT L PP  +G DIAVGSAQRFGVP+G+GGPHA F++T   YSR+M  RIIGVTIDS G PCLRMAMQTREQHIRRDKATSNICTAQALLANMAASY +YHGP G+K+I+ RIH +A V    L  AG+GV    FFDTFSVDVS KGMTA  V +   + G NVRIID+ TVGLS GE IT+DD+ ALL G FG+ +  + +     ++  +  V R ++ +THP+F+ HHSETQMLRYLK+LEN+DL+LN SMISLGSCTMKLNATSEMIPVTWP F NIHPFAP  Q QGY E+I+ L++DLA+ITGFAA SAQPNSGA GEYAGLL I+ Y    GE  R+VC+IP SAHGTNPASA +AGMKVVVV +D +GN+D+DDL +K  KH+  +AA MVTYPST+GVFEE I EI  + HD GG VYMDGANMNAQV LTSPG IGADVCHLNLHKTFCIPHGGGGPGVG+IGV   LAPFLPGH V P +SG+  G    V K  GAVA APFGSAAILPISWMYIKM G  GLKKST++AILNANYMA++L+G + VL+ G+ G  AHEFI+DLRP KA  GI EEDVAKRLQDYGFHSPTMSWPV GTLM+EPTESED AELDRFC AM+ IR EIDD+  GR+A+E SPL+ APHT +    D WDR Y+R   A+PAPWV+ANKFWPT GRVDNVHGDRNL+C+CPP+  Y +E
Sbjct:    3 DTFSRRHVGPSDEDSKLMLQSIGFNDFESLIKSTVPANILSSTPLNLQPPLTESEALSKIESMANKNKIMKSYIGMGYYDTIVPNVILRNMLENPGWYTSYTPYQAEIAQGRLEMLLNFQTLCSDLTGLPMSVSSLLDESTAAAEAMQMCFSLKGKKGKKNKFFVSKDVHPQTISLIQTRAVVIGIDVIVGDHSASEVDSGEYCGAIVQYPNTYGSVESPGESYADFTKRAHDGGAMVICATDLMALTKLAPPSSWGADIAVGSAQRFGVPMGFGGPHAGFLSTSDQYSRKMPARIIGVTIDSEGKPCLRMAMQTREQHIRRDKATSNICTAQALLANMAASYAIYHGPEGLKNISGRIHALARVAHRELSNAGYGVTDSPFFDTFSVDVSKKGMTAAQVQEGAASVGANVRIIDENTVGLSMGEGITRDDLSALLSGAFGIASPDVSADVSLTEVDAT--VARDTEILTHPIFHQHHSETQMLRYLKTLENRDLALNHSMISLGSCTMKLNATSEMIPVTWPGFCNIHPFAPHDQVQGYHELIEDLNKDLAEITGFAAVSAQPNSGATGEYAGLLAIKSYLEHIGEGHRDVCLIPKSAHGTNPASAAMAGMKVVVVDNDDEGNVDLDDLTKKIEKHRSNIAAFMVTYPSTFGVFEEKIVEIIDMVHDAGGQVYMDGANMNAQVGLTSPGLIGADVCHLNLHKTFCIPHGGGGPGVGSIGVAKHLAPFLPGHSVDPEASGKLCGSDLCVPKAGGAVAGAPFGSAAILPISWMYIKMNGYEGLKKSTEVAILNANYMAARLNGAYDVLFAGKNGQCAHEFILDLRPLKAVTGITEEDVAKRLQDYGFHSPTMSWPVAGTLMVEPTESEDLAELDRFCDAMLSIRAEIDDVGSGRIALEDSPLRNAPHTMDNIINDKWDRKYSRDVGAYPAPWVRANKFWPTCGRVDNVHGDRNLVCTCPPISAYEEE 966          
BLAST of mRNA_P-fluviatile_contig81.14770.1 vs. uniprot
Match: A0A448Z537_9STRA (Glycine cleavage system P protein n=3 Tax=Bacillariaceae TaxID=33852 RepID=A0A448Z537_9STRA)

HSP 1 Score: 1263 bits (3268), Expect = 0.000e+0
Identity = 640/971 (65.91%), Postives = 753/971 (77.55%), Query Frame = 1
Query:  100 DTFARRHIGPSDADVEAMMKVVGVTSLDNLVDRTVPQSIRLDKPLELAEPMTESEALAAIRAIADKNKVMKNFIGLGYSETTVPPVILRNMLENPGWYTAYTPYQAEISQGRLQSLLNFQTMVADLTGMDMSNASLLDEATAAAEAMSMCNGLKNG----KRKKFFVSEDCHPQTIALVQTRGSAINLDIVVGDPDTADFSCKGYSGALIQYPNTYG----DVNSPEAFVKKAHEFDTLVVAATDLMSLTMLKPPGEFGVDIAVGSAQRFGVPLGYGGPHAAFMATKTAYSRRMSGRIIGVTIDSRGAPCLRMAMQTREQHIRRDKATSNICTAQALLANMAASYGVYHGPAGIKDIAQRIHGMAAVTAAALKGAGFGVPSQQ---FFDTFSVDVSAKGMTAKSVADKCEANGVNVRIIDDKTVGLSFGESITKDDVCALL-EGFGVKASALESAAGSAKMGFSDDVVRTSDYMTHPVFNSHHSETQMLRYLKSLENKDLSLNTSMISLGSCTMKLNATSEMIPVTWPEFANIHPFAPAHQCQGYKEMIDSLHEDLAKITGFAACSAQPNSGAQGEYAGLLCIREYHRSRGEFDRNVCIIPVSAHGTNPASAVLAGMKVVVVKSDTKGNIDMDDLKEKATKHKDKLAALMVTYPSTYGVFEEGIKEICQITHDNGGLVYMDGANMNAQVALTSPGHIGADVCHLNLHKTFCIPHGGGGPGVGTIGVVPRLAPFLPGHPVIP-SSGEGAG---VVAKRTGAVAAAPFGSAAILPISWMYIKMLGEPGLKKSTQMAILNANYMASKLDGHFKVLYRGREGLSAHEFIVDLRPFKASAGIVEEDVAKRLQDYGFHSPTMSWPVPGTLMIEPTESEDKAELDRFCWAMIKIREEIDDIVEGRVAMEKSPLKAAPHTWEMCFEDDWDRPYTRTQAAFPAPWVKANKFWPTVGRVDNVHGDRNLICSCPPMDTYTDE 2964
            D+FARRH+GP   +  +M++ +G  S D LV  TVP  I  DKPL L +PM+ESEAL  IR  AD+NKVMK++IG GY +T VP VILRN+LENPGWYTAYTPYQAEISQGRL+ LLNFQT+V DLTG+ M+ ASLLDE++AAAEAM MC  LK G    K+ KFF+S D HPQTI L++TR SAI +++V G+    DFS K + GA++QYPNTYG    D  S ++F  +AHE D +V+AATDL++LT L PP  +G DIAVGSAQRFGVP+G+GGPHA F++T   YSR+M GRIIGVT+DS G PCLRMAMQTREQHIRRDKATSNICTAQALLANMAA+Y +YHGP G+ +I  R+H +A V A  L   GF +   +   FFDT +VDVS+KG+TA  V       G NVRIID+ TVG+S GE +T+DD+ ALL   F + A  + +A   +         R  + +THP+F+ H SETQMLRYLKSLENKDLSLN SMISLGSCTMKLNATSEMIPVTWPEF NIHPFAP  Q +GY E+I+ L+ DLA+ITGFAA SAQPNSGA GEYAGLL I++Y  S+GE  R++C+IP SAHGTNPASAV+AGMKVVVV +D KGNIDM+DL  K  KH+D LAA MVTYPST+GVFEEGIKEI    H+ GG VYMDGANMNAQV LTSPG IGADVCHLNLHKTFCIPHGGGGPGVG+IGV   LAPFLPGH   P +SG+  G    V K TGA+A APFGSAAILPISWMYIKMLGEPGLK +T  AILNANYMA++L+G + VL+ G+ G  AHEFI+DLRP K+S G+ EEDVAKRLQDYGFHSPTMSWPV GTLM+EPTESED  ELDRFC AM+ IR+EIDDI  GR+A E SPL  APHT +    D WDRPYTR  A +PAPW+K+NKFWPT GRVDNV+GDRNL+C+CPP++ Y DE
Sbjct:   69 DSFARRHMGPRLEESISMLQTIGFESFDELVKSTVPADIMTDKPLVLEDPMSESEALNQIRKFADRNKVMKSYIGQGYYDTQVPAVILRNVLENPGWYTAYTPYQAEISQGRLEMLLNFQTLVVDLTGLPMAVASLLDESSAAAEAMQMCFALKGGRGKKKKNKFFISNDVHPQTIGLIETRASAIGIEVVKGNHSDVDFSXKDFCGAIVQYPNTYGALESDGESYKSFTARAHEADAMVIAATDLLALTKLAPPSSWGADIAVGSAQRFGVPMGFGGPHAGFLSTSDKYSRKMPGRIIGVTVDSSGKPCLRMAMQTREQHIRRDKATSNICTAQALLANMAAAYAIYHGPEGLAEIGGRVHALARVAARELIADGFKLAHNEAGEFFDTIAVDVSSKGLTAAEVQAGAVEAGANVRIIDENTVGISMGEGVTRDDLYALLCHAFRLDAPDV-TAEDDSLTSIPSKYARDGEILTHPIFHQHRSETQMLRYLKSLENKDLSLNHSMISLGSCTMKLNATSEMIPVTWPEFCNIHPFAPHDQVEGYHELIEDLNTDLAEITGFAAVSAQPNSGATGEYAGLLAIKDYLESKGEGHRDICLIPKSAHGTNPASAVMAGMKVVVVNNDDKGNIDMEDLTAKIEKHRDNLAAFMVTYPSTFGVFEEGIKEIIGSIHEAGGQVYMDGANMNAQVGLTSPGLIGADVCHLNLHKTFCIPHGGGGPGVGSIGVAAHLAPFLPGHVSGPEASGKLCGNELCVPKETGAIAGAPFGSAAILPISWMYIKMLGEPGLKLATGQAILNANYMAARLNGAYDVLFVGKNGQCAHEFILDLRPLKSSTGVTEEDVAKRLQDYGFHSPTMSWPVAGTLMVEPTESEDLQELDRFCDAMLSIRKEIDDIGSGRIAYEDSPLHNAPHTLDDLMSDKWDRPYTREAACYPAPWIKSNKFWPTCGRVDNVYGDRNLVCTCPPLEAYEDE 1038          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig81.14770.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D7FRW0_ECTSI0.000e+087.60Glycine cleavage system P protein n=1 Tax=Ectocarp... [more]
A0A835ZCN8_9STRA0.000e+077.57Glycine cleavage system P protein n=1 Tax=Tribonem... [more]
A0A835ZE30_9STRA0.000e+075.67Glycine cleavage system P protein n=1 Tax=Tribonem... [more]
I2CQP8_NANGC0.000e+069.17Glycine cleavage system P protein n=1 Tax=Nannochl... [more]
A0A7S2XXQ1_9STRA0.000e+069.72Glycine cleavage system P protein n=1 Tax=Fibrocap... [more]
A0A7S2SFF7_9STRA0.000e+066.97Glycine cleavage system P protein n=1 Tax=Rhizochr... [more]
A0A7S2C4K9_9STRA0.000e+067.28Glycine cleavage system P protein n=1 Tax=Dictyoch... [more]
A0A1Z5JR60_FISSO0.000e+066.80Glycine cleavage system P protein n=2 Tax=Fistulif... [more]
B8BX31_THAPS0.000e+065.84Glycine cleavage system P protein n=1 Tax=Thalassi... [more]
A0A448Z537_9STRA0.000e+065.91Glycine cleavage system P protein n=3 Tax=Bacillar... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig81contigP-fluviatile_contig81:147346..162684 +
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 score1689.1
Seed ortholog evalue0.0
Seed eggNOG ortholog2880.D7FRW0
Preferred nameGLDC
KEGG rclassRC00022,RC00929,RC02834,RC02880
KEGG koko:K00281
KEGG ReactionR01221,R03425
KEGG Pathwayko00260,ko00630,ko01100,ko01110,ko01130,ko01200,map00260,map00630,map01100,map01110,map01130,map01200
KEGG ModuleM00532
GOsGO:0001101,GO:0001505,GO:0003674,GO:0003824,GO:0004375,GO:0005488,GO:0005515,GO:0005575,GO:0005622,GO:0005623,GO:0005634,GO:0005737,GO:0005739,GO:0005759,GO:0005886,GO:0005960,GO:0006082,GO:0006091,GO:0006520,GO:0006544,GO:0006546,GO:0006730,GO:0006807,GO:0008144,GO:0008150,GO:0008152,GO:0009055,GO:0009056,GO:0009063,GO:0009069,GO:0009071,GO:0009987,GO:0010033,GO:0010243,GO:0014070,GO:0014075,GO:0016020,GO:0016054,GO:0016491,GO:0016594,GO:0016597,GO:0016638,GO:0016639,GO:0016642,GO:0017144,GO:0019464,GO:0019752,GO:0019842,GO:0019899,GO:0022900,GO:0030170,GO:0031406,GO:0031974,GO:0032991,GO:0033993,GO:0034097,GO:0036094,GO:0036255,GO:0042133,GO:0042135,GO:0042165,GO:0042221,GO:0042737,GO:0042802,GO:0042803,GO:0043167,GO:0043168,GO:0043169,GO:0043177,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0043233,GO:0043436,GO:0044237,GO:0044238,GO:0044248,GO:0044281,GO:0044282,GO:0044422,GO:0044424,GO:0044429,GO:0044444,GO:0044446,GO:0044464,GO:0046395,GO:0046983,GO:0047960,GO:0048037,GO:0050662,GO:0050896,GO:0051716,GO:0055114,GO:0060359,GO:0065007,GO:0065008,GO:0070013,GO:0070279,GO:0070280,GO:0070542,GO:0070887,GO:0071310,GO:0071345,GO:0071704,GO:0071944,GO:0097159,GO:1901363,GO:1901564,GO:1901565,GO:1901575,GO:1901605,GO:1901606,GO:1901698,GO:1901700,GO:1902494,GO:1903442,GO:1990204,GO:1990823,GO:1990830
EggNOG free text desc.glycine dehydrogenase (decarboxylating) activity
EggNOG OGsCOG1003@1,KOG2040@2759
EC1.4.4.2
COG Functional cat.E
BiGG ReactioniRC1080.CRv4_Au5_s12_g3759_t1
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
BRITEko00000,ko00001,ko00002,ko01000
Hectar predicted targeting categoryother localisation
Ec32 ortholog descriptionGlycine dehydrogenase (decarboxylating)
Ec32 orthologEc-23_004150.1
Exons22
Model size4288
Cds size2829
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig81.14770.1prot_P-fluviatile_contig81.14770.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig81 149285..161375 +


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

Feature NameUnique NameSpeciesTypePosition
1622817275.2472885-UTR-P-fluviatile_contig81:147345..1474501622817275.2472885-UTR-P-fluviatile_contig81:147345..147450Porterinema fluviatile SAG_2381UTRP-fluviatile_contig81 147346..147450 +
1693571877.635872-UTR-P-fluviatile_contig81:147345..1474501693571877.635872-UTR-P-fluviatile_contig81:147345..147450Porterinema fluviatile SAG_2381UTRP-fluviatile_contig81 147346..147450 +
1622817275.260719-UTR-P-fluviatile_contig81:149239..1492841622817275.260719-UTR-P-fluviatile_contig81:149239..149284Porterinema fluviatile SAG_2381UTRP-fluviatile_contig81 149240..149284 +
1693571877.6513236-UTR-P-fluviatile_contig81:149239..1492841693571877.6513236-UTR-P-fluviatile_contig81:149239..149284Porterinema fluviatile SAG_2381UTRP-fluviatile_contig81 149240..149284 +
1622817275.4930809-UTR-P-fluviatile_contig81:161375..1626841622817275.4930809-UTR-P-fluviatile_contig81:161375..162684Porterinema fluviatile SAG_2381UTRP-fluviatile_contig81 161376..162684 +
1693571877.8770518-UTR-P-fluviatile_contig81:161375..1626841693571877.8770518-UTR-P-fluviatile_contig81:161375..162684Porterinema fluviatile SAG_2381UTRP-fluviatile_contig81 161376..162684 +


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

Feature NameUnique NameSpeciesTypePosition
1622817275.2708926-CDS-P-fluviatile_contig81:149284..1493621622817275.2708926-CDS-P-fluviatile_contig81:149284..149362Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 149285..149362 +
1693571877.6632137-CDS-P-fluviatile_contig81:149284..1493621693571877.6632137-CDS-P-fluviatile_contig81:149284..149362Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 149285..149362 +
1622817275.2808976-CDS-P-fluviatile_contig81:149726..1498011622817275.2808976-CDS-P-fluviatile_contig81:149726..149801Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 149727..149801 +
1693571877.6735227-CDS-P-fluviatile_contig81:149726..1498011693571877.6735227-CDS-P-fluviatile_contig81:149726..149801Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 149727..149801 +
1622817275.2912264-CDS-P-fluviatile_contig81:150291..1504531622817275.2912264-CDS-P-fluviatile_contig81:150291..150453Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 150292..150453 +
1693571877.682824-CDS-P-fluviatile_contig81:150291..1504531693571877.682824-CDS-P-fluviatile_contig81:150291..150453Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 150292..150453 +
1622817275.3024864-CDS-P-fluviatile_contig81:150676..1507561622817275.3024864-CDS-P-fluviatile_contig81:150676..150756Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 150677..150756 +
1693571877.6932635-CDS-P-fluviatile_contig81:150676..1507561693571877.6932635-CDS-P-fluviatile_contig81:150676..150756Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 150677..150756 +
1622817275.3154235-CDS-P-fluviatile_contig81:151512..1516271622817275.3154235-CDS-P-fluviatile_contig81:151512..151627Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 151513..151627 +
1693571877.7045944-CDS-P-fluviatile_contig81:151512..1516271693571877.7045944-CDS-P-fluviatile_contig81:151512..151627Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 151513..151627 +
1622817275.3258343-CDS-P-fluviatile_contig81:151887..1520071622817275.3258343-CDS-P-fluviatile_contig81:151887..152007Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 151888..152007 +
1693571877.7155812-CDS-P-fluviatile_contig81:151887..1520071693571877.7155812-CDS-P-fluviatile_contig81:151887..152007Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 151888..152007 +
1622817275.3362641-CDS-P-fluviatile_contig81:152426..1525451622817275.3362641-CDS-P-fluviatile_contig81:152426..152545Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 152427..152545 +
1693571877.725941-CDS-P-fluviatile_contig81:152426..1525451693571877.725941-CDS-P-fluviatile_contig81:152426..152545Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 152427..152545 +
1622817275.346787-CDS-P-fluviatile_contig81:153043..1531871622817275.346787-CDS-P-fluviatile_contig81:153043..153187Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 153044..153187 +
1693571877.7371554-CDS-P-fluviatile_contig81:153043..1531871693571877.7371554-CDS-P-fluviatile_contig81:153043..153187Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 153044..153187 +
1622817275.3571365-CDS-P-fluviatile_contig81:153571..1537711622817275.3571365-CDS-P-fluviatile_contig81:153571..153771Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 153572..153771 +
1693571877.7505403-CDS-P-fluviatile_contig81:153571..1537711693571877.7505403-CDS-P-fluviatile_contig81:153571..153771Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 153572..153771 +
1622817275.3679552-CDS-P-fluviatile_contig81:154268..1544111622817275.3679552-CDS-P-fluviatile_contig81:154268..154411Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 154269..154411 +
1693571877.7636685-CDS-P-fluviatile_contig81:154268..1544111693571877.7636685-CDS-P-fluviatile_contig81:154268..154411Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 154269..154411 +
1622817275.3785555-CDS-P-fluviatile_contig81:154905..1550371622817275.3785555-CDS-P-fluviatile_contig81:154905..155037Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 154906..155037 +
1693571877.775557-CDS-P-fluviatile_contig81:154905..1550371693571877.775557-CDS-P-fluviatile_contig81:154905..155037Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 154906..155037 +
1622817275.38899-CDS-P-fluviatile_contig81:155638..1558021622817275.38899-CDS-P-fluviatile_contig81:155638..155802Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 155639..155802 +
1693571877.7861679-CDS-P-fluviatile_contig81:155638..1558021693571877.7861679-CDS-P-fluviatile_contig81:155638..155802Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 155639..155802 +
1622817275.3996415-CDS-P-fluviatile_contig81:156327..1566221622817275.3996415-CDS-P-fluviatile_contig81:156327..156622Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 156328..156622 +
1693571877.7987032-CDS-P-fluviatile_contig81:156327..1566221693571877.7987032-CDS-P-fluviatile_contig81:156327..156622Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 156328..156622 +
1622817275.4109848-CDS-P-fluviatile_contig81:157010..1571271622817275.4109848-CDS-P-fluviatile_contig81:157010..157127Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 157011..157127 +
1693571877.8105948-CDS-P-fluviatile_contig81:157010..1571271693571877.8105948-CDS-P-fluviatile_contig81:157010..157127Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 157011..157127 +
1622817275.422141-CDS-P-fluviatile_contig81:157584..1577671622817275.422141-CDS-P-fluviatile_contig81:157584..157767Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 157585..157767 +
1693571877.8181467-CDS-P-fluviatile_contig81:157584..1577671693571877.8181467-CDS-P-fluviatile_contig81:157584..157767Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 157585..157767 +
1622817275.431938-CDS-P-fluviatile_contig81:158202..1583521622817275.431938-CDS-P-fluviatile_contig81:158202..158352Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 158203..158352 +
1693571877.8257663-CDS-P-fluviatile_contig81:158202..1583521693571877.8257663-CDS-P-fluviatile_contig81:158202..158352Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 158203..158352 +
1622817275.441623-CDS-P-fluviatile_contig81:158983..1591481622817275.441623-CDS-P-fluviatile_contig81:158983..159148Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 158984..159148 +
1693571877.8332467-CDS-P-fluviatile_contig81:158983..1591481693571877.8332467-CDS-P-fluviatile_contig81:158983..159148Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 158984..159148 +
1622817275.4512959-CDS-P-fluviatile_contig81:159872..1599671622817275.4512959-CDS-P-fluviatile_contig81:159872..159967Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 159873..159967 +
1693571877.8417733-CDS-P-fluviatile_contig81:159872..1599671693571877.8417733-CDS-P-fluviatile_contig81:159872..159967Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 159873..159967 +
1622817275.4628904-CDS-P-fluviatile_contig81:160270..1603451622817275.4628904-CDS-P-fluviatile_contig81:160270..160345Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 160271..160345 +
1693571877.8508024-CDS-P-fluviatile_contig81:160270..1603451693571877.8508024-CDS-P-fluviatile_contig81:160270..160345Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 160271..160345 +
1622817275.473083-CDS-P-fluviatile_contig81:160745..1609081622817275.473083-CDS-P-fluviatile_contig81:160745..160908Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 160746..160908 +
1693571877.860781-CDS-P-fluviatile_contig81:160745..1609081693571877.860781-CDS-P-fluviatile_contig81:160745..160908Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 160746..160908 +
1622817275.4830658-CDS-P-fluviatile_contig81:161321..1613751622817275.4830658-CDS-P-fluviatile_contig81:161321..161375Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 161322..161375 +
1693571877.8688502-CDS-P-fluviatile_contig81:161321..1613751693571877.8688502-CDS-P-fluviatile_contig81:161321..161375Porterinema fluviatile SAG_2381CDSP-fluviatile_contig81 161322..161375 +


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig81.14770.1

>prot_P-fluviatile_contig81.14770.1 ID=prot_P-fluviatile_contig81.14770.1|Name=mRNA_P-fluviatile_contig81.14770.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=943bp
MMKVVGVTSLDNLVDRTVPQSIRLDKPLELAEPMTESEALAAIRAIADKN
KVMKNFIGLGYSETTVPPVILRNMLENPGWYTAYTPYQAEISQGRLQSLL
NFQTMVADLTGMDMSNASLLDEATAAAEAMSMCNGLKNGKRKKFFVSEDC
HPQTIALVQTRGSAINLDIVVGDPDTADFSCKGYSGALIQYPNTYGDVNS
PEAFVKKAHEFDTLVVAATDLMSLTMLKPPGEFGVDIAVGSAQRFGVPLG
YGGPHAAFMATKTAYSRRMSGRIIGVTIDSRGAPCLRMAMQTREQHIRRD
KATSNICTAQALLANMAASYGVYHGPAGIKDIAQRIHGMAAVTAAALKGA
GFGVPSQQFFDTFSVDVSAKGMTAKSVADKCEANGVNVRIIDDKTVGLSF
GESITKDDVCALLEGFGVKASALESAAGSAKMGFSDDVVRTSDYMTHPVF
NSHHSETQMLRYLKSLENKDLSLNTSMISLGSCTMKLNATSEMIPVTWPE
FANIHPFAPAHQCQGYKEMIDSLHEDLAKITGFAACSAQPNSGAQGEYAG
LLCIREYHRSRGEFDRNVCIIPVSAHGTNPASAVLAGMKVVVVKSDTKGN
IDMDDLKEKATKHKDKLAALMVTYPSTYGVFEEGIKEICQITHDNGGLVY
MDGANMNAQVALTSPGHIGADVCHLNLHKTFCIPHGGGGPGVGTIGVVPR
LAPFLPGHPVIPSSGEGAGVVAKRTGAVAAAPFGSAAILPISWMYIKMLG
EPGLKKSTQMAILNANYMASKLDGHFKVLYRGREGLSAHEFIVDLRPFKA
SAGIVEEDVAKRLQDYGFHSPTMSWPVPGTLMIEPTESEDKAELDRFCWA
MIKIREEIDDIVEGRVAMEKSPLKAAPHTWEMCFEDDWDRPYTRTQAAFP
APWVKANKFWPTVGRVDNVHGDRNLICSCPPMDTYTDELIAA*
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mRNA from alignment at P-fluviatile_contig81:147346..162684+

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig81.14770.1 ID=mRNA_P-fluviatile_contig81.14770.1|Name=mRNA_P-fluviatile_contig81.14770.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=15339bp|location=Sequence derived from alignment at P-fluviatile_contig81:147346..162684+ (Porterinema fluviatile SAG_2381)
CAGGCCTCAATCCGATCTGCGCTGACGTTGAGGAAGGCGGCAGCCCTAAC CTCTACGCGCCAGCTTTCGGCTAGGGCGGACGAAATTTTCGCGGCGAAGG ATACGGTGAGCCCAGTTATTCTCTCGCCTACCGCAGCAGCCCCGATGTTT GAGAGGTGATTCACGTTCGATTTTTTTCTTTAGTTGTCGACGGAATGGAC AAAGATTATTTCGGTATCCAGTAGCAGCCGAGGCATTCCTGTGGGGGAGA GACCCTACATGGCGCACCAGGCGCGTTTCCGTGATTAACTAGCGCGTAGA TAGCTATAAGAAAACATGCACGCTGCTTACCCAAAGTCCCTGCACTCCGT TTTTGTCCGCAACAGAAACGGGCCGCAAAGGAAGCACTCATGTTTGGATA ACAACCGTCCGATGAGTCAGTACGTGGAATTCACGCCCCGCCCGCCCCCC TTTCGCGGCGCGTAGTATACAGCAGCAGAGGGAGGGATGGTGCAGCCGCG GCGCTCGAAACGTTGATCTGTCATTGTCTGAGTGACCAAGCCGTGAGCCG CCCCTACCCATCTCCGCAACTTGATCGTTCTCGCTCCCTTTCCGCCGCCG CGACGGAGACGCCGTGTCTGCGGAGCGACGAATTCAGGGTTCTCTATATC CTCTAAAACAAGCCGCTGCAGCGATTGTTCCTGTTTGACGAGCATGTCAA ATTGAAGCGGCCAGCTGCAAGTGGTAGTCACGACCATTTGTCGACGAAGT TTCGCGACTTGTCGCGTGGATTATATTGTTGCCGTTGCCTCGGGAGCGAC CGAGGAGATCGCGGAAACACCCCGCAATTTGTGCCAATTTTTTTAAGAAC TGGCTCTTCTCCTCGAACACACAAAAGACAAACACGACGACGATGGCGCT GTCGACGCGGACAGACGGGTGGAGTGTTTTCTTCGGCTTTATCAAAGGGG GGGGGGGGGCTTCACACGCGCACGATGGGTGCGCGAATCGAATGGCGGGC ATCTTTTCCTTGCCTCTGTTTTTTTTTAAGCCGAGCACAAACCAAGTGTG TGTGTGTGTGTATGTGTTTCGTCCGCTCGGCTGCACGAGCGTGTATGCCA CCCACCTGCTGCTCATCAGACGTCGCAAGGGCGGGGCGAACTGCGATCAC CGTGTTTCAGCTCTAGGGCCTGTTGCGTCGAATGAAGATTTTGCTGTGCC AGCCGCATAGTATGCGGCAAGAATCACACCTCCTCCATCGTGCGAGCTTT TGAGGAGTTTTTATCCTCGGCCGAACATTATCCATGTCAAATCTGCGACG AACCCTGCTAACAAGAGGCACCTCGATTCAAAGGCGTTGTGCGGCAGTTT CTTTTTTGATATCGGACTGCCGTCCTTCTCAAAATAAAGGACCAAACCGA CGAAACGAGCTATGGCTTCCCACAAGTACCAGTCAGAGTCACGGATTGTA CTACTCCGAACCGCGTTCGCGCAAGTGTCCGGGAGCTGTCGTGTCTTGTA CACCGACAGGCACCAGCAGCTCTCTCCCCCGTGTGAAGATTCACCAAAAC CTGGTGTCTTCCCGGTCATCGGGATTTCGGACTCTGTTGGCGCTTGACAA CGCCTGCATCGAAACGGATGCAGCACAAGCAGGGACCGATACAGCATTTG TGATCACTCTGACAGGAGGTCAACGACATGGAAAATGTGTAAAGAATCTA TTTCTTGTACTGCTGTATGGATTCGCCGCTGGCGGTGTGGTAGCTTGACC GGGGGAGAATCCCACCCCCGCTTCCTCTCCCTCCCTCCCCCTTCCAAAAA GCATCAACGTTCTCCCTTAACCACCCCTGCCCCTCGCCTCTCGCCCTGAA TACTTCCAAATTCACCGTACGATTCTTCTGTCGGTGTCTTGCAGTTTGCA CGGCGGCACATCGGCCCCAGCGATGCGGATGTGGAGGCGATGATGAAGGT GGTCGGGGTGACCTCCCTCGACAACCTCGTCGACCGCACGGTGCCCCAAT CGATCCGTCTCGACAAGGTAAATACACCGGGAGGGGGAGGGGGGGCGGCG ACAGGGTCAGGGGGAATGGGGCAGCTACCGTTGTTGCTCGCATGGTGGCT CCCTCGATCACTCTCGACAAAATAGCACACGCCTGCGGAGGGTGGTTGGA GTTGCGGCGGGCGGGTCTGTACATAAATATGTGGTGCCCCACTCGACCGG TCTCGTCACACTCACCGCTATTGCATACCAATCGTGTAATGCATTTTGCT TGAAAATTGTATCTCGTGTAGGTCGAGTCGTCCTAGCGTAATCGTTTTTG GCCCCGTCCGTCGTTCCGTGCCCCCCTCCCCCAATCTCCCTTGTTCTCCC TCGCTCTCCGTCCTTATTTGTTTTATGGAAGCCGCTGGAGCTAGCAGAGC CCATGACGGAGAGCGAGGCGCTTGCCGCCATCCGAGCTATTGCAGACAAG AACAAGGTACGAACCGAACCAGACGCTTTCTTTCTGAGTGGGTCCATTGG CCGCGCTTCAAGTACTGAACCGACTGACCCTCGTGGACGGACAGAAACGA AGCCACGAACAACAGCACCATCCACGAGCACCGCCTACGTCCAACACCAC CGCAGAACGGAGGCAATCTGGAACCATTGGTGAAAATATGGATGGAACGG GCTTGTGAGAACACGGGGCCTTTTCCTGAACCGGCCAGTGTTGACACGGA ACCATCTGAAACGACCAATTTGAACCCAGGATACTTCGAACCCAAAGGCG AAGTCACAGGCATGCCTGCCAACCAATAAAATCACGGGACGGTGGAGCCG ACAAATAAAGCACTAAACTTCCTGAACCGACCGACGAGAAGACTGGACCG TCTGATCCGATCAATGAAAACGCTGAACCCTATACCGACCAGTGAAAAAA AAAATAGTGGAACCATCCGAACATGCGAACTCCACGGCGCGCGCAGGTGA TGAAGAACTTCATTGGCCTGGGCTACAGCGAGACGACGGTGCCGCCGGTG ATCCTTCGCAACATGCTCGAGAACCCCGGATGGTACACCGCGTATACCCC GTACCAGGCCGAGATCTCACAGGGCCGCCTACAGTCGCTCCTCAACTTCC AGACCATGGTGAGGAGGACTGAGTAGTTGACTGGCTGGAGTTCGAATGCG TCTGAAAAGTTTCATGTGGAAGTCCGCTGTGCTTTCACAACCGACGGTAG GCGCACGACTTCATGGTGCCTTTGTTGGGTGTGTTTGTTGATGCCGGTTC GGCGCCTGCCGTACTTGGCGAAGTTCGAAACAAAAAACGCACGGAATACT CGCGCGCTCCCGCCACTTAACGACAAAACAGGTGGCTGACCTGACCGGGA TGGACATGTCCAATGCGTCGCTGCTCGACGAGGCTACCGCCGCTGCAGAG GCCATGTCAATGTGAGTTGCACTAAGCGAAGTGCCACAGATGCCAATTTT GCTGTTGCAACGATTTTGATGGTTTTTTGCAGCGATTATGAGACGACGAG AAAAAGGGCGCGGGACAAGCTTCGGGGGGGAGAGTCAGCGGTTTGGTCTA AAGGAGGATGTGGGGGAGCGGGTCGTATGCATGTCCTGACAGTTTCGCTT TCTCAACAGATCCATTTACAGAGGCGGCGGTCCCTGGTACCTCCTTAAGG AAGAACAGACCGCGAGAGAGCGGTGAGATTCGGAAGTTGTCGGTACGAGG AATGCGGCACGATTGGACGACCGCTACGTTTTACTGGCCCATCCAAGGCC TCATGCGGCTGGCTTTCTCGGTATACAGGCCAGCAAACAGCGCGCGCCCA ACGTGATTTCTTGTCGTGTGGAGCCGTGTGGTCTCCTGGTGAATTTTTTA ATGTTCCAGGGCCCGTCGCGGCGGTATCGCCAAGACATGACATCAGGGCG GAAGGTATAGATGAGTAGGGAATGGAGCGAGAGGGAAAATAAACAAATGG CACGTAATGGAGAGCAAACTCAAGGAACAGGGAATAAGCGCAAAACAGGG GGATCTGGAGAGACTCGAAGTGACAACAGGAAAGAGCTCCAGTTCCACGA GTGATTGTGTGTAGCCAAGATGATGCCCTCGCTTTAAAACCATAGATTTC CTCCCTGCATTCTTCTCCGGTGTGTTGCTCACCGGGTTTTCTGTCGACCA ATGCTGCCGGGTCATAGGTGCAACGGGCTCAAGAACGGCAAGCGCAAGAA GTTCTTCGTCTCCGAGGATTGCCACCCGCAAACCATCGCCCTCGTCCAGA CCAGGGGATCGGCGATCAACCTTGACATCGTCGTGAGTGCCTCCCTCTGC CTGCGTGCTCCAGCTTTCGTAGAGCGACGTCGGTCATGCAGGCTTCACAT ATCATTTCTGTTGTGTTGAGTGGAATAGACGAAATCTGGGGGGGCTGAAA GACCCGTTTCCTGGGCCATTCGAGGCTTGCCATCTGTGCATATTTTTTCT AGGCGTAACATTTGACACCGGTGCGTCGGACCAATCTTTACCCTCCCCCT CTCAACCCTTCCTTTCAACCGTTCCTTGTCCGTTGTATTTAGGTGGGTGA CCCGGATACCGCGGATTTCTCGTGCAAGGGATACAGCGGGGCCCTGATCC AGTACCCAAACACGTACGGCGACGTCAACAGCCCCGAAGCCTTTGTCAAG AAGGCGCACGAGGTGAGTCGATAAGAAGTATCGCAGAGGTTCACAGCCCC GAGGCCTTCCGTCAAGAAGGCGCGCAGGCGGAGTGAGCAGATGAAGTATG ATATAGGTCGGCCGCTCCACTTTGGCACCTTGCAGGTTTTGGTTGTCAGT CGCCGCCGATGGATGTTGTCGTCGACCGTCGGACCTCTCCCGTTTTTTTC CTTTTCCTTAAAGGATGTTAAGGCGGTGGTGTTAACGCGGTACGGGTGAG CCGCGCGCCGACTCCATGACATGATACTGAAGCCCGATTGCTTCACCTCC GAGAGGTTTTGCCATCGTCCGCCGCTGTCATGATCTCCATCCTCCATCCA TCCTGACACGCGCGCTTGCGTGCCATTCGGTGTGTCTTACCCTCCTCCAT TGCGACACGCGCGTTGGCGTGGCCTGCTCAGTTCGACACGCTGGTAGTGG CCGCCACTGACCTGATGTCGCTGACGATGCTCAAACCGCCGGGAGAGTTT GGCGTCGACATCGCAGTCGGATCCGCGCAACGCTTCGGAGTACCGCTTGG GTGAGACAGAACATGCAAAAGATGGGAAGCGAGCCCGCGGCATGTGGTGA CTTCATCGTTGTTGGTGGTGTTGATGTTGACTTTTTTTTTGTTCTTCTTT TTCTCCTGGAGCTGCTCCCCAAGTGTATGCGTTTGAACGGGCGGAGGTTA TTGAGCTCTTTTCCTGTGTTTGACTCCAACGAGTTTGTTGTGAAGACAAA AGACAACTTCGGTGCATCTTCTTCGGCCTGCTTCGAGACTCTTGTCGCAT TCAAAGCGGGCCGCGCCGTTCCGACCAGCCCGGTTACAGGCGGGATATCC TGAACTCGTGGAAAACGAGCGTTTGTTTAAGCAACAGCCAGGGGTGAGGG GGGCTCGCTCGATGATATCATATTTTTACGGGTACCCACGATTTTATCGG GAACGGCAAAAGCGTCGACGTCTGTACTTCCGTCTTCAAGCTTGTGTGTC GCCTCCCCGACACTGCACGCCGTTCGGCTCCTTCTTGCGCCCCTCCAGGT ACGGCGGTCCTCACGCCGCCTTCATGGCCACGAAGACCGCGTACTCCCGG CGCATGTCGGGCCGCATCATCGGCGTCACCATCGACAGCCGCGGCGCCCC CTGCCTCCGCATGGCCATGCAGACGCGCGAGCAGCACATCAGGTCAGCCA CTTCTTCATGTTTTGCTATGGGTTTGCTGGAACCGTTATTTTCTGGCCGA CACGCGTGAATGATGAAAAAATGAATCGGCTGATGGTGAGGTGGATGGGA GGACTCCAGTCAAATTTTTGTGCCCGCTTGGCCCCGGCTGGTTGGCCCGT GCATGGAAAGGTGAATACCTGGCGCAAGTATCGATGGTGGAAGAAAAAAC TTCCAGGCGACAAATGACCAGTCAATATTATGAAAAAAACATTCAGGCAA TCTGTTTCACTTTGGCCCTCCTCATCTCTCGGTCTCCTTCGTCTGCTCCT CGCATCCTTGTCCGTTCTCTCTCCTCGCCTCCTCCTTTGTTTGTTTTTTA TTGTTGTTCGCGCGCATGATGCGCAGGCGAGACAAGGCGACGTCCAACAT CTGCACGGCCCAGGCCCTCCTCGCCAACATGGCCGCCTCCTACGGGGTGT ACCACGGCCCCGCGGGGATCAAGGACATTGCCCAGCGAATCCACGGGATG GCGGCGGTGACGGCGGCAGCGCTCAAGGGGGCCGGGTTCGGCGTGCCTTC GCAGCAGTTCTTCGATACTTTCTCCGGTGAGGGAGGAACACAGACAGGAA AGGGGTGGAGGGGTGGGAAATAGAAAGCGGAAGGGAGGGTAGACTGGAGG AACAACAGGGGGAGAAGCAGAGTCGAAGGAGGGGGAGAGGGAAAGATAGA CAGGGAGGGGGGAGATGAAGGGGGAAGAGAGGGAGAGATGATGGGGAGCA GAGAAAATGATGCGAGAGAGGAGAAGGAACAGGAGAGAGAGGGGGAGGGG AAGGGGTCAAGAAGGAAAAAGCGACCGATCGAGGCAGTGAGGGAGAGGGG AAAGCAGGACGAGAGGGGGAGCGAGAGGGTTTGAGATAGGGGGAGGGGGG GCAGAGGTAGTAAAGAGCGAAACAAGGGTCGTGTTTGTTGTTGCTGTCTT GCAATAGAAAAGACTTGCCGATCGCTCTCAGGACTCTTGTTCTCGTGATG TTCTGACCGATCGATCTCGTATCTTGGCCCGTCTTCCCCCACGCACGCTT CGCGCTGTATTAAATTGGAACAGTCGACGTGTCTGCCAAGGGCATGACCG CGAAGTCCGTCGCAGACAAGTGCGAGGCTAATGGCGTGAACGTCCGCATC ATCGACGACAAGACGGTGGGCCTCAGCTTCGGCGAGTCCATCACGAAGGA CGACGTCTGCGCACTGGTGAGAGTTATTGAAGAGTACAGAAACGAGAACG GAAACATGAGTACTTAATCTCAACCACCGTCATGACGGGCGGAAAGCGAC ACGTATCGCGAAACCTGCGAAAGGAACGAGGTCAAAGAAGGATCGTTTTT GACAATCATATGCGAAAGAACGCTTGAAAGCAAACGGGGGGGGGGGTCAG TCCCAAGGGTTGACAGCGGACCCACTCGAGTTGATCGAAGTGATCAGAAA CTAGGAAGGTGGAGAAGTCAAGCAAAGAAACCGCACCGCACGCACTGGCG CGCGTCAACTCGCGACAGCTGGCAACAACATCAACATTTGGGCGACCTGG TGGTGGCTGGACGCCGTTCGTTGGTGCGCGTGTGGTGTTCACGTCCAATT TTCCAAATACCTGATGTTCCAGCGTTGCCGATTTCCACCCGATTCCGCTA CCCATCGTTGCCGTTTGGCGTCGTCGATATCGTCGTCTCGATCTTGATCA CTTCCGTCAGCTGGAGGGCTTCGGCGTCAAGGCATCGGCCTTGGAGTCGG CGGCTGGCAGCGCGAAGATGGGGTTCTCCGACGACGTCGTCCGGACGTCT GATTACATGACCCACCCCGTCTTCAACTCGCACCACAGCGAGGTACAGCA ACGGCGGCGGCTACGAAAGAAGGGAAACAAAACAAGACCACTCCATAAAT TTAAATACGTTCCGATAGAATCGTCATGTGAGGATCGAATTAAGAGGAAA TGAGAATATGAGCGAGTCGAGATTTCTTGCCTAATATCAAATTTGATTTC TAAGAAATCTGTGGTTCGATGCAAGGGAGAGCCTCTGATATAACATGACT TTTCAGGCTCGCCGAACCCTCACTTTTGTCGTAGCTGCTACCGTGCCGGC TAGCGGCGCCCACCCGCGCTTCAGTGGCGCCAGTACGCGCGAATTTGTTT CTGCCTAGCTTGTACAGCGTAAGTACTCGTGCACCCGGTTTTGTGGTCCA TCTCGCAGCATGATACTCAAACGAGCGCGAGACGCCGCTGCACACCGGGT ACAACAAAGCCGCTCGGGTTCAGCAGCATGTCCCGAATACACGGCGGTGT CAGCCGTCTGTTTTTTCAAGCCCTACACATCAGTGGTTATCCCTCCCTCC GCCGTTTTGTCGCAGTGGTCGTCTGGCCGCCGTGCTTTCACTTGTGCCTA TCGTTCAAGTTTCCTTATGTTTTCTTTTTTCTTCTGGCATCAGACGCAGA TGCTCCGCTACCTTAAAAGCCTGGAGAACAAGGACCTGTCGCTCAACACG TCGATGATCAGCCTCGGGTCGTGCACCATGAAGCTCAACGCCACCTCCGA GATGATCCCCGTGACCTGGCCCGAATTCGCCAACATCCACCCCTTCGCCC CCGCTCAGTGAGTTTTGAAGTCGTCAATGATGGGTTGGGGTTGTTCCGGG GGAGGGGTGGGGCAGTAGTCGCCATGGTTTCGGGCTCTGCATCCAGCGGC GTTGTGTACTTGCGAAGCGCTTCCATGGCGTAGTGCGTCCGGCAAAGACA CGATCTGTCCACGAGCACAAAAAAACAAAAACAAAAAAACGGCGAGAGAA AAAGAATACTCCCACGTTTACACAGAGAGCGGCCATTTTCGGTATGCTAA AAGCGCTCATTTTGCATCATTCCGGAAGAAATGAAGGTTCGGGGCCTGGC GCAGTCGGTTCGAAGCTTCGGTCGCCATAATCGCCCCCAACGAACGCCTG CTGGCACGCAATCGTCTTCAAACGTTTCAAAGGCGGAAGCCCCGGAAGAT TTCCGCCCACGAAGCCGCCGACCGTCCCGAATTTCTTCATTTCATGTTTT GAGGCCCCATGCACGAGGTATGCCATCTCACAGTTGGCCCCAACACCCGG ACCGCCTAACCTCTTCCCCCGCCCCGTACCAGCCAATGCCAGGGCTACAA GGAGATGATCGACTCCCTCCACGAGGACCTGGCCAAGATCACCGGGTTCG CGGCTTGCTCTGCGCAGCCCAACTCGGGGGCGCAGGGCGAGTACGCCGGC CTCCTGTGCATCCGAGAGTACCACCGCAGCCGCGGGGAGTTCGACCGCAA CGTGTGCATCATCCCGGTGTCTGCCCATGGCACCAACCCGGCGTCGGCAG TGCTGGCCGGGATGAAGGTGGTGGTGGTGAAGAGCGACACGAAGGGGAAC ATCGACATGGACGACCTCAAGGAAAAGGTGCGGCGATGCGTGTGTGTCAA TAATGGTGTGGTGTGTGTGGCGTGGTGCGGTGTGCGATTTGATCGGTGTA GGAGGTATGGTGTAATAGTCGCCGCCTCTTCCGCCACCGCTGCTGCTTTG GATGCTTCTACTGGTTGTTGCTGTAGCGGACGCGCGCAGCTCCTGGCCGG TGTCCCGGATTTATCGGGCGGACGGGGGTACGGTACAGTGGCGGCGACTT CGTGCGGGGGGCGTGGAGGGGCAGTATCGGCTCCGCGGCCTCCGAATTTT TTCGTCGCCTGCCACCCTCCTTATGCGTTGTCAATACGCCCGGCCGTTCG ACTCTCTCAATTTTTCTCTCAGTTTGGCTTCCTGTTCGCTTCCTTTTTGT GCGTCCGTTCCGCAGGCCACCAAGCACAAGGACAAGCTGGCCGCGCTGAT GGTTACGTACCCGTCAACCTACGGCGTTTTCGAGGAGGGCATCAAGGAGA TCTGCCAGATCACTCACGACAACGGCGGCCTGGTGAGTTTCGGCAATGTT GTTCGAAGCCCTGCTCCCTAGTCGTCCACCTTGTCCCTCATTCTCCACGC TTTTGCAGTGGGCTCTTGAAATTTCGACGAGTTTTCACTGCCATTTCGAT CGAGGTTAAGTAGAAGTTTCAACCCCCGCTGTTCTTTCAACATGATTGGG TTGATTCGACGCATTTTTCATTCTTCCGACTGCGAGGTTACTCTCCCATT GTTTTTGTGGCACAAAGGCGGAAGAGTTCCCTTTGCATAGCACACTGCCC ACGGGTTCAAAACGGCTTGAAAACGCGACTCTTTTTGCGCCTTCGTCCAC GATCTTCGCAGACCACCGCAAAATCCACCACCTGCGTGCGCCGCCGTCAT GTCTCTCATTGAATCGACACTTTCCTAAAACAGCAATCATACGAGTTCGC GGTGGTCTCACAAACGTCCTCCCCCTGTGCCTCCTTCAGGTGTACATGGA CGGGGCCAACATGAACGCGCAGGTGGCCCTCACCAGCCCGGGACACATCG GCGCCGACGTGTGCCACCTCAACCTCCACAAGACCTTCTGCATCCCCCAT GGAGGAGGGGGCCCCGGCGTGGGTACGATCGGGGTGGTCCCTCGCCTCGC GCCGTTCCTGCCCGGGCATCCGGTGCGTTGCACGCTCCGCTATGCGACCG CTGATGCAGGAGGGATTAGGCTTTCAGTGTGCGTGCCATCCCGTTTCCAC TCTTTTTCCTTTTCCTGGCGTTGACGCTCAACCTCTCTTCGGGCATTTCG CGTTTAGGATGCGCCCCCGTCATAACATAAAATGTCTCAGTGTGGACAAG TATGAATGAGTCCCGTCTGACTTGATCAGGTACCCTGTTTGGCCGATTGA GGACCAAAGTCGCGGGAACACACCTAACGCAGGATTTGTCACCACTTGCT TATCCAACTCCATCTCTTGCTTGTGGCTGACTCTCTGGCACTTCCTCTCG GCTGTGCCTGTCTCCCCATCCCCTATTGCTTTTTTGGTTCTCGTTTCATG TCCTCACCTCTCGCCGGTTTCGACCACGGTTTTGCCCGTTTTCCTGGCCC TGTGCAGGTCATCCCCTCCAGCGGCGAAGGCGCGGGCGTCGTCGCGAAGC GCACCGGCGCAGTCGCGGCCGCCCCATTCGGCAGCGCCGCCATCCTGCCC ATCTCGTGGATGTACATCAAGATGCTCGGCGAGCCCGGCCTCAAGAAGTC AACTCAGGTAGGCTGTCCACGGCAACCTCACAGTCTGCGCATCCACTGCA TGTTTTTTTTATGATCATGTGGAGGTCGTTGTTGTCTTGACAGCTGGGCG ACCAGCCATCACGTATTGGCTACCTTTAGTGTCTCATCGTGAGGTGTTTT TTACGTCATATTCCGGACTATCCAACGCAATACAGCCGTTTTTTTTCACG GCAACATGGTACACGCCTTGCGACGCCCTGAAATCTCGCCGTCGTGATTC TCCGGCGCGAGGTCTCATCGGAGTGTGATTCGTTCTTTCGTTTTTCCCCT TGCCTGGATGTCTCGGCGGGAGCTATGACGGTGCCGACAACAACTTCTCA CCAGGCCCATCGGCACAAGTCACCGTAGGCAAAGGCATTGAACTTACTTC ATGAGTCAATCCCATTTTTTCTTGGCTCGCAAAGCCGTGGGCACGGTATC GACTCTGCAGGTTAGGATGGCGACATTAGAAGGTGCTGGAGGTGATCCGA AAAGGTTTTTGGTGTGTAGAAGCAACACCGCAACTCTCTTCACGCGGCGA CTTTCGTTCTAAACTCTGAAACCATCTTGTTTCCACTTGCTAACCAATGT GACCGCCTCTCTGTAACAACCGAATCAACTCGAAATAGATGGCCATCTTG AACGCGAACTACATGGCCTCCAAGTTAGACGGACACTTCAAAGTGCTCTA CCGCGGGCGCGAGGGACTCAGCGCGCACGAATTCATCGTGGATCTGCGGC CCTTCAAGGCCAGCGCCGGCATCGTCGAGGAGGACGTGGCCAAGCGCCTG CAGGTATGGGTAGGTCGGCGTATGCAGACCTGATCAATCGTGTCCTGACG GGAAATGGACGACCTCTTGTGGTGTTAAATACTTTTTGCTCTAAGCTTCT TGGAGGACGTGGCCAAGCGCCTGCGGGTACGGGTCGACGGGTGCGAACAC ACGTGGTCAAGCCTGTGCGGGCGAGAAGCATTCTCGTTTCACCTGTATAC GTACCAGGCTTCAGGTCGTTTCGAGTTTCCGTTCGCTTTCTTTTGTTTGT TCGCCGGGATCGCATCACTTGCGGGTGTAGCAGCCAAGCGCCTGCAGGCA TGGTTAGGTCGAGGTGTGCACACCTGGTCAAGCTTGTGCGGGTGAGAAGC ATTTTTCCACCTATGAAGATTTCAAGTCATTGTCGCATTACAAGTCTTTT TCGGCACATGAGAATGCAAAACCTTTCGAGGGACCGGGTTTGACTCATGA AGCACGGCACACGATGTCTTGTTTTTTTTGTTCAACTAGACTGGAAGAGC AGGGCCAATGCCAACAGGCAAACCAAAAACCCGTTGCCCCCCCGCTCCAG GTGTAGATGGGTTCTCGCGCCCGCTTGCCCCACGCCCCTGCCCGTGACCG GCGCTCTGCCCATGACTGAGTTGGAACGTCTTGGAGTCGGCCTCCTGCTT TGTCCATACCTCTCCCTCTTGTTGTTCATGCGATCATCTGCACTTGGCTC GTTCCCTGATTGTTCTGCTTCCGGCAGGACTATGGGTTCCACAGCCCCAC GATGTCGTGGCCGGTACCGGGGACGCTCATGATCGAGCCCACAGAGTCAG AGGACAAGGCGGAGCTTGACAGGTGGGGAACAATGCCACCGACGGGTGTG AGCCAGGGTCCTTAACGGGTGTGAAGCAGGGTCTGTTTTTCTCCTTTTTT TCGCGTATATTTCGTTCGTCTGACTGACCTAAATCCTCGGGTGTGATCCC TGAAATCAACGATACTGTGTTTGACGGAAAGGGAGCACTGGCGCGTTATT TTTCTCATATCCTTGCTCGCCCGCGGTGGTAGACACGGATTCCAGCGCCA TAGCGTATTAACTCATCCGCCCATCGTCCCCCGCCGTGAAATAAACGCCG ACGCCCGGCACAACTTTCGCCACAGGTTCTGCTGGGCCATGATCAAGATC AGAGAGGAGATTGACGACATCGTGGAGGGTCGGGTCGCGATGGAGAAGAG GTGAAGATCGCCCTCTCGCGTTGAGCGACAACGCGGACTGGGCTGGGGGG AATTGTGCGGGGGGGAGATTACAGGCACGCTTTGCGTCACGTTGCAAGGA AGGTTTAGGGAAGGGGGGGGCACGGTAATCACCCCTGGTTTTTAGGTCCC TGAAGTACCGAAGCACGAAACTTCTCTCGTGCACGCATCTGTCCCTTGGA CGACCCTCTCGTCACCACGGTCCGTCTCTCACCATCATCCTAATTTCTGA CCCCCACACTGCGGTTGTGCTTTTCCGTGGCCACGTGCGGTGTAAGCCCC GGTTTCTGCATCCACGTGCTGACCAATCTTGCATTTCCAATGCCGTTCAA TCATTTTGCTCTTGTGTTGATTTCCAACTCGATGTGTGAAAACGAAACAG CCCGCTAAAGGCGGCGCCGCACACGTGGGAGATGTGCTTCGAGGACGACT GGGACCGCCCCTACACAAGGACGCAGGCCGCGTTCCCGGCCCCGTGGGTG AAGGCCAACAAATTCTGGCCTACGGTCGGGCGGGTGGACAACGTGCACGG AGACCGCAACTTGGTGAGCGGAGCGAGAAGGGGGTACAGCGGAGGGTGGG AGAGATCGTTTGTTTTCGTTGTGATCGAGCAAAGATCGCCACTTTGTTAG ATTGCTTCGCCGAACAACGGGTGGAGGGCACAACACGTCGCAGAACACGA CGCGAACTCTTGCTGTTTCGTGCCCACATCCGGCCTTGATCTCCCCTCCC GCCTCGCGCGTTTACCTTGAGTGTAACGAGCCCGCCCGCACCTTCGCCCT TCCGTTGCTCGCCGAACCTGCCCAAACCAACATGACTCTCTTTCTTTACC AAACTTGAACCCTGTTATCGACTCCACCCAACCTTTTCCCCCATACTATC CGCTAACCCCCCCCCTCTCCCCTGTCTCTATCACGTCACCGGCTGTTTCT GAAATCCTTTATAACACTCCCAACAGATCTGCTCGTGCCCGCCCATGGAC ACTTACACGGACGAGTTGATCGCGGCATGATCGGCTGATCGATCGACCCG GGCTATTCCTTCTTCGGAGCCAACCAAAACATGCTCGAAGTCTTATAGGC GGATGGAAAGGACTTGGGGTTTGGGGGCTGATATTGGGGACCCTCCGCCC CCTCGTTCACGTATTTGCTGCTTTTCGCCCCCATACGAAGTCGGAGGTGG ACTTTGCGGCATCGCTATCGGTTCTTCGGCTGAGTTGGGCCAGGTGCTTC ATGGCGCATAAGGTTGAAATTGAAAGTGTCCAGGGGGCATATCTTCAGGG GTCTCATGGAGAGGGACTCTAGGACCAAGATTCCGTATTATTTTTGTTTC GGACTTAATTGCAGCAGATGGCAACCAAATTGCACCTGTACGGCGAAGGG GATATTGACCTGGGTAAGCTGCACCAAACGGTGTAATGCCACTAGAGTGG GAATATGCGACAAAGGGCAAGGCAAGCGAGAACACAGTTGTTTCCTGGCG CGTCTTTCGTCCTTGTTCGAGAGGTATCGAAGGGCACGCGCAGAGGCCCT TATTCAAATCAATGAAGGGGGGGAGGGGGCGAGCGGCACGCCAATTTGTG TAGATTTCGTTTTGTATTCATGTGCCAGCATGCACTTGCCGGTGCACAGG CGGGCGCCTACGGGACGAGGGAGGACAAATCCCACGCCAAGGGGGAAGCG CCTTTTGTGCGGCATGCACCCGGAGCCGATGGAGGGAAGGGAACCACGCA CAACAAGGGATCGGTCGTTGGGGATCATGTATCTACTGTTCGGCTACAGG GGGAGAATTTGAGAGGGGTTGCAGCGGGAGAGACAAGCGAGGGGAGCACG CGTTTCCGATGGGGGTGAGAAGTCGATTGCCTTCGCTTGACTCCAGAACG AAGTGCACACAATTTGGGTGTCGCGTGCTTGGTTGGGGATTGATGGGGTA GTGCGGAGGGAGGGGTTCAGGTTGTCAGAGATTTGTTTGTCCTTTGGCTC ATGATTGGTGGTGTCCTAAAATATTATCATTCCATTCGTGGACAAATACG CTTTTGTTCACTTCGGAGACGTCACCCCTCATGACATGAAGCCGAAAACG TCCCCAACTTCCTCGAGCGTTACAAAAAATGTCCATCGCATCATCGATGA ATTGCACAGAGGAGGGAACTCACTCTACTGCGCGGACCGATACGATTCAA CTAATTTTCATAGCCAAAGCTATCCAGTTCGTGCTCAATGGTGCAACAGA TCGAAAGTTCTCAGTTTGCTCTTCCACCGATGGCTGCTTGGTTTTCAGGC TTGCCCAAAGAACACGGGTTTAAGTACGTCGAAAACTTT
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Coding sequence (CDS) from alignment at P-fluviatile_contig81:147346..162684+

>mRNA_P-fluviatile_contig81.14770.1 ID=mRNA_P-fluviatile_contig81.14770.1|Name=mRNA_P-fluviatile_contig81.14770.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=5658bp|location=Sequence derived from alignment at P-fluviatile_contig81:147346..162684+ (Porterinema fluviatile SAG_2381)
ATGATGAAGGTGGTCGGGGTGACCTCCCTCGACAACCTCGTCGACCGCAC
GGTGCCCCAATCGATCCGTCTCGACAAGATGATGAAGGTGGTCGGGGTGA
CCTCCCTCGACAACCTCGTCGACCGCACGGTGCCCCAATCGATCCGTCTC
GACAAGCCGCTGGAGCTAGCAGAGCCCATGACGGAGAGCGAGGCGCTTGC
CGCCATCCGAGCTATTGCAGACAAGAACAAGCCGCTGGAGCTAGCAGAGC
CCATGACGGAGAGCGAGGCGCTTGCCGCCATCCGAGCTATTGCAGACAAG
AACAAGGTGATGAAGAACTTCATTGGCCTGGGCTACAGCGAGACGACGGT
GCCGCCGGTGATCCTTCGCAACATGCTCGAGAACCCCGGATGGTACACCG
CGTATACCCCGTACCAGGCCGAGATCTCACAGGGCCGCCTACAGTCGCTC
CTCAACTTCCAGACCATGGTGATGAAGAACTTCATTGGCCTGGGCTACAG
CGAGACGACGGTGCCGCCGGTGATCCTTCGCAACATGCTCGAGAACCCCG
GATGGTACACCGCGTATACCCCGTACCAGGCCGAGATCTCACAGGGCCGC
CTACAGTCGCTCCTCAACTTCCAGACCATGGTGGCTGACCTGACCGGGAT
GGACATGTCCAATGCGTCGCTGCTCGACGAGGCTACCGCCGCTGCAGAGG
CCATGTCAATGTGGCTGACCTGACCGGGATGGACATGTCCAATGCGTCGC
TGCTCGACGAGGCTACCGCCGCTGCAGAGGCCATGTCAATGTGCAACGGG
CTCAAGAACGGCAAGCGCAAGAAGTTCTTCGTCTCCGAGGATTGCCACCC
GCAAACCATCGCCCTCGTCCAGACCAGGGGATCGGCGATCAACCTTGACA
TCGTCGTGCAACGGGCTCAAGAACGGCAAGCGCAAGAAGTTCTTCGTCTC
CGAGGATTGCCACCCGCAAACCATCGCCCTCGTCCAGACCAGGGGATCGG
CGATCAACCTTGACATCGTCGTGGGTGACCCGGATACCGCGGATTTCTCG
TGCAAGGGATACAGCGGGGCCCTGATCCAGTACCCAAACACGTACGGCGA
CGTCAACAGCCCCGAAGCCTTTGTCAAGAAGGCGCACGAGGTGGGTGACC
CGGATACCGCGGATTTCTCGTGCAAGGGATACAGCGGGGCCCTGATCCAG
TACCCAAACACGTACGGCGACGTCAACAGCCCCGAAGCCTTTGTCAAGAA
GGCGCACGAGTTCGACACGCTGGTAGTGGCCGCCACTGACCTGATGTCGC
TGACGATGCTCAAACCGCCGGGAGAGTTTGGCGTCGACATCGCAGTCGGA
TCCGCGCAACGCTTCGGAGTACCGCTTGGTTCGACACGCTGGTAGTGGCC
GCCACTGACCTGATGTCGCTGACGATGCTCAAACCGCCGGGAGAGTTTGG
CGTCGACATCGCAGTCGGATCCGCGCAACGCTTCGGAGTACCGCTTGGGT
ACGGCGGTCCTCACGCCGCCTTCATGGCCACGAAGACCGCGTACTCCCGG
CGCATGTCGGGCCGCATCATCGGCGTCACCATCGACAGCCGCGGCGCCCC
CTGCCTCCGCATGGCCATGCAGACGCGCGAGCAGCACATCAGGTACGGCG
GTCCTCACGCCGCCTTCATGGCCACGAAGACCGCGTACTCCCGGCGCATG
TCGGGCCGCATCATCGGCGTCACCATCGACAGCCGCGGCGCCCCCTGCCT
CCGCATGGCCATGCAGACGCGCGAGCAGCACATCAGGCGAGACAAGGCGA
CGTCCAACATCTGCACGGCCCAGGCCCTCCTCGCCAACATGGCCGCCTCC
TACGGGGTGTACCACGGCCCCGCGGGGATCAAGGACATTGCCCAGCGAAT
CCACGGGATGGCGGCGGTGACGGCGGCAGCGCTCAAGGGGGCCGGGTTCG
GCGTGCCTTCGCAGCAGTTCTTCGATACTTTCTCCGGCGAGACAAGGCGA
CGTCCAACATCTGCACGGCCCAGGCCCTCCTCGCCAACATGGCCGCCTCC
TACGGGGTGTACCACGGCCCCGCGGGGATCAAGGACATTGCCCAGCGAAT
CCACGGGATGGCGGCGGTGACGGCGGCAGCGCTCAAGGGGGCCGGGTTCG
GCGTGCCTTCGCAGCAGTTCTTCGATACTTTCTCCGTCGACGTGTCTGCC
AAGGGCATGACCGCGAAGTCCGTCGCAGACAAGTGCGAGGCTAATGGCGT
GAACGTCCGCATCATCGACGACAAGACGGTGGGCCTCAGCTTCGGCGAGT
CCATCACGAAGGACGACGTCTGCGCACTGTCGACGTGTCTGCCAAGGGCA
TGACCGCGAAGTCCGTCGCAGACAAGTGCGAGGCTAATGGCGTGAACGTC
CGCATCATCGACGACAAGACGGTGGGCCTCAGCTTCGGCGAGTCCATCAC
GAAGGACGACGTCTGCGCACTGCTGGAGGGCTTCGGCGTCAAGGCATCGG
CCTTGGAGTCGGCGGCTGGCAGCGCGAAGATGGGGTTCTCCGACGACGTC
GTCCGGACGTCTGATTACATGACCCACCCCGTCTTCAACTCGCACCACAG
CGAGCTGGAGGGCTTCGGCGTCAAGGCATCGGCCTTGGAGTCGGCGGCTG
GCAGCGCGAAGATGGGGTTCTCCGACGACGTCGTCCGGACGTCTGATTAC
ATGACCCACCCCGTCTTCAACTCGCACCACAGCGAGACGCAGATGCTCCG
CTACCTTAAAAGCCTGGAGAACAAGGACCTGTCGCTCAACACGTCGATGA
TCAGCCTCGGGTCGTGCACCATGAAGCTCAACGCCACCTCCGAGATGATC
CCCGTGACCTGGCCCGAATTCGCCAACATCCACCCCTTCGCCCCCGCTCA
ACGCAGATGCTCCGCTACCTTAAAAGCCTGGAGAACAAGGACCTGTCGCT
CAACACGTCGATGATCAGCCTCGGGTCGTGCACCATGAAGCTCAACGCCA
CCTCCGAGATGATCCCCGTGACCTGGCCCGAATTCGCCAACATCCACCCC
TTCGCCCCCGCTCACCAATGCCAGGGCTACAAGGAGATGATCGACTCCCT
CCACGAGGACCTGGCCAAGATCACCGGGTTCGCGGCTTGCTCTGCGCAGC
CCAACTCGGGGGCGCAGGGCGAGTACGCCGGCCTCCTGTGCATCCGAGAG
TACCACCGCAGCCGCGGGGAGTTCGACCGCAACGTGTGCATCATCCCGGT
GTCTGCCCATGGCACCAACCCGGCGTCGGCAGTGCTGGCCGGGATGAAGG
TGGTGGTGGTGAAGAGCGACACGAAGGGGAACATCGACATGGACGACCTC
AAGGAAAAGCCAATGCCAGGGCTACAAGGAGATGATCGACTCCCTCCACG
AGGACCTGGCCAAGATCACCGGGTTCGCGGCTTGCTCTGCGCAGCCCAAC
TCGGGGGCGCAGGGCGAGTACGCCGGCCTCCTGTGCATCCGAGAGTACCA
CCGCAGCCGCGGGGAGTTCGACCGCAACGTGTGCATCATCCCGGTGTCTG
CCCATGGCACCAACCCGGCGTCGGCAGTGCTGGCCGGGATGAAGGTGGTG
GTGGTGAAGAGCGACACGAAGGGGAACATCGACATGGACGACCTCAAGGA
AAAGGCCACCAAGCACAAGGACAAGCTGGCCGCGCTGATGGTTACGTACC
CGTCAACCTACGGCGTTTTCGAGGAGGGCATCAAGGAGATCTGCCAGATC
ACTCACGACAACGGCGGCCTGGCCACCAAGCACAAGGACAAGCTGGCCGC
GCTGATGGTTACGTACCCGTCAACCTACGGCGTTTTCGAGGAGGGCATCA
AGGAGATCTGCCAGATCACTCACGACAACGGCGGCCTGGTGTACATGGAC
GGGGCCAACATGAACGCGCAGGTGGCCCTCACCAGCCCGGGACACATCGG
CGCCGACGTGTGCCACCTCAACCTCCACAAGACCTTCTGCATCCCCCATG
GAGGAGGGGGCCCCGGCGTGGGTACGATCGGGGTGGTCCCTCGCCTCGCG
CCGTTCCTGCCCGGGCATCCGGTGTACATGGACGGGGCCAACATGAACGC
GCAGGTGGCCCTCACCAGCCCGGGACACATCGGCGCCGACGTGTGCCACC
TCAACCTCCACAAGACCTTCTGCATCCCCCATGGAGGAGGGGGCCCCGGC
GTGGGTACGATCGGGGTGGTCCCTCGCCTCGCGCCGTTCCTGCCCGGGCA
TCCGGTCATCCCCTCCAGCGGCGAAGGCGCGGGCGTCGTCGCGAAGCGCA
CCGGCGCAGTCGCGGCCGCCCCATTCGGCAGCGCCGCCATCCTGCCCATC
TCGTGGATGTACATCAAGATGCTCGGCGAGCCCGGCCTCAAGAAGTCAAC
TCAGGTCATCCCCTCCAGCGGCGAAGGCGCGGGCGTCGTCGCGAAGCGCA
CCGGCGCAGTCGCGGCCGCCCCATTCGGCAGCGCCGCCATCCTGCCCATC
TCGTGGATGTACATCAAGATGCTCGGCGAGCCCGGCCTCAAGAAGTCAAC
TCAGATGGCCATCTTGAACGCGAACTACATGGCCTCCAAGTTAGACGGAC
ACTTCAAAGTGCTCTACCGCGGGCGCGAGGGACTCAGCGCGCACGAATTC
ATCGTGGATCTGCGGCCCTTCAAGGCCAGCGCCGGCATCGTCGAGGAGGA
CGTGGCCAAGCGCCTGCAGATGGCCATCTTGAACGCGAACTACATGGCCT
CCAAGTTAGACGGACACTTCAAAGTGCTCTACCGCGGGCGCGAGGGACTC
AGCGCGCACGAATTCATCGTGGATCTGCGGCCCTTCAAGGCCAGCGCCGG
CATCGTCGAGGAGGACGTGGCCAAGCGCCTGCAGGACTATGGGTTCCACA
GCCCCACGATGTCGTGGCCGGTACCGGGGACGCTCATGATCGAGCCCACA
GAGTCAGAGGACAAGGCGGAGCTTGACAGGACTATGGGTTCCACAGCCCC
ACGATGTCGTGGCCGGTACCGGGGACGCTCATGATCGAGCCCACAGAGTC
AGAGGACAAGGCGGAGCTTGACAGGTTCTGCTGGGCCATGATCAAGATCA
GAGAGGAGATTGACGACATCGTGGAGGGTCGGGTCGCGATGGAGAAGAGG
TTCTGCTGGGCCATGATCAAGATCAGAGAGGAGATTGACGACATCGTGGA
GGGTCGGGTCGCGATGGAGAAGAGCCCGCTAAAGGCGGCGCCGCACACGT
GGGAGATGTGCTTCGAGGACGACTGGGACCGCCCCTACACAAGGACGCAG
GCCGCGTTCCCGGCCCCGTGGGTGAAGGCCAACAAATTCTGGCCTACGGT
CGGGCGGGTGGACAACGTGCACGGAGACCGCAACTTGCCCGCTAAAGGCG
GCGCCGCACACGTGGGAGATGTGCTTCGAGGACGACTGGGACCGCCCCTA
CACAAGGACGCAGGCCGCGTTCCCGGCCCCGTGGGTGAAGGCCAACAAAT
TCTGGCCTACGGTCGGGCGGGTGGACAACGTGCACGGAGACCGCAACTTG
ATCTGCTCGTGCCCGCCCATGGACACTTACACGGACGAGTTGATCGCGGC
ATGAATCTGCTCGTGCCCGCCCATGGACACTTACACGGACGAGTTGATCG
CGGCATGA
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