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Homology
BLAST of mRNA_P-fluviatile_contig18.3302.1 vs. uniprot
Match: D7G0L8_ECTSI (Translation factor GUF1 homolog, mitochondrial n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G0L8_ECTSI) HSP 1 Score: 1147 bits (2967), Expect = 0.000e+0 Identity = 582/624 (93.27%), Postives = 603/624 (96.63%), Query Frame = 2
Query: 419 RGGLVRMLAKAAVTQEEHETDVSLIRNFSIVAHIDHGKSTLADRLLEYCDAVAKRDMKKQLLDSMDLERERGITIKLNAARIEYPADDGKTYILNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQGVEAQTLANVYLALENDLEIITVLNKIDLPAADPDRVAEEVEATIGLDCTEAIPASAKSGIGIKEILEAVVKNVPPPPGPTGGPLRALIYDSVYDEYKARRLSGVIVYFRIIDGEIRRGDKIMFMANGVEREVIEVGVRKPGAFEVQRLGTGEVGYLVCGVKNVLDARVGDTITNAKEPSTEPLAGYAEAKPMVFCGLYPTDAEDYEILRDSLGKLKLNDAALAYEPEASSAMGFGFRCGFLGLLHMEIVQERLEREYNLDLVITAPSVVYKARLPKGELVDVDSPFKMPDADKRIGTQEPFVRLEILTPQEYTGTLMELCQTRRGVLIDMKFVTPVRGSIIYEIPLAEVITDFFDQVKSRSKGYASMEYQILEWRDQDLVRLDIKINGEDAPPLSTVCHRDQAHQRGKVLTEKLKQLIPRQMFRVPIQACIGVKVVASSAIPPMRKDVLAKCYGGDISRKKKLLNKQAKGKKRMKSMGKVNVPQSAFMAVLDLSND 2290
RG LVRMLAKA ++EE ETDVSLIRNFSIVAHIDHGKSTLADRLLEYCDAVAKR+MKKQLLDSMDLERERGITIKLNAARIEYPA+DGKTY+LNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQGVEAQTLANVYLALENDLEIITVLNKIDLPAADP R+AEEVEATIGLDCTEAIPASAK+G+GI+EILEAVVKNVPPPPGPTGGPLRALIYDSVYDEYK GVIVYFRI+DGEIRRGDKI FMANGVEREVIEVGVRKPGA+E++RLGTGEVGY+VCGVKNVLDARVGDTIT+AKEPS EPL GY EAKPMVFCGLYPTDAEDYEILRDSLGKLKLNDAALAYEPEASSAMGFGFRCGFLGLLHMEIVQERLEREYNLDLVITAPSVVYKAR PKGEL+DVDSPFKMPDADKR GTQEPFVRLE+LTPQEYTGTLMELCQ+RRGVL+DMKFVT RGSIIYEIPLAEVITDFFDQVKSRSKGYASMEYQILEWRDQDLVRLDIKINGEDAPPLSTVCHRDQAHQRGKVLTEKLKQLIPRQMFRVPIQACIGVK VASSAIPPMRKDVLAKCYGGDISRKKKLLNKQAKGKKRMKSMG+VNVPQ AFMAVLDL N+
Sbjct: 97 RGDLVRMLAKATASREETETDVSLIRNFSIVAHIDHGKSTLADRLLEYCDAVAKREMKKQLLDSMDLERERGITIKLNAARIEYPAEDGKTYVLNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQGVEAQTLANVYLALENDLEIITVLNKIDLPAADPYRIAEEVEATIGLDCTEAIPASAKTGVGIQEILEAVVKNVPPPPGPTGGPLRALIYDSVYDEYK-----GVIVYFRIVDGEIRRGDKIKFMANGVEREVIEVGVRKPGAYEMERLGTGEVGYMVCGVKNVLDARVGDTITSAKEPSEEPLDGYEEAKPMVFCGLYPTDAEDYEILRDSLGKLKLNDAALAYEPEASSAMGFGFRCGFLGLLHMEIVQERLEREYNLDLVITAPSVVYKARTPKGELIDVDSPFKMPDADKRSGTQEPFVRLEMLTPQEYTGTLMELCQSRRGVLMDMKFVTSARGSIIYEIPLAEVITDFFDQVKSRSKGYASMEYQILEWRDQDLVRLDIKINGEDAPPLSTVCHRDQAHQRGKVLTEKLKQLIPRQMFRVPIQACIGVKPVASSAIPPMRKDVLAKCYGGDISRKKKLLNKQAKGKKRMKSMGRVNVPQEAFMAVLDLGNE 715
BLAST of mRNA_P-fluviatile_contig18.3302.1 vs. uniprot
Match: A0A836CDX2_9STRA (Translation factor GUF1 homolog, mitochondrial n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A836CDX2_9STRA) HSP 1 Score: 932 bits (2410), Expect = 0.000e+0 Identity = 478/613 (77.98%), Postives = 528/613 (86.13%), Query Frame = 2
Query: 476 TDVSLIRNFSIVAHIDHGKSTLADRLLEYCDAVAKRDMKKQLLDSMDLERERGITIKLNAARIEYPADDGKTYILNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQG-----VEAQTLANVYLALENDLEIITVLNKIDLPAADPDRVAEEVEATIGLDCTEAIPASAKSGIGIKEILEAVVKNVPPPPGPTGGPLRALIYDSVYDEYKARRLSGVIVYFRIIDGEIRRGDKIMFMANGVEREVIEVGVRKPGAFEV-QRLGTGEVGYLVCGVKNVLDARVGDTITNAKEPS---TEPLAGYAEAKPMVFCGLYPTDAEDYEILRDSLGKLKLNDAALAYEPEASSAMGFGFRCGFLGLLHMEIVQERLEREYNLDLVITAPSVVYKARLPKGELVDVDSPFKMPDADKRIGTQEPFVRLEILTPQEYTGTLMELCQTRRGVLIDMKFVTPVRGSIIYEIPLAEVITDFFDQVKSRSKGYASMEYQILEWRDQDLVRLDIKINGEDAPPLSTVCHRDQAHQRGKVLTEKLKQLIPRQMFRVPIQACIGVKVVASSAIPPMRKDVLAKCYGGDISRKKKLLNKQAKGKKRMKSMGKVNVPQSAFMAVLDLSN 2287
+DVS IRNF I+AHIDHGKSTLADRLLE+ V+KRDMK QLLDSMDLERERGITIKLNAARI Y ADDG+TY LNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQG VEAQTLAN YLALEN+LEII VLNKIDLPAADP+R+AEEVEATIGLDCTE + SAK+GIGIKEILE VVK VPPPP PTGGPLRALIYDS YDEYK GV+VYFR++DG +++GDK+ FMA+G + EVIEVGVR P + L GEVGYLV G+K+V+DARVGDTITNA+ P +PL GYAEA PMVFCGLYP DA DYE LRD+LGKLKLNDAALAYEPE SSAMGFGFRCGFLGLLHM++VQERLEREYNLDL++TAPSVVYKA KG + VDSP K+PD DKR EP+VRLEILTPQEYTGTLMELCQ RRG L D+KF+TP RGSIIY++PLAEVITDFFDQVKSRSKGYASMEY + +R+ DLVRLDIKINGE+A PL+++CHRDQAHQRGK LTEKLKQLIPRQMFRVPIQACIG K VASS+I M KDVLAKCYGGDI+RKKKLL KQAKGKKRMK+MGKV+VPQ AFMAVL L++
Sbjct: 13 SDVSNIRNFCIIAHIDHGKSTLADRLLEFTQTVSKRDMKAQLLDSMDLERERGITIKLNAARIMYTADDGETYQLNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQGKLGTRVEAQTLANCYLALENNLEIIPVLNKIDLPAADPERIAEEVEATIGLDCTEPLLCSAKAGIGIKEILERVVKQVPPPPAPTGGPLRALIYDSFYDEYK-----GVVVYFRVMDGAVKKGDKVQFMASGAQHEVIEVGVRTPAEVVLPDGLSAGEVGYLVAGIKDVMDARVGDTITNARLPDGVQVKPLPGYAEANPMVFCGLYPVDASDYESLRDALGKLKLNDAALAYEPETSSAMGFGFRCGFLGLLHMDVVQERLEREYNLDLIVTAPSVVYKAVTTKGAEITVDSPVKLPDGDKRKSVSEPYVRLEILTPQEYTGTLMELCQNRRGELKDLKFLTPTRGSIIYDMPLAEVITDFFDQVKSRSKGYASMEYSLTGYRENDLVRLDIKINGEEAGPLASICHRDQAHQRGKQLTEKLKQLIPRQMFRVPIQACIGAKPVASSSISAMSKDVLAKCYGGDITRKKKLLQKQAKGKKRMKAMGKVSVPQEAFMAVLSLND 620
BLAST of mRNA_P-fluviatile_contig18.3302.1 vs. uniprot
Match: A0A7S2RSX4_9STRA (Translation factor GUF1 homolog, mitochondrial n=1 Tax=Rhizochromulina marina TaxID=1034831 RepID=A0A7S2RSX4_9STRA) HSP 1 Score: 841 bits (2173), Expect = 3.990e-294 Identity = 431/622 (69.29%), Postives = 505/622 (81.19%), Query Frame = 2
Query: 443 AKAAVTQEEHETDVSLIRNFSIVAHIDHGKSTLADRLLEYCDAVAKRDMKKQLLDSMDLERERGITIKLNAARIEYPADDGKTYILNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQGVEAQTLANVYLALENDLEIITVLNKIDLPAADPDRVAEEVEATIGLDCTEAIPASAKSGIGIKEILEAVVKNVPPPPG---------PTGGPLRALIYDSVYDEYKARRLSGVIVYFRIIDGEIRRGDKIMFMANGVEREVIEVGVRKPGAFEVQRLGTGEVGYLVCGVKNVLDARVGDTITNAKEPSTEPLAGYAEAKPMVFCGLYPTDAEDYEILRDSLGKLKLNDAALAYEPEASSAMGFGFRCGFLGLLHMEIVQERLEREYNLDLVITAPSVVYKARLPKGELVDVDSPFKMPDADKRIGTQEPFVRLEILTPQEYTGTLMELCQTRRGVLIDMKFVTPVRGSIIYEIPLAEVITDFFDQVKSRSKGYASMEYQILEWRDQDLVRLDIKINGEDAPPLSTVCHRDQAHQRGKVLTEKLKQLIPRQMFRVPIQACIGVKVVASSAIPPMRKDVLAKCYGGDISRKKKLLNKQAKGKKRMKSMGKVNVPQSAFMAVLDL 2281
A A+ + D S IRNF I+AHIDHGKSTLADRL+E AV +RDM+ QLLDSMD+ERERGITIKLNAAR+EY A DG+ Y+LNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQG+EAQTLAN YLA++++LEII VLNKIDLPAADPDRV EE+E T+GLDCT AI ASAKSGIGI +ILEAVV+ VPPP P LRALIYDS Y+ Y+ GV+V FR++ G +++GDKI FM +G EV EVGV P +V L GEVGYL +K+V+DARVGDTIT K P+ + L GYAEA PMV+CGL+P DA+ YE+LRDSLGKL+LNDAALAYEPE SSAMGFGFRCGFLGLLHMEIVQERLEREY+LDL++TAPSVVY+ GE+ VD+P KMPD + +EP+VR+EI P +YTGTLMEL Q+RRG L D+K++TP R +IIY++PLAEVITDFFD++KSRSKGYASMEY + +R DLVRLD++INGEDAPPL+ +CHR+ A+ GK LTEKLK+LIPRQ F+VPIQACIGVK VASS IPP+RKDVLAKCYGGDISRKKKLL KQAKGKKRMK+MGKVNVPQ AFMAV+++
Sbjct: 55 AGASKGDASFQYDPSRIRNFCIIAHIDHGKSTLADRLIEETGAVQQRDMQAQLLDSMDIERERGITIKLNAARMEYKAADGQVYLLNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQGIEAQTLANCYLAVDSNLEIIPVLNKIDLPAADPDRVGEEIENTLGLDCTGAIQASAKSGIGITDILEAVVQQVPPPSNLQGTSGETDPDAQKLRALIYDSQYESYR-----GVLVKFRVVSGSVKKGDKIRFMNSGASYEVTEVGVTVPTQRQVNELRPGEVGYLAASIKSVMDARVGDTITLDKAPAEKSLPGYAEAVPMVYCGLFPVDADQYELLRDSLGKLRLNDAALAYEPEVSSAMGFGFRCGFLGLLHMEIVQERLEREYDLDLIVTAPSVVYEFENNAGEVTIVDNPAKMPDPANKKEIREPYVRMEIFAPSDYTGTLMELAQSRRGDLQDVKYLTPTRTAIIYDLPLAEVITDFFDELKSRSKGYASMEYTTIGYRANDLVRLDVRINGEDAPPLACICHRNDAYSIGKGLTEKLKELIPRQQFKVPIQACIGVKPVASSVIPPIRKDVLAKCYGGDISRKKKLLQKQAKGKKRMKAMGKVNVPQEAFMAVINV 671
BLAST of mRNA_P-fluviatile_contig18.3302.1 vs. uniprot
Match: A0A7S2CUF1_9STRA (Translation factor GUF1 homolog, mitochondrial n=1 Tax=Dictyocha speculum TaxID=35687 RepID=A0A7S2CUF1_9STRA) HSP 1 Score: 839 bits (2167), Expect = 9.370e-294 Identity = 422/626 (67.41%), Postives = 511/626 (81.63%), Query Frame = 2
Query: 416 HRGGLVRMLAKAAVTQEEHETDVSLIRNFSIVAHIDHGKSTLADRLLEYCDAVAKRDMKKQLLDSMDLERERGITIKLNAARIEYPADDGKTYILNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQGVEAQTLANVYLALENDLEIITVLNKIDLPAADPDRVAEEVEATIGLDCTEAIPASAKSGIGIKEILEAVVKNVPPPPGPT-GGPLRALIYDSVYDEYKARRLSGVIVYFRIIDGEIRRGDKIMFMANGVEREVIEVGVRKPGAFEVQRLGTGEVGYLVCGVKNVLDARVGDTITNAKEPSTEPLAGYAEAKPMVFCGLYPTDAEDYEILRDSLGKLKLNDAALAYEPEASSAMGFGFRCGFLGLLHMEIVQERLEREYNLDLVITAPSVVYKARLPKGELVDVDSPFKMPDADKRIGTQEPFVRLEILTPQEYTGTLMELCQTRRGVLIDMKFVTPVRGSIIYEIPLAEVITDFFDQVKSRSKGYASMEYQILEWRDQDLVRLDIKINGEDAPPLSTVCHRDQAHQRGKVLTEKLKQLIPRQMFRVPIQACIGVKVVASSAIPPMRKDVLAKCYGGDISRKKKLLNKQAKGKKRMKSMGKVNVPQSAFMAVLDLSND 2290
HR + + AA ++E +E D+S IRNF I+AHIDHGKSTLADR++EY VAKR+MK QLLD+MD+ERERGITIKLNAAR+EY ADDG Y LNLIDTPGHVDFSYEVSRSL ACEGALLVVDA+QG+EAQTLAN YLA+++ LEII VLNKIDLPAADPDRVA+EVE TIG+DCT+AI ASAKSGIGIKEILE++V+NVPPP P PLR LIYDS+Y+ Y+ GVIV FR++ GE+R+GDKI+FM +V E+GV P +V L +GEVGY +K+V DAR GDT+T P+ + L GY+EA PMV+CGL+P DA+DY LRD++ +L+L+DAAL++EPE SSAMGFGFRCGFLGLLHMEIVQERLEREYN+DL++TAPSVVY G++ VD+P KMPD+ R QEP+VR+EI TP +YTG++M+L Q RRG L D+K++T R +IY++PLAEVITDFFD++KSR+KGYASM+Y + +R DLVRLD+KINGEDA PL+T+ H+D AH GK LTEKLK++IPRQ+FRVPIQACIGVK VASSAIPPMRKDVLAKCYGGDISRKKKLL KQAKGKKRMKSMGKVNVPQ AFMA++++ +
Sbjct: 20 HRAEVTHLRLHAAQSEEVYEYDISRIRNFCIIAHIDHGKSTLADRMIEYTGTVAKREMKAQLLDTMDIERERGITIKLNAARMEYLADDGLIYQLNLIDTPGHVDFSYEVSRSLEACEGALLVVDAAQGIEAQTLANCYLAVDSGLEIIPVLNKIDLPAADPDRVAQEVENTIGIDCTDAILASAKSGIGIKEILESIVRNVPPPAVPEPDAPLRMLIYDSLYESYR-----GVIVNFRVVSGELRKGDKILFMNTDKSYDVTELGVNLPAQKQVPLLRSGEVGYFCAAIKSVDDARTGDTVTLKNNPAPDALPGYSEAIPMVYCGLFPVDADDYGGLRDAIERLRLSDAALSFEPETSSAMGFGFRCGFLGLLHMEIVQERLEREYNIDLIVTAPSVVYHFYHKNGDMTVVDNPSKMPDSADREEVQEPYVRMEIFTPSDYTGSVMKLAQQRRGDLQDVKYLTETRTCVIYDVPLAEVITDFFDEMKSRTKGYASMDYTPIGYRANDLVRLDVKINGEDASPLATIVHKDSAHSIGKALTEKLKEVIPRQLFRVPIQACIGVKPVASSAIPPMRKDVLAKCYGGDISRKKKLLQKQAKGKKRMKSMGKVNVPQEAFMAIINVKRE 640
BLAST of mRNA_P-fluviatile_contig18.3302.1 vs. uniprot
Match: GUF1_PHATC (Translation factor GUF1 homolog, mitochondrial n=2 Tax=Phaeodactylum tricornutum TaxID=2850 RepID=GUF1_PHATC) HSP 1 Score: 833 bits (2153), Expect = 8.070e-291 Identity = 423/612 (69.12%), Postives = 498/612 (81.37%), Query Frame = 2
Query: 479 DVSLIRNFSIVAHIDHGKSTLADRLLEYCDAVAKRDMKKQLLDSMDLERERGITIKLNAARIEYPADDGKTYILNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQGVEAQTLANVYLALENDLEIITVLNKIDLPAADPDRVAEEVEATIGLDCTEAIPASAKSGIGIKEILEAVVKNVPPPPGPTGGPLRALIYDSVYDEYKARRLSGVIVYFRIIDGEIRRGDKIMFMANGVEREVIEVGVRKPGAFEVQRLGTGEVGYLVCGVKNVLDARVGDTITNAKE----------PSTEPLAGYAEAKPMVFCGLYPTDAEDYEILRDSLGKLKLNDAALAYEPEASSAMGFGFRCGFLGLLHMEIVQERLEREYNLDLVITAPSVVYKARLPKGELVDVDSPFKMPDADKRIGTQEPFVRLEILTPQEYTGTLMELCQTRRGVLIDMKFVTPVRGSIIYEIPLAEVITDFFDQVKSRSKGYASMEYQILEWRDQDLVRLDIKINGEDAPPLSTVCHRDQAHQRGKVLTEKLKQLIPRQMFRVPIQACIGVKVVASSAIPPMRKDVLAKCYGGDISRKKKLLNKQAKGKKRMKSMGKVNVPQSAFMAVLDLS 2284
D IRNFSI+AHIDHGKSTLADRLLE VA+RDM+ QLLD+MDLERERGITIKL AAR+ Y A DG+ Y LNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQG+EAQTLANVYLALENDLEII +LNKIDLPAADP+RVAEE+EATIGLDC+ + ASAK+GIGI +ILE +V+ VPPPP TGGP RALI+DS YD Y+ GVIV+FR++DGE+ +GDK+ F+A+ E +V EVG+ +P V L GEVGYL +K+VLDARVGDTI AKE P E L GYA++ PMV+CGL+P DA+ YE LRD+LGKL+LNDAAL+YEPE+S AMGFGFRCGFLGLLHMEIVQERL+REY++DL++TAPSVVYK + E +D+P KMPD + EP+VR+E+LTP EY G ++EL Q RRG LID+KF+TP R +I+YE+PLAEVITDFFDQ+KSR+KGYASMEY ++++R DLVRLD+KIN E APPL+ V HRD+A G+ L LK LIPRQMF++PIQACIGVKV+AS +I PMRKDVLAKCYGGDISRKKKLL KQAKGKKRMKS+GKVNVPQ AFMAVL L+
Sbjct: 86 DAQKIRNFSIIAHIDHGKSTLADRLLETTQTVAQRDMEAQLLDNMDLERERGITIKLQAARVLYQARDGEMYCLNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQGIEAQTLANVYLALENDLEIIPILNKIDLPAADPERVAEEIEATIGLDCSGIVHASAKTGIGIDDILERIVQMVPPPPAATGGPFRALIFDSYYDAYR-----GVIVFFRVMDGEVSQGDKVRFLASDAEHDVTEVGIMQPNQVPVDCLHAGEVGYLWGNIKDVLDARVGDTIVLAKEYKESASKGKSPPIEALPGYADSVPMVYCGLFPVDADQYESLRDALGKLRLNDAALSYEPESSGAMGFGFRCGFLGLLHMEIVQERLQREYDIDLIVTAPSVVYKVKKEHQEEFFIDTPAKMPDLGRNDVALEPYVRMEVLTPSEYNGAIIELGQERRGDLIDIKFLTPTRSTIVYELPLAEVITDFFDQLKSRTKGYASMEYSLIDYRASDLVRLDVKINYEMAPPLACVVHRDKAQSIGRRLCASLKDLIPRQMFKIPIQACIGVKVIASESISPMRKDVLAKCYGGDISRKKKLLQKQAKGKKRMKSIGKVNVPQEAFMAVLKLN 692
BLAST of mRNA_P-fluviatile_contig18.3302.1 vs. uniprot
Match: A0A7S1Y012_9STRA (Translation factor GUF1 homolog, mitochondrial n=1 Tax=Grammatophora oceanica TaxID=210454 RepID=A0A7S1Y012_9STRA) HSP 1 Score: 834 bits (2154), Expect = 8.460e-291 Identity = 422/622 (67.85%), Postives = 503/622 (80.87%), Query Frame = 2
Query: 473 ETDVSLIRNFSIVAHIDHGKSTLADRLLEYCDAVAKRDMKKQLLDSMDLERERGITIKLNAARIEYPAD-DGKTYILNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQGVEAQTLANVYLALENDLEIITVLNKIDLPAADPDRVAEEVEATIGLDCTEAIPASAKSGIGIKEILEAVVKNVPPPPGPTGGPLRALIYDSVYDEYKARRLSGVIVYFRIIDGEIRRGDKIMFMANGVEREVIEVGVRKPGAFEVQRLGTGEVGYLVCGVKNVLDARVGDTITNAKE--------------PSTEPLAGYAEAKPMVFCGLYPTDAEDYEILRDSLGKLKLNDAALAYEPEASSAMGFGFRCGFLGLLHMEIVQERLEREYNLDLVITAPSVVYKARLP-KGELVDVDSPFKMPDADKRIGTQEPFVRLEILTPQEYTGTLMELCQTRRGVLIDMKFVTPVRGSIIYEIPLAEVITDFFDQVKSRSKGYASMEYQILEWRDQDLVRLDIKINGEDAPPLSTVCHRDQAHQRGKVLTEKLKQLIPRQMFRVPIQACIGVKVVASSAIPPMRKDVLAKCYGGDISRKKKLLNKQAKGKKRMKSMGKVNVPQSAFMAVLDLSND 2290
E D IRNFSI+AHIDHGKSTLADRLLE VA RDM+ QLLD+MD+ERERGITIKL AAR++Y + DG+ Y LNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQG+EAQTLANVYLALENDLEII VLNKIDLP+ADPDRV+EE+E TIGLDC++ + ASAK+GIGI +ILE++V+ +PPPP TGGPLRALI+DS +D Y+ GVIV+FR++DG +++GDKI F+A+ E EV EVGV P V L GEVGY+ +K+VLDARVGDTI +KE P EPL GYA++ PMV+CGL+P D E YE LRDSLGKL+LNDAAL+YEPE S AMGFGFRCGFLGLLHMEIVQERL REY+LDL++TAPSVVY+ + GE VD+P KMPD + + T EP+VR+EILTP EY G ++EL Q RRG LID+ F+TP R +I+YE+PL EVITDFFDQ+KSR+KGYASMEY I+++R DLVRLD+KIN EDA PL+T+ HRD A G+ LT LK LIPRQMF+VPIQAC+G KV+AS++I PMRKDVLAKCYGGD+SRKKKLL KQAKGKKRMK++GKVNVPQ AFMAV++++N+
Sbjct: 86 EYDSERIRNFSIIAHIDHGKSTLADRLLETTQTVATRDMEAQLLDNMDIERERGITIKLQAARVQYRSKVDGEMYTLNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQGIEAQTLANVYLALENDLEIIPVLNKIDLPSADPDRVSEEIETTIGLDCSDVVMASAKTGIGIDDILESIVQKIPPPPTATGGPLRALIFDSKFDAYR-----GVIVFFRVVDGSLKKGDKIRFLASQAEHEVTEVGVMTPNQVPVDELRAGEVGYVCGSIKDVLDARVGDTIVLSKEFNQAAAAAERGDDSPPIEPLPGYADSVPMVYCGLFPVDGEQYERLRDSLGKLRLNDAALSYEPETSGAMGFGFRCGFLGLLHMEIVQERLSREYDLDLIVTAPSVVYRVQDSLSGEETVVDAPSKMPDMTRELATLEPYVRMEILTPSEYNGPIIELGQERRGQLIDINFLTPTRSTIVYELPLGEVITDFFDQLKSRTKGYASMEYSIIDYRKSDLVRLDVKINYEDASPLATIVHRDAAQSVGRKLTASLKDLIPRQMFKVPIQACVGAKVIASTSISPMRKDVLAKCYGGDLSRKKKLLQKQAKGKKRMKAIGKVNVPQEAFMAVINMNNN 702
BLAST of mRNA_P-fluviatile_contig18.3302.1 vs. uniprot
Match: A0A4D9CYR1_9STRA (Tr-type G domain-containing protein n=2 Tax=Monodopsidaceae TaxID=425072 RepID=A0A4D9CYR1_9STRA) HSP 1 Score: 835 bits (2156), Expect = 4.570e-290 Identity = 424/612 (69.28%), Postives = 504/612 (82.35%), Query Frame = 2
Query: 452 AVTQEEHETDVSLIRNFSIVAHIDHGKSTLADRLLEYCDAVAKRDMKKQLLDSMDLERERGITIKLNAARIEYPADDGKTYILNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQGVEAQTLANVYLALENDLEIITVLNKIDLPAADPDRVAEEVEATIGLDCTEAIPASAKSGIGIKEILEAVVKNVPPPPGPTGGPLRALIYDSVYDEYKARRLSGVIVYFRIIDGEIRRGDKIMFMANGVEREVIEVGVRKPGAFEVQRLGTGEVGYLVCGVKNVLDARVGDTITNAKEPSTEPLAGYAEAKPMVFCGLYPTDAEDYEILRDSLGKLKLNDAALAYEPEASSAMGFGFRCGFLGLLHMEIVQERLEREYNLDLVITAPSVVYKARLPKGELVDVDSPFKMPDADKRIGTQEPFVRLEILTPQEYTGTLMELCQTRRGVLIDMKFVTPVRGSIIYEIPLAEVITDFFDQVKSRSKGYASMEYQILEWRDQDLVRLDIKINGEDAPPLSTVCHRDQAHQRGKVLTEKLKQLIPRQMFRVPIQACIGVKVVASSAIPPMRKDVLAKCYGGDISRKKKLLNKQAKGKKRMKSMGKVNVPQSAFMAVLDLSN 2287
A E + DV +RNFSI+AHIDHGKSTLADRLLE VA RDMK QLLDSMD+ERERGITIKLNAAR+ Y A DG+ YILNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQGVEAQTLANVYLALENDLEII VLNKIDLPAADPDRV EE+E T+GLDCTEA+ ASAKSGIGI +ILE +V VPPP PTGGPL+ALI+DS Y Y+ GV+VYFR++DGEIR D++ FMA+G E EV+EVG P V+ L GEVGYL +K V DARVGDTIT+A+ ++E L GYAEA P VF GL+P DA+ +E+LR+SLGKLKL+DAA+++EPE +SAMGFGFR GFLGLLHM+IVQERLEREYNLDL++TAPSVVYK + E + +D+P K+P A +R EP+VR+E+L P +YTG+LMEL Q +RG L +MK++TP R ++IY++PLAEVITDFFD++KSRSKGYASMEY ++ +R+ DLVRLD++IN E+A PL+ + HRD+++ GK LTEKLK+LIPRQMF+VPIQACIG KVVAS A+ MRKDVLAKCYGGD+SRKKKLL KQAKGKKRMK+MGKV+VPQ AF AVL L +
Sbjct: 163 ATAAELGKYDVKRVRNFSIIAHIDHGKSTLADRLLESTKTVATRDMKAQLLDSMDIERERGITIKLNAARMLYRAKDGEDYILNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQGVEAQTLANVYLALENDLEIIPVLNKIDLPAADPDRVQEEIEQTVGLDCTEAVRASAKSGIGIDDILEQIVARVPPPAPPTGGPLKALIFDSYYCPYR-----GVVVYFRVVDGEIRPKDRVKFMASGKEYEVVEVGFMTPEKRAVEVLRAGEVGYLSAAIKAVEDARVGDTITSARGGASEALPGYAEANPTVFAGLFPVDADQFEVLRESLGKLKLSDAAISFEPEKNSAMGFGFRVGFLGLLHMDIVQERLEREYNLDLIVTAPSVVYKVLTNRDEEISIDTPAKLPPATERKAIYEPYVRVEMLAPTDYTGSLMELAQDKRGELKEMKYLTPTRTALIYDMPLAEVITDFFDELKSRSKGYASMEYSLVGYRENDLVRLDVRINDEEATPLACIVHRDKSYAVGKALTEKLKELIPRQMFKVPIQACIGGKVVASCALSAMRKDVLAKCYGGDVSRKKKLLQKQAKGKKRMKTMGKVSVPQEAFQAVLKLKS 769
BLAST of mRNA_P-fluviatile_contig18.3302.1 vs. uniprot
Match: A0A8J7DBU1_9CYAN (Elongation factor 4 n=1 Tax=Romeria aff. gracilis LEGE 07310 TaxID=915328 RepID=A0A8J7DBU1_9CYAN) HSP 1 Score: 827 bits (2136), Expect = 1.060e-289 Identity = 413/600 (68.83%), Postives = 495/600 (82.50%), Query Frame = 2
Query: 482 VSLIRNFSIVAHIDHGKSTLADRLLEYCDAVAKRDMKKQLLDSMDLERERGITIKLNAARIEYPADDGKTYILNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQGVEAQTLANVYLALENDLEIITVLNKIDLPAADPDRVAEEVEATIGLDCTEAIPASAKSGIGIKEILEAVVKNVPPPPGPTGGPLRALIYDSVYDEYKARRLSGVIVYFRIIDGEIRRGDKIMFMANGVEREVIEVGVRKPGAFEVQRLGTGEVGYLVCGVKNVLDARVGDTITNAKEPSTEPLAGYAEAKPMVFCGLYPTDAEDYEILRDSLGKLKLNDAALAYEPEASSAMGFGFRCGFLGLLHMEIVQERLEREYNLDLVITAPSVVYKARLPKGELVDVDSPFKMPDADKRIGTQEPFVRLEILTPQEYTGTLMELCQTRRGVLIDMKFVTPVRGSIIYEIPLAEVITDFFDQVKSRSKGYASMEYQILEWRDQDLVRLDIKINGEDAPPLSTVCHRDQAHQRGKVLTEKLKQLIPRQMFRVPIQACIGVKVVASSAIPPMRKDVLAKCYGGDISRKKKLLNKQAKGKKRMKSMGKVNVPQSAFMAVLDL 2281
V+ IRNFSI+AHIDHGKSTLADRLL+ V+ RDMK Q LDSMDLERERGITIKL AAR+ Y A DG+ Y+LNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQGVEAQTLANVYLALE+DLEII VLNK+DLP A+PDRV +E+E IGLDC++AI ASAK GIGI EILE++V VPPPP T PLRALI+DS YD Y+ GVIVYFR++DG +RR D++ MA+G E E+ E+GV P EV+ L GEVGY +K+V DARVGDTIT KEP+ +PL GY EAKPMVFCGL+PTD+E YE LR++L KL+LNDAAL YEPE SSAMGFGFRCGFLGLLHMEIVQERLEREYNLDL+ TAPSVVY+ KGE++++D+P ++PD R +EP+VR++I+TP+E+ G LMELCQTRRG +MK++TP R ++IYE+PLAE++TDFFDQ+KSR++GYASMEYQ++ +R LVRLDI I+G+ PL+T+ HRD+A+ GK LTEKLK+LIPR F++P+QA IG +VVAS +IP +RKDVLAKCYGGDISRKKKLL KQAKGKKR+KS+G V+VPQ AFMAVL L
Sbjct: 6 VARIRNFSIIAHIDHGKSTLADRLLQQTGTVSDRDMKAQFLDSMDLERERGITIKLQAARMNYRAQDGQEYVLNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQGVEAQTLANVYLALEHDLEIIPVLNKVDLPGAEPDRVKQEIEEIIGLDCSQAILASAKEGIGINEILESIVLLVPPPPDQTRQPLRALIFDSYYDSYR-----GVIVYFRVMDGAVRRKDRVRLMASGKEYEIDELGVLSPQQVEVEELHAGEVGYFAASIKSVEDARVGDTITLVKEPAEKPLPGYVEAKPMVFCGLFPTDSEQYEDLREALDKLRLNDAALQYEPETSSAMGFGFRCGFLGLLHMEIVQERLEREYNLDLITTAPSVVYQVTTIKGEVLEIDNPCELPDPQYREKIEEPYVRVDIITPEEFVGPLMELCQTRRGEFANMKYLTPGRTTLIYELPLAEIVTDFFDQMKSRTRGYASMEYQLIGYRPNPLVRLDIMIHGDPVDPLATIVHRDKAYYVGKALTEKLKELIPRHQFKIPVQAAIGSRVVASESIPALRKDVLAKCYGGDISRKKKLLQKQAKGKKRLKSIGTVDVPQEAFMAVLKL 600
BLAST of mRNA_P-fluviatile_contig18.3302.1 vs. uniprot
Match: A0A7S1BSZ1_9STRA (Translation factor GUF1 homolog, mitochondrial n=1 Tax=Corethron hystrix TaxID=216773 RepID=A0A7S1BSZ1_9STRA) HSP 1 Score: 830 bits (2143), Expect = 1.900e-289 Identity = 412/622 (66.24%), Postives = 507/622 (81.51%), Query Frame = 2
Query: 455 VTQEEHETDVSLIRNFSIVAHIDHGKSTLADRLLEYCDAVAKRDMKKQLLDSMDLERERGITIKLNAARIEYPADDGKTYILNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQGVEAQTLANVYLALENDLEIITVLNKIDLPAADPDRVAEEVEATIGLDCTEAIPASAKSGIGIKEILEAVVKNVPPPPGPTGG----PLRALIYDSVYDEYKARRLSGVIVYFRIIDGEIRRGDKIMFMANGVEREVIEVGVRKPGAFEVQRLGTGEVGYLVCGVKNVLDARVGDTITNAKE---------PSTEPLAGYAEAKPMVFCGLYPTDAEDYEILRDSLGKLKLNDAALAYEPEASSAMGFGFRCGFLGLLHMEIVQERLEREYNLDLVITAPSVVYKARLPKGELVDVDSPFKMPDADKRIGTQEPFVRLEILTPQEYTGTLMELCQTRRGVLIDMKFVTPVRGSIIYEIPLAEVITDFFDQVKSRSKGYASMEYQILEWRDQDLVRLDIKINGEDAPPLSTVCHRDQAHQRGKVLTEKLKQLIPRQMFRVPIQACIGVKVVASSAIPPMRKDVLAKCYGGDISRKKKLLNKQAKGKKRMKSMGKVNVPQSAFMAVLDL 2281
+T + E D++ IRNFSI+AHIDHGKSTLADR+LE VA RDM+ QLLD+MD+ERERGITIKL AAR+ Y A DG Y LNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQG+EAQT+ANVYLALENDLE I VLNKIDLPAA+P+RVAEE+E TIGLDCT + ASAKSGIGI +I+E +V+ VPPP G PL+ALI+DS+YD+Y+ G++V+FR++DG++++GDK+ FMA+G E +V E+GV P V L GEVGY+ ++N+ DA+VGDTIT A + EPLAGY+E+ PMVFCGL+P DA+ YE LR+S+GKLKLNDA+L +EPE SSAMGFGFRCGFLGLLHMEI+QERLEREYNLDL++TAP+V YK + +DVD+P KMPD+D+ I T EP+V +E+LTP EY G ++EL Q RRG+L+D+KF++P R +IIYEIPLAEVI+DFFD +KSR++GYASMEY+++++R+ DLVRLD+KIN EDA PLST+ HRD A + G+ LT LK+LIPRQMF++PIQAC+GVK++ASS I PMRKDVLAKCYGGDISRKKKLL KQAKGKKRMK+MGKV+VPQ AFMAVL +
Sbjct: 62 ITAADLEYDITKIRNFSIIAHIDHGKSTLADRILESTRTVAVRDMQSQLLDNMDIERERGITIKLQAARVFYRARDGVVYTLNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQGIEAQTVANVYLALENDLECIPVLNKIDLPAAEPERVAEEIEDTIGLDCTNIVQASAKSGIGIDDIMERIVQEVPPPETADGDGETVPLKALIFDSMYDQYR-----GIVVFFRVVDGQLKKGDKVRFMASGSEYDVTEIGVMVPHQVPVDVLKAGEVGYIAASIRNIEDAKVGDTITKAVQFKHANADDGTPYEPLAGYSESTPMVFCGLFPVDADQYEALRESIGKLKLNDASLTFEPENSSAMGFGFRCGFLGLLHMEIIQERLEREYNLDLIVTAPAVKYKIKRGDEPFIDVDAPSKMPDSDREIKTFEPYVHVEVLTPSEYNGAIIELGQERRGILLDIKFLSPTRSTIIYEIPLAEVISDFFDVLKSRTRGYASMEYRLIDYRESDLVRLDVKINYEDATPLSTIVHRDAAQKVGRALTASLKELIPRQMFKIPIQACVGVKIIASSVISPMRKDVLAKCYGGDISRKKKLLQKQAKGKKRMKAMGKVSVPQEAFMAVLKM 678
BLAST of mRNA_P-fluviatile_contig18.3302.1 vs. uniprot
Match: UPI001A0D4E73 (Elongation factor 4 n=1 Tax=filamentous cyanobacterium LEGE 11480 TaxID=2777977 RepID=UPI001A0D4E73) HSP 1 Score: 821 bits (2121), Expect = 2.200e-287 Identity = 412/606 (67.99%), Postives = 490/606 (80.86%), Query Frame = 2
Query: 473 ETDVSLIRNFSIVAHIDHGKSTLADRLLEYCDAVAKRDMKKQLLDSMDLERERGITIKLNAARIEYPADDGKTYILNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQGVEAQTLANVYLALENDLEIITVLNKIDLPAADPDRVAEEVEATIGLDCTEAIPASAKSGIGIKEILEAVVKNVPPPPGPTGGPLRALIYDSVYDEYKARRLSGVIVYFRIIDGEIRRGDKIMFMANGVEREVIEVGVRKPGAFEVQRLGTGEVGYLVCGVKNVLDARVGDTITNAKEPSTEPLAGYAEAKPMVFCGLYPTDAEDYEILRDSLGKLKLNDAALAYEPEASSAMGFGFRCGFLGLLHMEIVQERLEREYNLDLVITAPSVVYKARLPKGELVDVDSPFKMPDADKRIGTQEPFVRLEILTPQEYTGTLMELCQTRRGVLIDMKFVTPVRGSIIYEIPLAEVITDFFDQVKSRSKGYASMEYQILEWRDQDLVRLDIKINGEDAPPLSTVCHRDQAHQRGKVLTEKLKQLIPRQMFRVPIQACIGVKVVASSAIPPMRKDVLAKCYGGDISRKKKLLNKQAKGKKRMKSMGKVNVPQSAFMAVLDLSND 2290
+ V IRNFSI+AHIDHGKSTLADRLL+ V RDMK+Q LDSMD+ERERGITIKL AAR+ Y A DG+ YILNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQGVEAQTLANVYLALENDLE+I VLNKIDLP A+PDRVA E+E IGLDCTEAI ASAK+GIGI ILE++VK+VPPP PLRAL++DS YD Y+ GV+VYFR++DG ++ GDK+ FMA+G E + EVGV P +V L GEVGYL +K V DARVGDTIT A +P+ EP GY EA PMVFCGL+PTDA+ + LR++L KL+LNDAAL YEPE SSAMGFGFRCGFLGLLHMEIVQERLEREYNLDL+ TAPSVVY+ K E+V VD+P +PD R +EP+V++E++TP+ Y GTLMELCQ RRG IDMK++TP R +++YE+PLAEV+TDFFDQ+KSRS+GYASMEYQ++ +R +LV+LD+ ING+ PL+T+ HRD+A+ G+ L EKLK+LIPR F++PIQA IG KV+AS IP +RKDVLAKCYGGDISRKKKLL KQAKGKKRMKS+G V+VPQ+AFMAVL + +D
Sbjct: 3 DVPVQRIRNFSIIAHIDHGKSTLADRLLQETGTVESRDMKEQFLDSMDIERERGITIKLQAARMNYTAQDGEEYILNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQGVEAQTLANVYLALENDLEVIPVLNKIDLPGAEPDRVAGEIEEVIGLDCTEAIQASAKAGIGIDAILESIVKDVPPPQDNVDKPLRALVFDSYYDAYR-----GVVVYFRVMDGTVKTGDKVRFMASGKEYVLDEVGVLAPNQVKVDALHAGEVGYLSASIKAVEDARVGDTITLATKPAKEPFPGYVEATPMVFCGLFPTDADQFPDLREALDKLRLNDAALQYEPETSSAMGFGFRCGFLGLLHMEIVQERLEREYNLDLITTAPSVVYRVTTIKDEVVLVDNPAHLPDVQHREKMEEPYVKMEVITPETYVGTLMELCQQRRGAFIDMKYLTPGRTTLVYEMPLAEVVTDFFDQMKSRSRGYASMEYQLIGYRVNNLVKLDVMINGDPVDPLATIVHRDKAYGVGRALAEKLKELIPRHQFKIPIQAAIGAKVIASEHIPALRKDVLAKCYGGDISRKKKLLQKQAKGKKRMKSIGTVDVPQAAFMAVLKIGSD 603
The following BLAST results are available for this feature:
Alignments
The following features are aligned
Analyses
This mRNA is derived from or has results from the following analyses
Properties
| Property Name | Value |
| Taxonomic scope | Eukaryota |
| Seed ortholog score | 1150.6 |
| Seed ortholog evalue | 0.0 |
| Seed eggNOG ortholog | 2880.D7G0L8 |
| Preferred name | LEPA |
| KEGG ko | ko:K03596,ko:K04771,ko:K21594 |
| KEGG Pathway | ko01503,ko02020,ko05134,map01503,map02020,map05134 |
| KEGG Module | M00728 |
| GOs | GO:0000166,GO:0000287,GO:0001882,GO:0001883,GO:0003674,GO:0003676,GO:0003723,GO:0003746,GO:0003824,GO:0003924,GO:0005488,GO:0005515,GO:0005525,GO:0005575,GO:0005622,GO:0005623,GO:0005737,GO:0006412,GO:0006414,GO:0006518,GO:0006807,GO:0008135,GO:0008150,GO:0008152,GO:0009058,GO:0009059,GO:0009507,GO:0009536,GO:0009987,GO:0010467,GO:0016462,GO:0016787,GO:0016817,GO:0016818,GO:0017076,GO:0017111,GO:0019001,GO:0019003,GO:0019538,GO:0019904,GO:0032549,GO:0032550,GO:0032553,GO:0032555,GO:0032561,GO:0034641,GO:0034645,GO:0035639,GO:0036094,GO:0043021,GO:0043022,GO:0043043,GO:0043167,GO:0043168,GO:0043169,GO:0043170,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0043603,GO:0043604,GO:0044237,GO:0044238,GO:0044249,GO:0044260,GO:0044267,GO:0044271,GO:0044424,GO:0044444,GO:0044464,GO:0044877,GO:0046872,GO:0061745,GO:0071704,GO:0097159,GO:0097367,GO:1901265,GO:1901363,GO:1901564,GO:1901566,GO:1901576 |
| EggNOG free text desc. | GTPase activity |
| EggNOG OGs | COG0481@1,KOG0462@2759 |
| EC | 3.4.21.107 |
| COG Functional cat. | J |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko00001,ko00002,ko01000,ko01002,ko03029,ko03110 |
| Hectar predicted targeting category | other localisation |
| Ec32 ortholog description | PEF4, plastid translation elongation factor EF4 (LepA) |
| Ec32 ortholog | Ec-06_007260.1 |
| Exons | 15 |
| Model size | 3122 |
| Cds size | 2238 |
| Stop | 1 |
| Start | 1 |
Relationships
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815772.1599588-UTR-P-fluviatile_contig18:1881395..1881450 | 1622815772.1599588-UTR-P-fluviatile_contig18:1881395..1881450 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig18 1881396..1881450 + |
| 1693563281.6326337-UTR-P-fluviatile_contig18:1881395..1881450 | 1693563281.6326337-UTR-P-fluviatile_contig18:1881395..1881450 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig18 1881396..1881450 + |
| 1622815772.3419268-UTR-P-fluviatile_contig18:1900877..1901706 | 1622815772.3419268-UTR-P-fluviatile_contig18:1900877..1901706 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig18 1900878..1901706 + |
| 1693563281.811244-UTR-P-fluviatile_contig18:1900877..1901706 | 1693563281.811244-UTR-P-fluviatile_contig18:1900877..1901706 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig18 1900878..1901706 + |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815772.1733925-CDS-P-fluviatile_contig18:1881450..1881944 | 1622815772.1733925-CDS-P-fluviatile_contig18:1881450..1881944 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1881451..1881944 + |
| 1693563281.6439412-CDS-P-fluviatile_contig18:1881450..1881944 | 1693563281.6439412-CDS-P-fluviatile_contig18:1881450..1881944 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1881451..1881944 + |
| 1622815772.184987-CDS-P-fluviatile_contig18:1884393..1884586 | 1622815772.184987-CDS-P-fluviatile_contig18:1884393..1884586 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1884394..1884586 + |
| 1693563281.658179-CDS-P-fluviatile_contig18:1884393..1884586 | 1693563281.658179-CDS-P-fluviatile_contig18:1884393..1884586 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1884394..1884586 + |
| 1622815772.1948738-CDS-P-fluviatile_contig18:1885818..1885995 | 1622815772.1948738-CDS-P-fluviatile_contig18:1885818..1885995 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1885819..1885995 + |
| 1693563281.6700153-CDS-P-fluviatile_contig18:1885818..1885995 | 1693563281.6700153-CDS-P-fluviatile_contig18:1885818..1885995 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1885819..1885995 + |
| 1622815772.2065258-CDS-P-fluviatile_contig18:1887304..1887388 | 1622815772.2065258-CDS-P-fluviatile_contig18:1887304..1887388 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1887305..1887388 + |
| 1693563281.6796093-CDS-P-fluviatile_contig18:1887304..1887388 | 1693563281.6796093-CDS-P-fluviatile_contig18:1887304..1887388 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1887305..1887388 + |
| 1622815772.219567-CDS-P-fluviatile_contig18:1888370..1888475 | 1622815772.219567-CDS-P-fluviatile_contig18:1888370..1888475 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1888371..1888475 + |
| 1693563281.6893027-CDS-P-fluviatile_contig18:1888370..1888475 | 1693563281.6893027-CDS-P-fluviatile_contig18:1888370..1888475 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1888371..1888475 + |
| 1622815772.2342243-CDS-P-fluviatile_contig18:1893617..1893704 | 1622815772.2342243-CDS-P-fluviatile_contig18:1893617..1893704 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1893618..1893704 + |
| 1693563281.7012482-CDS-P-fluviatile_contig18:1893617..1893704 | 1693563281.7012482-CDS-P-fluviatile_contig18:1893617..1893704 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1893618..1893704 + |
| 1622815772.2458103-CDS-P-fluviatile_contig18:1893917..1894056 | 1622815772.2458103-CDS-P-fluviatile_contig18:1893917..1894056 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1893918..1894056 + |
| 1693563281.7126029-CDS-P-fluviatile_contig18:1893917..1894056 | 1693563281.7126029-CDS-P-fluviatile_contig18:1893917..1894056 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1893918..1894056 + |
| 1622815772.260444-CDS-P-fluviatile_contig18:1894991..1895077 | 1622815772.260444-CDS-P-fluviatile_contig18:1894991..1895077 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1894992..1895077 + |
| 1693563281.7226064-CDS-P-fluviatile_contig18:1894991..1895077 | 1693563281.7226064-CDS-P-fluviatile_contig18:1894991..1895077 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1894992..1895077 + |
| 1622815772.2701519-CDS-P-fluviatile_contig18:1895789..1895881 | 1622815772.2701519-CDS-P-fluviatile_contig18:1895789..1895881 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1895790..1895881 + |
| 1693563281.731843-CDS-P-fluviatile_contig18:1895789..1895881 | 1693563281.731843-CDS-P-fluviatile_contig18:1895789..1895881 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1895790..1895881 + |
| 1622815772.28029-CDS-P-fluviatile_contig18:1896835..1896941 | 1622815772.28029-CDS-P-fluviatile_contig18:1896835..1896941 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1896836..1896941 + |
| 1693563281.7416182-CDS-P-fluviatile_contig18:1896835..1896941 | 1693563281.7416182-CDS-P-fluviatile_contig18:1896835..1896941 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1896836..1896941 + |
| 1622815772.2902713-CDS-P-fluviatile_contig18:1897302..1897416 | 1622815772.2902713-CDS-P-fluviatile_contig18:1897302..1897416 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1897303..1897416 + |
| 1693563281.755699-CDS-P-fluviatile_contig18:1897302..1897416 | 1693563281.755699-CDS-P-fluviatile_contig18:1897302..1897416 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1897303..1897416 + |
| 1622815772.300132-CDS-P-fluviatile_contig18:1898115..1898229 | 1622815772.300132-CDS-P-fluviatile_contig18:1898115..1898229 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1898116..1898229 + |
| 1693563281.7644792-CDS-P-fluviatile_contig18:1898115..1898229 | 1693563281.7644792-CDS-P-fluviatile_contig18:1898115..1898229 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1898116..1898229 + |
| 1622815772.3109787-CDS-P-fluviatile_contig18:1898945..1899126 | 1622815772.3109787-CDS-P-fluviatile_contig18:1898945..1899126 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1898946..1899126 + |
| 1693563281.7735252-CDS-P-fluviatile_contig18:1898945..1899126 | 1693563281.7735252-CDS-P-fluviatile_contig18:1898945..1899126 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1898946..1899126 + |
| 1622815772.3217413-CDS-P-fluviatile_contig18:1900247..1900324 | 1622815772.3217413-CDS-P-fluviatile_contig18:1900247..1900324 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1900248..1900324 + |
| 1693563281.7881327-CDS-P-fluviatile_contig18:1900247..1900324 | 1693563281.7881327-CDS-P-fluviatile_contig18:1900247..1900324 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1900248..1900324 + |
| 1622815772.3319376-CDS-P-fluviatile_contig18:1900688..1900877 | 1622815772.3319376-CDS-P-fluviatile_contig18:1900688..1900877 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1900689..1900877 + |
| 1693563281.7983987-CDS-P-fluviatile_contig18:1900688..1900877 | 1693563281.7983987-CDS-P-fluviatile_contig18:1900688..1900877 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig18 1900689..1900877 + |
The following polypeptide feature(s) derives from this mRNA:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig18.3302.1 >prot_P-fluviatile_contig18.3302.1 ID=prot_P-fluviatile_contig18.3302.1|Name=mRNA_P-fluviatile_contig18.3302.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=746bp
MENVAQERHRRNHGIYCARRMRAWRLAAGTLAMAATAPEPACSFVPPPTG ATPGPATGTALGAGSAYRLARQHSSALPTFTGVTMSLGGGVGGVGGGQNV GWGQQLQAPQQQQQQSQQQRHRGGLVRMLAKAAVTQEEHETDVSLIRNFS IVAHIDHGKSTLADRLLEYCDAVAKRDMKKQLLDSMDLERERGITIKLNA ARIEYPADDGKTYILNLIDTPGHVDFSYEVSRSLAACEGALLVVDASQGV EAQTLANVYLALENDLEIITVLNKIDLPAADPDRVAEEVEATIGLDCTEA IPASAKSGIGIKEILEAVVKNVPPPPGPTGGPLRALIYDSVYDEYKARRL SGVIVYFRIIDGEIRRGDKIMFMANGVEREVIEVGVRKPGAFEVQRLGTG EVGYLVCGVKNVLDARVGDTITNAKEPSTEPLAGYAEAKPMVFCGLYPTD AEDYEILRDSLGKLKLNDAALAYEPEASSAMGFGFRCGFLGLLHMEIVQE RLEREYNLDLVITAPSVVYKARLPKGELVDVDSPFKMPDADKRIGTQEPF VRLEILTPQEYTGTLMELCQTRRGVLIDMKFVTPVRGSIIYEIPLAEVIT DFFDQVKSRSKGYASMEYQILEWRDQDLVRLDIKINGEDAPPLSTVCHRD QAHQRGKVLTEKLKQLIPRQMFRVPIQACIGVKVVASSAIPPMRKDVLAK CYGGDISRKKKLLNKQAKGKKRMKSMGKVNVPQSAFMAVLDLSND* back to topmRNA from alignment at P-fluviatile_contig18:1881396..1901706+ Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig18.3302.1 ID=mRNA_P-fluviatile_contig18.3302.1|Name=mRNA_P-fluviatile_contig18.3302.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=20311bp|location=Sequence derived from alignment at P-fluviatile_contig18:1881396..1901706+ (Porterinema fluviatile SAG_2381) GCTGACACATACATCTTGCTAGAGGCCTCCTCCGCACCAGAGGTTGTCGC
TGCCGATGGAAAATGTGGCGCAGGAAAGACACCGGCGGAACCATGGAATT
TATTGTGCCAGGAGGATGAGGGCGTGGCGCTTGGCAGCAGGAACCCTGGC
GATGGCCGCAACAGCACCGGAGCCAGCGTGTTCGTTCGTACCACCACCGA
CCGGCGCTACACCGGGACCCGCCACAGGCACCGCGTTGGGCGCTGGCAGC
GCCTACCGCCTTGCCCGCCAGCATTCGTCCGCTCTACCTACGTTTACCGG
GGTTACGATGTCGCTCGGCGGTGGCGTCGGTGGCGTCGGTGGTGGCCAAA
ATGTTGGGTGGGGCCAGCAGCTCCAAGCACCGCAACAGCAACAGCAACAG
TCCCAGCAACAACGGCACCGTGGTGGTCTAGTGAGGATGCTGGCCAAGGC
GGCGGTGACCCAGGAGGAGCACGAGACGGACGTTTCCCTCATCCGAAACT
TCTCTATCGTGGCGCACATCGACCATGGCAAGAGCACGCTGGCAGACAGG
TGATGATAACGTTTGCTTCAGCTGGTGACAATCACATCCGCGCAAGCGAG
AGTTTCGCTACTGAGACGGGTTTAACGACCGGATTTTCATGTGTGCTACC
CTGGACGTGTGTCTCTTGATGCTGACGCCAGTGAAGGGACAATCAGCAGC
TCCGTGCTTGATGGAAGCGCAGGGGTCAGCAATCGCCATTTGGGCCATCA
GAGCACTGCATGAACATGAACCAGGCCAAAACAAGACCTCTGGTGGGGTT
GACGAAGTTCTTTTTTATTGACTAGCTCGAGAGTTCAAAAAGAAACATTA
AGATTTGAATCGCTTCAACCGAAGCTTTGTGAAGTCCTGCGATATCGTCA
ACGAGCGCGTGTGTGTGAGATTCGATCGTTCCGTTTGTATCTTGGCGAAA
GCTCGTGTGGCATCGTAGAGTCCGCGAAAAGCGTTTTCTGCTCGCGTCTC
CACTGCAATTGCCCCGAATAACCTGGTGAAGAGGTGTCAGCAGCCCCTTT
TCCCAACACGCGCTGGTGGACGAGCCTTGCATGGCAGTCTTCTTGCTGCC
TGGCAGAATGTACGTCGGGCTGCCACGAAAACAGGAGGCAGGCTAGCCTC
TTGAAAACGAACAGATTCTTGACCCACGCTGTCGAAGCAAAAATACCCCT
TGCGGCTGCACGTTTCGTGTTCCGCACGCCCCACAATACAGTAGGTGGCC
CGGTAAAGTGGCATGTAGTGGCAAGAGGACAAAATACCACTATTCAGGGC
AGTTGCCACTTTTCAGGGCAGTTGCCACTATTCGATACAGTGACAAAAGT
GCCGGCAATAGTGGCACTTTGCAGTAGTGGCACTTTTGCCACTATATCGG
ATAAGAAGCTTTGATGTTCACGATCTCGACACCATTTCATTGGATCAGCA
CTCATGTGCGCTGTATACGTACGGGTAAATGCCATGTAGTGCTGCACTTC
TCGTGGTTGAGCATTTGTGTGCAGCAGTATCCGCATGAACTGCTTCAAAC
GTCAATTGATTGTCCAAGGGTCCGGGCCTGCTGTGGTCAAAACCATTCTG
GAGCAACTAAGTCACCAAAAGTCAAACACTCTCCACCCCGGCGCATCAAC
CCCAACCGCCACAACGCCCTGCAACTACTGCTGCAGGCGTCAGCCGACTG
ATTCTATGACTCGGTAAAGGCTCTGATGTTCAGCTGCCGTGTCGGTTTAG
CGGCATGCGCTGCGAAGAATGCCATCTTCACCTTGCGGAGAAAATGCCGG
GCGTCGCCAATGCCACACGACTCTGCGTACTGTTCTAGGGGACCAAAAAG
CGAAGACATTTCCGCGAACGACGGCGGCGCCTTCTCCCCCCCACCCCCCG
CGCTCAATTCTGGCTTGTCTTTTTTTGGCCGCGGCGCCATCTCGGAGAAA
TCCTGAGCCGGGCGAGGCACGCTTTGGCTGATTCGAGGAGCCTGGCGTCT
TCTGCTTCTCGGGTTGTTTCTGCTTCTGCCTCTGCTTCTTGGCGATGCAC
GGGTTGCAGATGCGGTGTACTTCTCTGCCGCCCTCCTCCTCTGCTTCACC
ACATATCCCATGAAGCAGGCGACCGCAGCCAAAGCGACATTTGTGCCCGC
CGTGGTTCCCTCCCAGTGGTTTGTTTGGGAGTTTACACAGTTCTAGGTCC
GCGCAGGCGTGCATGATGGGTGTGGCACCCACTGCTGAGTGTATGTGGGC
AGGTGTGGTACAGCCGTGGTGGGGGCTCGCTACGTGGAACTGCCACTACT
AGGTGTGTGGAATTTCCAAAATGGCACTATTGAGGGCCCCGTCCGCAATA
GTGGGAAAGTGCCACTATACCGGGTTGAGATTTTGCCAAGAGATTGTCAT
GCCACTATACCGGGCAGTTCACTTTTCAGGTTGCCTCTCTACCGGGCCAC
CTACTGTAGTCTCACCCTGTTACGGACCCCCCACGCTTCCTCCTGCACAC
CCTGGCGAAAGCACGCCCACGGTAGAGCAGGTAGACCGTTTTCATCTGCT
TCATTTGAAACATTACGCGCTGCCCTTTGTGCTTCACCCTTACGTGTGAC
GGGTAAACAAGAAGTGGCTCTGCTATGAAACAAATCTATAGCCGCACGAG
GTCGTGTTCACGTTGTTCTACGGACTGATTACGAGAAGGAGAGAAGTGCC
CGGATTCGACTCGAAGTCCCTACATCTTCTCGGCCTTGGTAACCCCTTTA
TTTTTCACCGCTGCTGTATTAGTCCTCTACAACGCAGGCAATAACTCCCG
AAATATTTGTTTATCGCTTTCGTACACCTTAAATCGAATTATCGATAGCC
GTCAAGATCATGTTCTACATCAGCTAGAGAGCGCGGCAATTCGGTGGCGA
AACCGACACATGCGATCTTGGGCTCCCTCCCCGTCCCCCCCGCGGCGTCC
CTCCCGCGGCACCTTCCACCACTCGACGTGGTCGTGAATTGCAAATAGAT
TGCTGGAGTACTGCGACGCTGTAGCGAAGCGCGACATGAAGAAGCAGCTG
CTGGATAGCATGGACTTGGAGCGTGAGAGGGGCATCACCATCAAGCTGAA
CGCGGCGAGGATAGAGTACCCCGCCGACGACGGCAAGACCTACATCCTCA
ACCTCATAGACACCCCCGGGCACGTCGACTTCTCGTATGAGGTACGTGTG
TGTGGGCGCGAAGCAAGGAGGGAGAAGTGCTTTGTTTTGCACGACATGGC
ACTGCTGTTGTCGTTGTTGTTTACGTTGTTACTGTGGTGGGTGGTTATGG
TTGCTTTGGTGGTGGTTGTGATGTCTCAACAGTAGAAACCTTTCCAATAG
ACATTAAAAACCTTTCCGTTCGGGTATACCATCACACGTCGGGTCTAGCC
GAATCGACTTCCGTGGTCACACGCCAGAGAACATCCCGTCAGGCGTACAC
ACAAAGGGTAGGTTGGGAACGGAAATAAACTTCGTCACACGAGGCATGGG
TGGGACTTTCAAAAGGGAGAAGCAGGCGCGGGTGACGACGGGCTTCTTTC
TCCATGTTCGGTTGGTATTGCTTATTTTGATGTGTTCGACGAGCGACTGT
AGAAAGCAGCCAGTGGCTCGTTCTTCTTGGAAGCCGCTGTACACAGGGGG
AGGCACTACTACTGGCGGTGGTCGAGTAACAAAGACGGCAAAACGGCGAT
GTCCGGCAACATCTTTCACGTTTTGAAATTCGGAACACCTTTTTTGCTGT
GAGGCGGAGATGCACGGATTGCTGCAGAGAAGATCTACCGCGAAGGAACG
GGGAGGGAGGGAGGGAGGGAGGGAGGCAGGCCATCCTATTCCGGATTTTT
GTCTCTTGGCTTTGGTGCCTCCTTCCTCGCGGCACGCTGGAGACAGACAC
GCCGCCTAGACATCGCTCGTACGGCTTGGTGCTACGTGCCACAGCAGTGT
CTCCTTCACCTAGACGAAAAAAGCAGCAGCAGCAGCAGCAGCAGCAATCG
GTATTGCCTGCGTCTGCAACAACAGCAGTAGCGGCAGCAGCAGTAATCTC
TGCCCGTGTTTCCAAACGATAAAGCGAAATTCACATCCTGGGTGCAAAGC
ACGCACCGTAACACCCTCACTTTTGCTCGTCAATATGTCTGCCAATTTAC
GAAGTATGTTGTTTGCTGGTCGTTCGCCCTGCGCCAATAGCCAAGCCACG
CTGCTCGTCCTTCTTTCTTTTCTCGTTGGGTTTCCTTGTCAAGCTTGAGA
ATCTCGTTATCCCTTGTGCTTTCTTCTCGAGTTCGAAGATCTCGTCATCT
CTTGTCCAACCGATGGCAGTGCCTTCGTATGTACATCCATCCACCGAAAC
ACTTAAAGCTCGGAAAGACAAAACCGAAGTAGTTGCCGCATCTTCTCGTA
TGTTTACTCTCTTATTTCCTAAGGTTTCCCGTTCGCTCGCGGCTTGCGAG
GGGGCCCTGCTGGTGGTGGACGCTTCCCAGGGGGTGGAGGCCCAGACCCT
GGCCAACGTGTACCTAGCCCTCGAGAATGACTTGGAGATCATCACGGTTC
TCAACAAGATCGACCTGCCCGCCGCAGACCCCGACCGCGTGGCGGAGGAA
GTGAGTGGGGACGGGAGGAGGGGAGGCTTACTCATTTGTTGCTTGCCTTT
GTCATTTGACCATTGACCATGCATCCCTTCCGAAACGGAGCACCGCTCCT
ACTCCTTATAGAGGCACCTCTTACTCCTGATACAAAAAACTCTTGACGTT
TTTGCCATACTCTACGCAAGAATAGCTTGCTAGTCTTATCTCCCGCTTGT
ATGGCTTCGGGCCACCATCTATCCCCTATGATGGCGATTTTTTTCCCGCT
TTCTTCATCGAGTTGACCAAACTCGTCTATGTTACATCCGGTTCTCTTAT
CTCTGTCCAGGTCCTCTCTTTCGACCGTACGCAGCTCACATCCTGCAACT
CTGTTGGTTCTACTTTCCTCGGGCTCGCCGCATGGGCATGCCCGTCTATC
CTCATCCTCTCCCGTTCAATTGGCGGTGTATTTTGTCTTCCCTTTTGGCA
AGGCCTCCGACTCGAAATTGCTATTTCAGCTTTTTCGAGTTGTTCATCTT
GCTGTTCAAGTCTAATTTCACCCCTCTCTTCCCCTTCAGTGTTCCGTACA
TCTCTTTTTCCCTCACCATTCACCTAGTCTCTAAGCGCTAGTCTCTCCCT
TCGTTCCATCATGCCCCGTCCTTCGTTTTTGCACCCCTCCTGCTCGTCTA
TCGCCAATGCCTCTTCGTGGTCTCCGCTAGTCTCCTTCTAGATTTGCTCT
ACTCTCTTGTCCCATATTTCCCCCGATCTCCCCTTCCTCAACATGTCAAT
GATGGTTGGTAGTCTATCTTCCAATATTCTACTCACCAAGTACTGCCATT
CAACTTTCTCGCGTCGCTTTTTGATTTCGTAGAGTTCAAGCCTAATTCTG
CCCGTATTACGGTGTTGTTCGCCGTATCTGAGTATCTCGTTATCTTAGCA
GCTGTCATCTGTACTTTTTCAAGCTGCTGGATCCACTTCTTATTCCCTTC
CATTCTTCTCCTGCATGCTATAGGGAGGGCGTGGAGGCAATCAGAGAATA
GTGCACGTTGTGCTCAGGGTTCAGTTCGAAGCGTTCATCTTGGTTGAGTG
CTTTCATCATGCATATCCTGTACGTTTTCATTGGGTGGCTTGTGCCGTTT
AGCGTTTGTTGTTCCTGCTTCTGGTTTCGTTATTGCGCCTCGTCTTTTAT
GTTTTGCCTTTTGTCAGTCTCTTCTCCTGCTCCTGCTTGAAGCCGCGGGA
TATGCTTAGTTCTGTGCAGGGTGCGCTTCGTGTCCGTGCTCTCGAGCCCG
AACTCTTTGATTAACTTCCCTGCATCTACGTCGTGCCCGTTTGTTGGTTG
TAACGACAGGTTGAAGCGACGATTGGGCTAGACTGCACGGAGGCCATCCC
GGCATCGGCCAAGTCGGGGATCGGCATCAAGGAAATCCTTGAGGTGAGTA
CGTCAAGAGGAGCGCACAGGAAACAGGAGGGGCGGATGGGGGGAGTGGGC
AGGGGTTCAAGCAATCGAGGTTGTGGGCTGGAATCTTCGAGTGGCGTCAC
CCCCGGCAATGGAACATGCGCACCCGGCATACGTTTTGATCCACCGCTTC
TGTGACACGGGTCCATGGTGCCAAACGTGTGAACGATCCATAATCTCGGT
TCATCCATAGTGGCCATATTTCGTCAGAACTTGGTGTCGTAGTTCTGTAT
CTGGTGGTGGTGGTGCAGGAACGAGCTTGCCGAGGGTACACGCCCACGAT
CGCGCCGCTCAGACACTTCGCATTTACCAGCATATCGCAACTACCCCAAA
GCTTTGATCGATCGTTTCAGAGGTTTTATGAAACGGAGGCCTCCCCGTGG
GGGTTAATTAATTTTTATTAATCGATTGCTAAAGGAAAAGAAGAGGCCGG
CGCGCGTAGGACGAACCTATCTTCCCGGCGACTGAGACGTCCTCGTCGGC
AAAAAAGTGGGCCTAGCAACCTCCAGGGGCTCACATTCACAGCTTATGCA
TGAAGTGTTCAGAGCAGGCGCTCCTGCTTGTCCAGGCGCGGTCGAGTGCT
GGTACACGTCACCTCATTGATCTTTTCGCCCTCCGAGCGTGCGAGGTTTC
GATTCAAGGCCGGGGAGCGAAGCAGCTGCCCCGCGTTTGGTGATGATGCG
CACGCGATCCTATCGGCTGACTTCGCACGGATCAAAGGCCCTCCCACGCA
GTCAACGTTGGAAACGTAGTTCGTTCTTGCGAGCATTCGAACAAAACACC
GTCGGTCCGATCTGCTGCTGTGCCCCTGCCCCCGTCGAACCTCTCTCCAC
GTCGTCTTGAGCGTGAGTCCTTTACCGCCCGCGCCCCGCTGGGACGCCCC
GCCGCCAAATTCTTGCTTTCGTTTTTGCTTGTGGGTGTGCTTTTTTGTCC
CTGCGGGATCCACCGTCCTCAACAGGCTGTGGTGAAGAACGTGCCGCCTC
CGCCGGGTCCAACGGGGGGGCCGCTGCGGGCGCTGATCTACGACTCGGTG
TACGACGAGTACAAGGCGAGGCGCTTGTCAGTCTGTTTCATGTCTGTTTG
TGTCCGCTTGTCTATCTGTCTGCCTGGCCGTCTCACGAGCTGGGTGTCTC
AACACTGTGCGACGTGCTTGGCACCCTCACTCCCCCGTGTTCCCCATCGG
CGCAACCGCCGTCCTTCGATGTCCCCTTGAATCGCTCGGGGCTGCGTAGT
TGGAGAAAACCAAGGGATGGGGGAACGGGTAGAGGAGGGGCACGGAGGCA
GGTGGAAGATTGGTGGGTGGGGAGCCGACTCCGTTGTGCAATCTGTTTTT
CTCAACCGGCATTGATCTACTTGGTTTGCTTTTTCTGGCTCGCCTCTTGC
TGCGGACGTTGTGTGGTGCGTGGGGTACTCCATCGTTTATAGCCGGCGGC
AAGAACGACGAATATGCCATGAACTTTTTCGCGTTCGCGAGTGACCGTGC
CCGGCGGCGTGCGACTGTTCTTCCGGGGAGAGCAAGGTTTGCTTCCTCGC
CACACGCTGGTGCTCAATCAATCCCTTTCGCTTTTTACAATCCCATGGGT
CATTGTGGATAACCCGCAGATTATAAACTTGAATTTTTTGAGACATGCAT
ACCGGCGGAGGGAGGAGGAGTGACAGAGCAGAGGaAAAAATAATGAAATT
TGAGACAACCTCGAAGCACCCCCCCTCCCCTCAGATAGGTCTACTCGGGA
GCGTAAGTGGGGTAGCAACCCATGGTGGAACGTACAGGAGAAGCAGGACG
TTGTTATGCGTTTCATCCCAGCGTATGAGTAGGATCGTAGGTTATGCAAG
TCGCCCCTGAACTTTACGTGGCGAAAATGACCTCCCTGGAGGAAAGTAAC
CTGTATAGCGAGATAAAAGGAAGAACGTATCGGGTGGTCGGGGGACGTCT
GGGCAGTAACCAATCAGCATCCGGTACAAGACTAGGGTACTTGTATCACC
AGGTGTGGAATTGGGTCTAGACTACGAGCCTATGTTGGAGGCGCTATTTA
GCGTTGGTGAGCCGGCAAAAGAATCGAAAGGAACCATACCCCTCACCGGA
CGCTCGGATTGGGAAGACCGCGTATTCCGTGATTTTTCCTACAAACCAAA
ACGAACAAAGAGGCTGCGGTCCACTACTGTGTGTAGATATCATGAGAAGG
GCGCGGTACAAAGACGGATTGGAGACGAAGTTGTACAAGGGAGACAAGAT
GGAGTTGCTAGTTTTTGGAGTCGATAGAGACATGACCAGGATAGAGTTCA
AGAAAGCCTGCGTGACGGAAGGACTACATTGCTTAGATAGGGGGGAAGTA
GGTAGAGAACATGATCACTTCAGGGTAACAATGACCAGAGGTGATAGTAA
AACGGGCCAGCAGGTTGACATTGAGAAGCTGTCGAAATGCGTTCGAAGGT
GGGATGGAGGGTTTGCATAGCCAACATGACAGAATCAGAGAAGGTAAGAA
GACAGGGACGAATGAAGAATAAGGTGAACAGGGGGGGATGGTTAGTCAAT
CAAGTAAGAAGATCGCGAAGACGAGGCGGCAGGCGGGCGTAAGGAAAGAA
AGTGTCCAATAGGGACAAACACCAGCTACGAGTAGGGTCGTGGAACGTGT
GCGGGTTTGCGAGAGACGAGCGCAAGAGGTTGGAAATAGTTGAGCAAGTA
GAACAGGCTGAGCTAGATGTGGTAGGGATCCAAGAGTCATGGGAGTTGAA
AGATGGGGATATCGAAAGCAGGATAGGAGAATACCGGTGGATAGGAAAGC
CACGGAAAGGTTTAGACCCTAAAAAAAGGGGAGAGGGAGGAGTCGGATTC
CTCATCAAGAAACACTTGTTTGAGTCGGTAGAAATTGTGGTAAAGACGAC
GTTCGAGGAAAGCTTATGGAGAGGGGTACCAGGAGAAAGGGGTGAGCTAG
ACCTATTTATAGGGAATGTATATATTCCACCGTCGTCGAAGAAAGTCGCA
TGTAAGGCGCAGGAGAATTTCGAGCAAGTGGGGGAAGATGTTTAGAAGTT
CAAGAGAAAGGGAGAAGTTGTCATGGTAGGCGATTTCAACTCTCGAGTGG
GGAAAGCTAGTCGGGGGGGGCAGGAGATAGGGCAATACGGAGAAAATCTA
GTAAATGCCAACGGGGAAAAAATGCTTGACTTCCTAGGCAGTAACGAGCT
CATGGCGACAAACAATAGGAGTGGGGAGGACACCCCGCAGTACACCAGAC
AGCGGGCAAGTTGCGGGGATTTCTCGATTCTTGACCACATCCTGGTAGAC
AGAGAAACAAAGCGGATCCCAAGATTGCAAGTACGCAAGGTAGACATAGG
CACGACTGACCACTTCCTTATTTGGGCTAACACAACACGTAACAAGAGGG
TCAAGAGTACGAAGACGAGGAAGGTATTCAGATGGAAAGTAGAATGACTG
GGAAACGAGAGAGTACGTGCTGAATTCCAACAAAGGAATGCAGACAGCGT
AGAACAAGTAAGGGAACTGATGGGGAAAGCGGGAGAGGAAGAGGACTTTC
AAGTGGAAGGGGACAGAGTAATCGCAGGATGGGAAAACATATGAACACGA
CCGCAGAGGAAGTGATAGGGAAAAAGATGGCCCGGTGTGATCAGGCGGTT
AAGTTGTGGGACGAAGAGTTGAGGGAAGAAACTGGGGAACGAAGAGAACT
GTTTAAGCGGCACATGGATGAGAAGACAGGGGAGAGTTGGGAAACCTACA
GAGCCAAGAGGAAACATGTGAATGGGGTAGTGACAAAGAAGAAGAAAGGC
ATCTGGGACGAAGTGGTGGAGGAAGCGAACGGGGGGTTGGAGCGTAAAAC
AGATGTGGCAGGGAATTAATGGACTGGTAAAAAAGAATGAGGATGGGGGG
GAAACAGGAGTAGCAACATTGCGAGGCGTAGACGGTAAACTAGTCAGCAG
TGGCAAGGGTAAGAGGCAGGTACTAGCAGGACACTAAAGGAGACTCGGGG
TGCCGTCGGAAAAGGCAGACTTCGACCAAGTATTCAAGGAAGAGGTAGAC
GCGTGGGCCCAAGCAGAAGAGAGAGCTTCGATGGAGGAAGTTGGGAATGC
AGAGCTCCAAAAGAAGTTCACCGAGGAAGAGGTTGAGAGTTGTGTGAAAA
AACTGCAGAGACACAATGCCGCAGGAGTAGACGGGATAGTGAACGAAATC
ATGAAGTCGTGGGGGAGGGGATGATTCAGATGATGGTGCTGTTGTTCAAC
TGGGCATGGGAAAACGAATACGCACCGAGTAGATGTAGGGAAGGGGTGGT
GGTGAACCTATTCAAGAAAGGAGATAAGACTGACCCAGGAAACTAAAGGG
GAATCACCCTGTTGAGCACGGTAGGGAAAGTGTTCTTCAAGATCCTCAAC
AACAGAATAGTAAGAGTACTGGAGATGGAAAAGAGAATTAGTGAGGGCCA
AGCAGGTTTCAGGGAGGCTAGGGGGTGTGGAGATCACCTATACACGGTAG
GGAGGATCATACAAGGTCGGAAGAGGGTGGGAAAGCCGACATACTGCTTT
TTCCTAGACCTTCAGAAAGCGTATGATACAGTATGGAAAAATGGGCTCTG
GAAAAAGTTGGCGAAGTATGGGATAAACGGGAAGATGTGGAGAATGATTA
AGAAGATGACAGAGAGCAAGAAAAGCGCCGTGATGTTAGGTGGAGAACTC
TCGAGGTTCTTCGACATTGAGCAGGGGGTCCCACAGGGGTGCACAATGTC
CCCAATGCTGTTCCAGGTATTCATCAACGACTTACTGAAAGAGGTAGAGA
CGGTAGGGAAGGGAGTAGAAGTAGGGGAAACCTCGGTATCGGGACTGCTA
TTTGCTGACGACTTTGTTGGGATGTCGGGCACACCTGAGGGGCTCCACCT
ACAGATTAACGCAGCGAAGGCCTATGCTGATAAGTGGAGATTCTTGGCCA
ACGTCCCAAAGTGTGCCGTAATGGTATGCAATGAAGATGGTGACGAGGAA
ATAGGTACCAAGTGGACATGGGGGGACAAGGAGCTGCCAAGAGTGGAAAA
TACACATACCTTGGAGTAGAGATAGCAAAAGACTGTAAATGGGATGCACA
CATGCACAAAATAGCGGACAAGGGCAAAGCAAGGGCAGGGAAGTTGCACC
CAATCCTAGCAGACCGGCACCTTGATACACGTCAAAATGACTTTTCTGAA
AAGTGTTGTCATCCCGCCACTAGAGTACGCGGGAGACGTTGGGAAGGGAA
CAAGAAAATAGTAGCAGAGTTGGAGGCAgCGCAGATGAAAGCAGCGAAGA
TCATTCTAGGATGCTCCCAGCGCACAAGTAACGCAGCAGTAAGAGCAAAG
TTGGGGATCTACTCCTTAAGAACGGGAAGAGACAGAAGGAAGTTGACATG
GCAATACCGTATGGAAAACATGGGAAAGGAGTGGTTACCGAGAATAGCTT
GGGAGGCGAGATGGGTAAACAAGGCCAAGGGTAGACAACCCATTGAGTGG
GCTAAGGTTGTACAGGGAGTGTGGAGTGGGTTAGATATTGACGAACGGGA
GACGACGGGAGCGGAAAGCTTAGAAGGGTACAAGAAGAGCATCTCAGAAG
CCTTTGAAAATAGAGAAGACCAGAGCTTGCGGAAAGAGACCAAGGAAAAG
GAGGTTCTAGAAGTGTACGGAAGGCTGAACGAAGGAATAGGGTTCAAGGA
GTACCTTAACGGACCATTGGATGAAGGGACAAAGATGAAGGTCAAATTTA
GAACGGGCGACACTGACCTTCGGGAACGTAGGAGGAGGTTTAGGAAGGTA
GACGACGACGACAAGTTCAAATGTGACTGCGGCGCCGAATGCGAAGACCG
GGTACATGTATTGCGGAATGCCCGTTACACGATCAGGAGAGAGAAGGGTA
CATGGTTGAGCTGGAAAAAGTAGACAGTCGGTGTAGAGAGAAGTTTGAGG
CATGGAACAAAGAGGAGAAGACGGTAGCGGTACTCGGGTGTAATATGTGG
CAAAGGAAGGACAGGTATAAAGTAGACAGGTTGGGGGAAACATTTTTGAG
CCACCTTTGGCAAAGTACGAAGGAACGATTGGCCATCGGTGATCGATCCT
GCGGGAACAATGCTCCGTCCTCTCGAGGACGCGTGGTCAAAGGTCTAACA
ACTAAGGCATGCAAAACATGAGTACGCCCCCCCCCTCTACCCTTTCATCG
ATGTGGCCGCGGTTCATGACAGGGCGTGATCGTGTACTTCCGCATCATCG
ATGGAGAAATCCGAAGGGGAGACAAGATCATGTTCATGGCAAACGGGGTC
GAGCGCGAGGTGCGTAGTTTCTTCGCATGACTGTTGTTGAATTTTTTTCA
TTCATCTGAGAGCCTTTTTGACATGCACATGCTTTTTGGTGTATTATTTC
GTGTGTGTTGGGTCTGTCACCAGTGGAGGTTGACGCCCGTTTTTTATCTT
GTGTAACCCCCTCTCTGTCTCTCTGTCTCCCTCTCTCACGCACACACACT
GTACGCCTGTGTGTATTTCAAGGTGATCGAGGTCGGGGTTCGAAAGCCGG
GAGCGTTTGAGGTGCAGCGGCTCGGCACGGGTGAGGTGGGGTACCTGGTG
TGCGGGGTTAAGAACGTGCTGGACGCCCGCGTGGGAGACACCATCACGAA
CGCCAAGGAACGTAAGAAACAAGAGGAAAAAACTAGAAAAGGGGGTGTAA
AAAAAGAAAACGCGGAAAAGCGCAAGGACCCAAATCGTCTAGGGCGAGAA
ACACAAAGAGACAGCATGGCTCATGACGAAACAGGCGTACCAAATGTTCA
CGTCACGCCCCTGCTCGGTTGGTCTCTCGCACGAGGACGGCAATCAAAGC
ACTTGTCTCATCGCAGGGGCGCGTCAGTCTATGCCATGACGGGCATGCGG
TGAGTGCCGCCCGTAGATGGATGGCGTCATCCACGTTTTACACTCAGTTT
GGGCGTTCTCGTCAGAGTTAAGTTTCACACCCAACTTGGATGACGTTCGA
GTCATCGCTTCAAATGCCGTGCGGAGTGCGACGCTCAGAAGTGTGATGCG
TGCCCCGTGGGCGCGAGATGGTCCACCTCCAATCAATTTGAGGCCGCGAA
CGGTGCCAGAATCGGTCGCGTCACGCAGGGGTTAGTTCTTGACTTTCGAT
ATTTGAGGATAGTCAGTTCCGCACCAAAGGACGGCTTTCACGGGACCGAC
ACAACATGATGGACGCGCGGCCTTCAAGAATAAGCGCACGTGTGCCGGGG
GGGCGGAATGCGTGACATCTCAATCCCGTAACACCACGCGGCCGCCGCGG
TCGTGAAAAAATTCATCGTTGTCGCCATATTGGCTAGAATTCTTGATATT
GTAGGCCCATTTGCTGACTGTGTGCTCGTGGTACGTTTTGATGTTTGATT
CCCATTATGCCCGCAACGCTCAGAAAGTGTGCGGAGAGGAGACCCGACGA
TTTATTGACGTGGTATCCATGGATCGTGTTTTAGCCGGAACCGAAAAAGG
ACCGATAATCCATGCCACCCCTGTCTTCCCTGCCGCTGCCACCCCCTCTC
CCTCTCCCTCGCCTTTTTTCTCATGGGTTTTTCCACCCTTTCTCAGCGTC
GACGGAACCGCTTGCGGGCTACGCGGAAGCGAAGCCCATGGTGTTCTGCG
GGTTGTACCCGACCGACGCGGAGGATTACGAGGTGTGAATTTGAAAAATG
ACGCGATATAGATGTCACCTCAACTGGCTCTTAACACGGCGCTTGACCCA
GCGTCGTGGAGAACGCTAACAAGTGGTGTTCGTCCTGTAGGATGAGAATC
TGCCGGCAAAGTCACACCACCTTGAAACGCGCTCGCGGTGAGGGAAATCA
GCGCCGTAAGGGCGAGATTTTTCAAAGCGCAATGGGCATGTGAGTGAGCA
TCCACGAAGTACCGCCCCCCCGCCCCCcccctCCCCCCCCTCCGCCCGTT
GTTTGGGCTCCTAGCCCGGTTTGTTCGACAGGACCTATCATACTGGATTT
AGCGTGGACCGAAGTCAAACGTCTGGTTAAGGCATGTAGGATGGGAGCAC
GGGGTCATCTGAGCCCGATTCCGCCTTGTCCCGGCATACATCCCGAAACC
TCGTTCGATGGATAGCTCGAAAGTCTAGCCCTCTTACACTGAACTTAAAC
CTCAACCTAAACACTGTTTCCGATCCACCGAGGGCATCGAACACCTCATC
CGCCAAATGCTGCCAGCGGGGCGCATTTGTGGTGTGGTCATTGCGCGTCT
CAAAATGACCCATCCAGTCCACCAGGCTTCCTCCAACACGAGGCATTTCC
ACGGGTCGACCTGAGCAAGCACATGCTCCTGAAGTGTTCAGATGGCAACC
CCCCCAAACGCTGACTCACACCCATGACCCGCACCTGTCCTCAGATCCTG
AGAGACTCTCTGGGCAAGCTGAAGCTGAACGACGCCGCTCTGGCCTACGA
GCCTGAGGCATCTTCGGCGATGGGATTCGGTTTCAGGTGATTTGAACCAG
ATGTGCCAGGGAGGCATTAGACCCCGCCCATCCCCGCCCATCCACACACG
AGACCTCTTCACCCAGCCTCCCCCCCCACCTGAGGAAACGCTGTCCGTAA
GTTCTGAGGGGGAGTCTTTTGCGAGCGGAATTTATTTACCTGTGGTGCGT
GGACAGCGTTTTCTGGCGATTTTCCCCGTGCACGCCCCGCCAGGTCTTGC
GGAAGGATTTCGTTTGTGGCGTCGGCGATTCTTCCCTTTTTTAACGGAGG
CGGAGTTCGTGTGGAGAGAAGTACAGAAAATGTGCACGGAACTATCTTGC
GCTATTGCGTTTTCGGTGACATCCCAAAAGTTGTTGCAGTGGCGTTCCGG
TAAAGATGCAGATGGTGTTCCGATGACATTCCTGCAAGAGCGTAAAACGC
GTGATAAACATTCCGAATTTTGCTTCCGAATTTCCACATTCCCAATTTCC
AATAGCAGAAAATTTCGATTTTGGGTTTCGTGACAATTGGAAATTTACCG
AAAAATTGGAAGCGGCCGGCGAAAAAACAATTGACGCCAGGTGCGTCCGA
GTTTGTTTGATGAACTCAGAAACGAGCTACTATCGAAAACCCGGCACCAT
CGAAATTTGGAATAGAACTTGGAACGTTCACAAGGGCGCTGCAATCAGAG
CTACACTCGTCCCTGGTACCCACAGAAACTCGCTATAATTCTACTCCGTG
GTGGCTCCGTACTAGTGCCCTTCCTGCGCTCTGCTGCGCTGAGAAACCGT
TCTTTTTCGTTCTCGTGCCGTCAGCGCTGGCACGCCGCCACAACCCCCGC
GTCCCCGGCACTAGCTACCCGATGGATGCACGGCTGCGTGCCTCGATCAT
TTTCGGGGACCTCACGACTCGGCTTGCTCCGATGTATCGACAACGTCGGG
AATTATCCTGGACGCGTGTGTCTCGCGCAACATGTTGCAGGTGCGGCTTC
CTGGGTCTCCTGCACATGGAGATCGTCCAGGAGAGGCTCGAGAGGGAGTA
CAACCTGGATCTGGTCATCACCGCGCCGTCCGTGGTGTACAAGGCGGTGA
GATTTGGGGCAGGGGGTGGGGAGGGGGGAAAATCGGTTGTGAACAAAGCC
GGAGGGGCTGAGGGCAAGGGACAACCACAGAGCGTGGGGGCAGGGGGGCG
GCAGGCGCACCTCTTTTCCACAGGGAGCAGGAGGAGAGTTGCGCAGGGTG
GTATCGGGAAGGGGGATTTTGATCGCCTTGCCTGGGGAAGGGCACTGGCC
CTCCTGACCAAGGAGGAGTACGCAGGTCGCTTTCGTGTAGTCTTCTCCTT
GTCTCACCACAGCCGCATCCCTTCGTTAAATCTTTCCAGTTTTTTGCGGT
CATGTTCGTCCCTTTTTGTGTGCGTTGCTAATGTTCCCGTCATTTTCTGC
CCAGCAGCGGTTGCCCAAGGGCGAGCTGGTAGACGTGGACAGCCCGTTCA
AGATGCCGGACGCTGACAAGCGCATCGGCACCCAGGAGCCCTTTGTCAGA
CTAGAGATCCTCACACCACAGGTACCCACCGCCCATCATGATGCGCTCTT
TTGTCCATGCGATCTATCCAGTTTCTTGAGATTGCAGGACACGAGGTCTT
GGGGAAGGTTTACTGATTTACGTGTTTGCCCCCAAATAAGAAGGAACGAT
TGGCCATCGGTGATCGATCCTGCGGGAACAATGCTCCGTCCTCTCGAGGA
CGCGTGGTCAATGGTCTAACAACTAAGGCATGCAAAACATGAGTACGCCC
CCAAATAAAAAGTAGCTTTTCGCGAAGTTCAGCCGCATGTCACAGTCTCG
CGTCAGTTTCCAACTTCTTGCCGACCGTTTCCATGTTTAGTGGAAAGCCA
GGGGTATGGAAGCCCACCACAACTTGAACCCCAAGCCTTCGTGCGACCTG
GTTCCTCGCTTCACTCTTCGTGGGGTCAGCTTAGTTCGATTGCCGTAGTA
GTCAAGCGCCTTCGCCTCCGGTTCTAACCCCCGCTCGCACTTCAGCTCTA
GCTTCATGACCGTGCGATGATTGTTTTTACACTGGATGTGGATGGCGAGA
ACGATGTGTGGTCCAATTTTCGGTCGAAAAGGGTCCACCATTTGATTCAC
CCCTGAGCACGGCCAGTAATGATCGCCAGCTGGTCAGCCTGAAAGTCACG
TTTCGCCCCCCCCCCCCTCCCCGTCCCGCGCCGCAACGGCGGCCATGCTT
TGCTCCAATATTTCGGACAGGAGTACACCGGCACACTGATGGAGCTCTGC
CAAACCCGTCGAGGTGTCCTAATCGACATGAAATTTGTCACGCCCGTCAG
GGGCAGCATCATTTACGAGATTCCGCTTGCCGAGGTAAACGACATGAGTT
TCGCCCACAGGTCAACGTACAAATCTGCCTCGTTGGGGACCTTCCGGTGT
CGTATCAGTTGGGCACGGTGATCGGATGTACGGCTTTCCTTGGGTCTTGC
GTTGTGTGGTCACGCCGAGTCCGGTCGCTGCTCCGTGTGGTGCTCGTTGT
CGTGCATCGATGTCGGGTTGGTTAGCTGTCCGGACACCCACTTTCCCGTT
CTTCCCGTACTGTCGCTCTTTGTTTCATCCCCCCCTTCCCACGTCTCTTC
TCCCTCCCCCCCTCCCGCTCCCGCTCCACGAGTATCCCCTTGGCTGCTCG
GGCCATGTCCGTGTTGAAGCCTTTACCCCGAACACTACGTAGGCGGGTCG
CGTGTACCTCATCGCGAGAGCACCAGCGGATGATCAGGCGTTTGCCGGGA
TAGCCGGAAGGGTGTGGTGGGCTTTGGGCGTTGCTGGACTTGAATGACGT
CGTCTCTTCTGACTCTCGATGCGCTTGCTTTCTTTCATGGCGTTCGTCGT
GTCGACATGCCGCTGACCGCGGCCCTGGGTCGATGGCTGCTCTCGGGTGA
CGTGGACTCTCGATGCGGCTATCTTGTTGTGGATGGCATATGCGGCCCCC
GGTAGTCGTTGAAACCGTCGCTCGGCTCACCCCCGCCCCTTCCCTCGCCC
CCTCCCTCGCCCCCCCGACCGTCGCTTGGGCCTGGATCGAACTCCCGAAG
GTGATCACGGATTTCTTTGACCAGGTCAAGTCTCGCAGCAAAGGGTATGC
CTCCATGGAGTACCAGATCTTGGAGTGGCGTGACCAGGACCTGGTGCGCC
TGGACATCAAGATCAACGGGGAGGATGCCCCGCCGCTGTCCACCGTGTGC
CACAGGGACCAGGCGCATCAGAGAGGAAAAGGTGAACGGATGACGCCGTT
TCGCGAGAAAACGGTTGTAACAACGGAGAATGGAAGCATGCGCGTGCATG
CTTTTGTGGATAGGTGCTTTACCACGGCGATTTCAAGCCCCGTGGGCGGG
CTCGCGCCGTATTGTTGTTCATGTTCGTTTTTGCGCTGCTGTCTGGCATC
CGCCGGTGGTTGATGGCAAGTGCCGGACCAGCGGAGGGAGAAACGCAAGA
ACCCTTCGTCGGGGATTCCTCGCGCCTGTGCTGCCGAGCAACCATCAGTC
AACCAGTGCGTGTTTCATTGGGAGGTCACGTAGTGCTCTATCGTGACCCT
GTGCGCAAGGCTCGCAATATTTATTCCGCCAATGCTGCGGCGCCTGACCC
CTCGGCGTTCTATCCTCCGACAGACCGACGGCGTGCGCATGAAAATGCGC
GCCAGGATCTAGAAGCGTCGCAACCCCCTTGCCCCTACGCTCTCGCAAGA
GATGCACCGGCTCGTGGCGCGGCAAGAGGTTGGTACGGCGCCGAGTTGGC
GACGACGCTGTAGAACATGCTGCTCACTGCGTGAGATCGGCAACCAGGTT
GCCGCTTTTTTTGTCTCTTTCTGTTCTTTTTGGGCAGCAACCATGATGGT
GGTTGAGAAATACCTTGTGGACGGGGTGAAGAATTTATCTCCGCACATAG
AGGATGGTCGTACCATGCAGTATTGAAATGGTGATGCATCTGCAAGCCAC
TGCCGTCGTACATTCCAATGGCTGTCTCTGGGGCGATACCAAAAATTACA
TTGCAGCTCAGTTGAGGCTGTCATCCGTATGCAGTTCAGTAGGCCTTTGG
CCGAACATTCTTAGTAGGATACTGCCGACCCTTCATGAGACTCGCCGAAT
GCATCACGGCGCTTCGCGCTTGGTAAATGCAAGAGCCTAGGCCGTTGAAA
TCCCGGCAAATCGCTCCGTCCCGGCCTATCAGGAATGCGAGGTGGCCTAG
CGGCTACGGCATGCGTGAGTTGGAACCGCCCCCCCCCTGCCCCGCCCTCT
CTTTCTGCTGACCGCCCCGTTCCTCGTGACATGCTCGCACTGTTTTCTTC
GTGGCGACTTTTCACTTTCTCTCGTGTTGGCCCTGCCTCGACTTTCTTAC
AGTGTTGACGGAGAAGCTCAAGCAGCTGATCCCGAGGCAGATGTTTCGGG
TGCCGATACAGGCTTGCATCGGGGTGAAGGTGAGCCAATGCGCTTACTTG
TTGCACGGCCCCGGAGGTGTGCTGCAGGTGACTTCGGGCATGGAAGGAAG
TGTTTTGTGTTGCTGCCGGCGGCGACGGTGGTATTGGCGATGGTGATGGT
GACGGTGATGGTGATGGTGATGGCGATGTCGTTGTCGATGTTGATGCACT
CAGGTCCAACAGCATATGATTGAATGCTGATGGAAAGAAGAGGATGCACA
TATTTTTGAGAAGGGGGGAATTCCTTGTAGCAGTGCGAGTTATGGGGAGA
TTGTCCTTTGCACCCGACGAGCTGAAAATCCTTGCGATGCCCGTGCCTTG
ACCCGCCCAATCTCCCTTCGAATGCCGGCCCCTCGAAAACTAGGTGGTGG
CATCATCAGCGATCCCGCCGATGCGGAAGGACGTTTTGGCCAAGTGCTAC
GGTGGGGACATCTCGCGAAAGAAAAAGCTGCTCAACAAGCAGGCCAAGGG
GAAGAAGAGGATGAAGTCCATGGGCAAGGTCAATGTGCCCCAGAGCGCAT
TCATGGCGGTGCTCGACCTCAGCAACGATTAGCCGAAATGGTCGTTTTGT
CAGGCAAAGAATGTGCGGTAACGAAGGTTTTGCTCAAGCTTTCTTACCGA
CCACAGCTTGCGGCGGGAGAGCCCAACACTCGACGAACAGGATGCATGCA
GCGGCAAATATTGCGACTGGTGTTTTGACGATGGAGAGGGCTCAGCCTAC
CTCAATAACGCGATTTATGGGGGGTGTTGCTTGTTGTGCGAGACGTGTCA
GTTAGAGTGAAGTTTTACAACGGCGGTGTGAGACATGAACAAAAGATGTA
AGTAGCGTGCCCGGGGGACGCGCTTGTCGTGGGTCCCCGCGTTGCGGGCC
GTTAGATACGGAAAATCATGCGATGCACATGACAAGCCGCCGACTTGAAG
AGTGACTAAGCGTAGCTCAGGTGTTAGAAGTGGCAGTTTCTTTCCATTAT
TTGAAGGTTGACGGGCAGCATTGATTCCAGGACTACTGCTGAAGCGTCTA
ATTATCCTCGACACGCGGGGTGAAGACCCACGCAACGCATTAGTTGCCTC
GAAAGGAGCGCTACCCGGGCGTGTTCGGAACGTGCTTTCGCCTTGAATCC
GGCGCATTCTGGCTGAAACATTCGAGGAGGGCGTTCTTGAGGTACTCGGG
CAAGCAGGGCGGTTCCGTGGCACGCGAGACGTATGGGAGTAACACGGACA
TAATGGTGCCGCTCGTGCATGAAAGTAATTTCAGTACGGCTGGAGCCAAG
ATGGGACACACCCAAGGGCAAGTAGACTCCATTCCCTGCTCTGTTTGGAC
CCACGCCAGAATAAGTGAGTCACATTCGGTGGAAATGCGCATGCGCAAAT
ATAATCTACGC back to topCoding sequence (CDS) from alignment at P-fluviatile_contig18:1881396..1901706+ >mRNA_P-fluviatile_contig18.3302.1 ID=mRNA_P-fluviatile_contig18.3302.1|Name=mRNA_P-fluviatile_contig18.3302.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=4476bp|location=Sequence derived from alignment at P-fluviatile_contig18:1881396..1901706+ (Porterinema fluviatile SAG_2381) ATGGAAAATGTGGCGCAGGAAAGACACCGGCGGAACCATGGAATTTATTG TGCCAGGAGGATGAGGGCGTGGCGCTTGGCAGCAGGAACCCTGGCGATGG CCGCAACAGCACCGGAGCCAGCGTGTTCGTTCGTACCACCACCGACCGGC GCTACACCGGGACCCGCCACAGGCACCGCGTTGGGCGCTGGCAGCGCCTA CCGCCTTGCCCGCCAGCATTCGTCCGCTCTACCTACGTTTACCGGGGTTA CGATGTCGCTCGGCGGTGGCGTCGGTGGCGTCGGTGGTGGCCAAAATGTT GGGTGGGGCCAGCAGCTCCAAGCACCGCAACAGCAACAGCAACAGTCCCA GCAACAACGGCACCGTGGTGGTCTAGTGAGGATGCTGGCCAAGGCGGCGG TGACCCAGGAGGAGCACGAGACGGACGTTTCCCTCATCCGAAACTTCTCT ATCGTGGCGCACATCGACCATGGCAAGAGCACGCTGGCAGACAGATGGAA AATGTGGCGCAGGAAAGACACCGGCGGAACCATGGAATTTATTGTGCCAG GAGGATGAGGGCGTGGCGCTTGGCAGCAGGAACCCTGGCGATGGCCGCAA CAGCACCGGAGCCAGCGTGTTCGTTCGTACCACCACCGACCGGCGCTACA CCGGGACCCGCCACAGGCACCGCGTTGGGCGCTGGCAGCGCCTACCGCCT TGCCCGCCAGCATTCGTCCGCTCTACCTACGTTTACCGGGGTTACGATGT CGCTCGGCGGTGGCGTCGGTGGCGTCGGTGGTGGCCAAAATGTTGGGTGG GGCCAGCAGCTCCAAGCACCGCAACAGCAACAGCAACAGTCCCAGCAACA ACGGCACCGTGGTGGTCTAGTGAGGATGCTGGCCAAGGCGGCGGTGACCC AGGAGGAGCACGAGACGGACGTTTCCCTCATCCGAAACTTCTCTATCGTG GCGCACATCGACCATGGCAAGAGCACGCTGGCAGACAGATTGCTGGAGTA CTGCGACGCTGTAGCGAAGCGCGACATGAAGAAGCAGCTGCTGGATAGCA TGGACTTGGAGCGTGAGAGGGGCATCACCATCAAGCTGAACGCGGCGAGG ATAGAGTACCCCGCCGACGACGGCAAGACCTACATCCTCAACCTCATAGA CACCCCCGGGCACGTCGACTTCTCGTATGAGATTGCTGGAGTACTGCGAC GCTGTAGCGAAGCGCGACATGAAGAAGCAGCTGCTGGATAGCATGGACTT GGAGCGTGAGAGGGGCATCACCATCAAGCTGAACGCGGCGAGGATAGAGT ACCCCGCCGACGACGGCAAGACCTACATCCTCAACCTCATAGACACCCCC GGGCACGTCGACTTCTCGTATGAGGTTTCCCGTTCGCTCGCGGCTTGCGA GGGGGCCCTGCTGGTGGTGGACGCTTCCCAGGGGGTGGAGGCCCAGACCC TGGCCAACGTGTACCTAGCCCTCGAGAATGACTTGGAGATCATCACGGTT CTCAACAAGATCGACCTGCCCGCCGCAGACCCCGACCGCGTGGCGGAGGA AGTTTCCCGTTCGCTCGCGGCTTGCGAGGGGGCCCTGCTGGTGGTGGACG CTTCCCAGGGGGTGGAGGCCCAGACCCTGGCCAACGTGTACCTAGCCCTC GAGAATGACTTGGAGATCATCACGGTTCTCAACAAGATCGACCTGCCCGC CGCAGACCCCGACCGCGTGGCGGAGGAAGTTGAAGCGACGATTGGGCTAG ACTGCACGGAGGCCATCCCGGCATCGGCCAAGTCGGGGATCGGCATCAAG GAAATCCTTGAGGTTGAAGCGACGATTGGGCTAGACTGCACGGAGGCCAT CCCGGCATCGGCCAAGTCGGGGATCGGCATCAAGGAAATCCTTGAGGCTG TGGTGAAGAACGTGCCGCCTCCGCCGGGTCCAACGGGGGGGCCGCTGCGG GCGCTGATCTACGACTCGGTGTACGACGAGTACAAGGCGAGGCGCTTGTC AGCTGTGGTGAAGAACGTGCCGCCTCCGCCGGGTCCAACGGGGGGGCCGC TGCGGGCGCTGATCTACGACTCGGTGTACGACGAGTACAAGGCGAGGCGC TTGTCAGGCGTGATCGTGTACTTCCGCATCATCGATGGAGAAATCCGAAG GGGAGACAAGATCATGTTCATGGCAAACGGGGTCGAGCGCGAGGGCGTGA TCGTGTACTTCCGCATCATCGATGGAGAAATCCGAAGGGGAGACAAGATC ATGTTCATGGCAAACGGGGTCGAGCGCGAGGTGATCGAGGTCGGGGTTCG AAAGCCGGGAGCGTTTGAGGTGCAGCGGCTCGGCACGGGTGAGGTGGGGT ACCTGGTGTGCGGGGTTAAGAACGTGCTGGACGCCCGCGTGGGAGACACC ATCACGAACGCCAAGGAACGTGATCGAGGTCGGGGTTCGAAAGCCGGGAG CGTTTGAGGTGCAGCGGCTCGGCACGGGTGAGGTGGGGTACCTGGTGTGC GGGGTTAAGAACGTGCTGGACGCCCGCGTGGGAGACACCATCACGAACGC CAAGGAACCGTCGACGGAACCGCTTGCGGGCTACGCGGAAGCGAAGCCCA TGGTGTTCTGCGGGTTGTACCCGACCGACGCGGAGGATTACGAGCGTCGA CGGAACCGCTTGCGGGCTACGCGGAAGCGAAGCCCATGGTGTTCTGCGGG TTGTACCCGACCGACGCGGAGGATTACGAGATCCTGAGAGACTCTCTGGG CAAGCTGAAGCTGAACGACGCCGCTCTGGCCTACGAGCCTGAGGCATCTT CGGCGATGGGATTCGGTTTCAGATCCTGAGAGACTCTCTGGGCAAGCTGA AGCTGAACGACGCCGCTCTGGCCTACGAGCCTGAGGCATCTTCGGCGATG GGATTCGGTTTCAGGTGCGGCTTCCTGGGTCTCCTGCACATGGAGATCGT CCAGGAGAGGCTCGAGAGGGAGTACAACCTGGATCTGGTCATCACCGCGC CGTCCGTGGTGTACAAGGCGGTGCGGCTTCCTGGGTCTCCTGCACATGGA GATCGTCCAGGAGAGGCTCGAGAGGGAGTACAACCTGGATCTGGTCATCA CCGCGCCGTCCGTGGTGTACAAGGCGCGGTTGCCCAAGGGCGAGCTGGTA GACGTGGACAGCCCGTTCAAGATGCCGGACGCTGACAAGCGCATCGGCAC CCAGGAGCCCTTTGTCAGACTAGAGATCCTCACACCACAGCGGTTGCCCA AGGGCGAGCTGGTAGACGTGGACAGCCCGTTCAAGATGCCGGACGCTGAC AAGCGCATCGGCACCCAGGAGCCCTTTGTCAGACTAGAGATCCTCACACC ACAGGAGTACACCGGCACACTGATGGAGCTCTGCCAAACCCGTCGAGGTG TCCTAATCGACATGAAATTTGTCACGCCCGTCAGGGGCAGCATCATTTAC GAGATTCCGCTTGCCGAGGAGTACACCGGCACACTGATGGAGCTCTGCCA AACCCGTCGAGGTGTCCTAATCGACATGAAATTTGTCACGCCCGTCAGGG GCAGCATCATTTACGAGATTCCGCTTGCCGAGGTGATCACGGATTTCTTT GACCAGGTCAAGTCTCGCAGCAAAGGGTATGCCTCCATGGAGTACCAGAT CTTGGAGTGGCGTGACCAGGACCTGGTGCGCCTGGACATCAAGATCAACG GGGAGGATGCCCCGCCGCTGTCCACCGTGTGCCACAGGGACCAGGCGCAT CAGAGAGGAAAAGGTGATCACGGATTTCTTTGACCAGGTCAAGTCTCGCA GCAAAGGGTATGCCTCCATGGAGTACCAGATCTTGGAGTGGCGTGACCAG GACCTGGTGCGCCTGGACATCAAGATCAACGGGGAGGATGCCCCGCCGCT GTCCACCGTGTGCCACAGGGACCAGGCGCATCAGAGAGGAAAAGTGTTGA CGGAGAAGCTCAAGCAGCTGATCCCGAGGCAGATGTTTCGGGTGCCGATA CAGGCTTGCATCGGGGTGAAGTGTTGACGGAGAAGCTCAAGCAGCTGATC CCGAGGCAGATGTTTCGGGTGCCGATACAGGCTTGCATCGGGGTGAAGGT GGTGGCATCATCAGCGATCCCGCCGATGCGGAAGGACGTTTTGGCCAAGT GCTACGGTGGGGACATCTCGCGAAAGAAAAAGCTGCTCAACAAGCAGGCC AAGGGGAAGAAGAGGATGAAGTCCATGGGCAAGGTCAATGTGCCCCAGAG CGCATTCATGGCGGTGCTCGACCTCAGCAACGATTAGGTGGTGGCATCAT CAGCGATCCCGCCGATGCGGAAGGACGTTTTGGCCAAGTGCTACGGTGGG GACATCTCGCGAAAGAAAAAGCTGCTCAACAAGCAGGCCAAGGGGAAGAA GAGGATGAAGTCCATGGGCAAGGTCAATGTGCCCCAGAGCGCATTCATGG CGGTGCTCGACCTCAGCAACGATTAG back to top
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