|
|
Homology
BLAST of mRNA_P-fluviatile_contig61.12843.1 vs. uniprot
Match: A0A6H5JRV7_9PHAE (UBX domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JRV7_9PHAE) HSP 1 Score: 548 bits (1413), Expect = 8.810e-174 Identity = 489/944 (51.80%), Postives = 541/944 (57.31%), Query Frame = 3
Query: 1287 MSSPLALDATSLEDLVALARAQGIHVEDETDRDSVVGLLQASAVPDVVSPPSPXXXXXXXXXXXXXASRSGDSVGLEAFLEGGGGLSFMPP-----------------PSPPRPFSPMTVGSPLPPAVARAXXXXXXXXXXXXXXXXXXXXVAQAAVLPSQQLSDIWAL-GEMRRP-HGDTSSSVGAEVGTEASRTTSRGGGFRGSAAGDDGNXXXXXXXXXXXXSDRGVDEDDMEAFSYHSSLSTGAPVAAAAAGRVRSRLAEIDR-------------EVAAEERREALEMFMAVTQVESSAAAAQFLDATDWSPDAAINLFLESGGDAPSATSAVGGFGSGSPGMNAVARAGXXXXXXXXXXARSG-AETRRWPGDSRGSGYG-----DXXXXXXXXXXXXXXXXXXXXPLXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXARXXXXX-SAGDHDPLYPGGFSEDGIRAPLPAMTDRLIGGIGPGGDSLGTGAGGLLRXXXXXXXXXXXGPVGG---AEEKDHTDWIFNIPEGLSFPSNFLETRQICKAQKKWLMVNIQDHEEFASHRLNQDVWSNETILTLLRGNFIFWQRNKTLRQARYYIEKYNLEGQVLPHTAILDPRTGAPLLKVVGFVEPEDLSMALVEFLENNSIDQVKAPALKTIGLGNITHHEEGVYSGRASPDTSVGTYGTSGKGG-GGASYTKDSAYESFGSEEYVYDDEDDVGPQESSFDGDDNNTSSF--------------------TAAARSPTHTSAAGSGHGGVDGARTPAATEEGQSEGXXXXXXXXXXXXXX---------AELLGPWGRGTPGDELRAQQAASEAEDDEEGVPDEPEAGPGVTQVLFRLPGSGTIARRFWLRDHVSLLFRFVRTKGEGASTRPFDLLSGHPPSSLSPSKVLTLEAANLGNSAIMVRWL 3902
MS+ + D TSLEDLVALA+AQG+HVEDETDRD VVGL+QAS V D+ SGD+ PSPPR SPM+ GSPLP A P Q+LSDI AL G + RP +GD SSSV EVG+ R G XXXXXXXXXXXX G + DMEA S E EERREALE FMA TQV SS +AAQFLDATDWSPDAAINLFLESGGD + G A AR+G A G + + + D + G D P XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX XXXXX S G+ D LYPGGFSEDG+RAP+PA TDRLIGG G G XXXXXXXXXXX G EE+D+ DWIF PEGLSFPS+FLETRQICK QKKWLM DH+EFASHRLN+DVWSNETILTLLRGNFIFWQRNK LRQARYY++KYNLEGQVLPHTAILDPRTGA LLKVVGFVEPEDLSMALVEFLENNSIDQ + G S R SPD SVG Y + G+GG G AS ++DSAYES+GSEEYVY+D+DD+G Q SSFDGDDN+T++ T + SP+ + AGSG P+A XXXXXXXXXXXX A L+GPWGRGTP DELRA+ A + VP EP+AG GVTQV FRL G GTIARRFWL D VSLLF+FVRT GE A+TRPFDLLSGHPPSSL SKV TLEAANL NSAIMVRWL
Sbjct: 1 MSAVPSFDTTSLEDLVALAQAQGLHVEDETDRDHVVGLVQASVVADLAE--------------GELTGGSGDASAAXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXSTPSPPRHLSPMSFGSPLPGAP------------------------------PPQRLSDILALDGMIGRPSYGDASSSVCTEVGSRTGR----------------GXXXXXXXXXXXXXXXXG--DSDMEASSXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXEDLTEERREALETFMAFTQVGSSVSAAQFLDATDWSPDAAINLFLESGGDTAAVXXXXXXXXXXXAGYGAPARSGGARRWPSVGGAAGGYGDGQSYVSDDNHNEEGADDHDDAGANPFTALGELPGLVIPPAPAGAXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXSPGEQDHLYPGGFSEDGVRAPIPARTDRLIGGGGVLGXXXXXXXXXXXXXXXXXXXXXXXXXXAGRSSVEERDNMDWIFKAPEGLSFPSDFLETRQICKEQKKWLM----DHQEFASHRLNKDVWSNETILTLLRGNFIFWQRNKALRQARYYVDKYNLEGQVLPHTAILDPRTGAQLLKVVGFVEPEDLSMALVEFLENNSIDQ-----------------DGGGVSERTSPDNSVGMY-SGGRGGRGDASLSRDSAYESYGSEEYVYEDDDDLG-QGSSFDGDDNSTANSHASPGYHPQNTPNAKPSPPATTCSSSPSPLTVAGSGRSSPS---RPSAXXXXXXXXXXXXXXXXXXXXGGTGAIGAAAGAGLVGPWGRGTPEDELRAEGAGQGVLGEPVDVPQEPDAGNGVTQVQFRLAGGGTIARRFWLNDRVSLLFQFVRTTGEEAATRPFDLLSGHPPSSLLGSKVSTLEAANLSNSAIMVRWL 856
BLAST of mRNA_P-fluviatile_contig61.12843.1 vs. uniprot
Match: D8LLD2_ECTSI (UBX domain-containing protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LLD2_ECTSI) HSP 1 Score: 530 bits (1365), Expect = 3.690e-169 Identity = 412/653 (63.09%), Postives = 447/653 (68.45%), Query Frame = 3
Query: 2085 QVESSAAAAQFLDATDWSPDAAINLFLESGGDAPSATSAVGGFGSGSPGMNAVARAGXXXXXXXXXXARSGAE-TRRWPG-DSRGSGYGDXXXXXXXXXXXXXXXXXXXX-------PLXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXARXXXXXSAGDHDPLYPGGFSEDGIRAPLPAMTDRLIGGIGPGGDSLGTGAGGLLRXXXXXXXXXXXGPVGG---AEEKDHTDWIFNIPEGLSFPSNFLETRQICKAQKKWLMVNIQDHEEFASHRLNQDVWSNETILTLLRGNFIFWQRNKTLRQARYYIEKYNLEGQVLPHTAILDPRTGAPLLKVVGFVEPEDLSMALVEFLENNSIDQVKAPALKTIGLGNITHH--------EEGVYSGRASPDTSVGTYGTSGKGG-GGASYTKDSAYESFGSEEYVYDDEDDVGPQESSFDGDDNNTSSFTA-----------AARSPTHTS---------AAGSGHGGVDGARTPAATEEGQSEGXXXXXXXXXXXXXX------AELLGPWGRGTPGDELRAQQAASEAEDDEEGVPDEPEAGPGVTQVLFRLPGSGTIARRFWLRDHVSLLFRFVRTKGEGASTRPFDLLSGHPPSSLSPSKVLTLEAANLGNSAIMVRWL 3902
+V SS +AAQFLDATDWSPDAAINLFLESGGDA XXXXXXXX X R WP +GYGD XX L XXXXXXXXXXXXXXXXXXXXXXXXXXX XXXXXS G+ D LYPGGFSEDG+RAP+PA TDRLIGG G G XXXXXXXXXXX G EEKD+TDWIF PEGLSFPS+FLETRQICK QKKWLMVNIQDH+EFASHRLN+DVWSNETILTLLRGNFIFWQRNK LRQARYY++KYNLEGQVLPHTAILDPRTGA LL+VVGFVEPEDLSMALVEFLENNSIDQVKAPA++TIG+GNI HH + G S R SPD SVG Y + G+GG G AS ++DSAYESFGSEEYVY+D+DD+G Q SSFDGDDN+T++ A A SP T+ AGSG + AAT XXXXXXXXXXXXXX A L+GPWGRGTP DELRA A + V EP+AG GVTQV FRL G GTIARRFWL+D VSLLF+FVRT GE A+TRPFDLLSGHPPSSL SKV TLEAANL NSAIMVRWL
Sbjct: 27 EVGSSVSAAQFLDATDWSPDAAINLFLESGGDAXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXYXXXXXXXGARGWPNVGGAAAGYGDGQSDDXXNEEGADDRDDVGANPFSALGELPGLVIPXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXSPGEQDHLYPGGFSEDGVRAPIPARTDRLIGGRGVLGGXXXXXXXXXXXXXXXXXXXXXXXXXAGRSSVEEKDNTDWIFKAPEGLSFPSDFLETRQICKEQKKWLMVNIQDHQEFASHRLNKDVWSNETILTLLRGNFIFWQRNKALRQARYYVDKYNLEGQVLPHTAILDPRTGAQLLRVVGFVEPEDLSMALVEFLENNSIDQVKAPAVRTIGMGNIAHHGYNQTPGKDGGGVSERTSPDNSVGMY-SGGRGGRGDASLSRDSAYESFGSEEYVYEDDDDLG-QGSSFDGDDNSTANSHASPGYHPQTTPNAKPSPPATTRSSXXXXLTVAGSGRS-TPSRPSAAATXXXXXXXXXXXXXXXXXXXXXXXXXXGAGLVGPWGRGTPEDELRAAGAGEGVLGESVEVLQEPDAGNGVTQVQFRLAGGGTIARRFWLKDRVSLLFQFVRTTGEEAATRPFDLLSGHPPSSLLGSKVSTLEAANLSNSAIMVRWL 676
BLAST of mRNA_P-fluviatile_contig61.12843.1 vs. uniprot
Match: A0A7S2FLK4_9STRA (Hypothetical protein n=1 Tax=Dictyocha speculum TaxID=35687 RepID=A0A7S2FLK4_9STRA) HSP 1 Score: 153 bits (386), Expect = 4.300e-35 Identity = 139/441 (31.52%), Postives = 196/441 (44.44%), Query Frame = 3
Query: 2583 GIRAPLPAMTDRLIGGIGPGGDSLGTGAGGLLRXXXXXXXXXXXGPVGGAEEKDHTDWIFNIPEGLSFPSNFLETRQICKAQKKWLMVNIQDHEEFASHRLNQDVWSNETILTLLRGNFIFWQRNKTLRQARYYIEKYNLEGQV-LPHTAILDPRTGAPLLKVVGFVEPEDLSMALVEFLENNSIDQVKAPALKTIGLGNITHHEEGVYSGRASPDTSVGTYGTSGKGGGGASYTKDSAYESFGSEEYVYDDEDDVGPQESSFDGDDNNTSSFTAAARSPTHTSAAGSGHGGVDGARTPAATEEGQSEGXXXXXXXXXXXXXXAELLGPWGRGTPGDELRAQQAASEAEDDEEGVPDEPEAGP-GVTQVLFRLPGSGTIARRFWLRDHVSLLFRFVRTKGEGASTRPFDLLSGHPPSSLSPSKVLTLEAANLGNSAIMVRW 3899
GIRAP A D LI G S G GGL R G ++ + +DW+F P+ + + +E R++ K Q KWL+VN+QD E F SH+LN+D W N+TI LL +FIFWQR+ T + R ++ Y L V LPH AIL P TG+ L GF++P+DLS+ALVEF+E N ++ + P + G +G A S TY S ++D+ ES E +V+DD D+ + +D+ T ++A+ + TS +EE + + L P EL AQ P EP G TQV RL T+ RF L V ++ V K A+ R F L + P L P TL A L N++I++RW
Sbjct: 193 GIRAPQAAFRDTLI------GPSSGMMMGGLGRG----------GMASSTDDLEASDWMFAPPDSVK--GDIIEARRMAKEQGKWLLVNLQDVEIFESHQLNRDTWKNDTIQALLETSFIFWQRSSTSQAGRDFLRLYGLSADVCLPHIAILGP-TGSQLWSRTGFIQPDDLSIALVEFMEANDLNAMTKPKERHFGRA----------AGGAGSSRSSATYD--------GSKSRDANDES--GERHVFDD-DEALQAALAMSLEDDVTEDRSSASEKKSATS-----------------SEEAKDHSTEIVPDSLDTQTRHRDWL-------PSGELSAQS------------PIEPAPGTLNSTQVRLRLANGTTMVYRFLLDALVQSVYAVVLDKDPEAAERAFTLQTAFPVVQLLPLASKTLAEAGLSNTSIVMRW 557
BLAST of mRNA_P-fluviatile_contig61.12843.1 vs. uniprot
Match: A0A836CHR7_9STRA (UBX domain-containing protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A836CHR7_9STRA) HSP 1 Score: 139 bits (349), Expect = 1.220e-30 Identity = 64/146 (43.84%), Postives = 94/146 (64.38%), Query Frame = 3
Query: 2727 GAEEKDHTDWIFNIPEGLSFPSNFLETRQI-----------CKAQKKWLMVNIQDHEEFASHRLNQDVWSNETILTLLRGNFIFWQRNKTLRQARYYIEKYNLEGQVLPHTAILDPRTGAPLLKVVGFVEPEDLSMALVEFLENNS 3131
G E + T+W+F P + S+F +TRQ C+ +K+W+MVNIQD FASHRLN+DVWS+ET+ L+ +F+FWQR T A+ + E+Y++ LP TAI+DPRTG L++V GF+ PED+S ++E +E+ S
Sbjct: 193 GGAEGESTEWLFPPPTDMIERSSFSDTRQATELSYARDAIACRQRKEWIMVNIQDRSVFASHRLNRDVWSDETVRALVSESFVFWQREVTSEDAQGFCERYSVRSDALPVTAIIDPRTGGMLVRVEGFISPEDMSSLIMEIMESRS 338
BLAST of mRNA_P-fluviatile_contig61.12843.1 vs. uniprot
Match: A0A7S2FU61_9STRA (Hypothetical protein (Fragment) n=1 Tax=Florenciella parvula TaxID=236787 RepID=A0A7S2FU61_9STRA) HSP 1 Score: 127 bits (319), Expect = 3.280e-29 Identity = 64/140 (45.71%), Postives = 85/140 (60.71%), Query Frame = 3
Query: 2748 TDWIFNIPEGLSFPS--NFLETRQICKAQKKWLMVNIQDHEEFASHRLNQDVWSNETILTLLRGNFIFWQRNKTLRQARYYIEKYNLEGQVLPHTAILDPRTGAPLLKVVGFVEPEDLSMALVEFLENNSIDQVKAPALK 3161
+DW+F P L+ + + E R K +KWL+VN+Q + F SHRLN+D WSNETI TLL +F+FWQR+ YI Y + LPH AI+ P TGA L GF++P++LSMALVEF+E N +D P K
Sbjct: 23 SDWMFPPPRNLTCAAGGDVREARNQAKDARKWLLVNVQSVDIFDSHRLNRDTWSNETIQTLLDSSFVFWQRSSGCSAGADYIRLYKVSHDDLPHIAIIGP-TGATLWSQTGFIQPDELSMALVEFIEQNDLDATTLPKPK 161
BLAST of mRNA_P-fluviatile_contig61.12843.1 vs. uniprot
Match: A0A7S2WDF0_9STRA (Hypothetical protein n=1 Tax=Rhizochromulina marina TaxID=1034831 RepID=A0A7S2WDF0_9STRA) HSP 1 Score: 110 bits (276), Expect = 1.380e-22 Identity = 108/368 (29.35%), Postives = 159/368 (43.21%), Query Frame = 3
Query: 2808 RQICKAQKKWLMVNIQDHEEFASHRLNQDVWSNETILTLLRGNFIFWQRNKTLRQARYYIEKYNLEGQVLPHTAILDPRTGAPLLKVVGFVEPEDLSMALVEFLENNSIDQVKAPALKTIGLGNITHHEEGVYSGRASPDTSVGTYGTSGKGGGGASYTKDSAYESFGSEEYVYDDEDDVGPQESSFDGDDNNTSSFTAAARSPTHTSAAGSGHGGVDGARTP--AATEEGQSEGXXXXXXXXXXXXXXAELLGPWGRGTPGDELRAQQAASEAEDDEEGVPDEPEAG-PGVTQVLFRLPGSGTIARRFWLRDHVSLLFRFVRTKGEGASTRPFDLLSGHPPSSLSPSKVLTLEAANLGNSAIMVRWL 3902
+Q K ++KWL+VN+Q + F SH+LN+D WS+ETI LL +FIFWQR+ R Y+ Y + + LP AI+ P TG L GF+ P +LS ++EFLE NS+D AP ++ + + P ++ T D D++G S+ D + + AA P G G +G+ TP A +EE Q+ A L P + T LR +EPE G P T++ RL T+ RRF+L D ++ ++ V + E AS+R F L L TLE +L NS I++RW+
Sbjct: 19 KQRAKEERKWLLVNLQALDNFQSHQLNRDTWSDETIQALLESSFIFWQRSSASEAGRQYLNLYRVAPEDLPEIAIIGP-TGIKLFSHSGFLPPAELSGMVLEFLEQNSLDSKDAPKMRQRKRSTSGGEDLALPV----PSSTASAQRT--------------------------DLADELGL--SAEDLELERALQMSMAAAEPL-----GDERGDAEGSPTPDLAQSEEEQA--------LSSEKGAAATHLPPGFKDT----LR----------------NEPEKGVPNTTRLQLRLADGRTLVRRFFLDDKIAAIYAVVCAEVEEASSRAFTLQPPMNSLELLSVADSTLEDCDLTNSKIIMRWV 320
BLAST of mRNA_P-fluviatile_contig61.12843.1 vs. uniprot
Match: A0A7S1CF00_9STRA (Hypothetical protein (Fragment) n=1 Tax=Bicosoecida sp. CB-2014 TaxID=1486930 RepID=A0A7S1CF00_9STRA) HSP 1 Score: 106 bits (264), Expect = 4.940e-21 Identity = 68/193 (35.23%), Postives = 97/193 (50.26%), Query Frame = 3
Query: 2571 FSEDGIRAPLPAMTDRLIGGIGPGGDSLGTGAGG------LLRXXXXXXXXXXXGPVGGAEEKDHTDWIFNIPEGLSFPSNFLETRQICKAQKKWLMVNIQDHEEFASHRLNQDVWSNETILTLLRGNFIFWQRNKTLRQARYYIEKYNLEGQVLPHTAILDPRTGAPLLKVVGFVEPEDLSMALVEFLENNS 3131
+DG+RAP RLI PG ++G AG L+R G + IF P + ++F QKKWL+VN+QD EEFASH LN+D WS+++I ++RGNFIFWQ + Y + Y V P AI+DPRT ++++ GF+EP L+ L +FL+ +S
Sbjct: 13 LDDDGVRAPDEVKRMRLIDAPPPG--TIGGYAGPRSVAPRLMRNLKQEAQARGLG--------GNLASIFRPPIDIMEDTDFDNAVASANLQKKWLLVNMQDDEEFASHMLNRDTWSDDSIKEIVRGNFIFWQTFHKGAMGQRYTQFYR--PTVYPLIAIIDPRTKQKVMEITGFIEPRVLAQRLADFLDGHS 193
BLAST of mRNA_P-fluviatile_contig61.12843.1 vs. uniprot
Match: I0YL99_COCSC (UBX domain-containing protein n=1 Tax=Coccomyxa subellipsoidea (strain C-169) TaxID=574566 RepID=I0YL99_COCSC) HSP 1 Score: 105 bits (263), Expect = 4.160e-20 Identity = 62/188 (32.98%), Postives = 93/188 (49.47%), Query Frame = 3
Query: 2577 EDGIRAPLPAMTDRLIGGIGPGGDSLGTGAGGL-LRXXXXXXXXXXXGPVGGAEEKDHTDWIFNIPEGLSFPSNFLETRQICKAQKKWLMVNIQDHEEFASHRLNQDVWSNETILTLLRGNFIFWQRNKTLRQARYYIEKYNLEGQVLPHTAILDPRTGAPLLKVVGFVEPEDLSMALVEFLENNSID 3137
E+ +R PLPA+ DRL G + G+ + ++ GG + +F P L F E + Q +WL++N+Q + EFASH+LN+D WS++T+ T++RG+FIFWQ N Y L LP T ++DP TGA G +EP+ L LV FL+++ D
Sbjct: 72 EEHVRPPLPAVRDRLYGETFTSRGASGSQSHQQEVQAFRDFKAETSKSRAGGKSNQPGLAGLFEPPHDLMFKGTLEEAKAAALEQSRWLLINVQSNSEFASHQLNRDTWSDDTVKTIIRGSFIFWQVNDASENGSKVKAFYRLTE--LPVTLVIDPVTGASPKAWTGAIEPQRLIEELVPFLDHDIHD 257
BLAST of mRNA_P-fluviatile_contig61.12843.1 vs. uniprot
Match: A0A7S1HAU8_HEMAN (Hypothetical protein n=1 Tax=Hemiselmis andersenii TaxID=464988 RepID=A0A7S1HAU8_HEMAN) HSP 1 Score: 106 bits (264), Expect = 4.760e-20 Identity = 58/161 (36.02%), Postives = 89/161 (55.28%), Query Frame = 3
Query: 2718 PVGGAEEKDH-TDWIFNIPEGLSFPSNFLETRQICKAQKKWLMVNIQDHEEFASHRLNQDVWSNETILTLLRGNFIFWQRNKTLRQARYYIEKYNLEGQVLPHTAILDPRTGAPLLKVVGFVEPEDLSMALVEFLENNSIDQV-KA-PALKTIGLGNITHH 3191
PV E KD + +F P L F NF R+ + KK+ +VNIQ H+EFASH LN+D W +E + ++R +F+FWQ+ R+Y+ Y LP I+DP TGA L ++ G+ PED+ L FL++++ ++ KA P +G+ +H
Sbjct: 117 PVSTGESKDTGMEMLFPPPADLMFQGNFDALRKGAEEDKKYCLVNIQKHDEFASHALNRDTWKSEQVCQVVRSSFVFWQQQFESISGRHYLSLY--ASHDLPVVDIIDPMTGALLDRIEGYTTPEDMVERLTRFLDSHTWGKMGKAMPTQVAMGMSQAQYH 275
BLAST of mRNA_P-fluviatile_contig61.12843.1 vs. uniprot
Match: C5LRI8_PERM5 (UAS domain-containing protein n=1 Tax=Perkinsus marinus (strain ATCC 50983 / TXsc) TaxID=423536 RepID=C5LRI8_PERM5) HSP 1 Score: 96.3 bits (238), Expect = 1.210e-19 Identity = 44/99 (44.44%), Postives = 63/99 (63.64%), Query Frame = 3
Query: 2757 IFNIPEGLSFPSNFLETRQICKAQKKWLMVNIQDHEEFASHRLNQDVWSNETILTLLRGNFIFWQRNKTLRQARYYIEKYNLEGQV-LPHTAILDPRTG 3050
+FN+P+GLS P F E + +K+WL+VNIQD+E F SH LN+D+W + LL+ +FI WQR+K +A Y+ Y + + LP +LDPRTG
Sbjct: 3 LFNLPKGLSSPLPFAEVIAKARCEKRWLIVNIQDNENFVSHSLNRDIWKQSMVQDLLKTSFILWQRSKEEAEAVQYLTYYCKDDEAPLPLVHVLDPRTG 101
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 | 537.3 |
| Seed ortholog evalue | 1.3e-149 |
| Seed eggNOG ortholog | 2880.D8LLD2 |
| Preferred name | UBXN7 |
| KEGG rclass | RC00029 |
| KEGG ko | ko:K00006 |
| KEGG Reaction | R00842 |
| KEGG Pathway | ko00564,ko01110,ko04011,map00564,map01110,map04011 |
| GOs | GO:0003674,GO:0005488,GO:0005515,GO:0005575,GO:0005622,GO:0005623,GO:0005634,GO:0005654,GO:0005737,GO:0005783,GO:0005789,GO:0005829,GO:0006464,GO:0006508,GO:0006511,GO:0006807,GO:0008134,GO:0008150,GO:0008152,GO:0009056,GO:0009057,GO:0009987,GO:0010498,GO:0012505,GO:0016020,GO:0016604,GO:0019538,GO:0019899,GO:0019941,GO:0030163,GO:0030674,GO:0031625,GO:0031974,GO:0031981,GO:0031984,GO:0032182,GO:0032991,GO:0034098,GO:0036211,GO:0042175,GO:0043130,GO:0043161,GO:0043170,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0043233,GO:0043412,GO:0043632,GO:0043687,GO:0044237,GO:0044238,GO:0044248,GO:0044257,GO:0044260,GO:0044265,GO:0044267,GO:0044389,GO:0044422,GO:0044424,GO:0044425,GO:0044428,GO:0044432,GO:0044444,GO:0044446,GO:0044451,GO:0044464,GO:0051603,GO:0060090,GO:0070013,GO:0071704,GO:0098796,GO:0098827,GO:1901564,GO:1901565,GO:1901575 |
| EggNOG free text desc. | ubiquitin binding |
| EggNOG OGs | KOG1364@1,KOG1364@2759 |
| Ec32 ortholog description | UAS |
| Ec32 ortholog | Ec-27_002200.1 |
| EC | 1.1.1.8 |
| COG Functional cat. | S |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko00001,ko01000 |
| Hectar predicted targeting category | other localisation |
| Exons | 11 |
| Model size | 4109 |
| Cds size | 2619 |
| Stop | 1 |
| Start | 1 |
Relationships
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622817026.9659066-UTR-P-fluviatile_contig61:309959..310163 | 1622817026.9659066-UTR-P-fluviatile_contig61:309959..310163 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig61 309960..310163 - |
| 1693570877.681615-UTR-P-fluviatile_contig61:309959..310163 | 1693570877.681615-UTR-P-fluviatile_contig61:309959..310163 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig61 309960..310163 - |
| 1622817027.1136794-UTR-P-fluviatile_contig61:320472..321758 | 1622817027.1136794-UTR-P-fluviatile_contig61:320472..321758 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig61 320473..321758 - |
| 1693570877.8257573-UTR-P-fluviatile_contig61:320472..321758 | 1693570877.8257573-UTR-P-fluviatile_contig61:320472..321758 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig61 320473..321758 - |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622817026.9796646-CDS-P-fluviatile_contig61:310163..310295 | 1622817026.9796646-CDS-P-fluviatile_contig61:310163..310295 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig61 310164..310295 - |
| 1693570877.6981385-CDS-P-fluviatile_contig61:310163..310295 | 1693570877.6981385-CDS-P-fluviatile_contig61:310163..310295 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig61 310164..310295 - |
| 1622817026.994538-CDS-P-fluviatile_contig61:311007..311109 | 1622817026.994538-CDS-P-fluviatile_contig61:311007..311109 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig61 311008..311109 - |
| 1693570877.7090538-CDS-P-fluviatile_contig61:311007..311109 | 1693570877.7090538-CDS-P-fluviatile_contig61:311007..311109 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig61 311008..311109 - |
| 1622817027.007589-CDS-P-fluviatile_contig61:312134..312449 | 1622817027.007589-CDS-P-fluviatile_contig61:312134..312449 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig61 312135..312449 - |
| 1693570877.7190309-CDS-P-fluviatile_contig61:312134..312449 | 1693570877.7190309-CDS-P-fluviatile_contig61:312134..312449 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig61 312135..312449 - |
| 1622817027.0189455-CDS-P-fluviatile_contig61:313080..313245 | 1622817027.0189455-CDS-P-fluviatile_contig61:313080..313245 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig61 313081..313245 - |
| 1693570877.7295878-CDS-P-fluviatile_contig61:313080..313245 | 1693570877.7295878-CDS-P-fluviatile_contig61:313080..313245 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig61 313081..313245 - |
| 1622817027.0324624-CDS-P-fluviatile_contig61:313920..313971 | 1622817027.0324624-CDS-P-fluviatile_contig61:313920..313971 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig61 313921..313971 - |
| 1693570877.7412133-CDS-P-fluviatile_contig61:313920..313971 | 1693570877.7412133-CDS-P-fluviatile_contig61:313920..313971 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig61 313921..313971 - |
| 1622817027.0440357-CDS-P-fluviatile_contig61:314196..314271 | 1622817027.0440357-CDS-P-fluviatile_contig61:314196..314271 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig61 314197..314271 - |
| 1693570877.7517998-CDS-P-fluviatile_contig61:314196..314271 | 1693570877.7517998-CDS-P-fluviatile_contig61:314196..314271 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig61 314197..314271 - |
| 1622817027.0548673-CDS-P-fluviatile_contig61:314732..314820 | 1622817027.0548673-CDS-P-fluviatile_contig61:314732..314820 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig61 314733..314820 - |
| 1693570877.7609627-CDS-P-fluviatile_contig61:314732..314820 | 1693570877.7609627-CDS-P-fluviatile_contig61:314732..314820 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig61 314733..314820 - |
| 1622817027.068023-CDS-P-fluviatile_contig61:315711..315833 | 1622817027.068023-CDS-P-fluviatile_contig61:315711..315833 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig61 315712..315833 - |
| 1693570877.7747514-CDS-P-fluviatile_contig61:315711..315833 | 1693570877.7747514-CDS-P-fluviatile_contig61:315711..315833 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig61 315712..315833 - |
| 1622817027.0798848-CDS-P-fluviatile_contig61:316313..316394 | 1622817027.0798848-CDS-P-fluviatile_contig61:316313..316394 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig61 316314..316394 - |
| 1693570877.7865825-CDS-P-fluviatile_contig61:316313..316394 | 1693570877.7865825-CDS-P-fluviatile_contig61:316313..316394 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig61 316314..316394 - |
| 1622817027.0899448-CDS-P-fluviatile_contig61:317167..317584 | 1622817027.0899448-CDS-P-fluviatile_contig61:317167..317584 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig61 317168..317584 - |
| 1693570877.8017972-CDS-P-fluviatile_contig61:317167..317584 | 1693570877.8017972-CDS-P-fluviatile_contig61:317167..317584 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig61 317168..317584 - |
| 1622817027.1035326-CDS-P-fluviatile_contig61:319401..320472 | 1622817027.1035326-CDS-P-fluviatile_contig61:319401..320472 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig61 319402..320472 - |
| 1693570877.8154755-CDS-P-fluviatile_contig61:319401..320472 | 1693570877.8154755-CDS-P-fluviatile_contig61:319401..320472 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig61 319402..320472 - |
The following polypeptide feature(s) derives from this mRNA:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig61.12843.1 >prot_P-fluviatile_contig61.12843.1 ID=prot_P-fluviatile_contig61.12843.1|Name=mRNA_P-fluviatile_contig61.12843.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=873bp
MSSPLALDATSLEDLVALARAQGIHVEDETDRDSVVGLLQASAVPDVVSP PSPPPSSPTAAASVAAASRSGDSVGLEAFLEGGGGLSFMPPPSPPRPFSP MTVGSPLPPAVARAAAAAAAAAATAAAGAGEGAGVAQAAVLPSQQLSDIW ALGEMRRPHGDTSSSVGAEVGTEASRTTSRGGGFRGSAAGDDGNDEDGDG GDDGDDSDRGVDEDDMEAFSYHSSLSTGAPVAAAAAGRVRSRLAEIDREV AAEERREALEMFMAVTQVESSAAAAQFLDATDWSPDAAINLFLESGGDAP SATSAVGGFGSGSPGMNAVARAGAAAAAAAAVAARSGAETRRWPGDSRGS GYGDDDESDNEEAAAADADDDTISPLAALSGLVVPPPSMAAAAAAGQRDD PQRGGGGGGARGDGGGSAGDHDPLYPGGFSEDGIRAPLPAMTDRLIGGIG PGGDSLGTGAGGLLRGGMLRGAMGGGGPVGGAEEKDHTDWIFNIPEGLSF PSNFLETRQICKAQKKWLMVNIQDHEEFASHRLNQDVWSNETILTLLRGN FIFWQRNKTLRQARYYIEKYNLEGQVLPHTAILDPRTGAPLLKVVGFVEP EDLSMALVEFLENNSIDQVKAPALKTIGLGNITHHEEGVYSGRASPDTSV GTYGTSGKGGGGASYTKDSAYESFGSEEYVYDDEDDVGPQESSFDGDDNN TSSFTAAARSPTHTSAAGSGHGGVDGARTPAATEEGQSEGGAGAGAGAGA GAGAAELLGPWGRGTPGDELRAQQAASEAEDDEEGVPDEPEAGPGVTQVL FRLPGSGTIARRFWLRDHVSLLFRFVRTKGEGASTRPFDLLSGHPPSSLS PSKVLTLEAANLGNSAIMVRWL* back to topmRNA from alignment at P-fluviatile_contig61:309960..321758- Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig61.12843.1 ID=mRNA_P-fluviatile_contig61.12843.1|Name=mRNA_P-fluviatile_contig61.12843.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=11799bp|location=Sequence derived from alignment at P-fluviatile_contig61:309960..321758- (Porterinema fluviatile SAG_2381) CTAACCTGACTCGTTATAGGTGAGAATGAGAGACGCGTGCGCGCGATGAC
CACAGCGACTGACCGCAAATCTGGTGATATGTCTTAAAGTGCTGTTGCGC
TCGTGCATGTGCACGGTGTTCTCAGAGCTAGAGGGAGAGCGCGCCGTATA
CCGGCAGTTGCGCTCCCTCGTGAAAACGTAGCGCTCTGCTCTGTGCAACC
GTGCTGCGCCGACATCGGGGATAAGTGATTGCAGGCGCGCAGTGACTGAT
CTCTTGCAGCATCCAGACACGCATCTAGATTTTGCCGAAACAAGTCATCG
CCATAAAGCGGGATTTTTTTCGACAGCTCGTGTGTGTGTGAGGCATGTAT
GTGGATCCTACCCAAGGCGTAGACGAACGCCGTACCACTCGCGCGCATGC
CGCGGGTGAAGATCAGCAGGGCGTGTGTTGCTACGAAGACCTCTAGTGAA
GTATCAGACAAAGGCGATTTTTCCGCCGGTTTGTGCGCGCCAGCCAAGTG
GGGGTGTTGATGAATCAGCAACTGGCCACACCCCGCAAGACGGCAGGGCA
GGTATGACTTCCGGGTTGGGCCACCTTTACGAAGCTTCGCCGTCGCCGCT
ATCAGGCGCCGCCAGGATCAGGACATAAAGCTCTCTACGGTACTCTTTAT
CTTAGTACGGGGGTTGCGCGGGCTTCGGAAAGGCTGAGTTCTTCGAAAGT
TGATCGAGGGGAAACATACAAAAAGGGTCATGAAACCCTTACCGTTTAAG
CCCAGGGACGGCGTGTTTGCATGCGAAGTCATCAAACTTATCGCGCGCAC
GCCAAGTCTCGTCCGTTCAGAATGCTGTCTGTCGGCCTTGTCTGCCGTCT
GCACATTCATCCCACACCGCCAAGCCATCGTCCTTGGGCGTAGGATGAAG
ACAGCGACTTAATTGGAGGCCACACCGTCATGCGCCCTGTCCTCCCCCAC
GCTCAACGTTGCTGCTCTCTCGTCCTCGCTCGCTGGCGCCATCAATCGTG
ACGTGTCGACAAAGGGATTGCAACAAGACTGTCAGTAAGACAGGACAGGG
AAAGACAGAACGGCAGGCCCGGTTCGGTGAAGAGCCAACCCACCAACCGT
CAACAACTCCCTTCCTCTTGAGCCGGGCCGGATCGACGCCAGCCCCTGTC
GAACTGCTGTTCGGCTGGTTTTGGTCGCCGGGGCTGGCTGTCTAATCGTG
TGCGCTCTTGCGGTGGCGTCGAGCGATCCCAACAGAAACAGTCCCCGGGA
ATAGAAACGCACGCAGGACGGGAGTAGGGCAGATACATGTCGTCGCCGCT
CGCTCTCGACGCAACTTCCCTCGAGGACCTCGTGGCCCTGGCGCGTGCCC
AGGGAATACACGTGGAGGACGAGACTGATCGCGACTCCGTGGTCGGCCTT
CTGCAGGCGTCGGCCGTGCCCGACGTGGTGTCCCCGCCTTCGCCTCCGCC
GTCCAGCCCTACCGCCGCCGCATCCGTCGCCGCCGCTTCCCGGAGCGGGG
ATAGCGTAGGGTTGGAGGCGTTTCTCGAGGGTGGAGGAGGCTTGTCATTC
ATGCCTCCACCGTCGCCGCCGCGACCGTTCTCTCCGATGACTGTGGGATC
ACCGCTGCCGCCGGCCGTCGCTCGGGCAGCAGCAGCGGCGGCGGCGGCGG
CAGCGACGGCAGCAGCAGGAGCAGGTGAAGGAGCAGGAGTTGCACAAGCA
GCAGTCCTACCGAGCCAGCAGCTGAGTGACATTTGGGCTCTGGGCGAGAT
GCGCAGGCCGCACGGCGACACATCGTCGTCCGTGGGCGCGGAAGTCGGCA
CGGAAGCGTCTCGGACGACCTCGCGAGGTGGGGGGTTCCGGGGCAGCGCG
GCTGGCGACGACGGCAACGATGAAGATGGCGACGGCGGCGACGACGGCGA
CGATTCGGACAGGGGGGTCGACGAGGACGACATGGAGGCGTTCTCCTACC
ACTCGTCCTTGTCCACCGGGGCGCCGGTGGCGGCGGCGGCGGCAGGTCGT
GTCAGAAGCCGACTCGCCGAGATAGACCGAGAGGTTGCGGCGGAAGAGCG
GCGGGAGGCGCTCGAGATGTTCATGGCCGTCACGCAGGTGGAGTCGAGCG
CCGCGGCCGCACAGTTCCTCGACGCCACGGACTGGAGCCCCGACGCCGCG
ATCAACCTCTTCCTGGAATCCGGGGGCGACGCGCCTTCGGCGACGTCGGC
GGTCGGAGGATTCGGGAGTGGGTCTCCGGGGATGAACGCGGTCGCGAGGG
CCGGGGCGGCGGCGGCGGCGGCGGCGGCGGTGGCGGCACGGAGTGGGGCG
GAGACGCGGAGGTGGCCAGGTGACAGCAGGGGCTCCGGCTACGGTGATGA
TGACGAGGTGAGCCAAAAGGACGGGAGGAGAGGCGGGTGCGACGAGTCGT
ACACGAGACCTCGCTGGAGGCGGGGCTGGTTGTTCCCTCTTCCATCATTA
AGTGCAGCAAGCGATCACAAATAATGTCGGAACGTCGTTGCTGCGCGAAG
ATAGCAGGCGATCTAGCCTTCTCTCATACGCGCGGGCGCGCCTAAAATGT
ATCGCCAAGATTCCAGGTGACCACTGGCCATCCCTTGATTTCTATTTATA
CTTGTATTGTACTTCCTCTGGAGACGGTGGGAAGATTCCGTTGTCATTGA
ACCTGTCCAACGACGACGCGGCGTGTGTGTTGGCTCTCAACTGCTGCGTA
TGTGTTTTCGTCTGCTGAGCATGGACTCCAAAGCCGGAGAGTCCAAGGCA
ACTTCACGACGATTTGTAGCAGCAGCATCAGCCTCAGCCTCAGCAAAATG
CTGCACCCTCCACCCCCTCCCATGGCTCAAGCCGTAGCGGCTTGCAAAAA
GTTCGAGCAAAAGAGGGGGTTGCTGTCGCGGGGGGGAGGTGTACTCATAG
TCGTGCATGCCGTAGTCGTTAGACCAATAACCTCTCGCATCCCTACAAAG
CCGGGACGGAGCACGCCGGGTTCTCACCGGACCAGGCTCTCACACCACCA
AGCGCGAAGCGCCGTGAGGTATTCGGCGAGTCGCATGAAGGGTGCGCTGC
ATCCTGCCAAGGGTGTTCGGCATACTTCCTTGCATAAGGATGACAGCTGC
GTATGACATAATTTATTTTCTGGTGCTTTCACTTCCAGAGACAGTTGTAA
GCGCTGTGTAACTGCCTCGAGGGTGCTTGACTAATTTAACACAACTTGGT
GCGATCATCCCCCTTGCGCGGAGTGAGGGTTCGCCACCCCGCACAACATG
ATCTTCTCGACCACCGCTGTGGTTACCGCCAAAAAAAGTAGAGGAAAAAA
AAGAGACGGTAACCTGGTTGCCGAGTTCACGAAGTGAATTGGCTTGCTTT
ACAACGTCGTCGCCAATCGACGAAAGCCCAATCCCGATGGCAAACACCGA
GGTCAGAGCCAGCGGGAGGGGGGTCGCGGGGGGAGTTTTCCTGGATCGCC
TGCGTCTTTCCCGCCGATCGCGTTTTCCTCGCGCTCAGAGTGGCACGCAC
GGCGTGGGTGCCGACCCAACCGATGAGGAGGAAAAAGATGAAAACATCCA
GAACTTTGACATTCGAAATAAAATGAAAACGATTCGGAGGCGACCCCGTG
GTGTTGTCCGTGAGAATTGTGAATCCACCAAGCTCTGCTCTCGGCCGGGG
TGGGGTTAGGTCATAACTGCGTGGGGCTAGTTCGGACAGCCGTATGACTG
CTGGAATTATCGAGAGAGCGAAGCAGTATTTCGCCTACGAGGTCCCCTCA
ATGAATCTAGGCAATAAATTCCCCACAGCACCCCTCAGCTCTCCGCGCTT
CGTGCACCGTGTTGGCGGGGTTAGTACCGGCCTCTTGGCTGGTGAAGAAC
CCGGTCGGTCCACCGCTGGCTTGGAGCCCGACAGGTGTATCCGCGTCCTA
CTACATTCAACTCCCCCTGTTCCCTCCTCGTGTCCGTGTGGATGCCGCAC
GTTTGTGTACCCTGCTTACCGCCCTCTGCTTCGGCTCAAATGAGACAGAA
ATCCTTGTTGACGTGATCAGCACATACGACCGTTACGCACTAATGGTGAA
GTTTCATAATCTTCCCCGCTCCCGTCCCTTCGCGCGTGCTCTTCGCCCTC
CCCTTTTGCCCTCCGCTCTGCGCTGCATATTTCTATTGATCCGTTTTGTA
TTTCTTCTTCTTTGCGCTTAACAGAGCGACAACGAGGAGGCCGCGGCGGC
GGATGCCGACGACGACACGATTTCGCCTCTCGCCGCCCTGTCGGGCCTCG
TCGTCCCGCCGCCATCGATGGCGGCTGCCGCCGCCGCTGGCCAGCGGGAC
GATCCGCAACGCGGCGGCGGCGGCGGCGGTGCTAGGGGAGACGGGGGCGG
CAGCGCCGGAGACCACGACCCCTTGTACCCAGGGGGGTTCAGTGAAGATG
GCATTCGAGCCCCTCTGCCGGCCATGACGGACCGCCTTATCGGAGGCATA
GGACCCGGGGGAGATAGCCTCGGCACAGGCGCGGGCGGTCTGCTCCGGGG
GGGGATGCTGCGTGGGGCGATGGGGGGCGGTGGACCGGTCGGCGGAGCGG
AGGAGAAGGACCACACTGACTGGATCTTTAACATCCCGGAGGTGTGTTTC
GTTGTTCTCGATGCCGGTTCGCCGCTCGCCGCTTTGCCGCTTGCTGCTGC
TTCTGCAGCTGGTGGTACTGATCTTGCTGCTGCTGCTGCTGCTGCTGCTG
CTGCTGCTTGTTGCTCATATCCCCTTCCGGGGGGTGCTGTCGTCCCGTAC
AGCAGTACCCGTTCCGTTGTCGTGACATGTGTCGGCTCCAAGCGCGCTGC
GCCGCTTGCGGTGTTTCCTCGCGGCCCTGCACGGCTTGTGGTCTGTCTTT
CAAAGCAACTCCCATCAAATGCTCGGGACAAGGTAACTGGTAACGCAGAG
CTAGGGTTCGTAGTTGATCGATCTCTGCACGAAAAGGCGGTCTGTCTTGG
CACGGGTGCGAGACGCACATAAGGGTACAAAGCAGAGATTGGACAGCGGT
TTTATTTTATTTTCGTCGTGAACATAAGCGCCAATCTTGCCGCCGCCCCC
GCCACGATCATCGCGGCGCCACTTCCCCAATTCCCATTCCAACAACAAAA
GCAACGACGCTCAAGTCTCAGGCGCTGATATCTCGATTGGACTCTCCCCC
CCTGACAGCCACCCCTCCCATAGTTGTCTGCAGTCCCTCCCGGTTCCCAA
GTCCACGCCACTCGTTCCTTGTTGTCTCCCTTTGTCCCCCGCGCCCCTCC
TCTCCCCTTCCCCGCCGCCTCGCCGTTTTGTTTCTCCCTTCGCGAAACGA
ATGCACGTACAAACAAAACGTCTCGGCTTCGTCCGCTCGGCCGACCGACC
GCGTCAAACAACAGGGCCTGTCGTTCCCGTCCAACTTCCTGGAGACCCGC
CAGATCTGCAAGGCGCAGAAGAAGTGGCTTATGGTCAACATTCAGGCAAG
AAGAGATGAGGGGCACAAGCGTTGCTACCCACGCGCCCAAAAACCGTCTT
GGAAACGCAGTGTGTGCCCCCCCGTTATGCAGCTCTGTTCAGTCGAACTC
GGTCTGTACGCGACATTCGCCCGCAAAGCTTGTCGACAAGAAGCTCATGC
TCTTTCCTCTTCCGGCCCCTCTAGCGCGTGATGGCTGGGAGCCAGGGTAC
GGCAAGGAGCCAGGATCAGGCCACAGAGATTGATTAATCTCGCTATTTTT
CTCTCATCATGGCCCCCTCCCCCCGTCTGCTTCAGAATTTTTTCTGCTTT
CTCCGCACGCTTCCATTTCCCAAGCAAGCCCCCTTTCCTTCCCCCAAAAG
CGCATTTTCAACGCCTCGCTGTCAACTTGACAAACGCTCCTGCAAAACAG
CCGTGGTAGCTGCTTCGCTGAGGCAGCCTCTACCAACCTCCGCCCGTGGG
GTTTCCCTTCTTTCTAATGTCACAGGACCACGAGGAGTTCGCCAGCCACC
GGCTGAACCAGGACGTCTGGTCGAACGAGACGATCCTCACGCTGCTGCGG
GGGAACTTCATTTTCTGGCAGAGGAACAAGACCCTCAGACAGGCCAGGCG
AGTCGTCCCCCCCTTTTTGGTCGACCATTGTGTTGGTGTTGTCGTCCGGC
AGTGGTGGCAGTGTGGCTGTCCGTGTTGTTGGCCGTTGCGCTTGTTGACA
CTGGTCTTTATTGTGGTGGTGGTGGTGGAGGTGGCAGGGTTGGGGTTGTC
GCCCTTTCTTCGGCGATTTCTGCTGTTACTGATGCTGCTGCTGCTGCTGC
TGCTGCCCTCCTTGACGTATGATTGCGGCGTTCGCCGTGACACCTTCGAG
GGCGGATCGGTGGCTAGGGATTGATCGATCCAACGCCCCAGCCACAGAAG
TTCGATCCGCACCCCAAAGCTAAAAGTTCTTGTTCACTTCTCGGACAACG
CCACGCGGCGGCATTCAAGCTACTCTCGATTGCACTGAATGATCACTTTT
GCCATGTTTGGCTGCTCAGCTCCACACTTGCTCCTGACGCTTTGTTTGCT
ACAGTAGCACGTACCCCCCACCTTGGCATTCAAGCTACTCTCGATTGCAC
TGAATGATCACTTTTGCCACGTTTGGCTTCTCAGCTCCACACTTGCGCCT
GCGGCTATGTTTGCTACAGTAGCACGTATCCCCCACCTCGAAACGTCGAG
ACCCCTTACGTTGCCGGTGCCGAAATCCTGTCATGGTAGATTGCCAGCCG
CGCAACACGCGAGCAGCACATCAGCTGACGAATCAAGCAGCCAACCAACC
GGCCAGAATGACCCACCAACCCTCCTACCCAACCGACCAACCAACCGACC
GACCGACCAACCAACCAACCAACCAACCAAACAACCAACCAAGCGAATTT
TTTACCACTGTTCTCCTTTCGTCTCGTTCGTTTTGCTATCTGGCTTCTGC
ACGTCTGGGAAAAACGAAACCCTTTTTTTTTGTAACAGGTATTACATTGA
GAAGTACAATCTGGAGGGACAAGTGCTGCCGCACACGGCCATCCTCGACC
CCCGGACGGGAGCTCCGCTGCTCAAGGTGAGACACCTCCAGCGGGGGTGG
ATGCGATTGGTCTGATTCTCACTCTTGCTTTTTCTCCCATTTGATGTCCC
TCTGTCTCTCGGTCTTCCCAGGTTAGTACGGGAGCACCTCGAAACCAAAC
GCACTCGTGAGCAACCATGCTTATCGTTGCGCACCGATAGTGATAGAGTA
TACACCGCCGCCGTTTTTCTTTCTTATTCCTTTCTGGAGAGAAAGTGTTC
TCCCGCAGTTGCCCCGCTCGATCGATACTCATGGAGCGAGGCTTCCGATG
TATTTTATCGAACGTGTAGCCAGATGGCAAATGGAAGATGCAGGTTCGGC
TCCACGAAAAATAACAGTCCGTATCAGTATCCATTCGCGTGTTCGATTTA
TGGACAAAGTACGATAGCAGGGTGAAGGAAATGCATCGAGCTTGTCGAAA
ATCTGAATCGCGAGTTTTTTGTTACAAATCTAATAAGGTGGTGGGGTTCG
TGGAGCCGGAGGACCTGAGCATGGCCCTGGTGGAGTTCCTGGAGAACAAC
AGCATTGATCAGGTGGGGCGGCGAGCAACAGCTGAAACCCCGAAAAGGTC
ACAACGATCATCGCGCTTAGTTTCGCTAAACACCGAAGCATAACGGCAGC
TGTGCAGAGTCGAAATCCGAACGAGAGGTTCGGCGGGTGGATCGATCACG
GTAGGTCGATCGATTGACGGCCCCAGTAGACCGAGGCTGACCTGAAATAT
ATCCTTTCGCCTCCTTTCTACCTTCTACCTCGTCCAGGTAAAAGCGCCGG
CGCTCAAGACGATCGGCCTTGGCAACATCACGCACCACGTGAGGCGGTGG
GACCGGCTAATTGGTGGCGCGTCTTTTACCACATACTGTACTGTTGTTGT
TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG
TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT
GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT
TGTTGCTGTTGCTGTTGTTGTTGCTGTTGTTGTTGTTGTTGCTGCTGCTG
CTGCTGCTGCTGTTGATGTTGTTGTTCTTGTTGTTGTATTGGCGTTGCGG
CTGTCGTTATCGTCGACGGCGTCGTTGTTGACGCTGGTGCTGTTCCCCTG
TCGTCTTGTCGTTGTGTTCGTCGTCGCAGCGATCATGCTACATCCGGAAG
AAAGACAGCGATCGCTCGGGATGATCGAAAGTCACGCGCATCGAATGCCT
CTCGTTGGCAATGCCGCACCGTATCGTGGAAGTAAGTAGCACGTGGCCCG
GCGTAGTCTTGGCCTTTTCTATACAAGAAGCGCGTGGGCAACTGTCTGTC
CCATACCCAAGACTTGAGAATGTCTCTCGCCTCCGCCCAACCCCCGGTCG
ACTTCATATCCCACTCACCCCACACCCCACACACCCATCCTCCGGCTTTC
TTGGTGATTAAAGGAGGAGGGCGTCTATTCAGGAAGGGCGAGCCCGGACA
CGAGCGTCGGCACGTACGGCACCAGCGGTAAGGGGGGCGGGGGCGCGTCG
TACACAAAAGACTCGGCCTACGAATCGTTCGGCAGCGAGGAGTACGTATA
CGACGACGAAGACGACGTCGGTCCCCAGGTAAGTGGAAGAAGCACGAGGA
ACTCCGGGAGCGAAAGGGAAGGGGGGGGGGGTTGTCCCCATGACGATGTA
GACCTCTCACTCTTCAAAAGCCGGGATGAAGCGCGTGTATTGTATCCACG
GTACGTCTCTGTCAGACAAAGTGGGAGCAACTGGTCTCGGTGTTTGTTGT
GCTTTGTGCATGAAAGTATTGCGGGTCCGTGTGTATTTTCGGCACGATGA
AAGCCACGTTGTGTTAGACCACTTGCTTTCCTTTGTGACAGGAGGCACGC
GTTGCGTTCCATGTATTTGACTTGATAGGGCGCACTTTTGACCGGTGTGT
CGTTGTTGATTGTTCGTTGCTGCTTTTGCTGCTGTGGTGCTGTTGCTATG
TGTGGAGTGCCATCGGTAGTGTCATCTGCTGTAAATTCTGCCCTCGTTTC
ATCCACCGTCTGTATCCCCACATTGGCCTTTCTCCTTTCTCCCTACTACC
CCTCCCTTTCCGCGTCTCTCGTCTCTCTTGCGCGTACGACACCCCGAACT
GCTCCCCCCCCCTCTAACCCCGCGCACGTGCGCCCGGACCCCCCGCCTCG
CTCACCACCCTCCACCCAAACAATCAACCGATCAATCAATCAATCAATCA
ATCATTCAGGAATCGAGCTTCGACGGCGACGACAACAACACCAGTTCGTT
CACCGCAGCCGCTCGCTCCCCCACCCACACCTCGGCCGCCGGCAGCGGCC
ACGGCGGCGTCGACGGCGCGAGGACGCCAGCAGCGACGGAGGAGGGCCAG
AGTGAAGGGGGGGCGGGGGCGGGGGCGGGGGCGGGGGCGGGAGCAGGAGC
GGCGGAGCTGCTTGGGCCGTGGGGGCGAGGGACGCCGGGAGACGAGCTAC
GGGCGCAGCAGGCGGCCAGTGAAGCGGAGGATGACGAGGAGGGGGTGCCC
GACGAACCGGAGGCAGGGCCGGGGGTACGTGCTAAGAACGCAAGGCTTTC
CCCTTGATTGTGTTTAGGCTAGGCACACAAGACAAATCAGAGAGAAAGAA
TATGTGCGAGGTTGCTGGGCGAGCGGGGGCAGCAACCACTGGGAACGCAG
GGGGGCGGTCCGAGCGGAAAAGTTGGGGAATACTTGTACAAAAGCTGGAG
AACATGGAGTAGGGTTAAATCTCGCTATGTCTTGTGGCTGGTTTTGTGAG
GGGCACCCAGCTCGCGTTCAGGGAGTGGGGTTGCGCTCGTTTTCCGCTTG
GCGCTCTCGGTCGCAAAGTTTGTCCCCATTTGGCGACTTGCTTTTTAGTG
AAATATGTGATGACAGTCCGTCACTTGCTGCCTTATGTTTACGGTTTCAC
GCATGCAGGGCAACATTTGGTGTAAGCCGTAGCAGCGATGAGCGGGGGGG
AGGGGGGGGGGGTACTCGTTGCTGCTTGCCTTAGTGTCATTTAACCATTG
ACCATGCATCCCTCTCGAGACGAAGCAAGGGGGGGCTCGGGGCAGGGAGG
TGAAGAGAGGTTTTGGCACCTTGTCGTGTCGAATAAGCTTGTCTCACTCA
GCGTGCTAAATACCCGAGCGTTGCTCACCTTCCGTGACGTTGCAAATGCG
GCTTACCGAATCTTGGTTTCTGCTTACTGCGTTGGGCTCGCGTTTTTTAT
TCCTGAGCTCACGACTCGCCACAGTTCCTCTTGGAATATTCCCCCTTTTC
CTTTCGTTCCTCGTTCCTCAAATCTCGCAGTCTTCATTGCTGTCGTCCTG
TCGCTCTGGCTACCTCCGCCATGCCGTCGTTCCTGTGAGCTGCTCTGGTG
GTTGATTTCTTGTCGCCTACCGGAGGGTTTGGTTCAGGGTTTCCAAGGCG
CGTGAGTATTCCTTCCAATGCCGTCTCAAATGACACGTACGTCAAAGCAC
TTTGTTGTGGCTTATCGTTGCTTGTCGTACGTCTCCCTCTCTCTCTCTCT
CTCTCTCTCTCTCTCTCTCTCTCTTTGCGCTTGTGCGTGTCCGTGGCAGG
TGACTCAAGTGCTGTTTCGGCTACCTGGGAGCGGGACCATCGCGCGCCGA
TTCTGGCTCAGGGATCACGTGTCGCTGCTCTTCCGGTTCGTCCGAACGAA
GGTACGTATTTACGGAGAGAAAAAACGTTGGTGAGGTGAGGTGCGGACAC
GCTCATCATGGGAGTATTTCGCGGTTGTGATGGTGAAGCTCCAGTCGGGC
CTGTTGGCGGCGTTAGCGGCCGACACCGAGGATTGACTCGGGAGCATCGA
CGTGACGTGACGTGATTTTCCGCCCTTGGGGCGACCCTGGGAGGAAGCGG
GGCAGCGAAATGTACGAGAGGGTTCATTTTTCGTGTCAACGGTGCTCCTC
TCTCTCTGTTGAATTTATTCTCTAGTTTCTTCTCTCTTGCCATCTATTCT
TCCTTCGCCCTCGCCCTTCCCATTTGCATGATGTCCGATGGGAGATGCGA
ACAATTGCCTGTTGTTTTTTCATCGAACTCCTTCCACGAACTGTATCGCG
CATCCTCACTTTTTCCCACCGCGCCAACAAGCCATTGTTTTGCGACCCTT
CTTTTCACCACGTGGTTCGTGTATTCTCCATCGTCCCCGCCGCACTGCTG
TTTATCTCTTTCACTCTTTCTCACGTCTCTCCCCTTTCTGTATTGCCTCG
CTCTGTCCCCTTTCTGTATTGTCTCGCTCTGTCCCCTTTCTGTATTGCCT
CGCTCTGTCCCCTTTCTGTCGCTTCCTTCCGCTCGGGGGTTGGTGGCACT
CCGGACGACATGGGGTATGTACAACCTCGACGAAATCGGGCGCGTTGTTG
TCAACAACCATAGGGAGAAGGGGCGTCGACCCGGCCGTTCGACCTCCTGT
CCGGCCATCCCCCTTCTTCCCTCTCGCCCAGCAAGGTTTTGACCCTCGAG
GCCGCCAACCTCGGCAACTCCGCCATCATGGTGCGGTGGTTATGATGTGG
CCGACAGCCTGTGGGCGGTCTTAGACGAGATTGAGAAATGGCGCACAACT
GAAAAGGCCGAACGAACGAACAGGCGAAGGAGCCTTTAAATCGATCGACC
GCACCCGCCGGTTTTTTGCCCGTCGTTTGTGTCGGACCATCGAGGTCGTC
CGCCTCTGTGAAGGGAAGCGGCGAAACCGGGGGGGAGTCGCAGAAGGGG back to topCoding sequence (CDS) from alignment at P-fluviatile_contig61:309960..321758- >mRNA_P-fluviatile_contig61.12843.1 ID=mRNA_P-fluviatile_contig61.12843.1|Name=mRNA_P-fluviatile_contig61.12843.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=5238bp|location=Sequence derived from alignment at P-fluviatile_contig61:309960..321758- (Porterinema fluviatile SAG_2381) ATGTCGTCGCCGCTCGCTCTCGACGCAACTTCCCTCGAGGACCTCGTGGC CCTGGCGCGTGCCCAGGGAATACACGTGGAGGACGAGACTGATCGCGACT CCGTGGTCGGCCTTCTGCAGGCGTCGGCCGTGCCCGACGTGGTGTCCCCG CCTTCGCCTCCGCCGTCCAGCCCTACCGCCGCCGCATCCGTCGCCGCCGC TTCCCGGAGCGGGGATAGCGTAGGGTTGGAGGCGTTTCTCGAGGGTGGAG GAGGCTTGTCATTCATGCCTCCACCGTCGCCGCCGCGACCGTTCTCTCCG ATGACTGTGGGATCACCGCTGCCGCCGGCCGTCGCTCGGGCAGCAGCAGC GGCGGCGGCGGCGGCAGCGACGGCAGCAGCAGGAGCAGGTGAAGGAGCAG GAGTTGCACAAGCAGCAGTCCTACCGAGCCAGCAGCTGAGTGACATTTGG GCTCTGGGCGAGATGCGCAGGCCGCACGGCGACACATCGTCGTCCGTGGG CGCGGAAGTCGGCACGGAAGCGTCTCGGACGACCTCGCGAGGTGGGGGGT TCCGGGGCAGCGCGGCTGGCGACGACGGCAACGATGAAGATGGCGACGGC GGCGACGACGGCGACGATTCGGACAGGGGGGTCGACGAGGACGACATGGA GGCGTTCTCCTACCACTCGTCCTTGTCCACCGGGGCGCCGGTGGCGGCGG CGGCGGCAGGTCGTGTCAGAAGCCGACTCGCCGAGATAGACCGAGAGGTT GCGGCGGAAGAGCGGCGGGAGGCGCTCGAGATGTTCATGGCCGTCACGCA GGTGGAGTCGAGCGCCGCGGCCGCACAGTTCCTCGACGCCACGGACTGGA GCCCCGACGCCGCGATCAACCTCTTCCTGGAATCCGGGGGCGACGCGCCT TCGGCGACGTCGGCGGTCGGAGGATTCGGGAGTGGGTCTCCGGGGATGAA CGCGGTCGCGAGGGCCGGGGCGGCGGCGGCGGCGGCGGCGGCGGTGGCGG CACGGAGTGGGGCGGAGACGCGGAGGTGGCCAGGTGACAGCAGGGGCTCC GGCTACGGTGATGATGACGAGATGTCGTCGCCGCTCGCTCTCGACGCAAC TTCCCTCGAGGACCTCGTGGCCCTGGCGCGTGCCCAGGGAATACACGTGG AGGACGAGACTGATCGCGACTCCGTGGTCGGCCTTCTGCAGGCGTCGGCC GTGCCCGACGTGGTGTCCCCGCCTTCGCCTCCGCCGTCCAGCCCTACCGC CGCCGCATCCGTCGCCGCCGCTTCCCGGAGCGGGGATAGCGTAGGGTTGG AGGCGTTTCTCGAGGGTGGAGGAGGCTTGTCATTCATGCCTCCACCGTCG CCGCCGCGACCGTTCTCTCCGATGACTGTGGGATCACCGCTGCCGCCGGC CGTCGCTCGGGCAGCAGCAGCGGCGGCGGCGGCGGCAGCGACGGCAGCAG CAGGAGCAGGTGAAGGAGCAGGAGTTGCACAAGCAGCAGTCCTACCGAGC CAGCAGCTGAGTGACATTTGGGCTCTGGGCGAGATGCGCAGGCCGCACGG CGACACATCGTCGTCCGTGGGCGCGGAAGTCGGCACGGAAGCGTCTCGGA CGACCTCGCGAGGTGGGGGGTTCCGGGGCAGCGCGGCTGGCGACGACGGC AACGATGAAGATGGCGACGGCGGCGACGACGGCGACGATTCGGACAGGGG GGTCGACGAGGACGACATGGAGGCGTTCTCCTACCACTCGTCCTTGTCCA CCGGGGCGCCGGTGGCGGCGGCGGCGGCAGGTCGTGTCAGAAGCCGACTC GCCGAGATAGACCGAGAGGTTGCGGCGGAAGAGCGGCGGGAGGCGCTCGA GATGTTCATGGCCGTCACGCAGGTGGAGTCGAGCGCCGCGGCCGCACAGT TCCTCGACGCCACGGACTGGAGCCCCGACGCCGCGATCAACCTCTTCCTG GAATCCGGGGGCGACGCGCCTTCGGCGACGTCGGCGGTCGGAGGATTCGG GAGTGGGTCTCCGGGGATGAACGCGGTCGCGAGGGCCGGGGCGGCGGCGG CGGCGGCGGCGGCGGTGGCGGCACGGAGTGGGGCGGAGACGCGGAGGTGG CCAGGTGACAGCAGGGGCTCCGGCTACGGTGATGATGACGAGAGCGACAA CGAGGAGGCCGCGGCGGCGGATGCCGACGACGACACGATTTCGCCTCTCG CCGCCCTGTCGGGCCTCGTCGTCCCGCCGCCATCGATGGCGGCTGCCGCC GCCGCTGGCCAGCGGGACGATCCGCAACGCGGCGGCGGCGGCGGCGGTGC TAGGGGAGACGGGGGCGGCAGCGCCGGAGACCACGACCCCTTGTACCCAG GGGGGTTCAGTGAAGATGGCATTCGAGCCCCTCTGCCGGCCATGACGGAC CGCCTTATCGGAGGCATAGGACCCGGGGGAGATAGCCTCGGCACAGGCGC GGGCGGTCTGCTCCGGGGGGGGATGCTGCGTGGGGCGATGGGGGGCGGTG GACCGGTCGGCGGAGCGGAGGAGAAGGACCACACTGACTGGATCTTTAAC ATCCCGGAGAGCGACAACGAGGAGGCCGCGGCGGCGGATGCCGACGACGA CACGATTTCGCCTCTCGCCGCCCTGTCGGGCCTCGTCGTCCCGCCGCCAT CGATGGCGGCTGCCGCCGCCGCTGGCCAGCGGGACGATCCGCAACGCGGC GGCGGCGGCGGCGGTGCTAGGGGAGACGGGGGCGGCAGCGCCGGAGACCA CGACCCCTTGTACCCAGGGGGGTTCAGTGAAGATGGCATTCGAGCCCCTC TGCCGGCCATGACGGACCGCCTTATCGGAGGCATAGGACCCGGGGGAGAT AGCCTCGGCACAGGCGCGGGCGGTCTGCTCCGGGGGGGGATGCTGCGTGG GGCGATGGGGGGCGGTGGACCGGTCGGCGGAGCGGAGGAGAAGGACCACA CTGACTGGATCTTTAACATCCCGGAGGGCCTGTCGTTCCCGTCCAACTTC CTGGAGACCCGCCAGATCTGCAAGGCGCAGAAGAAGTGGCTTATGGTCAA CATTCAGGGCCTGTCGTTCCCGTCCAACTTCCTGGAGACCCGCCAGATCT GCAAGGCGCAGAAGAAGTGGCTTATGGTCAACATTCAGGACCACGAGGAG TTCGCCAGCCACCGGCTGAACCAGGACGTCTGGTCGAACGAGACGATCCT CACGCTGCTGCGGGGGAACTTCATTTTCTGGCAGAGGAACAAGACCCTCA GACAGGCCAGGACCACGAGGAGTTCGCCAGCCACCGGCTGAACCAGGACG TCTGGTCGAACGAGACGATCCTCACGCTGCTGCGGGGGAACTTCATTTTC TGGCAGAGGAACAAGACCCTCAGACAGGCCAGGTATTACATTGAGAAGTA CAATCTGGAGGGACAAGTGCTGCCGCACACGGCCATCCTCGACCCCCGGA CGGGAGCTCCGCTGCTCAAGGTATTACATTGAGAAGTACAATCTGGAGGG ACAAGTGCTGCCGCACACGGCCATCCTCGACCCCCGGACGGGAGCTCCGC TGCTCAAGGTGGTGGGGTTCGTGGAGCCGGAGGACCTGAGCATGGCCCTG GTGGAGTTCCTGGAGAACAACAGCATTGATCAGGTGGTGGGGTTCGTGGA GCCGGAGGACCTGAGCATGGCCCTGGTGGAGTTCCTGGAGAACAACAGCA TTGATCAGGTAAAAGCGCCGGCGCTCAAGACGATCGGCCTTGGCAACATC ACGCACCACGTAAAAGCGCCGGCGCTCAAGACGATCGGCCTTGGCAACAT CACGCACCACGAGGAGGGCGTCTATTCAGGAAGGGCGAGCCCGGACACGA GCGTCGGCACGTACGGCACCAGCGGTAAGGGGGGCGGGGGCGCGTCGTAC ACAAAAGACTCGGCCTACGAATCGTTCGGCAGCGAGGAGTACGTATACGA CGACGAAGACGACGTCGGTCCCCAGGAGGAGGGCGTCTATTCAGGAAGGG CGAGCCCGGACACGAGCGTCGGCACGTACGGCACCAGCGGTAAGGGGGGC GGGGGCGCGTCGTACACAAAAGACTCGGCCTACGAATCGTTCGGCAGCGA GGAGTACGTATACGACGACGAAGACGACGTCGGTCCCCAGGAATCGAGCT TCGACGGCGACGACAACAACACCAGTTCGTTCACCGCAGCCGCTCGCTCC CCCACCCACACCTCGGCCGCCGGCAGCGGCCACGGCGGCGTCGACGGCGC GAGGACGCCAGCAGCGACGGAGGAGGGCCAGAGTGAAGGGGGGGCGGGGG CGGGGGCGGGGGCGGGGGCGGGAGCAGGAGCGGCGGAGCTGCTTGGGCCG TGGGGGCGAGGGACGCCGGGAGACGAGCTACGGGCGCAGCAGGCGGCCAG TGAAGCGGAGGATGACGAGGAGGGGGTGCCCGACGAACCGGAGGCAGGGC CGGGGGAATCGAGCTTCGACGGCGACGACAACAACACCAGTTCGTTCACC GCAGCCGCTCGCTCCCCCACCCACACCTCGGCCGCCGGCAGCGGCCACGG CGGCGTCGACGGCGCGAGGACGCCAGCAGCGACGGAGGAGGGCCAGAGTG AAGGGGGGGCGGGGGCGGGGGCGGGGGCGGGGGCGGGAGCAGGAGCGGCG GAGCTGCTTGGGCCGTGGGGGCGAGGGACGCCGGGAGACGAGCTACGGGC GCAGCAGGCGGCCAGTGAAGCGGAGGATGACGAGGAGGGGGTGCCCGACG AACCGGAGGCAGGGCCGGGGGTGACTCAAGTGCTGTTTCGGCTACCTGGG AGCGGGACCATCGCGCGCCGATTCTGGCTCAGGGATCACGTGTCGCTGCT CTTCCGGTTCGTCCGAACGAAGGTGACTCAAGTGCTGTTTCGGCTACCTG GGAGCGGGACCATCGCGCGCCGATTCTGGCTCAGGGATCACGTGTCGCTG CTCTTCCGGTTCGTCCGAACGAAGGGAGAAGGGGCGTCGACCCGGCCGTT CGACCTCCTGTCCGGCCATCCCCCTTCTTCCCTCTCGCCCAGCAAGGTTT TGACCCTCGAGGCCGCCAACCTCGGCAACTCCGCCATCATGGTGCGGTGG TTATGAGGAGAAGGGGCGTCGACCCGGCCGTTCGACCTCCTGTCCGGCCA TCCCCCTTCTTCCCTCTCGCCCAGCAAGGTTTTGACCCTCGAGGCCGCCA ACCTCGGCAACTCCGCCATCATGGTGCGGTGGTTATGA back to top
|