mRNA_P-fluviatile_contig8.14675.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig8.14675.1
Unique NamemRNA_P-fluviatile_contig8.14675.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig8.14675.1 vs. uniprot
Match: A0A6H5KCA7_9PHAE (AAA domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KCA7_9PHAE)

HSP 1 Score: 775 bits (2001), Expect = 1.990e-271
Identity = 442/624 (70.83%), Postives = 489/624 (78.37%), Query Frame = 3
Query:   63 MMQWPELCLRLVLALSLQKAVGFLTPRPLALCPRPGKATPRGGSVMVLLPAASASDRRLLR-------LLRPTGSRLPPPRCSSPR-TPSAVKGPSLTSMGAACAGQRRTAANSNTALAAAG-------GSVQGDGGEGAEKGGGWRQRVVQTVVSVFLRIRAVVAALGSRVGLRRWSKSKGASNRSLFSSSEGKK-ATAGKSKGLRGSVLSGLLRKRVAVVLAMVTFALALKFGSGRAPPLTEVPMSTFMQLMEGQQGKRAVDVVESVRVTRAGTLFFKMNGKECYTVPLRVSREVFNALSSSGVPFSAVKSPPGVSMLFPVLYLFAVYFFIIKRGQGSMVGSTGKLASSTELDTSLTFSDVAGVDEAKKQVQELVSMIKNPGPFIAAGARLPSGLLMVGPPGTGKTLMARVMAAEAGVPFYYCSGSDFVEMFVGRGAARVRKLFLKAGKSAPCIIFLDELDALGKERSMGEGDRCNNDEAEQTLNQLLACMDGLDTNNNGVMVIAATNRYEVLDNALTRPGRFDRIVRVDVPDAAGREAILKVHTRKMKIEDLDVLRAVAELTPGLAGAELATIANEAAIAAARRGSQQLQQADFLDSVTNFFVSRRKGAGGLQNMFKGMLT 1886
            MMQWPELC+ +VL LSL  A GFLT  P     RP + T                  RLL        LLRP  SR+      S   +P+   G S         GQRR  A SNTALA A        G   G GG  ++KGGGWRQR+VQT+V V LRIRAV A LG+ +GL R +KS  +SN+SLFSS+ GKK A AGKS+G R +  S L RKR A +L ++ F LA+ F S   P +TEVPMSTFMQLMEG   KR  DVVESVRV++ GT+FFKMNGKECYT+PLRVS+EVF AL +SG+PF A KSPPG+S +FPV+YL AVY+FI+KRGQGSMVGSTGKLASSTELDTSLTF DVAGVD+AK QVQELVSMIKNP PFIAAGARLPSGLLMVGPPGTGKTLMARVMAAEAGVPFYYCSGSDFVEM+VGRGAARVRKLF+KAGK+APCIIFLDELDALGKERS G G R  NDEAEQTLNQLLACMDGLDTNNNGVMVIAATNRYEVLDNALTRPGRFDRIVRVDVPDAAGREAILKVHTRKMK+ED+ VLRAVAELTPGLAGAELATIANEAAI+AARRGSQQL +ADFL+SVTNF++SR+KG  GLQNMFKGMLT
Sbjct:    8 MMQWPELCVIVVLTLSLSSAAGFLTSNP--FLSRPQQPTHSSXXXXXXXXHCRRPAPRLLLSRPPSAILLRPRRSRIHSLSADSAAGSPTRAAGFSSLQSLEGSVGQRRRLAGSNTALALAASRGSNGVGEEGGSGGADSDKGGGWRQRMVQTIVFVVLRIRAVAAGLGAMLGLGRPTKSS-SSNQSLFSSASGKKKAAAGKSRGRRATAFSRLFRKRTATLLLVMLFVLAMGFRSAGTPAVTEVPMSTFMQLMEG---KRGADVVESVRVSKTGTMFFKMNGKECYTLPLRVSKEVFKALCNSGIPFRASKSPPGLSFIFPVVYLLAVYYFIVKRGQGSMVGSTGKLASSTELDTSLTFGDVAGVDQAKSQVQELVSMIKNPAPFIAAGARLPSGLLMVGPPGTGKTLMARVMAAEAGVPFYYCSGSDFVEMYVGRGAARVRKLFVKAGKTAPCIIFLDELDALGKERS-GTGGRQTNDEAEQTLNQLLACMDGLDTNNNGVMVIAATNRYEVLDNALTRPGRFDRIVRVDVPDAAGREAILKVHTRKMKLEDVAVLRAVAELTPGLAGAELATIANEAAISAARRGSQQLLEADFLESVTNFYISRKKGVAGLQNMFKGMLT 624          
BLAST of mRNA_P-fluviatile_contig8.14675.1 vs. uniprot
Match: D7G2Q1_ECTSI (Cell division protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G2Q1_ECTSI)

HSP 1 Score: 684 bits (1766), Expect = 6.140e-238
Identity = 371/496 (74.80%), Postives = 408/496 (82.26%), Query Frame = 3
Query:  465 VVQTVVSVFLRIRAVVAALGSRVGLRRWSK-SKGASNRSLFSSSEGKKATAGKSKGLRGSVLSGLLRKRVAVVLAMVTFALALKFGSGRAPPLTEVPMSTFMQLMEGQQGKRAVDVVESVRVTRAGTLFFKMNGKECYTVPLRVSREVFNALSSSGVPFSAVKSPPGVSMLFPVLYLFAVYFFIIKRGQGSMVGSTGKLASSTELDTSLTFSDVAGVDEAKKQVQELVSMIKNPGPFIAAGARLPSGLLMVGPPGTGKTLMARVMAAEAGVP---------------------FYYCSGSDFVEMFVGRGAARVRKLFLKAGKSAPCIIFLDELDALGKERSMGEGDRCNNDEAEQTLNQLLACMDGLDTNNNGVMVIAATNRYEVLDNALTRPGRFDRIVRVDVPDAAGREAILKVHTRKMKIEDLDVLRAVAELTPGLAGAELATIANEAAIAAARRGSQQLQQADFLDSVTNFFVSRRKGAGGLQNMFKGMLT 1886
            +V+T+V V LRIRAV A LG+ +GL RW+K S                   GKS+G R +  S L RKR A +L ++ F LA+ F S   P +TEVPMSTFMQLMEG   KR  DVVESVRV++ GT+FFKMNGKECYT+PLRVS+EVF AL +SG+PF A KSPPG+S +FPV+YL AVY+FI+KRGQGSMVGSTGKLASSTELDTSLTF DVAGVD+AK QVQELVSMIKNP PFIAAGARLPSGLLMVGPPGTGKTLMARVMAAEAGVP                     FYYCSGSDFVEM+VGRGAARVRKLF+KAGK+APCIIFLDELDALGKERS G G R  NDEAEQTLNQLLACMDGLDTNNNGVMVIAATNRY+VLDNALTRPGRFDRIVRVDVPDAAGREAILKVHTRKMK+ED+DVLRAVAELTPGLAGAELATIANEAAI+AARRGSQQL + DFL+SVTNF+VSR+KG  GLQNMFKGMLT
Sbjct:    1 MVRTIVFVVLRIRAVAAGLGAMLGLGRWTKKSXXXXXXXXXXXXXXXXXXXGKSRGRRATAFSRLFRKRTATLLVVMLFVLAMGFRSAGTPAVTEVPMSTFMQLMEG---KRGADVVESVRVSKTGTMFFKMNGKECYTLPLRVSKEVFKALCNSGIPFRASKSPPGLSFIFPVVYLLAVYYFIVKRGQGSMVGSTGKLASSTELDTSLTFGDVAGVDQAKSQVQELVSMIKNPAPFIAAGARLPSGLLMVGPPGTGKTLMARVMAAEAGVPLPPPRRFRGVGGYLLIGRLPKFYYCSGSDFVEMYVGRGAARVRKLFVKAGKTAPCIIFLDELDALGKERS-GTGGRQTNDEAEQTLNQLLACMDGLDTNNNGVMVIAATNRYDVLDNALTRPGRFDRIVRVDVPDAAGREAILKVHTRKMKLEDVDVLRAVAELTPGLAGAELATIANEAAISAARRGSQQLLETDFLESVTNFYVSRKKGVAGLQNMFKGMLT 492          
BLAST of mRNA_P-fluviatile_contig8.14675.1 vs. uniprot
Match: A0A835Z243_9STRA (Cell division protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835Z243_9STRA)

HSP 1 Score: 418 bits (1075), Expect = 1.440e-134
Identity = 227/408 (55.64%), Postives = 300/408 (73.53%), Query Frame = 3
Query:  675 VVLAMVTFALALKFGSGRAPPLTEVPMSTFMQLMEGQQGKRAVDVVESVRVTRAGTLFFKMNGKECYTVPLRVSREVFNALSSSGVPFSAVKSPPG-----VSMLFPVLYLFAVYFFIIKRGQGSMVGSTGKLASSTELDTSLTFSDVAGVDEAKKQVQELVSMIKNPGPFIAAGARLPSGLLMVGPPGTGKTLMARVMAAEAGVPFYYCSGSDFVEMFVGRGAARVRKLFLKAGKSAPCIIFLDELDALGKERSMGEGDRCNNDEAEQTLNQLLACMDGLDTNNNGVMVIAATNRYEVLDNALTRPGRFDRIVRVDVPDAAGREAILKVHTRKMKIEDLDVLRAVAELTPGLAGAELATIANEAAIAAARRGSQQLQQADFLDSVTNFFVSRRKGAGGLQNMFKGML 1883
            VVL ++  AL     S   PP  E+PMS F++L   +  + A+    S++VT  G + +++ G+  +T  + ++  +   L   GV F A ++ P      ++ LFP+ +L A+ + +++R  G  VGS G+      LD SLTF DVAG+DEAK +V+ELV+++++P P++AAGARLPSG+++VGPPGTGKTL+ARVMAAEAGVP+YYCSGSDFVEMFVGRGAARVRKLF +A K+APCI+F DELDALGK+RSMG  +R +NDEAEQTLNQLLACMDGLDTNNNGV+V+AATNR+++LD+ALTRPGRFDRIVRV VP+ AGR+A   VHTR M++ED  +L  VA +TPGL GAELA++ANEAAI AARR   Q+   DF  +V  ++ SR K    LQN+ KG+L
Sbjct:   56 VVLLLLAKALVWGPASKMVPP-AELPMSEFLRLTATKAKEPALT---SLKVTSRGKMLYEVAGRPHFTRQVPLADPLLEHLLRHGVKFGAAEAEPVGRGLILAQLFPLAWL-AMMYSVLRRNLGETVGSAGRQVQGDTLDRSLTFDDVAGIDEAKAEVRELVAILRDPAPYVAAGARLPSGVMLVGPPGTGKTLLARVMAAEAGVPYYYCSGSDFVEMFVGRGAARVRKLFARAAKTAPCIVFFDELDALGKQRSMG-ANRGSNDEAEQTLNQLLACMDGLDTNNNGVIVVAATNRFDMLDDALTRPGRFDRIVRVGVPEEAGRQASCTVHTRNMQLEDPALLVTVAAITPGLTGAELASVANEAAIRAARRSCVQVSLDDFQGAVKAYYTSRSKIPTNLQNLMKGLL 457          
BLAST of mRNA_P-fluviatile_contig8.14675.1 vs. uniprot
Match: A0A7S2V103_9STRA (Hypothetical protein n=1 Tax=Fibrocapsa japonica TaxID=94617 RepID=A0A7S2V103_9STRA)

HSP 1 Score: 375 bits (962), Expect = 2.930e-118
Identity = 214/407 (52.58%), Postives = 276/407 (67.81%), Query Frame = 3
Query:  660 RKRVAVVLAMVTFA----LALKFGSGRAPPLTEVPMSTFMQLMEGQQGKRAVDVVESVRVTRAGTLFFKMNGKECYTVPLRVSRE-VFNALSSSGVPFSAVKSPPG------VSMLFPVLYLFAVYFFIIKR--GQGSMVGSTGKLASSTELDTSLTFSDVAGVDEAKKQVQELVSMIKNPGPFIAAGARLPSGLLMVGPPGTGKTLMARVMAAEAGVPFYYCSGSDFVEMFVGRGAARVRKLFLKAGKSAPCIIFLDELDALGKERSMGEGDRCNNDEAEQTLNQLLACMDGLDTNNNGVMVIAATNRYEVLDNALTRPGRFDRIVRVDVPDAAGREAILKVHTRKMKI-EDLDVLRAVAELTPGLAGAELATIANEAAIAAARRGSQQLQQADFLDSVTNFFVSR 1838
            R+++  +L MV F     L LKF S       E+ MS F+  M          V   V V+ +G+L + +NG    T P+  S + V + + + GV F A  +         + + FP+ YLF +Y F +K   G+   +G  G   +   +D SLTF D+AG+DE+K++V+E+V +++NP P++ AGARLPSG+L+VGPPGTGKTL+ARVMAAE+GVPFYYC+GSDFVEMFVGRGAARVR LF +A KSAPCIIF DELDALG++R  G+     N+E +QT+NQLL C+DGLDTNNNG++V+ ATNRYEVLD ALTRPGRFDR+VRV  PD  GR  IL VHTR MK  ED+D+ R VA LTPGL GAELA IANEAAI A RR S +   ADF  ++ +F+ SR
Sbjct:   12 RRKMVNMLMMVAFVSFFILRLKFASSPVVKTVELGMSGFVAAMADPS------VFSEVLVSPSGSLHYMLNGVPHLTRPVAGSEQMVIHLMLAKGVAFKAGAAGKATLLNIALRVAFPLCYLFFLYRFFVKSMPGRNEKIGKRGDGQAGDNIDRSLTFDDIAGIDESKQEVKEIVEILRNPLPYLKAGARLPSGVLLVGPPGTGKTLLARVMAAESGVPFYYCAGSDFVEMFVGRGAARVRSLFARAQKSAPCIIFFDELDALGRKR--GDSFMRTNEEFDQTINQLLTCLDGLDTNNNGIIVVGATNRYEVLDEALTRPGRFDRVVRVPAPDQEGRREILSVHTRNMKCDEDVDLDR-VAALTPGLNGAELANIANEAAIRAVRRNSVKTCSADFTHAIKDFYGSR 409          
BLAST of mRNA_P-fluviatile_contig8.14675.1 vs. uniprot
Match: A0A7S0LIX3_9EUKA (Hypothetical protein n=1 Tax=Coccolithus braarudii TaxID=221442 RepID=A0A7S0LIX3_9EUKA)

HSP 1 Score: 360 bits (925), Expect = 2.510e-113
Identity = 194/387 (50.13%), Postives = 273/387 (70.54%), Query Frame = 3
Query:  729 APPLTEVPMSTFMQLMEGQQGKRAVDVVESVRVTRAGTLFFKMNGKECYTVPLRVSREVFNALSSSGVPFSAVKSPPG---VSMLFPVLYLFAVYFFIIKRGQGSMVGSTGKLASSTELD-TSLTFSDVAGVDEAKKQVQELVSMIKNPGPFIAAGARLPSGLLMVGPPGTGKTLMARVMAAEAGVPFYYCSGSDFVEMFVGRGAARVRKLFLKAGKSAPCIIFLDELDALGKERSMGEGDRCNNDEAEQTLNQLLACMDGLDTNNNGVMVIAATNRYEVLDNALTRPGRFDRIVRVDVPDAAGREAILKVHTRKMKIEDLDVLRAVAELTPGLAGAELATIANEAAIAAARRGSQQLQQADFLDSVTNFFVSRRKGAGGLQNMFKG 1877
            AP + E+  + F+ L+  +  +     + ++R++ +    F ++G   +  P+R   +V N L  SGV F A  +      + ++FP+L+L A++  + K+  G+  GS GK A++ +L  T L+F DVAG+D A+ +VQE+VSM++ P  + AAGAR+P+G+LMVGPPGTGKTL+ARVMAA+A VPF+YCSGSDFVE+FVGRGAAR+R LF +A  + PC+IF+DELDALGK+RSM  G +  NDE EQTLNQ+LACMDG+D++NNG++V+ ATNRYE+LD ALTRPGRFDR+VR+++PD  GR AIL+VHTRK+ +E    L  VA    G +GAELA +ANEAAI   RR  +++   DF  ++ +F  SRR+G GGL +   G
Sbjct:    8 APRVVELSYAAFLHLVADEPAR-----ISALRISLS-RYSFMLDGAPAFARPVRAPMDVLNILIRSGVDFRAAATSAAAGLIPLVFPILWLAAIFSVLRKQLNGA-TGSVGKRATAKKLSSTELSFDDVAGIDSARDEVQEVVSMLREPERYAAAGARVPAGVLMVGPPGTGKTLLARVMAAQAEVPFFYCSGSDFVELFVGRGAARMRALFKEASATRPCVIFIDELDALGKQRSMRLGGQ--NDEVEQTLNQMLACMDGVDSSNNGIVVMGATNRYEILDPALTRPGRFDRLVRMELPDEEGRAAILRVHTRKLHLEPDVQLGRVAAAASGFSGAELAALANEAAIRCVRRKGERIGMDDFTSALVDFTSSRRRGIGGLVSKIVG 385          
BLAST of mRNA_P-fluviatile_contig8.14675.1 vs. uniprot
Match: A0A4D9DB51_9STRA (AAA domain-containing protein n=1 Tax=Nannochloropsis salina CCMP1776 TaxID=1027361 RepID=A0A4D9DB51_9STRA)

HSP 1 Score: 356 bits (914), Expect = 3.900e-111
Identity = 206/397 (51.89%), Postives = 266/397 (67.00%), Query Frame = 3
Query:  672 AVVLAMVTFALALKFGSGRAP---PLTEVPMSTFMQLMEGQQGKRAVDVVESVRVTRAGTLFFKMNGKECYTVPLRVSREVFNALSSSGVPFSAVKSPPGVSMLFPVLYLFAVYFFIIKRGQG-----SMVGSTGKLASSTELDTSLTFSDVAGVDEAKKQVQELVSMIKNPGPFIAAGARLPSGLLMVGPPGTGKTLMARVMAAEAGVPFYYCSGSDFVEMFVGRGAARVRKLFLKAGKSAPCIIFLDELDALGKERSMGEGDRCNNDEAEQTLNQLLACMDGLDTNNNGVMVIAATNRYEVLDNALTRPGRFDRIVRVDVPDAAGREAILKVHTRKMKIEDLDVLRAVAELTPGLAGAELATIANEAAIAAARRGSQQLQQADFLDSVTNFFVSR 1838
            A++LA V  +  ++ GSGRA       EVP S F++L++    +    VV  +R+       F MNG   +T P++    +   L    +PF A        ++F +L L    +  +  G G      M GS GK A    +D SLTF DVAG+D AK++V+ELV M+K+P  +   GARLP G+L+ GPPGTGKTL+AR +A+EAGVPF Y +GS+FVEMFVGRGAAR+R LF KA K APCIIFLDELD LGK+RS+  G   +NDE EQTLNQLLACMDGLD+N +GV+VIAATNRYE+LD+ALTRPGR DRIVRV++PD +GREAIL+VHTRK  +E    L  +A+LTPG++GA+LA + NEAAI A RR S  + Q D   +V +FF SR
Sbjct:   21 ALMLAFVLLSSVMR-GSGRAGRGVSPAEVPYSDFLKLVK----EHGPGVVSRLRIA-PDRFDFLMNGAPSFTRPVKAHPALLFFLDKYNIPFYAGSPSSKSLVVFLLLNLLPFAWIFLSMGMGRRMYGDMAGSVGKNAEENNIDRSLTFDDVAGIDRAKREVRELVDMLKSPQKYGKLGARLPKGILLAGPPGTGKTLLARALASEAGVPFLYSAGSEFVEMFVGRGAARIRTLFQKAQKQAPCIIFLDELDTLGKQRSLRLGG--SNDEVEQTLNQLLACMDGLDSNQSGVIVIAATNRYEILDDALTRPGRLDRIVRVELPDRSGREAILRVHTRKTPLEHDADLGKIAQLTPGMSGADLAGLVNEAAIRAVRRSSPMVGQVDLDLAVKDFFRSR 409          
BLAST of mRNA_P-fluviatile_contig8.14675.1 vs. uniprot
Match: A0A7S4BJQ8_CHRCT (Hypothetical protein n=2 Tax=Chrysotila carterae TaxID=13221 RepID=A0A7S4BJQ8_CHRCT)

HSP 1 Score: 358 bits (920), Expect = 9.030e-111
Identity = 201/391 (51.41%), Postives = 272/391 (69.57%), Query Frame = 3
Query:  717 GSGRAPPLTEVPMSTFMQLMEGQQGKRAVDVVESVRVTRAGTLFFKMNGKECYTVPLRVSREVFNALSSSGVPFSAVKSPPGVSML---FPVLYLFAVYFFIIKRGQGSMVGSTGKLASSTELDTS-LTFSDVAGVDEAKKQVQELVSMIKNPGPFIAAGARLPSGLLMVGPPGTGKTLMARVMAAEAGVPFYYCSGSDFVEMFVGRGAARVRKLFLKAGKSAPCIIFLDELDALGKERSMGEGDRCNNDEAEQTLNQLLACMDGLDTNNNGVMVIAATNRYEVLDNALTRPGRFDRIVRVDVPDAAGREAILKVHTRKMKIEDLDVLRAVAELTPGLAGAELATIANEAAIAAARRGSQQLQQADFLDSVTNFFVSRRKGAGGLQNMFKG 1877
            GSG  P   EV  + F+ L   +  +     + ++R++ +   F  ++G   YT+P+R + E+   L  +GV F AV +     ++   FP+LY+  +Y  I K+  G   GS GK A +  L+T+ L+F DVAGVD A+ +VQE+V+M++ P  + A GAR+PSG+LMVGPPGTGKTL+ARVM+A+A VPF+YCSGSDFVEMFVGRGAAR+R LF +A  +APC+IF+DELDALGK+RSM  G    NDEAEQTLNQ+LACMDGL+T+NNGV+V+ ATNR E+LD ALTRPGRFDR+VR+D+PD AGR AI++VHTR   ++    L  +A  + GL+GAELA +ANEAAI + RR    +  ADF  ++ +F  SRR+G G L +   G
Sbjct:  138 GSG-VPLFLEVSYAKFLSLASTEPSR-----ISNLRISSSRYAFL-LDGSPAYTLPVRAAPELLLFLHRTGVDFRAVPTSLVAGIIPYIFPLLYIGLMYSVIRKQMNGGS-GSVGKRAVAKRLETTNLSFDDVAGVDAARAEVQEVVAMLREPERYAAVGARVPSGVLMVGPPGTGKTLLARVMSAQAQVPFFYCSGSDFVEMFVGRGAARMRALFKEAAAAAPCVIFIDELDALGKQRSMRLG---GNDEAEQTLNQMLACMDGLETSNNGVVVMGATNRVEILDPALTRPGRFDRLVRMDLPDEAGRLAIMRVHTRNFNLDPDVQLARIATASNGLSGAELAALANEAAIRSVRRQGATVNMADFTSALLDFTASRRRGIGSLVSKLVG 517          
BLAST of mRNA_P-fluviatile_contig8.14675.1 vs. uniprot
Match: A0A7R9U5K1_9STRA (Hypothetical protein n=1 Tax=Pinguiococcus pyrenoidosus TaxID=172671 RepID=A0A7R9U5K1_9STRA)

HSP 1 Score: 357 bits (917), Expect = 2.990e-110
Identity = 215/427 (50.35%), Postives = 277/427 (64.87%), Query Frame = 3
Query:  642 VLSGLLRKRVAVVLAMVTFALALKF-GSGRAPPL------TEVPMSTFMQLMEGQQGKRAVDVVESVRVTRAGTLFFKMNGKECYTVPLRVSREVFNALSSSGVPFSAVKSPPGVSML--FPVLYLFAVY----FFIIKRGQGSMVGSTGKLASSTELDTSLTFSDVAGVDEAKKQVQELVSMIKNPGPFIAAGARLPSGLLMVGPPGTGKTLMARVMAAEAGVPFYYCSGSDFVEMFVGRGAARVRKLFLKAGKSAPCIIFLDELDALGKERSMGEGDRCNNDEAEQTLNQLLACMDGLDTNNNGVMVIAATNRYEVLDNALTRPGRFDRIVRVDVPDAAGREAILKVHTRKMKIEDLDVLRAVAELTPGLAGAELATIANEAAIAAARRGSQQLQQADFLDSVTNFFVSRRK--GAGGLQNMFKG 1877
            +LS   R  V   +A V   LAL     GR P        T VP STF+ ++   Q K   + + SV V   G + F+  G+ C+T  + V + + + LS + + F A    PG   L  F  L L A Y    F I++R  G    S  K    TE  T+LTF DVAGVD+AK +V+E+V+M+++P  ++AAGAR+P+G+L+VGPPGTGKTL+AR MA EA VPF+YC+GSDFVEMFVGRGAARVR LF KA K++PCI+F+DELDALGK+RS     +  NDEAEQTLNQLLACMDGLD +  G++V+ ATNRY++LD ALTRPGRFDRIV V+ PD  GR  IL+VH RK+ +     LR +A LTPGL GAEL +I NEAAI A RR    +   DF ++   F+ SRRK  G G L+ ++KG
Sbjct:  103 MLSPFQRVFVFAFIAWVVETLALGLLRLGRGPVAAKPDVPTVVPYSTFLSML---QDKGVSERITSVLVNPTGLISFRDAGELCWTQVVNVPQYLVDRLSEANITFLAEVITPGRGALTRFISLLLNAAYIVFLFMIVRRSFGGSQSSPAKKL--TETPTTLTFDDVAGVDQAKGEVREIVTMLRDPQKYLAAGARIPAGVLLVGPPGTGKTLLARCMAGEARVPFFYCTGSDFVEMFVGRGAARVRTLFEKAKKASPCILFIDELDALGKQRSFRL--QRGNDEAEQTLNQLLACMDGLDKSGRGIIVLGATNRYDILDEALTRPGRFDRIVTVNPPDRDGRRDILQVHCRKLNLAPSVDLRQIANLTPGLTGAELESICNEAAIRAVRRSDTTVLPIDFEEAAAQFYSSRRKSLGMGILEQLYKG 522          
BLAST of mRNA_P-fluviatile_contig8.14675.1 vs. uniprot
Match: W7U1P6_9STRA (Atp-dependent metalloprotease n=1 Tax=Nannochloropsis gaditana TaxID=72520 RepID=W7U1P6_9STRA)

HSP 1 Score: 358 bits (920), Expect = 5.510e-110
Identity = 210/398 (52.76%), Postives = 270/398 (67.84%), Query Frame = 3
Query:  672 AVVLAMVTFALALKFGSGRAP---PLTEVPMSTFMQLMEGQQGKRAVDVVESVRVTRAGTLFFKMNGKECYTVPLRVSREVFNALSSSGVPFSAVKSPPGVSML-FPVLYLFAVYFFIIKRGQG-----SMVGSTGKLASSTELDTSLTFSDVAGVDEAKKQVQELVSMIKNPGPFIAAGARLPSGLLMVGPPGTGKTLMARVMAAEAGVPFYYCSGSDFVEMFVGRGAARVRKLFLKAGKSAPCIIFLDELDALGKERSMGEGDRCNNDEAEQTLNQLLACMDGLDTNNNGVMVIAATNRYEVLDNALTRPGRFDRIVRVDVPDAAGREAILKVHTRKMKIEDLDVLRAVAELTPGLAGAELATIANEAAIAAARRGSQQLQQADFLDSVTNFFVSR 1838
            A++LA V  +  ++ GSGRA       EVP S F++L++    +   DVV  +R+       F MNG   +T P++    +   L    +PF A  SP   S++ F +L L    +  +  G G      M GS GK A    +D SLTF DVAG+D AK++V+ELV M+K+P  +   GARLP G+L+ GPPGTGKTL+AR +A+EAGVPF Y +GS+FVEMFVGRGAAR+R LF KA K APCIIFLDELD LGK+RS+  G   +NDE EQTLNQLLACMDGLD+N +GV+VIAATNRYE+LD+ALTRPGR DRIVRV++PD +GREAIL+VHTRK  +E    L  +A+LTPG++GA+LA + NEAAI A RR S  + Q D   +V +FF SR
Sbjct:  174 ALMLAFVLLSSVMR-GSGRAGRGVSPAEVPYSDFLKLVK----EHGPDVVSRLRIA-PDRFDFLMNGAPSFTRPVKAHPALLFFLDKYNIPFYA-GSPSSKSLVAFLLLNLLPFAWIFLSMGMGRRMYGDMAGSVGKNAEENNIDRSLTFDDVAGIDRAKREVRELVDMLKSPQKYGKLGARLPKGILLAGPPGTGKTLLARALASEAGVPFLYSAGSEFVEMFVGRGAARIRTLFQKAQKQAPCIIFLDELDTLGKQRSLRLGG--SNDEVEQTLNQLLACMDGLDSNQSGVIVIAATNRYEILDDALTRPGRLDRIVRVELPDRSGREAILRVHTRKTPLEHDADLGKIAQLTPGMSGADLAGLVNEAAIRAVRRSSPMVGQVDLDLAVKDFFRSR 562          
BLAST of mRNA_P-fluviatile_contig8.14675.1 vs. uniprot
Match: A0A7S0IXE4_9EUKA (Hypothetical protein n=2 Tax=Calcidiscus leptoporus TaxID=127549 RepID=A0A7S0IXE4_9EUKA)

HSP 1 Score: 348 bits (892), Expect = 1.110e-106
Identity = 188/358 (52.51%), Postives = 260/358 (72.63%), Query Frame = 3
Query:  729 APPLTEVPMSTFMQLMEGQQGKRAVDVVESVRVTRAGTLFFKMNGKECYTVPLRVSREVFNALSSSGVPFSAVKSPPG---VSMLFPVLYLFAVYFFIIKRGQGSMVGSTGKLASSTELDTS-LTFSDVAGVDEAKKQVQELVSMIKNPGPFIAAGARLPSGLLMVGPPGTGKTLMARVMAAEAGVPFYYCSGSDFVEMFVGRGAARVRKLFLKAGKSAPCIIFLDELDALGKERSMGEGDRCNNDEAEQTLNQLLACMDGLDTNNNGVMVIAATNRYEVLDNALTRPGRFDRIVRVDVPDAAGREAILKVHTRKMKIEDLDVLRAVAELTPGLAGAELATIANEAAIAAARRGSQQL 1790
            AP + E+  + F+ ++  +  +     V ++R++ +   F  ++G+  +T P+R   +V N L  SG+ F A  +      V +LFPVL+L A+Y  +++R      GS GK A++ +L    L+F DVAGVD AK++VQE+VSM++ P  + AAGAR+P+G+LMVGPPGTGKTL+ARVMAA+A VPF+YCSGSDFVE+F+GRGAAR+R LF +A   APC+IF+DELDALGK+R++  G +  NDE EQTLNQ+LACMDG+D++NNGV+V+ ATNRYE+LD ALTRPGRFDR+VR+++PD AGR AIL+VHTRK+ + D   L  +A   PG +GAELA +ANEAAI + RR  + L
Sbjct:   93 APRIAELSYAAFLNMVSVEPAR-----VSALRISLSRYSFL-LDGEPAFTRPVRAPMDVLNMLHRSGIDFRAAATSGAAGLVPLLFPVLWLAAIYS-VLRRQLTGATGSVGKRATARKLSADDLSFDDVAGVDSAKEEVQEVVSMLRQPERYAAAGARVPAGVLMVGPPGTGKTLLARVMAAQAQVPFFYCSGSDFVELFIGRGAARMRALFKEAAAVAPCVIFIDELDALGKQRTLRLGGQ--NDEVEQTLNQMLACMDGVDSSNNGVVVMGATNRYEILDPALTRPGRFDRLVRMELPDDAGRLAILRVHTRKLALADDVQLARIASTAPGFSGAELAALANEAAIRSVRRQVRDL 441          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig8.14675.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
A0A6H5KCA7_9PHAE1.990e-27170.83AAA domain-containing protein n=1 Tax=Ectocarpus s... [more]
D7G2Q1_ECTSI6.140e-23874.80Cell division protein n=1 Tax=Ectocarpus siliculos... [more]
A0A835Z243_9STRA1.440e-13455.64Cell division protein n=1 Tax=Tribonema minus TaxI... [more]
A0A7S2V103_9STRA2.930e-11852.58Hypothetical protein n=1 Tax=Fibrocapsa japonica T... [more]
A0A7S0LIX3_9EUKA2.510e-11350.13Hypothetical protein n=1 Tax=Coccolithus braarudii... [more]
A0A4D9DB51_9STRA3.900e-11151.89AAA domain-containing protein n=1 Tax=Nannochlorop... [more]
A0A7S4BJQ8_CHRCT9.030e-11151.41Hypothetical protein n=2 Tax=Chrysotila carterae T... [more]
A0A7R9U5K1_9STRA2.990e-11050.35Hypothetical protein n=1 Tax=Pinguiococcus pyrenoi... [more]
W7U1P6_9STRA5.510e-11052.76Atp-dependent metalloprotease n=1 Tax=Nannochlorop... [more]
A0A7S0IXE4_9EUKA1.110e-10652.51Hypothetical protein n=2 Tax=Calcidiscus leptoporu... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig8contigP-fluviatile_contig8:3717374..3727258 +
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 score694.1
Seed ortholog evalue5.8e-197
Seed eggNOG ortholog2880.D7G2Q1
GOsGO:0003674,GO:0003824,GO:0004176,GO:0005575,GO:0005622,GO:0005623,GO:0005737,GO:0005739,GO:0006508,GO:0006807,GO:0008150,GO:0008152,GO:0008233,GO:0008237,GO:0009507,GO:0009526,GO:0009536,GO:0009941,GO:0016462,GO:0016787,GO:0016817,GO:0016818,GO:0016887,GO:0017111,GO:0019538,GO:0031967,GO:0031975,GO:0042623,GO:0043170,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0044238,GO:0044422,GO:0044424,GO:0044434,GO:0044435,GO:0044444,GO:0044446,GO:0044464,GO:0070011,GO:0071704,GO:0140096,GO:1901564
EggNOG free text desc.metalloendopeptidase activity
EggNOG OGsCOG0465@1,KOG0731@2759
COG Functional cat.O
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
Hectar predicted targeting categorysignal peptide
Ec32 ortholog descriptionP-loop containing nucleoside triphosphate hydrolase
Ec32 orthologEc-11_003070.1
Exons11
Model size2614
Cds size1827
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
1622817264.1794112-UTR-P-fluviatile_contig8:3717373..37174351622817264.1794112-UTR-P-fluviatile_contig8:3717373..3717435Porterinema fluviatile SAG_2381UTRP-fluviatile_contig8 3717374..3717435 +
1693571818.5734482-UTR-P-fluviatile_contig8:3717373..37174351693571818.5734482-UTR-P-fluviatile_contig8:3717373..3717435Porterinema fluviatile SAG_2381UTRP-fluviatile_contig8 3717374..3717435 +
1622817264.3311388-UTR-P-fluviatile_contig8:3726533..37272581622817264.3311388-UTR-P-fluviatile_contig8:3726533..3727258Porterinema fluviatile SAG_2381UTRP-fluviatile_contig8 3726534..3727258 +
1693571819.052435-UTR-P-fluviatile_contig8:3726533..37272581693571819.052435-UTR-P-fluviatile_contig8:3726533..3727258Porterinema fluviatile SAG_2381UTRP-fluviatile_contig8 3726534..3727258 +


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

Feature NameUnique NameSpeciesTypePosition
1622817264.1912441-CDS-P-fluviatile_contig8:3717435..37179271622817264.1912441-CDS-P-fluviatile_contig8:3717435..3717927Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3717436..3717927 +
1693571818.5855312-CDS-P-fluviatile_contig8:3717435..37179271693571818.5855312-CDS-P-fluviatile_contig8:3717435..3717927Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3717436..3717927 +
1622817264.2021813-CDS-P-fluviatile_contig8:3719143..37193351622817264.2021813-CDS-P-fluviatile_contig8:3719143..3719335Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3719144..3719335 +
1693571818.597408-CDS-P-fluviatile_contig8:3719143..37193351693571818.597408-CDS-P-fluviatile_contig8:3719143..3719335Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3719144..3719335 +
1622817264.2131279-CDS-P-fluviatile_contig8:3720254..37203771622817264.2131279-CDS-P-fluviatile_contig8:3720254..3720377Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3720255..3720377 +
1693571818.605851-CDS-P-fluviatile_contig8:3720254..37203771693571818.605851-CDS-P-fluviatile_contig8:3720254..3720377Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3720255..3720377 +
1622817264.223712-CDS-P-fluviatile_contig8:3721254..37214091622817264.223712-CDS-P-fluviatile_contig8:3721254..3721409Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3721255..3721409 +
1693571818.6138432-CDS-P-fluviatile_contig8:3721254..37214091693571818.6138432-CDS-P-fluviatile_contig8:3721254..3721409Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3721255..3721409 +
1622817264.2342172-CDS-P-fluviatile_contig8:3722563..37226751622817264.2342172-CDS-P-fluviatile_contig8:3722563..3722675Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3722564..3722675 +
1693571818.6216578-CDS-P-fluviatile_contig8:3722563..37226751693571818.6216578-CDS-P-fluviatile_contig8:3722563..3722675Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3722564..3722675 +
1622817264.2471974-CDS-P-fluviatile_contig8:3723181..37233221622817264.2471974-CDS-P-fluviatile_contig8:3723181..3723322Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3723182..3723322 +
1693571818.6296542-CDS-P-fluviatile_contig8:3723181..37233221693571818.6296542-CDS-P-fluviatile_contig8:3723181..3723322Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3723182..3723322 +
1622817264.2603881-CDS-P-fluviatile_contig8:3723549..37237171622817264.2603881-CDS-P-fluviatile_contig8:3723549..3723717Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3723550..3723717 +
1693571818.639822-CDS-P-fluviatile_contig8:3723549..37237171693571818.639822-CDS-P-fluviatile_contig8:3723549..3723717Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3723550..3723717 +
1622817264.2733364-CDS-P-fluviatile_contig8:3724280..37244201622817264.2733364-CDS-P-fluviatile_contig8:3724280..3724420Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3724281..3724420 +
1693571818.6503146-CDS-P-fluviatile_contig8:3724280..37244201693571818.6503146-CDS-P-fluviatile_contig8:3724280..3724420Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3724281..3724420 +
1622817264.2866845-CDS-P-fluviatile_contig8:3725149..37252771622817264.2866845-CDS-P-fluviatile_contig8:3725149..3725277Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3725150..3725277 +
1693571818.6584451-CDS-P-fluviatile_contig8:3725149..37252771693571818.6584451-CDS-P-fluviatile_contig8:3725149..3725277Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3725150..3725277 +
1622817264.3018405-CDS-P-fluviatile_contig8:3725465..37255601622817264.3018405-CDS-P-fluviatile_contig8:3725465..3725560Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3725466..3725560 +
1693571818.666817-CDS-P-fluviatile_contig8:3725465..37255601693571818.666817-CDS-P-fluviatile_contig8:3725465..3725560Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3725466..3725560 +
1622817264.3122456-CDS-P-fluviatile_contig8:3726452..37265331622817264.3122456-CDS-P-fluviatile_contig8:3726452..3726533Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3726453..3726533 +
1693571818.6780195-CDS-P-fluviatile_contig8:3726452..37265331693571818.6780195-CDS-P-fluviatile_contig8:3726452..3726533Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3726453..3726533 +


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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig8.14675.1prot_P-fluviatile_contig8.14675.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig8 3717436..3726533 +


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig8.14675.1

>prot_P-fluviatile_contig8.14675.1 ID=prot_P-fluviatile_contig8.14675.1|Name=mRNA_P-fluviatile_contig8.14675.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=609bp
MMQWPELCLRLVLALSLQKAVGFLTPRPLALCPRPGKATPRGGSVMVLLP
AASASDRRLLRLLRPTGSRLPPPRCSSPRTPSAVKGPSLTSMGAACAGQR
RTAANSNTALAAAGGSVQGDGGEGAEKGGGWRQRVVQTVVSVFLRIRAVV
AALGSRVGLRRWSKSKGASNRSLFSSSEGKKATAGKSKGLRGSVLSGLLR
KRVAVVLAMVTFALALKFGSGRAPPLTEVPMSTFMQLMEGQQGKRAVDVV
ESVRVTRAGTLFFKMNGKECYTVPLRVSREVFNALSSSGVPFSAVKSPPG
VSMLFPVLYLFAVYFFIIKRGQGSMVGSTGKLASSTELDTSLTFSDVAGV
DEAKKQVQELVSMIKNPGPFIAAGARLPSGLLMVGPPGTGKTLMARVMAA
EAGVPFYYCSGSDFVEMFVGRGAARVRKLFLKAGKSAPCIIFLDELDALG
KERSMGEGDRCNNDEAEQTLNQLLACMDGLDTNNNGVMVIAATNRYEVLD
NALTRPGRFDRIVRVDVPDAAGREAILKVHTRKMKIEDLDVLRAVAELTP
GLAGAELATIANEAAIAAARRGSQQLQQADFLDSVTNFFVSRRKGAGGLQ
NMFKGMLT*
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mRNA from alignment at P-fluviatile_contig8:3717374..3727258+

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig8.14675.1 ID=mRNA_P-fluviatile_contig8.14675.1|Name=mRNA_P-fluviatile_contig8.14675.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=9885bp|location=Sequence derived from alignment at P-fluviatile_contig8:3717374..3727258+ (Porterinema fluviatile SAG_2381)
CCCCCGCCTAGTCTCTCACTCTCTGCAATCCTCGCACGCTCTCACACGTT GAGAGCATAGTCATGATGCAGTGGCCAGAGCTCTGCCTTCGCCTGGTCCT GGCCCTATCATTGCAGAAGGCGGTGGGCTTCCTCACCCCTCGCCCTCTTG CACTGTGTCCAAGACCTGGCAAAGCTACACCACGAGGGGGCTCCGTTATG GTCCTCCTTCCTGCCGCGTCCGCCTCCGATCGTAGATTACTGCGCTTGCT TCGGCCTACGGGCTCTCGACTACCTCCACCGCGATGTTCGAGTCCTCGAA CTCCGTCTGCGGTAAAAGGGCCATCGCTAACATCAATGGGGGCTGCATGT GCAGGTCAGAGAAGGACAGCAGCGAATTCGAACACGGCTTTGGCGGCCGC CGGCGGGAGCGTTCAAGGGGACGGGGGTGAGGGAGCCGAGAAGGGCGGCG GGTGGCGGCAACGCGTGGTTCAGACCGTCGTGTCGGTATTCCTCCGGATC CGGGCGGTGGTTGCTGCGCTGGGATCCAGGGTTGGGCTGCGTCGATGGAG TAAGGTGAGGATAATGAATACAGAAGTCAGCAGCTTCATAGGTCCGCGCC GCCAGAGAGCAGGCTGTCGTCCTGTGGTTGCACACCAGATTCGCTCGGGT GTTTACTTCTCCGGTCTCAGAGGGCACGACGGCGCTGAAGGCTTTTGTCC AAGGGTATTGCGATCCCTGACTTTAGGTTCTTGCCAACATAACGTGCACC AGAGTTCGTTGATGTGTGTCGCTGTGTGTGGAGAGAGAACAACTGCCAGG GAATACCCGGCTGCGTGTATCGGTCTCCGCCTCTTATTCGAACTTGGACA CCAGTGAACTTGGACACCAGTAGTGAATGCTGTACGAGAGAACGCCTTTC TCTGCTGCAATGCTCGACATATCCCCCTTCAAAGGAAGATATTGAAACTT GCGTCACCGCACAAATTTTTTCGATTTCAGAATTTTTTTGCGAGTAGTTG TAGTTGAACACGCAAGTGGCATCCATACAACATAGGACGGAGAACAACGA AATACTGCAACGTCATGAGCATGATCCCGAAGATGCACTTATCAAAGCAC ACCAAATGTCACACCTCCCTCGCACACCTATACCGTTTCACACACCGGCT GACACGGCGCTTTCCCTTATCCTCCCCCTATCGATTGCCCCCCCCTCCTG CTGGCTCTCACCTCGGTGTTTGCGATCGGGATTGGGTTTTCGTCGCTTGG CAACGACGTTGTAAAACAAGCCAATTCACTTCGTGAACTCGGCAACCAGG TTACCGTCTTTTTTTTCCTCTGGTTTTTTTGGCGGTAACCATAATGGTGG TCGAGAAGATCATGTTGTGCGGAGTGGGGAACCCTCACTCCGCGCAAGGG GGATGATCGCACCACGTTGTGTTAAAATGGTCAAGCACCCTCGAGGCAGT TACACAGCGCTTACAACTGTCTCTGGAAGTGAAAGCACCAGAAAATAAAT TAACCCATACGCAGCTGTCATCCGAATGCAAGGAAGTAAGCACAAGATGC CGAACACCCTTAGCAGGATGCAGCGCACCCTTCATGCGACTCGCCGAATA CCTCACGGCGCTTCGCGCTTGGTGGTGTGAGAGCCTGGTCCGGTGAGAAC CCGGCGTGCTCCGTCCCGGCTTTGTAGGGATGCGAGGTCAATGGTCTAAC GACTACGGCATGCACGACTATGAGTACACCCCCCTATCGATTGCCCCCGG CCCTACCGCCCTCGTTTCAGTCGAAGGGTGCTTCTAACCGATCGCTCTTC AGCTCTTCCGAAGGCAAGAAGGCGACCGCCGGCAAGTCCAAGGGGCTCCG TGGATCGGTGCTGTCCGGCTTACTCAGGAAACGGGTGGCCGTGGTGCTCG CGATGGTGACTTTCGCCCTCGCGCTGAAATTCGGTTCGGGGCGCGCTCCT CCACTCACCGAGGTAGGTGGGGTGTGATGAGAATAATGTATACTCCGTAT GCGGTAGGGGGCCCTCAGCATCGGATAGTGTCGATGTGCCCAGAGATTTG ACCAGCGCTGTACCGGCCACCGGCACTAGTCAGAACAGGTGTATATGGGT TTTAGTATAGGATTGGACGCTTGTGCCGAAAGGCTTGATCGGCACTATCA CGGGCAGCGGCACTGCTCTACCGGCACTGTTTAAGGCTCCTCCCTGTGAT AGCCGCGACGACTTCGAGCTCCGGCTTTGAGCGGTACTCCTTAGAGCGTT GCGGGGTGCATTTGTTCAACTTCTGCTGGGTGTGCCGCTCCGCGGAGTGG GTGACACAAGGCGCCGAAGTTGCCTTAACTCCCGTAATGCCCGTTTTTGA AGCCCGATATCTCCACATCGAGTAGGGGGCGTACTCATGTTTTGCACTCC CCTGTTGAGTAGGGGGGGTGGCTTTTCGAAAGCCAAGGGTGTGGCACCGG AAAGGCCAAGCATGTCAAAGATGCCTTTCCGAAGACCGCTCGGTCCGGTT CTTGCACGCGTGTTGGCTCGGAGAGACGGTCTTGGCGTTGATCCATTTGA TGTGGTGCCGCATTCTACCAACGGGAACACACGCTGCCCACGGTACCACT CTCGCTCCTGTCGTAGTTAAATCTTATGGCGCGTGTACGCCGCTTGCCGA CCGTATCCCCCCACCCTCCCCCTCAATATTTCAACACGACGTCTACTCCG CTTGTGGCGCACCGCGTTATTGAATTGTAGTGCGATCGGGCTGCCTGTGC TTTGTGCTTTCACAGGTCGCGTGTTGGTCGGTCTTGAAATATTCCCAAGG AGTGATATCTGTTCGGAAGAGCAGAAAGTTGGTACGTGTGGATTTCCGGC TTGGACCCGGCAACACGCACACAACACGCAGGTGCCAATGTCGACGTTCA TGCAGCTCATGGAAGGGCAGCAAGGGAAGCGGGCGGTAGATGTCGTGGAG AGCGTCCGCGTGACCAGGGCCGGAACGTTGTTCTTCAAAATGAACGGCAA AGAGGTGCGAAAGTCTACATACTTTCAGGAAATGCATTGACTGATCGCTG TTTGTTCCTGTTTAAAACGCCGAGGTGTCGCGGCTGCACCGCCTCGTGTT GATGCAGCTGTAGGTTTGTATTTCTATCTATGCTGCCGGCTGATCTTTTC GAGCGTCGGAACTGGCGGCTGTCAAAAAAAAATGACGACGAAGGAGATCA ACCAAGTATATATCAACCGGTTCCGATGAAGGGAAATCACGGGAAAGCGC CGTGTAGTAGGTTCAGCGGAGCGTGGGACTCGTGCGCGACTGGTAGTCTG GAGACTCAGGGACTGCGAACCCCAGACAGCAGCCGGTGTTCTCTGTTCTT CCCCCCGCAATATTTCGTTCGTAAAGCGTTATTCTTTGATGGGTCGGTTA CGTTCGTGACTGCCTATTGCTGGGTCTGTGGCACTTTTGAAGGGGTAAGG CTCCTCTGCGCGTATGTAGGGGATCATCATTTGTTTTTGCGAAAAAAAAT GGCCTACGAGAAAAGGAGGGAGAGATTTGAGGATAATCTGAGGTGGCGGA GTGTAGTGCGCGCATTGGGTAATGAAGCGCGAAAACTTTTATGACGTTGG GTGACAGTGTATAGGTGTCCCCAAGCAAAAAATCAGCATGCTGACGCCGA AATTCCACGAGACCCTGAACGTATGACACTGCTGCGTGTTAAAACGAAAG AGCGCCTTTATTGCCGGTGGTTGAATACCCCGATTTGGAGATCAGGTAGA ACTTGGTCTCGAAAGGGACGCGTGTTCAGTACAAATAGTCATCCGAGTTA GGTAAGCAACAAACGAACAACGTCCCTCGTTCCGGCCTTACCACCACGAC TCCCTCCCCCCGCCCGCCCGACTGCGACAAGTGCTACACTGTGCCGTTAA GGGTGAGCAGAGAGGTGTTCAACGCGCTGTCCTCGAGCGGCGTCCCCTTC AGCGCCGTCAAGTCGCCACCGGGGGTTTCGATGTTGTTTCCGGTGCTCTA CCTTTTCGCTGTCTACTTCTTCATCATCAAGAGAGGGTAGGTGATGGGGT GGGCAGCATGTGTTGTGTCGGGGTTGCTTTTTCGTCGGAGAGGCATAGTC GCTGCGTTGCGTTAGTGGGTCGCACGGCGGTTGCGGTGTGGCGTTGTTTT GGTTCGTAAGTCGGTCTTTCCGTTTTCATCCGGTGGAGGTCTCCACACGG ACTCCAAGCCGTCATCGGTTCGACGCCCGTTCCGTCTGAAAAAATTGACG TCCGGTGCGAAGACTGCCGCCGCAGCTCGGGAGCATGCACGAAAGGCCGT CCACCCAAAGAAGAAGCCTGGATCAGAACCTCGTACGCAGTCAATGAAAG CGACTGGCCGATCCCTGGATGTGTCTCGTTCTCCCGCTCATTCTCTTTTC CTTTGCTTACTTTTGTTCTTCCTTTTTCCTTTTTCCTTTGCTTTTTTCTG TTCTTCGGTTTTGGTTTTTGTCTTTTCTTGCGTCCTTTTTCCTTTTTCCT TTGCTTTTTTCTGTTCTACCTTTTTCCCTTGCTTTTTTCTGTTCTCCTTT TCCTTTGCTTTCTTCTGTTCTTCTGTTCTTCGGTTTTGGTTTTTGTCTTT TCTTGCGTCCTTTTTCCTTTTTCCTTTGCTTTTTTCTGTTCTTTCTTTTT CCTTTGCTTTTTTCTGTTCTTCCTTTTTCCTTTGCTTTTTTCTGTTCTAC CTTTTTCCCTTGCTTTTTTCTGTTCTCCCTTTTTCCTTTGCTTTCTTCTG TTCTTCTGTTCTTCGGTTTTGGTTTTTGTCTTTTCTTGCGTCCTTTTTCC TTTTTCCTTTGCTTTTTTCTGTTCTACCTTTTTCCCTTGCTTTTTTCTGT TCTTCCTTTTTCCTTTGCTTTCTTCTGTTCTTCTGTTCTTCGGTTTTGGT TTTTGTCTTTTCTTGCGTTGACCTCCGTCCTTCGTAGTTCCTACCCTTCG TCACTTTTCTTCGCCTTTCCTTCATCCCTCCTTTTGTTCTTGTGCCCTCT TCGATTTTCATTCTTCCATCGTCACCTCCTTTGTTTTGTGCTTTCTCGCT TTCTTGCTTTCTGTCTTCCCTTTTTTTCCCTTCTTTTATTTCTTCGTTCT TTTTTATTCTTCATGTCGCCTTCTCCTCAATCCGTCCTCTCGTTGGCCGG CGTGTCTTTCCTTTGCTTGCCTGGGCTGAACCGCACACAGGCAGGGAAGC ATGGTCGGCTCCACGGGTAAGCTCGCGTCGTCGACGGAACTGGACACATC CCTCACCTTTTCGGACGTGGCCGGAGTGGACGAGGCTAAGAAACAAGTGC AGGTGTGGGTGTGGCGGTTCCCGCTCGCGAGAGTCGAAAATGCCAGGGTC GTTGTGTAAAGCTTCGCTCAAGTGTATTGTAGATGAAGTGAAACTCCTCT TGATGTTGCTGTTACGCCTCCCACAAAACAATGAACAACAAGCTGAAGCT TTGTTGATGCAACACCCCACTTGGCGACAAGGCTTTTCATGCTCTGTCTG TTATGTACATGGGCGGGGATACGGTGTCCATCAGCGTACACCCACATTTA GCTCGTTGATACCTTGGTTGTGTTGCAATCGCGGAAGCATGGAAGAATCC TTCGAATTGTGGGATCCTCCGTATCTTGGCCCGAGCGTGAATCAAACGGG TCACCGCGATTCCCAGCGGGGTGAAACACGCAACCGAGTGTCAGGCCTCC CACCCTGCCCTTTCCCACTCGTTCACTGTCTCGCCTTCCTCACTGGCGTC GTTACTTTTGTCCATGCCTACTTTTTGTGGTGGCATCCTGAACGTTAACG ACATACAGGAGCTCGTGTCAATGATAAAGAACCCCGGGCCGTTCATCGCG GCGGGTGCTCGACTGCCGAGTGGTCTTTTGATGGTGGGGCCGCCTGGGAC GGGGAAGACTCTCATGGCGAGGGTGATGGCGGCAGAGGCCGGTGTTCCGG TGAGTTTGTTTCCCGGGACTTGGGGCTGCGGAAATGGTGGACAGACGGGG GGAGGTATATGTAGGATCATCGCCTCGCCTTACGCGAGGGGTCGAATGCA CAGTCCGCGGATTGCGGCGATGCAGTTATCTCAGCAGCATCAACGACCCC TGCCTCGCCCCTCCTCCCCCCGCTTCCCTGTCACGCCCCCTCCCCCACAC ACCATGCTTTTTTTTTTTTCTTTCAGTTTTACTACTGTTCGGGGTCTGAC TTTGTGGAGATGTTCGTGGGACGCGGTGCGGCCAGGGTGCGTAAGCTTTT CCTCAAGGCGGGGAAGAGCGCACCCTGCATCATCTTCCTGGACGAACTTG ACGCCCTTGGCAAGGAGCGCTCGATGGGGGAGGGCGACAGGTGTGTTTTG GGGTGTGTTCTGGGGACTCCGCTTTGTTGCTTTGCCTTAGATTTTATCGG GAGAGAATCGCAAGAGACCACGAGATAAATCCTGCTATTTCGGCGGGAGT TGGCGACTTGTGGTCGCTGTGGTGAACATGTGTGTGTGGCTTTCGTGTCG CTGTTGCGATTATTTTCGTATTTGTTCGTGTTATTGCTGCTGCTGCTGCT GCTGCTGCTGCTTTAGTCGTCGTCGTCGTGATCGTGGTCGTCTTATTATC GTTTTATTGGTGTTCGGTTGCGACCATCTTCTACATTGCTTCCGACATTG CTGTTGTAGCCGTTGCTGCTGTACCTCCTAGGCCCGTGTTGGTCACTACG GCTTGTCGAAAGCAGTGCCGGGGAGACGCCTTGCTCTCTGGATCGCAACA AGTCACCGAACCTATGGTGAAATATCTGTCATCTGCATCGTGCCGTCTTT CATGTCTAGTCGTCGCCTGCCATGCATTTCTCGGTCGCCTTATATCTTTG CTATGTGGGTTATCGCTCCCGTCCCATTCCACCCATCCTCCGCACCTGAT TCGTCAGAATAACGACGAGGCGGAGCAGACTTTGAACCAGCTGCTGGCGT GCATGGACGGCCTCGACACGAACAACAACGGAGTGATGGTAATCGCGGCG ACGAACCGATATGAGGTGCTGGACAACGCCCTCACCCGACCCGGCAGGTA GGCCTGTCCTTGCCGCTTGAGGTTGGCTCGGGAGTGCGTAGGATTGTTGT TGTTGTTGTTGTTGTTGTTGCTGTTGTTGTTGTCGTTGTGGCCATGGCCG TCGTCGTGGTCGCCGTCGTCGGTGTCCGCGATTTCTTGCTGTTGTCGTGC TTTGTCGGCTGATGCTGCTGATGGTGCTGCTGCTGATGCTGATGGTGCTG CTGCTGCTGCTGCTGATGGTGCTGCTGCTGCTGCTGCTTGCTTTGTTGTT TAGAAATCCTTTCGGCAGCGACTGGGAAAGTCCGCCGATTACAACCCAAT TGTCTTTGTTCAGAGTGGCCGCTGACGCCCTCGCTGTTTCTCTAAACATC CCCGCCCTTCGTCGGGGGAAGCATGAAAATCAGCTCCGACTATTCTATTC CTTCCTCTGCAACAACCCTTCTCGTGATCGGGTTTGGGGCAGAGCCTCTC GTAGTTTGCTGCCCCGCAACATGTCGTATGCTTGCTTTTTTGGCCCGGAG GAAATGGATGCTTGGGACCTATGTGAAGCCTGACTAGCAAGAGTAGCAAC AGCAAGGGTTGGATGTGAAATTGTACCTCACTGCCTCGTCGGTGCTACGC TTTCTTGTAGAGGGAGCGGCGACTCATTCGCCTGTGACGTGGCCGAGATA GACGTGGCTCTGTTGATGCCTCCTTCTCCTTGCTTGCGTTTGTTTGTGTT TTTTTCCTTTTGCGCGCCAACGACAGATTCGACCGTATCGTGAGGGTGGA CGTCCCCGACGCGGCAGGTAGAGAAGCCATCTTGAAAGTCCACACGAGAA AGATGAAGATTGAAGACCTTGACGTGTTGCGGGCAGTGGCGGAGCTTACC CCCGGTGAGTTAAAAATGTGGAAAGGGGAGCGGAGGAGGTGCAGCCGTTC TTCGACCGTTTCTGGCCCGTTTGATTGCGCGAAATAGACACATTATTTTT TTCAACCTTCGTTTGTTGGAGATATATCGCAATCCATGATCCGAGGCATG ATCTCAGGTGTGAGCGAACGATTAATGTTTCGTGCGTCTCAGGACTTGCC GGGGCGGAGCTAGCCACGATCGCCAATGAGGCTGCCATTGCGGCCGCTCG AAGAGGGTCGCAACAGCTTCAGCAGGCAGACTTTCTGGTGAGCTTTGTGT TGCGTGAAACTTCTGTGGTCAGGGACTACCTAGTCCTCAGGTTTCCCCGC TGTTGGAGAAACCACGTAGCCAGGGTGTACAACTGATTCACAGATCTAGT CTCCGCAGGTCTCATTCTTCGAGGATTGTCATTATGAGAGCTGCGGAGAC ATTTGGGTGGGAGCTCCAAAGGCCACCGAACCTGTTGACAAGTAGGTCCT CAACAGCATCCCCGCAGCTTTTTGAGAAAATTTGCAGTGGTTGTCGGCGT CGGCAAGGTACGCGAGGATCTCGCGATCCAACCGCCTTGAGCACAGTTCG CGATCTCGGCTTTGCCCACCGCCCGCATGCCCTTCCAAAAGTGCTTGCTG CGCCTCTGCTGGTTTGCGGGCTCTACACCACGCCCTACCTTGTGTGCGAA ATGAAGAGGAAAAGGGGATCCGGTGCTTCAAGCGCAAGGCAGAACGCGAA AAAAAATTTGGCACACGCAGTTTTTTTTTTTTTTTTTTTTCATGATCATT TCCTTCCACTCCGTAAATGGCGAGGTCACTCCGTCGGCGTTATGGCCACC GGTACGAGAGAGAGGGGGGGGGGAGCACAcCCCCTCCCGTGTCCAGGACC GGCTCTGTAGAAATTAAGGTTAAGCCGTCATTAGACAGTGGAGGGTCACG CAACTCTACTGCTAACCCTGACCCTAACCCTTACCCCCCATTTTTTCCGA CTTGAAGTCATTTTTTCAAACCCCCGCGTAGGCTACTGCGCTCCCAACGA TGGTAGACGTTGGTCAGCCTGCCACGCTTGGTTTACCGAGCGTCTCACCC CGCGCCCCCCCCTCCCGTCTTTTTTCTCCCCCGGGCATGCTCTCCTGATC GCGCCCACGTTTGCCTTCCCTTCCTGAAGGATTCGGTCACAAACTTCTTC GTCTCCCGAAGAAAGGGCGCGGGCGGTTTGCAAAACATGTTTAAGGGCAT GCTGACATGAACTGCATCGAGCACACCTGAAATTAATTTTGAGAACTAGA GGGTTATCGGTTTGTTCCGTTTTTTTCGGGTTGTCTTCCATGGAAAAGAA ACGCTTCGCTTGTTTCGGTGCTTTGCTCGTGGGGGATGACTGGGCAAGGT GGATCAGGTGTTCCCTGCACATGTGATCTGCCGGAGTATATTTGCGGGCT TGACACGCGTGCGGGCTGTATGTCGGCCACGTAAAGAAGAGTCTTACCAG GTAGATACCGTGACTGTTTTTGCTTCCAGGAACTTGATAGTGTTGTCTAG AGCAATAGATTTTTGCCCCTTGATCCGTCTCGAGCAGGAAACTGTGGAAT TTTGCATACATGCGCGTTTTGTTGTCGACAATTTCCATCCATCACCGCCC TTTAAATAATTTTTTTCGTAGTTTTCTCGACATTTCGTTTTTCAACAGCA GCGATCAGACGTGCAGTTGCCTCTCTGAGCCAGCGTTGAAAAGCAAGAAG AAAATGCTTCATCAAATCGGTCGCGAGCAGCGCAAGGTCCCCCGTTCGAA AGGTGGTCCGACGTGCTGCTCCTACCTTTCGTGGTTGTTCCAACCGCGTA AGAAATTTACTTGAGAGCACAAATAGTGTGTACCGTGAGGGTTCACCCAG ACGTCGCTCAAAGCTAGCCATGCCCCCACGCCCACAAGACAGACACTGGA CCCAGGATAAATATTTGCACAGGCGGCAATAATGG
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Coding sequence (CDS) from alignment at P-fluviatile_contig8:3717374..3727258+

>mRNA_P-fluviatile_contig8.14675.1 ID=mRNA_P-fluviatile_contig8.14675.1|Name=mRNA_P-fluviatile_contig8.14675.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=3654bp|location=Sequence derived from alignment at P-fluviatile_contig8:3717374..3727258+ (Porterinema fluviatile SAG_2381)
ATGATGCAGTGGCCAGAGCTCTGCCTTCGCCTGGTCCTGGCCCTATCATT
GCAGAAGGCGGTGGGCTTCCTCACCCCTCGCCCTCTTGCACTGTGTCCAA
GACCTGGCAAAGCTACACCACGAGGGGGCTCCGTTATGGTCCTCCTTCCT
GCCGCGTCCGCCTCCGATCGTAGATTACTGCGCTTGCTTCGGCCTACGGG
CTCTCGACTACCTCCACCGCGATGTTCGAGTCCTCGAACTCCGTCTGCGG
TAAAAGGGCCATCGCTAACATCAATGGGGGCTGCATGTGCAGGTCAGAGA
AGGACAGCAGCGAATTCGAACACGGCTTTGGCGGCCGCCGGCGGGAGCGT
TCAAGGGGACGGGGGTGAGGGAGCCGAGAAGGGCGGCGGGTGGCGGCAAC
GCGTGGTTCAGACCGTCGTGTCGGTATTCCTCCGGATCCGGGCGGTGGTT
GCTGCGCTGGGATCCAGGGTTGGGCTGCGTCGATGGAGTAAGATGATGCA
GTGGCCAGAGCTCTGCCTTCGCCTGGTCCTGGCCCTATCATTGCAGAAGG
CGGTGGGCTTCCTCACCCCTCGCCCTCTTGCACTGTGTCCAAGACCTGGC
AAAGCTACACCACGAGGGGGCTCCGTTATGGTCCTCCTTCCTGCCGCGTC
CGCCTCCGATCGTAGATTACTGCGCTTGCTTCGGCCTACGGGCTCTCGAC
TACCTCCACCGCGATGTTCGAGTCCTCGAACTCCGTCTGCGGTAAAAGGG
CCATCGCTAACATCAATGGGGGCTGCATGTGCAGGTCAGAGAAGGACAGC
AGCGAATTCGAACACGGCTTTGGCGGCCGCCGGCGGGAGCGTTCAAGGGG
ACGGGGGTGAGGGAGCCGAGAAGGGCGGCGGGTGGCGGCAACGCGTGGTT
CAGACCGTCGTGTCGGTATTCCTCCGGATCCGGGCGGTGGTTGCTGCGCT
GGGATCCAGGGTTGGGCTGCGTCGATGGAGTAAGTCGAAGGGTGCTTCTA
ACCGATCGCTCTTCAGCTCTTCCGAAGGCAAGAAGGCGACCGCCGGCAAG
TCCAAGGGGCTCCGTGGATCGGTGCTGTCCGGCTTACTCAGGAAACGGGT
GGCCGTGGTGCTCGCGATGGTGACTTTCGCCCTCGCGCTGAAATTCGGTT
CGGGGCGCGCTCCTCCACTCACCGAGTCGAAGGGTGCTTCTAACCGATCG
CTCTTCAGCTCTTCCGAAGGCAAGAAGGCGACCGCCGGCAAGTCCAAGGG
GCTCCGTGGATCGGTGCTGTCCGGCTTACTCAGGAAACGGGTGGCCGTGG
TGCTCGCGATGGTGACTTTCGCCCTCGCGCTGAAATTCGGTTCGGGGCGC
GCTCCTCCACTCACCGAGGTGCCAATGTCGACGTTCATGCAGCTCATGGA
AGGGCAGCAAGGGAAGCGGGCGGTAGATGTCGTGGAGAGCGTCCGCGTGA
CCAGGGCCGGAACGTTGTTCTTCAAAATGAACGGCAAAGAGGTGCCAATG
TCGACGTTCATGCAGCTCATGGAAGGGCAGCAAGGGAAGCGGGCGGTAGA
TGTCGTGGAGAGCGTCCGCGTGACCAGGGCCGGAACGTTGTTCTTCAAAA
TGAACGGCAAAGAGTGCTACACTGTGCCGTTAAGGGTGAGCAGAGAGGTG
TTCAACGCGCTGTCCTCGAGCGGCGTCCCCTTCAGCGCCGTCAAGTCGCC
ACCGGGGGTTTCGATGTTGTTTCCGGTGCTCTACCTTTTCGCTGTCTACT
TCTTCATCATCAAGAGAGGTGCTACACTGTGCCGTTAAGGGTGAGCAGAG
AGGTGTTCAACGCGCTGTCCTCGAGCGGCGTCCCCTTCAGCGCCGTCAAG
TCGCCACCGGGGGTTTCGATGTTGTTTCCGGTGCTCTACCTTTTCGCTGT
CTACTTCTTCATCATCAAGAGAGGGCAGGGAAGCATGGTCGGCTCCACGG
GTAAGCTCGCGTCGTCGACGGAACTGGACACATCCCTCACCTTTTCGGAC
GTGGCCGGAGTGGACGAGGCTAAGAAACAAGTGCAGGCAGGGAAGCATGG
TCGGCTCCACGGGTAAGCTCGCGTCGTCGACGGAACTGGACACATCCCTC
ACCTTTTCGGACGTGGCCGGAGTGGACGAGGCTAAGAAACAAGTGCAGGA
GCTCGTGTCAATGATAAAGAACCCCGGGCCGTTCATCGCGGCGGGTGCTC
GACTGCCGAGTGGTCTTTTGATGGTGGGGCCGCCTGGGACGGGGAAGACT
CTCATGGCGAGGGTGATGGCGGCAGAGGCCGGTGTTCCGGAGCTCGTGTC
AATGATAAAGAACCCCGGGCCGTTCATCGCGGCGGGTGCTCGACTGCCGA
GTGGTCTTTTGATGGTGGGGCCGCCTGGGACGGGGAAGACTCTCATGGCG
AGGGTGATGGCGGCAGAGGCCGGTGTTCCGTTTTACTACTGTTCGGGGTC
TGACTTTGTGGAGATGTTCGTGGGACGCGGTGCGGCCAGGGTGCGTAAGC
TTTTCCTCAAGGCGGGGAAGAGCGCACCCTGCATCATCTTCCTGGACGAA
CTTGACGCCCTTGGCAAGGAGCGCTCGATGGGGGAGGGCGACAGGTGTTT
TTACTACTGTTCGGGGTCTGACTTTGTGGAGATGTTCGTGGGACGCGGTG
CGGCCAGGGTGCGTAAGCTTTTCCTCAAGGCGGGGAAGAGCGCACCCTGC
ATCATCTTCCTGGACGAACTTGACGCCCTTGGCAAGGAGCGCTCGATGGG
GGAGGGCGACAGGTGTAATAACGACGAGGCGGAGCAGACTTTGAACCAGC
TGCTGGCGTGCATGGACGGCCTCGACACGAACAACAACGGAGTGATGGTA
ATCGCGGCGACGAACCGATATGAGGTGCTGGACAACGCCCTCACCCGACC
CGGCAGAATAACGACGAGGCGGAGCAGACTTTGAACCAGCTGCTGGCGTG
CATGGACGGCCTCGACACGAACAACAACGGAGTGATGGTAATCGCGGCGA
CGAACCGATATGAGGTGCTGGACAACGCCCTCACCCGACCCGGCAGATTC
GACCGTATCGTGAGGGTGGACGTCCCCGACGCGGCAGGTAGAGAAGCCAT
CTTGAAAGTCCACACGAGAAAGATGAAGATTGAAGACCTTGACGTGTTGC
GGGCAGTGGCGGAGCTTACCCCCGATTCGACCGTATCGTGAGGGTGGACG
TCCCCGACGCGGCAGGTAGAGAAGCCATCTTGAAAGTCCACACGAGAAAG
ATGAAGATTGAAGACCTTGACGTGTTGCGGGCAGTGGCGGAGCTTACCCC
CGGACTTGCCGGGGCGGAGCTAGCCACGATCGCCAATGAGGCTGCCATTG
CGGCCGCTCGAAGAGGGTCGCAACAGCTTCAGCAGGCAGACTTTCTGGAC
TTGCCGGGGCGGAGCTAGCCACGATCGCCAATGAGGCTGCCATTGCGGCC
GCTCGAAGAGGGTCGCAACAGCTTCAGCAGGCAGACTTTCTGGATTCGGT
CACAAACTTCTTCGTCTCCCGAAGAAAGGGCGCGGGCGGTTTGCAAAACA
TGTTTAAGGGCATGCTGACATGAGATTCGGTCACAAACTTCTTCGTCTCC
CGAAGAAAGGGCGCGGGCGGTTTGCAAAACATGTTTAAGGGCATGCTGAC
ATGA
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