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Homology
BLAST of mRNA_P-fluviatile_contig14.2156.1 vs. uniprot
Match: D7FQB3_ECTSI (Glucosidase 2 subunit beta n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FQB3_ECTSI) HSP 1 Score: 410 bits (1053), Expect = 1.140e-126 Identity = 231/366 (63.11%), Postives = 261/366 (71.31%), Query Frame = 3
Query: 1233 ERKAEELRKTALLGPVLNDGDRGVYLGLTILLRMVGLPLLSPLRGMLTVCGFIRDQAARLAAALAADYFYPNGGAIGDNVDGSGXXXXXXXXXXXXPSFSSSSVSSWVGRAVVGALEGYRDCGLPGISPHLDYRRYSSLRAVVLRLDEFLEGNGKFLVVMWDAPVALWDFFFPARDDAHERPEAAMLREGIARARAILQEAEVDDKAAARGKGGRGGGQRLRGQPAEEARRLSGLDLGPGARFAALAEKCLELREGGYLYRLCPFNEVKQDEHSLGRWRGWGAEQIGDDKSDGGGGGYRLMLYDGGSRCHNNSQRSCTVLMECGPENALTAAKELEIGLYRLIMETPLACTEAGVQEAKGRLGALG 2330
E++AEELRKTALLGPVLNDG+RGVYLGLTILLR+ GLPLLSPLRG+ GF+RD+AAR AA LAA S+ + S+ V ALEGYRD GLPGISPHLDYRRY +LR+VVL DEFL GNGK L+VMWDAPVALWDF FP RDD HERPEAAMLREGIARARAILQE + D G+GGRG R + EA+RLSGLDLG G+RFAALAEKCL+L EGGYLY LCPF E KQD+HSLGRWRGWG G G G R+ML+DGGSRCHNN QRSC V ++CG E+AL AA+E+EIG YRL +ETPLACTEA + EA+ L ALG
Sbjct: 417 EKRAEELRKTALLGPVLNDGERGVYLGLTILLRLAGLPLLSPLRGLAAAFGFLRDRAARAAAGLAAS-----------------------------ESWGLAPAST-----VRVALEGYRDRGLPGISPHLDYRRYPTLRSVVLHWDEFLHGNGKSLLVMWDAPVALWDFCFPYRDDKHERPEAAMLREGIARARAILQEKKPDTA----GRGGRG----KRRREESEAKRLSGLDLGEGSRFAALAEKCLDLEEGGYLYSLCPFKEAKQDKHSLGRWRGWGPGGRG----RAGRGRDRVMLFDGGSRCHNNKQRSCEVSVQCGSEDALVAAEEIEIGTYRLRLETPLACTEAHLAEAERGLEALG 736
BLAST of mRNA_P-fluviatile_contig14.2156.1 vs. uniprot
Match: A0A6H5JF29_9PHAE (MRH domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JF29_9PHAE) HSP 1 Score: 392 bits (1007), Expect = 5.290e-123 Identity = 229/375 (61.07%), Postives = 253/375 (67.47%), Query Frame = 3
Query: 1212 RWQGAGEERKAEELRKTALLGPVLNDGDRGVYLGLTILLRMVGLPLLSPLRGMLTVCGFIRDQAARLAAALAADYFYPNGGAIGDNVDGSGXXXXXXXXXXXXPSFSSSSVSSWVGRAVVGALEGYRDCGLPGISPHLDYRRYSSLRAVVLRLDEFLEGNGKFLVVMWDAPVALWDFFFPARDDAHERPEAAMLREGIARARAILQEAEVDDKAAARGKGGRGGGQRLRGQPAEE--ARRLSGLDLGPGARFAALAEKCLELREGGYLYRLCPFNEVKQDEHSLGRWRGWGAEQIGDDKSDGGGGGYRLMLYDGGSRCHNNSQRSCTVLMECGPENALTAAKELEIGLYRLIMETPLACTEAGVQEAKGRLGALG 2330
R Q E++AEELRKTALLGPVLNDG+RGVYLGLTILLR+ GLPLLSPLRG+ GF+RD AAR AA LAA S S V ALE YRD GLPGISPHLDYRRY +LR+VVLR DEFL GNGKFL+VMWDAPVALWDF FP RDD +ERPEAAMLREGIARARAILQE + D GG EE A+RLSGLDLG G+RFAALA KCL+L EGGYLY LCPF + KQD+HSLGRWRGWG G G G R+ML+DGGSRCHN QRSC V +ECGPE+AL AA+E+EIG Y L +ETPLACTEA V EA+ L ALG
Sbjct: 164 RGQAKAGEKRAEELRKTALLGPVLNDGERGVYLGLTILLRLAGLPLLSPLRGLAAAFGFLRDWAARAAAGLAA----------------------------------SESWGLTPASTVRVALEDYRDRGLPGISPHLDYRRYPTLRSVVLRWDEFLHGNGKFLLVMWDAPVALWDFCFPYRDDEYERPEAAMLREGIARARAILQERKPDTA----------GGXXXXXXXXEESEAKRLSGLDLGEGSRFAALAGKCLDLEEGGYLYSLCPFKDAKQDKHSLGRWRGWGTGGRGLP----GRGRNRVMLFDGGSRCHNK-QRSCEVSVECGPEDALVAAEEIEIGTYHLRLETPLACTEAHVAEAELGLEALG 489
BLAST of mRNA_P-fluviatile_contig14.2156.1 vs. uniprot
Match: A0A835ZFN7_9STRA (Glucosidase 2 subunit beta n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835ZFN7_9STRA) HSP 1 Score: 92.0 bits (227), Expect = 1.140e-15 Identity = 71/286 (24.83%), Postives = 109/286 (38.11%), Query Frame = 3
Query: 1632 RRYSSLRAVVLRLDEFLEGNGKFLVVMWDAPVALWDFFFPARDDAHER-----------------------------------------------------------PEAAMLREGIARARAILQEAEVDDKAAARGKGGRGGGQRLRGQPAEEARRLSGLDLGPGARFAALAEKCLELREGGYLYRLCPFNEVKQDEHSLGRWRGWGAEQIGDDKSDGGGGGYRLMLYDGGSRCHNN-SQRSCTVLMECGPENALTAAKELEIGLYRLIMETPLACTEAGVQEAK 2309
RRY LR+ ++ ++ +G +WDAPV L+ +FFPA D ++E P A +LR+G+ + A L D + AR + +A + D GP FA L CLE + GY Y+LC + +VKQ +GRW W ++ MLY+ G+ C ++RS V + CG + E E+ Y +++ETP AC +A V A+
Sbjct: 215 RRYPPLRSAAMQFNDMTDGYTWAFQALWDAPVRLYQYFFPALDMSYEHMHCEDLLLCVVYLHEHDHVAHACNARRKYMLHLDNVNFAEPGIMIDAHVSGKGEVMPPLPAAKLLRKGLTKTEAALNACAKDAQDKAR-------------RAKADAEKSLNTDWGPDIAFAMLENTCLEADQVGYHYKLCLYKDVKQGSTLIGRWSKWSNDRT-------------SMLYENGAACAGRGTRRSAEVHVRCGERTQVLDVTEPELCAYVMVVETPAACDDAAVAAAE 474
BLAST of mRNA_P-fluviatile_contig14.2156.1 vs. uniprot
Match: A0A6G0XVH3_9STRA (Glucosidase 2 subunit beta n=1 Tax=Aphanomyces euteiches TaxID=100861 RepID=A0A6G0XVH3_9STRA) HSP 1 Score: 92.0 bits (227), Expect = 1.540e-15 Identity = 89/354 (25.14%), Postives = 132/354 (37.29%), Query Frame = 3
Query: 1236 RKAEELRKTALLGPVLNDGDRGVYLGLTILLRMVGLPLLSPLRGMLTVCGFIRDQAARLAAALAADYFYPNGGAIGDNVDGSGXXXXXXXXXXXXPSFSSSSVSSWVGRAVVGALEGYRDCGLPGISPHLDYRRYSSLRAVVLRLDEFLEGN---GKFLVVMWDAPVALWDFFFPARDDAHERPEAAMLREGIARARAILQEAEVDDKAAARGKGGRGGGQRLRGQPAEEARRLSGLDLGPGARFAALAEKCLELREGGYLYRLCPFNEVKQDEHSLGRWRGWGAEQIGDDKSDGGGGGYRLMLYDGGSRCHNNSQRSCTVLMECGPENALTAAKELEIGLYRLIMETPLACTE 2288
R E R+ LGP+ N G G LT+ L VGL +LSP+RG+ +I Q L V W+ VV + D DYR + SL L F + +W+APV ++ + FPA D + EA LR+ I+Q+ + D A Q + D G R L ++C+ + Y Y++CPFN+V QD SLG W+ W + M+++ G RC N RS V++ECG + + +EL Y + + TP AC++
Sbjct: 276 RTVMERRREDFLGPLFNGGREGKIAFLTMALHGVGL-ILSPIRGLYEAAWWIHFQWMHL-------------------------------------------VHEWLPSPVVNLWQSSLDV------IENDYRYHQSLWLRRLSQGRFFWWHLYTSWVFDTLWEAPVIVYQYLFPALDKSVVLAEAESLRK-------IIQDIDHDISQAQ--------------QTIDTLTTADATDYGKCCRI--LKDQCISAKFEKYTYKVCPFNKVSQDRTSLGTWKRWESSST--------------MVFEDGDRCWNGPSRSAHVVLECGAADEIVRVEELATCRYTITLATPAACSQ 542
BLAST of mRNA_P-fluviatile_contig14.2156.1 vs. uniprot
Match: A0A485L2F4_9STRA (Glucosidase 2 subunit beta n=1 Tax=Aphanomyces stellatus TaxID=120398 RepID=A0A485L2F4_9STRA) HSP 1 Score: 83.2 bits (204), Expect = 9.810e-13 Identity = 57/195 (29.23%), Postives = 88/195 (45.13%), Query Frame = 3
Query: 1710 MWDAPVALWDFFFPARDDAHERPEAAMLREGIARARAILQEAE--VDDKAAARGKGGRGGGQRLRGQPAEEARRLSGLDLGPGARFAALAEKCLELREGGYLYRLCPFNEVKQDEHSLGRWRGWGAEQIGDDKSDGGGGGYRLMLYDGGSRCHNNSQRSCTVLMECGPENALTAAKELEIGLYRLIMETPLACTE 2288
+W+APV ++ + FP RD + EA LR+ I A + ++ +DD AA +D G R L C+ + Y+Y++CPF++V QD LG+W+ W DD S ML+D G RC + RS V++ECG + + +EL Y + M TP C++
Sbjct: 388 VWEAPVVMYKYLFPPRDQSVVLAEAESLRKVIKDIDADMGSSQKAIDDLTAA-----------------------DSVDYGKCCRI--LKNACVVAQFEKYMYKVCPFDQVLQDTTRLGKWKQWD-----DDGS--------TMLFDDGERCWSGPNRSVRVVLECGAVDKILRVEELSTCTYTITMTTPAMCSQ 544
BLAST of mRNA_P-fluviatile_contig14.2156.1 vs. uniprot
Match: A0A443RJE9_9ACAR (Glucosidase 2 subunit beta n=3 Tax=Dinothrombium tinctorium TaxID=1965070 RepID=A0A443RJE9_9ACAR) HSP 1 Score: 80.5 bits (197), Expect = 6.280e-12 Identity = 46/129 (35.66%), Postives = 63/129 (48.84%), Query Frame = 3
Query: 1938 DLGPGARFAALAEKCLELREGGYLYRLCPFNEVKQ-------DEHSLGRWRGWGAEQIGDDKSDGGGGGYRLMLYDGGSRCHNNSQRSCTVLMECGPENALTAAKELEIGLYRLIMETPLACTEAGVQE 2303
D GP F AL +C EL E Y+Y+LCPF++ Q E SLGRW W + D+K Y+ M ++GG+ C N +RS + + C NAL A E Y+ +TP C A +E
Sbjct: 402 DYGPEKEFMALRNRCFELSERQYVYKLCPFDKASQKSIGDSSSEVSLGRWGKWTGPE--DNK-------YQSMKFEGGAGCWNGPERSVEIFLNCADRNALLTASEPARCEYKFEFQTPAMCVRAVEKE 521
BLAST of mRNA_P-fluviatile_contig14.2156.1 vs. uniprot
Match: A0A024UEP9_9STRA (Glucosidase 2 subunit beta n=2 Tax=Aphanomyces invadans TaxID=157072 RepID=A0A024UEP9_9STRA) HSP 1 Score: 79.7 bits (195), Expect = 1.340e-11 Identity = 58/196 (29.59%), Postives = 88/196 (44.90%), Query Frame = 3
Query: 1710 MWDAPVALWDFFFPARDDAHERPEAAMLREGIARARAILQEAEVDDKAAARGKGGRGGGQRLRGQPAEEARRLSGLDLGPGARFAALAEKCLELREGGYLYRLCPFNEVKQDEHSLGRWRGWGAEQIGDDKSDGGGGGYRLMLYDGGSRCHNNSQRSCTVLMECGPENALTAAKELEIGLYRLIMETPLACTEAGV 2297
+WDAPV +++ FPA D PEA+ LR+ + EA +D + A Q R A + D G R L C + Y+Y++CPF V QD+ +G W+ W + M+++ G +C + RS V++ECG ++ L +EL Y + M TP ACT+A V
Sbjct: 434 VWDAPVVAYNYLFPAVDTTVVLPEASSLRK--------IMEA-LDSEIA----------QTQRDMDVLTA--VDATDYGECCRI--LKGTCTVAQFEKYVYKVCPFGAVHQDQIRMGTWKRWHEDSSAS----------LTMVFEDGEKCWSGPTRSARVVLECGAQDKLLRVEELSTCTYTITMATPAACTQAQV 596
BLAST of mRNA_P-fluviatile_contig14.2156.1 vs. uniprot
Match: A0A183ICX2_9BILA (Glucosidase 2 subunit beta n=1 Tax=Soboliphyme baturini TaxID=241478 RepID=A0A183ICX2_9BILA) HSP 1 Score: 74.7 bits (182), Expect = 1.100e-10 Identity = 46/130 (35.38%), Postives = 64/130 (49.23%), Query Frame = 3
Query: 1911 EEARRLSGLDLGPGARFAALAEKCLELREGGYLYRLCPFNEVKQD------EHSLGRWRGWGAEQIGDDKSDGGGGGYRLMLYDGGSRCHNNSQRSCTVLMECGPENALTAAKELEIGLYRLIMETPLAC 2282
+EA ++ GP FA L ++C E+ Y+Y+LC F + Q E +LG W W IG+D G+ MLY+ G++C N +RS TV + CG ENAL A+ E Y TP C
Sbjct: 179 KEAEEYMKINFGPNDEFAPLYQQCFEIALSEYVYKLCLFEKATQRSKDTSMETALGSWGKW--ITIGED-------GFYKMLYEHGAQCWNGPERSTTVDLVCGLENALVASSEPSRCQYAFTFATPAVC 299
BLAST of mRNA_P-fluviatile_contig14.2156.1 vs. uniprot
Match: A0A2R6PG49_ACTCC (Glucosidase 2 subunit beta n=2 Tax=Actinidia TaxID=3624 RepID=A0A2R6PG49_ACTCC) HSP 1 Score: 75.5 bits (184), Expect = 2.730e-10 Identity = 41/134 (30.60%), Postives = 66/134 (49.25%), Query Frame = 3
Query: 1938 DLGPGARFAALAEKCLELREGGYLYRLCPFNEVKQDE-HSLGRWRGWGAEQIGDDKSDGGGGGYRLMLYDGGSRCHNNSQRSCTVLMECGPENALTAAKELEIGLYRLIMETPLACTEAGVQEAKGRLGALGAE 2336
D GP F + +KC E+++ Y+Y++CPF + Q+E S R W DK + Y++ML+ G +C N RS V + CG +N T E Y ++ TP+ C E ++E + +L + E
Sbjct: 464 DFGPEKEFYSFYDKCFEIKQNKYVYKICPFKQASQEEGRSTTRLGNW-------DKFEDS---YKVMLFSNGDKCWNGPDRSLKVKLRCGLKNEATDVDEPSRCEYEALLSTPVLCVEEKLKELQDKLDLMNKE 587
BLAST of mRNA_P-fluviatile_contig14.2156.1 vs. uniprot
Match: A0A6P4MFT2_GOSAR (glucosidase 2 subunit beta-like isoform X1 n=3 Tax=Gossypium arboreum TaxID=29729 RepID=A0A6P4MFT2_GOSAR) HSP 1 Score: 72.8 bits (177), Expect = 5.390e-10 Identity = 43/137 (31.39%), Postives = 62/137 (45.26%), Query Frame = 3
Query: 1938 DLGPGARFAALAEKCLELREGGYLYRLCPFNEVKQDEH----SLGRWRGWGAEQIGDDKSDGGGGGYRLMLYDGGSRCHNNSQRSCTVLMECGPENALTAAKELEIGLYRLIMETPLACTEAGVQEAKGRLGALGAE 2336
D G F ++C EL++ Y+Y++CPF Q++ LG W +G YRLML+ G C N RS V + CG + LT E Y +M TPL C E ++E K +L ++ E
Sbjct: 192 DFGKQNEFYLFYDRCFELKQDKYVYKVCPFRNATQEDGRSKTQLGIWEKFGNS-------------YRLMLFTNGEGCWNGPDRSLKVKLRCGLKTELTGVDEPSRCEYAALMYTPLLCLEEKLEEFKQKLESMNQE 315
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 | 260.4 |
| Seed ortholog evalue | 1.5e-66 |
| Seed eggNOG ortholog | 2880.D7FQB3 |
| Preferred name | GNPTG |
| KEGG ko | ko:K04246,ko:K05546,ko:K08288,ko:K10087 |
| KEGG Reaction | R05980,R05981 |
| KEGG Pathway | ko00510,ko01100,ko01522,ko04141,ko04142,ko04915,map00510,map01100,map01522,map04141,map04142,map04915 |
| KEGG Module | M00073,M00074 |
| GOs | GO:0000139,GO:0000271,GO:0003674,GO:0005488,GO:0005515,GO:0005575,GO:0005576,GO:0005622,GO:0005623,GO:0005737,GO:0005783,GO:0005788,GO:0005794,GO:0005975,GO:0005976,GO:0006464,GO:0006486,GO:0006487,GO:0006491,GO:0006605,GO:0006622,GO:0006623,GO:0006793,GO:0006796,GO:0006807,GO:0006810,GO:0006886,GO:0006950,GO:0006952,GO:0007034,GO:0007041,GO:0008104,GO:0008150,GO:0008152,GO:0009058,GO:0009059,GO:0009100,GO:0009101,GO:0009605,GO:0009607,GO:0009617,GO:0009987,GO:0012505,GO:0015031,GO:0015833,GO:0016020,GO:0016051,GO:0016256,GO:0016310,GO:0017177,GO:0019538,GO:0031090,GO:0031974,GO:0031984,GO:0032991,GO:0033036,GO:0033365,GO:0034613,GO:0034645,GO:0036211,GO:0042742,GO:0042802,GO:0042803,GO:0042886,GO:0043170,GO:0043207,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0043233,GO:0043412,GO:0043413,GO:0044237,GO:0044238,GO:0044249,GO:0044260,GO:0044262,GO:0044267,GO:0044422,GO:0044424,GO:0044431,GO:0044432,GO:0044444,GO:0044446,GO:0044464,GO:0045184,GO:0046835,GO:0046907,GO:0046983,GO:0050896,GO:0051179,GO:0051234,GO:0051641,GO:0051649,GO:0051704,GO:0051707,GO:0061462,GO:0070013,GO:0070085,GO:0070727,GO:0071702,GO:0071704,GO:0071705,GO:0072594,GO:0072665,GO:0072666,GO:0098542,GO:0098588,GO:0098791,GO:1901135,GO:1901137,GO:1901564,GO:1901566,GO:1901576 |
| EggNOG free text desc. | N-glycan processing |
| EggNOG OGs | KOG2397@1,KOG2397@2759 |
| EC | 3.2.1.84 |
| COG Functional cat. | S |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko00001,ko00002,ko01000,ko04030,ko04091 |
| Hectar predicted targeting category | signal peptide |
| Ec32 ortholog description | alpha-Glucosidase II, beta subunit |
| Ec32 ortholog | Ec-01_006760.1 |
| Exons | 13 |
| Model size | 2739 |
| Cds size | 1284 |
| Stop | 1 |
| Start | 1 |
Relationships
The following polypeptide feature(s) derives from this mRNA:
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815612.9530609-UTR-P-fluviatile_contig14:1392708..1393271 | 1622815612.9530609-UTR-P-fluviatile_contig14:1392708..1393271 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig14 1392709..1393271 - |
| 1693562414.8848858-UTR-P-fluviatile_contig14:1392708..1393271 | 1693562414.8848858-UTR-P-fluviatile_contig14:1392708..1393271 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig14 1392709..1393271 - |
| 1622815612.9651597-UTR-P-fluviatile_contig14:1395007..1395183 | 1622815612.9651597-UTR-P-fluviatile_contig14:1395007..1395183 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig14 1395008..1395183 - |
| 1693562414.894441-UTR-P-fluviatile_contig14:1395007..1395183 | 1693562414.894441-UTR-P-fluviatile_contig14:1395007..1395183 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig14 1395008..1395183 - |
| 1622815612.9746895-UTR-P-fluviatile_contig14:1395619..1395838 | 1622815612.9746895-UTR-P-fluviatile_contig14:1395619..1395838 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig14 1395620..1395838 - |
| 1693562414.901846-UTR-P-fluviatile_contig14:1395619..1395838 | 1693562414.901846-UTR-P-fluviatile_contig14:1395619..1395838 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig14 1395620..1395838 - |
| 1622815612.9892614-UTR-P-fluviatile_contig14:1396289..1396434 | 1622815612.9892614-UTR-P-fluviatile_contig14:1396289..1396434 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig14 1396290..1396434 - |
| 1693562414.9094052-UTR-P-fluviatile_contig14:1396289..1396434 | 1693562414.9094052-UTR-P-fluviatile_contig14:1396289..1396434 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig14 1396290..1396434 - |
| 1622815613.0002875-UTR-P-fluviatile_contig14:1397232..1397571 | 1622815613.0002875-UTR-P-fluviatile_contig14:1397232..1397571 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig14 1397233..1397571 - |
| 1693562414.9169555-UTR-P-fluviatile_contig14:1397232..1397571 | 1693562414.9169555-UTR-P-fluviatile_contig14:1397232..1397571 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig14 1397233..1397571 - |
| 1622815613.0098143-UTR-P-fluviatile_contig14:1398158..1398171 | 1622815613.0098143-UTR-P-fluviatile_contig14:1398158..1398171 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig14 1398159..1398171 - |
| 1693562414.9257686-UTR-P-fluviatile_contig14:1398158..1398171 | 1693562414.9257686-UTR-P-fluviatile_contig14:1398158..1398171 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig14 1398159..1398171 - |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815613.0192387-CDS-P-fluviatile_contig14:1398171..1398651 | 1622815613.0192387-CDS-P-fluviatile_contig14:1398171..1398651 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig14 1398172..1398651 - |
| 1693562414.9331443-CDS-P-fluviatile_contig14:1398171..1398651 | 1693562414.9331443-CDS-P-fluviatile_contig14:1398171..1398651 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig14 1398172..1398651 - |
| 1622815613.0325885-CDS-P-fluviatile_contig14:1399821..1399877 | 1622815613.0325885-CDS-P-fluviatile_contig14:1399821..1399877 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig14 1399822..1399877 - |
| 1693562414.9418278-CDS-P-fluviatile_contig14:1399821..1399877 | 1693562414.9418278-CDS-P-fluviatile_contig14:1399821..1399877 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig14 1399822..1399877 - |
| 1622815613.0489032-CDS-P-fluviatile_contig14:1399899..1400035 | 1622815613.0489032-CDS-P-fluviatile_contig14:1399899..1400035 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig14 1399900..1400035 - |
| 1693562414.9540598-CDS-P-fluviatile_contig14:1399899..1400035 | 1693562414.9540598-CDS-P-fluviatile_contig14:1399899..1400035 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig14 1399900..1400035 - |
| 1622815613.0617592-CDS-P-fluviatile_contig14:1401461..1401630 | 1622815613.0617592-CDS-P-fluviatile_contig14:1401461..1401630 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig14 1401462..1401630 - |
| 1693562414.9635074-CDS-P-fluviatile_contig14:1401461..1401630 | 1693562414.9635074-CDS-P-fluviatile_contig14:1401461..1401630 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig14 1401462..1401630 - |
| 1622815613.074325-CDS-P-fluviatile_contig14:1402473..1402660 | 1622815613.074325-CDS-P-fluviatile_contig14:1402473..1402660 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig14 1402474..1402660 - |
| 1693562414.9737751-CDS-P-fluviatile_contig14:1402473..1402660 | 1693562414.9737751-CDS-P-fluviatile_contig14:1402473..1402660 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig14 1402474..1402660 - |
| 1622815613.0875297-CDS-P-fluviatile_contig14:1403525..1403587 | 1622815613.0875297-CDS-P-fluviatile_contig14:1403525..1403587 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig14 1403526..1403587 - |
| 1693562414.981492-CDS-P-fluviatile_contig14:1403525..1403587 | 1693562414.981492-CDS-P-fluviatile_contig14:1403525..1403587 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig14 1403526..1403587 - |
| 1622815613.101225-CDS-P-fluviatile_contig14:1403931..1404011 | 1622815613.101225-CDS-P-fluviatile_contig14:1403931..1404011 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig14 1403932..1404011 - |
| 1693562414.9888446-CDS-P-fluviatile_contig14:1403931..1404011 | 1693562414.9888446-CDS-P-fluviatile_contig14:1403931..1404011 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig14 1403932..1404011 - |
| 1622815613.1126199-CDS-P-fluviatile_contig14:1404184..1404298 | 1622815613.1126199-CDS-P-fluviatile_contig14:1404184..1404298 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig14 1404185..1404298 - |
| 1693562414.9972575-CDS-P-fluviatile_contig14:1404184..1404298 | 1693562414.9972575-CDS-P-fluviatile_contig14:1404184..1404298 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig14 1404185..1404298 - |
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig14.2156.1 >prot_P-fluviatile_contig14.2156.1 ID=prot_P-fluviatile_contig14.2156.1|Name=mRNA_P-fluviatile_contig14.2156.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=428bp
MGPWHHRLLLLGAAFTTYTRESTAFTCDGGASVLKEDKINDDYCDCRDGS DETLTPACSQLQQSRFLCANTGALNQTIPTSRVWDGVCDCCDGSDELIGG GRGMRHGRWALVGAGMAAGAAAATVCDRNGCTRLLEEARTKAAEEYRRAE AGLAARRLAEEESARAVARWEATLRAEQVSEEVRREELTAVEKLEVLLKA RFCLVYLQDEERLETKERVQLAERSRCSSNSGRGGDGGAGGQGGQHDGEA AALGPCEDKTWEWEAAAKVRAARATARSRHDAEEEKRQRQGRVASTRNKS RRGGQQTGNKNNKHSGGGGGLDGATTAEDILELCWPAVAQAESGADHGNS GTTRGGTGSSTSGSTSDTGGGGEGGGGGHADATTALLSLRVYVKQRQAGS AAVEGGKARGRRGRPRSCGRRPCWVRC* back to topmRNA from alignment at P-fluviatile_contig14:1392709..1404298- Legend: polypeptideCDSUTR Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig14.2156.1 ID=mRNA_P-fluviatile_contig14.2156.1|Name=mRNA_P-fluviatile_contig14.2156.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=11590bp|location=Sequence derived from alignment at P-fluviatile_contig14:1392709..1404298- (Porterinema fluviatile SAG_2381) ATGGGGCCGTGGCACCATCGCCTCCTCTTGCTAGGAGCAGCTTTCACCAC
GTACACTCGAGAGTCAACTGCCTTCACGTGTGATGGTGGTGCTTCAGTTT
TGAAGGAAGACAAAGTGAGAAAAGGGCACTTGCGAGATAGGGAGAGGGTG
TACACAAGATTTGCGCAAATCTTTCGGAGTGGAGCGGGGAGATGGCTTGT
TTCAAAGGAGAGAATATCGGGGAAATCGTTGTCCTACCGGTCATTTGAAT
AAACCATGTCTCTTCCTCCTTCGCAACTTCCCCGCAGATAAATGACGACT
ATTGCGACTGTCGTGACGGGTCCGATGAGACACTGACGCCAGCGTGCTCT
CAACTCCAACAGTCCAGGTTCGTGTGCGTGTCGACAGGTTTCGGGTCACG
ACAGGTTGGTGCCCGTCTCTCCTTGGTCAAGCGATCGAGTCAAAGGATTT
TTCGGAGGAAGTATCCGCACAGTTACCTGTCTACGTCAGTACCTCCCCCT
GTTTCCCTCCCTCCCCGAAAAATAGGTGACAGACCCTGGGCGTCGTTTGT
TAGTATCCAAACGGAAACAGCGATATGTTTGCTCGTCTTCTCTCGACACT
CCATCACCCCCTCCTTCCCTCTTATACTCTATGTAAGTGTCCGACATCAT
GTTAGCAAACGTAATATATCTCGGCCCTGCTATCCTGTCTCCGTCGCCGT
CATCCCGGCAGGTTCCTTTGCGCCAACACCGGTGCGCTGAACCAGACGAT
CCCCACGTCCAGGGTGTGGGATGGTGAGCCACTTTGGAATGCCGGACGTG
ATGTTTCATTCTGCCGAGCATCGACTACCGACGCGCAAAAACATCAATAA
GTCTTACGGCCAAAGTGTATTACAGCAACGAGGCCATCTCCATTATTCGC
AGGCAGCATGAAAATTCTGGTGGATTAGTTCCTTCCGATGTCTCGACACC
GGTTTTCTGGCCCCTGCAGCCCTTGTCGGGTACGGATGTGTTGTCTGACT
TCCAGGAGGTCAGGGGGATACCTCCAGATCCGTTTATGCAAGTGAACTTC
CGGGGTCGGGAGAAGCAAACCGGCCGCGACAGGCAGGAGAAGAAACGCAG
AAGAGCCAACACTTGAGGATACGGCCCTGAAAAACATGAACCTCCAAATT
TTCAAAATATCCGCGCTAGCATCATTTCCGACGCTGGGATAAGAACCTCT
ACACCAAAACCTATATATTGGCTCTCGGCAGCCAACGGAGGAAACAACAA
CCCGAGCCTCGCGGAAAATAGGATGTTCTCGAATGCGACCCCTTCTTTGT
GCACATGAACGGCGGAAGCGAACGGAAATGTCTCGCTTCCTGAGCGCTGT
TCGCAGATTTTGCCGGTCGATTTAGCGTTGTCGGGTTGTACCACATGGAG
ACCGAATCCGTGCCTTGTTTGCAATCATTTGCTCTTGAGGAAAGGCAGAC
AAGGGCGGCCAGACAGCCGTCATCACATACGGCGGTGTTGATGCCGCCTC
CTCGTGCGCCATGTGCCCGTGTCGCCGAGGCTGCATGCCGCCGCGGCCGC
CGGCTCGGCCTTCCTGCCCGTCGTCGATCCGGAAGCCTCGATCTGTTCAC
TTTCACTTTTTTTGTCTCGTCTTTTGTCACGTCGAAAGGAGTGTGCGACT
GCTGCGATGGTAGCGACGAGCTCATCGGCGGCGGGCGGGGTATGCGGCAC
GGGAGGTGGGCGCTTGTGGGCGCAGGCATGGCAGCAGGGGCAGCAGCAGC
AACGGTGTGCGATCGCAACGGCTGCACGCGGCTGTTGGAAGAAGCTCGGA
CGAAGGCGGCCGAGGAGTACAGGAGGTGAGAGAAAGCGAAAAATGATACC
ACTTTAGACAAGATGAGGCTTCGTAGACCGTGCCAGCTGGCGGCGGAGCA
TGATGTGGATTTTGATTTGAGCCATACTGTTTGGCCTCGCAACCCTTGGC
GCTTTTTTATGGAAGATGACATCGCCCAGTATATGTCGCCTTGACGACCC
CTGCGTGTTGTAGCTCGGCCTGGCTGCGGCAACATCGTCTTAGGTTTGGG
TACCTGTCTCCCGTGTTCCGGGACCCCGGGAAAGTTGGCCAGCCGCCCAG
GCGCAACCAGCCCGAGGCCACTCCGTGTTCGGTGTGTCGTCCAACGGAGG
AGCACAACCTCCATCACTGGCAAGCCGTCCAATCTCCGAATGACCTTTCC
GAATGAGAAAAAAAAAATGAGCTCGTCGACGACCTTCAAAACATTACGAG
CCACCTGGGCACTATTTGCGGTGATTGTTCTGATTTTTGCTGTGTTTGTT
AAACTGCAACGCCGTTCCACCAAGTGGCGCCCGTTCGTTTGATTTCGCTG
CTGCATATATGAAGAATATACTTGTAACCTCGGTCCCACAAAATGGAGAG
GTAAAAAAAAAACATCTGTTGCGGGTGGCTAGTGATAATGGCAACATCGA
CAACGGCAACCTCGTAGGCGTAATTCACGATGTTCTTAAGCAGAGAGACA
GCTTGTCAAGCGTCGCGCGGGTTGGCGATGAGGGCGCCACGATAATAGCT
GGCGCCATCCACAACAATTGTCGACGACCTCAACCTCGAGCACTAACTGG
AGACTGCGAACATGACTCGAAGCGAAGCGCGCTACCCCTTCAACCCCGAA
CGTGTCCCCCCTCTTTAGGGCAGAGGCTGGGCTTGCTGCACGAAGATTGG
CGGAGGAAGAGAGCGCGAGGGCCGTGGCGAGGTGGGAGGCGACCCTCAGG
GCGGAGCAGGTCAGCGAAGAGGTTCGGCGAGAGGAGCTCACCGCGGTGGA
GAAACTGGAAGTGCTACTGAAGGCAAGATTTTGTTTGGTCCTGCAAAAAG
GTCGTCGCGCACAGGCCCTCCCTCTCTACCACGCTTTGGTGACGCGTCGC
CATTTAACGCGAGCTTTGAAGTTGAAGATCGAGACGCGACGTTCCACGAT
ACGCCCCTACAGATAAGACGAGATCGCTCGCAAACCTCGGCGCCACCTGC
AACAAAAGTCTAGCTCCTTCGACTTCGACGGATACCGCGCACCAGCGAGC
GGTCTTGCGAATTCTGGTGCCACCATAAATGCCCTTGAGACTACATGGAT
GATGTAAGCCACGAAATCGCCGTTGGTACACCATTTCCGCGAGCGCGACG
CGTGAAAAACCGACGTATATTTTCGCGCCGCCGGCCAGAGACCGCACCAC
CACACCCGGAAATCGAGCGACCGCTAAGGTATATATTTTTCATTAGTTTT
ATTCTTAACAGGCGACCGGCGGGATGTGTTTTTCGATTGGGGAAGATGCC
CACCCTCGTGGATGTGGGGGTTGTAGTCCCCTGCTCAAAACGCTGCTTGG
ACTCTTTCATCGCCAACGTTTGGTGATCGTGTTAAGCATTTCGCGAGATA
TGAGCTCAGGATAAATCATTAGTCTCGTTAGCAACAACTGCCGCCGGCAA
ACCTTTAGCCAGATTCAGTGGAAAGTAGACCGAATAACGTTTCAACGGCC
AATCACTCGCGGTAGGGTGGGGTGAGAGAGGCGACAGAGGCGGGGAAACA
AGGTCAGCCGAAGGGGGAAACGACTGAAAGGCGAGTTTTGGAAAGCAGGA
CGAGGTAGCGCACGAAGCCTCGTCGGCAATTTACAGTAGAAAGCAGCGCC
TCCCCATATGATGAGCACCAGCCAATCCAACAGTACAAAGGCTTTTCCCT
TTCTGCTGGCAGATTTCCTAGCACAATCGGCCTTATGTGGGAGCAGACCT
TACAGTATTAATGACCAAAACGAGCTAATTCGCCAGTTTTAGGAGCATAC
CGAGTAAAATTGGGCCAAATAGAAGAATCGCAAGACAAAGTATGCCCTTT
TTCGAGGTAGCATAAAATGGCGAAAAAAGTAGCACGATGGGGAAACGCCG
TACAGTCGGGCTGGAGACACTCATCGGAGAGAACACTTGGTATGGTAAGG
CTCTTTACGTAGGCCGTCAACGATGCAAGCGTTGGCACGGACGACAACAA
CTGCTTGCGGCGCTTCGGACCCCATCCTACCTCGTGGGAAGTCGTGCGAC
AGGCGAACAAGTTCGTTCCTCCTTGGATCGCCTTCGCAGAGCACTCTCTT
CGACTTTCTTTCAACGTTTGGCCACTTGAAATTTCCTCTTGGTGCCCTCT
ACGGCTTCAACCCTCCCTCCTTTCCTGCTTCCCTCCACCCCCCCCTCCAC
CGCTCCCTCCCCTCCCGCCTCGCTCTCTTCCTTGTTTCCTCGGCCGCATT
TGATCTCCCGTAGGTGTACCTCCAGGACGAGGAGCGACTAGAGACGAAAG
AAAGGGTGCAGCTGGCAGAAAGGAGCCGCTGCAGCAGCAACTCCGGGCGT
GGTGGGGACGGGGGCGCGGGCGGGCAGGGGGGGCAGCACGACGGGGAGGG
TGTGGGACGGTAGGCATCCAGCGGCGGCGCTGGGCCCGTGCGAAGACAAG
ACCTGGGAGTGGGAGGCGGCGGCAAAGGTGGGTAGGCTGGCCTGATCAGT
CGATCACCTCTCTTCCTCTTTCTTATCGCTGCTTCATCGTGTCATCGCTT
TGCCATCATCTCCTCACGCGGGCCTCTTGAAACAGAGGCTGGCCGACCGT
CGCTACGATAAGGGGATGACGCCTTTGTTGAGAACCTGCGATGTTTTGCT
GCAGAGTATAAGTAGGGCCTTTCCCCCATGTCGTGGTATGGTTCGGCTGC
CGCTTCCGGGACGCGTCACAAAGTGGGCGGTTTGTACGTTTCCTGTTGAC
GGTTCGGCCTTGACGGTTTTTCATTATCTGATTGCGTTCGACGCTGAAAC
CGTCCAAACCGACGAGTCCGAACCTGCATGTGTACGGCCGATGGGGGATA
GACGCGTCCCGCCGTCACAGGAAAATCGATCACCCAAAATAGGGTGTTAT
GAGCTGGTCTTGCCGCTGTAATGCAACCCTAGAGCTGGCAAAAGAAGATT
TCCCAAGAGCTTGCTTCGAAAGGTAGACTCTCGAATGAGCACCCGTTATT
TTTTCGCATATATGTTTTCCTTCGAGTGTACAAGGCAGTGCGGTGTGCTC
AAATGTGCACCTCTCGGTGAATTTCTCAGAGCTAGCCTCATGTTATGCTG
CCACCGCGTAGGAAGTCTAGCGGTAGCCCCTTACGTGGACAAAAATTGAA
TCCGGCGCTTGAGTACCGAAGCAAGGGGAAGGGACGGGAATGGAAGGTAG
GCGGGCGAGCACCGTTGCCAATTATCTGTGTGTGGCTTTGGAGCGCACAA
CAGTAAAATATACGGGATCGCCGACCCGTGGCGGTTTTGTCGGTAGACGT
TCACCATAAACTTTTAAAACTCGAAGATTGGATAACGATTCCTGAGAGGA
ACCGGACAGAGCGGTGCACGCGGGGAGGGCGAGAGGCAAAACTCTGTTCC
CTCCCGCTCGACATTCTTTCGTGTTTCTTCATCGACGGATTTCCAATCTT
CGCAATATCGGTGATGCGGGCACCCTCACCCTCCCTTTTTCTCGCACACA
GTCTCTCTCTCTGTCCCTCTTGCCTTATCTCTATCTCACACTTTTTATCT
CTCCCTTTCTCTCCCACCCTTTACCCGTCGCCCCCTTCGCCCCCCCTGTC
GCCCTCTTTCTCACCGCCCCTCGCCTAAATCTTCGTCGTGCCGGAAGGTT
CGGGCGGCGCGGGCTACGGCAAGATCACGGCATGACGCCGAAGAGGAGAA
GCGGCAGCGGCAAGGGCGGGTGGCTTCCACCCGCAATAAATCGCGCCGGG
GGGGACAACAAACGGGGAACAAGAACAATAAACACAGCGGCGGCGGCGGC
GGTTTAGACGGCGCCACCACGGCCGAAGACATTCTAGAACTCTGCTGGCC
GGCGGTGGCGCAAGCGGAAAGCGGTGCCGACCATGGCAACAGCGGCACCA
CCAGGGGCGGCACCGGCAGTAGTACAAGCGGTAGCACTAGCGACACCGGC
GGCGGCGGTGAAGGCGGGGGGGGTGGACACGCGGATGCGACGACCGCTTT
GCTCAGCCTGAGGGTGTACGTCAAGCAGAGGCAGGCAGGTAGCGCGGCAG
TAGAAGGTGGCAAGGCGCGGGGGAGGAGAGGAAGGCCGAGGAGCTGCGGA
AGACGGCCCTGCTGGGTCCGGTGCTGAATGACGGGGACAGGTGCGTGCCG
TGTTGTGTGTCGTGCGCTGGCCGTTCTCCTGTGATTTCAGGATGAGCCGA
GGTCTTTTGCCAGTGCGTTTGGAACGAGTTGCACTCGGGTAATCCCAGCC
GTGGCTGTGTGTAGCGCACGTCGTTGATGATGTGGTGTAGATGATCGATC
GCGATTTCATTTGCGAGAGGCTCCCTCCCTGTTCAAAAGCAGAGCAGAGC
GAACACCTTTGGCTGCGAAGGGACGTAGAGGACGGTTGGAAAAGAGTAAG
AGTCGGCGTCGTTCGCAGCCTTTTGGAACGTGTTTTGCCGCGTTCGTGCG
GTCCTGGTACACGCAAATTTGACCGGCCAAGGCCGTTTTACTCGTTACCT
TTTGCAGCTCACCTCTGCCAGTCATTCCATCCCCAGATCCGAATGAGCTC
TTCGGGCGGGGCACCGCTCTTCACGACAAGCCAGACCCGAACTCAACTGT
CCTGCGGGTTTCGAAGGCTAGCAACTCACGTGAAGAGTAATCTTCCTTCC
CTTGTCGCCGTCTTCTCCCGCCCCTCAACAATGGAACCGCAAACATTGGA
ACAACAAAACTGTGCGAACACTGGAAGGGGCGTGTACCTCGGGCTCACCA
TCCTCCTTCGTATGGTGGGTCTCCCGCTGCTGTCCCCACTCCGCGGAATG
CTCACCGTGTGCGGCTTCATCCGAGACCAAGCGGCAAGACTCGCGGCTGC
CTTGGCGGCCGACTATTTCTACCCCAACGGCGGTGCCATTGGTGACAATG
TCGACGGTAGCGGTGGCGGCGGCGGTGGAGGCCCGCCTTCGTCGGCATCT
CCATCTTTTTCTTCTTCCTCCGTCTCCTCTTGGGTAGGCCGGGCTGTCGT
TGGTGCTCTGGAGGGTTACCGAGACTGTGGGCTACCGGGTATAAGCCCCC
ACTTGGACTACCGGAGGTGGGTTGGAAAGCTAGGCAGGCAGGGCAGAGCA
GAGCAGGGTGGAGCAGGGCGGAGCAGGGTAGGGTGGGTGGGTGGAAGGCA
GGCTGGGCTTTCATTTCCCTTTTGAGTTTCTGCCAGCACCTCCCTCTGTC
ATTCCCCCTCTATCTTTGCTTGTTTTATTTTTTGTTTGCTTCATAAAACT
TGATGCTTGATGTTGGATCGAAATACGCGCTACCACGCTGAGGCGGAGCA
TCGCCTTCACAGAGAGGGATAAAATTAGGCAAGGTGAGAGCACGAAGAAC
AGGGTAGAGGAGATGGGGATGTGCGCGAGATGCAAGTCGTGCTCGCAGGA
CTTTTGGTCTCAGTCATGTTCTTTTATCGTGTGCGGCGGTTGATCGATTG
TTTCAGCGTAAACATTCCACTGATTCCTCCTGTCATTTTGAAAACTTCGT
CATACTGAGGGGGGTCTTGGCGTCTTTTGTGCTTTTCATTTCCGTGGACC
GGAGGGGAGAGAGGGGTGGCGGAGGGGCGAGCCCGGTGGGCGGGTCCGTG
CCTTGGTCCTAGAAACTTTGAGACCCCTTTTTGCTCGAGCAGAGGGGGCA
GAGCGGTCAGCGTCCTATGAAGTATTGTCGGAACGGCCGGGCGTTGGATA
GGGTCTGTCCGTTCGCGTTGCAACAACCACCGCCGGAATTTCTCGTCTCT
CGTGTCGACGGGCCAGCATCTATATCTGCGCGCGTCGCCGACAAACCAAC
ACATACAGAAGTCGAGACACGCGACCGTCGCAACAACACGACACACATGA
CCTTCCCTGCGCAGGTACTCCTCGCTGCGCGCCGTGGTTCTGCGCTTGGA
CGAGTTCCTGGAGGGCAACGGCAAGTTTCTCGTGGTCATGTGGGACGCCC
CGGTGGCCCTTTGGGATTTCTTCTTCCCGGCTCGCGATGACGCGCACGAG
AGGCCAGAGGTGAGTACTGTGGATGGGTGTGTGGACGAAGACAAGGCCAG
AAAGTAGGTGGCGGTTTTGGCGAGAACAGTTGTGGCTGGTGGTGGTGGTG
GTGGTGCCCGATGGATCGGTGCCCTGTGGTTGGCGGGACGTGAAAGTCGG
GCGGTGTGACACTTGACACGCCGTGGTTGGGCGGGGTGGGGTGGAGTGGG
ACGGGGCCTGTCCAGTGAAGGCACTCAAAATCTGTTCGTTAGCGGGGAAT
AAACGTGCAAACGGTTCTTCTCTCTGGCTTAAATCGCCCCCAGGCTGAGC
CCATCCGGGCCGAAGGGTTGAGGTACATGAAGAAGTACTGCTCGACGGAG
GTTGTACCGTTCGTTACCATCAAAAACAATGTCGACACCTCGTTGCCCCC
GACAAAATTTACCAAAATGAACCAAAATGTACCAAAATATATTCTAAATG
ATACAATCAGGCAGCCATGTTGCGCGAGGGCATCGCTCGGGCGAGGGCGA
TACTGCAGGAGGCCGAGGTCGACGACAAGGCTGCCGCTCGGGGGAAGGGC
GGGAGGGGGGGCGGGCAGCGCCTACGAGGCCAGCCGGCGGAGGAAGCGAG
ACGGTTGTCCGGTCTTGACCTCGGTCCTGGTGCCAGATTCGCCGCTCTGG
CGGAAAAGTGCTTAGAGCTGCGAGAAGGGGTACGTATGATCAGACGTGCG
TGCGCGCAAGATGAAGGGATCGATTGAAAGCTCCTCATGTGCCCTGACCA
TGGCAGTTGGTAGGAGAGGGGGGGCGCAGGGCGCACGGTGGAGAGGGCTT
CGTATCATGGATTATCAAGGGGATGCCGCACCTTTTGTTTTTTTACCCGA
GACCGCTCTTTCTCCATTGCGTGTTCACGTCTCTTGACTGCCTTTGATCC
GTGGTTTTCCCTTCAGCTGCAGCCCCCCCATCCTAACGGACGCCAATTCC
CGGCCGTCCTTACGAATTCGGAGGGGGGGGTTGTCGCTCGTTGCCTCCAT
CCAGCTCCTGCTATGCAATACCTCCACCTTTTTCGCCCCCCGTTGAATGC
GTAATGTGTTGGTGAATTGTGACTGTGTCCATGTGTGCTCGCTGCGGCGC
CGGCGTGGCGGGCAGGGCTACCTATACCGCTTGTGCCCCTTCAACGAGGT
AAAGCAGGACGAGCACAGCCTAGGCCGGTGGAGAGGATGGGGTGCAGAGC
AAATCGGGGATGACAAAAGCGACGGCGGCGGCGGCGGCTACCGGTTGATG
CTGTACGATGGAGGAAGCCGTTGCCATAACAACAGCCAGAGGTGTGCGTA
CTTTTTTGTTCGGCTTCTCTTCACTCCATTTGCTTGACGCTGGATACGCC
CACCGATCGCGCACGTTCATTCGCACCCCTTTTCCCTTTTACCGGGACAA
ATGCCGCCACGCCACTCTAACTGGTTCAAGCCCCGCTGGGCGGGCGGCAC
TATTTCATGTCGCCCTTGTGCACCGTGAGAGAAACGCTTCTCGAAATGAA
GATGGGGTCATATGCGACGCGCTCTCAACAATGGAAAATACCTTGCATTT
CGAATGCACGGCAAGCGGGCGGGAGCACGCAAGTAGACGGAGATGAACCT
CTGTCCAACCCCTTTCCTCACCTGCTTTGAAGGGATGCGAGAGGTCCACT
GTCTGCGACTACGAAATGCAGGACTCTGAGTAACTCTCTCCCCCTCTGCT
ATCAGTTTGTGTTGTCTTGGAGTAGTGATAGCAAAAGACTGTAAATGGGA
TGCACACATGCACAAAATAGCGGACAAGGGCAAAGCAAGGGCAGGGAAGT
TGCACCCAATCCTAGCAGACCGGCACCTTGATACAGGCGTCAAAATGACC
ATTCTGAAAAGTGTTATCATCCCGCCACTAGAGTACGCGGGAGAAGTGTG
GGAAGGGAACAAGAAAATAGTAGCAGAGTTGGAGGCAGCGCAGATGAAAG
CAGCGAAGATCATTCTAGGATGCTCCCAGCGCACAAGTAATGCAGCAGTA
AGAGCAGAGTTGAGGATTAACTCCTTAAGAACGGGAAGAGACAGGAGGAA
GTTGACATGGCAATACCGTTTGGAAAACATGGGAAAGGAGAGGTTACCGA
GAACAGCTTGGGAGGCGAGATGGGTAAACAAGGCCAAGGGTAGACAACCC
ATTGAGTGGGCTACGGTTGTGCAGGGAGTGTGGAGTGGGTTCGATATTGA
CGAACTTGAGACGACGGGAGCGGAAAGCTTAGAAGGGTATAAGAAGAGTA
TCTCAGAAGCCTTTGAAAATAGAGAAGACCAGAGCTTGCGGAAAGAGACC
AAGGAAAAGGAGGTTCTAGAAGTGTACGGAAGGCTGAACGAAGGAAAAGT
GTTCAAGGAGTACCTGAACGGACCATTGGATGAAGGGACAAAGATGAAGG
TCAAATTTAGAACGGGCGACATTGACCTTCGGGAACGTAGAAGGAGGTTT
AGGAAGGTAGACGACGGCGAAGACAACTTCAAATGTGACTGCGGCGCCGA
ATGCGCAGACCGGGTACATGTAGTTGCGGAATGCCCGTTATACGATCAGG
AGAGAGAAGTGTACATGGTTGAGCTGGAAAAAGTAGACAGTCGGTATAGA
GAGAAGTTTGAGGCATGGAACAAAGAGGAGAAGACGGTAGCGGTACTCGG
GTGTAATATATGGCCCAGGAAGGACAGGTTAGGGAAAACATTTTTGAGCC
ACCTCTGGCAAAGTAGGAAGGAACGATTGGCCATCGGTGATCGATCCTGC
GGGAACAATGCTCCGTCCTCTCGAGGACGCGTGGTCAATGGTCTAACAAC
TAAGGCATGCAAAACATGATGCCCCCCGTCCCCTGCGGAAACAATGCTCC
GTCCTCTCGAGGACGCGTGGTCAATGGTCTAACACCTAAGGCATGCAAAA
CCTGAGTACGCCCCCCCTCTGCTACCAAGGGATTCACAATCAAATCATTC
TGACAAGTTATCCGTACACTCAAACGCAAACCTCGCCGGTGCGTTGTCGT
ACGCCTAACTCTCGGGTTACGTCCAAGGTCTTGCACGGTGCTGATGGAGT
GTGGCCCGGAGAACGCTCTCACGGCGGCCAAGGAGCTCGAGATCGGCTTG
TACCGCCTCATCATGGAAACCCCGCTTGCATGCACAGAGGCTGGCGTGCA
AGAGGCGAAGGGCCGCCTCGGGGCCCTCGGGGCAGAGTCAGGCGCGGCGG
CGGAGCCAGGTTTAGGGCCCGGTGGTGGCGGCGACGGCGATGGCGGTCAC
GGCGGGGGGGTAGAAGCCGCACGCGGTGATCGGAACGAATTGTAACAGTT
GCGTTCGGTGCGGCCCTCGACCCGCCCTCTAATCCGCCGCTCCTCGTGGG
TTCTTATCTGCCGGACGAACGCTTTCGCAGGACCAGAAGTGGTCGTGTGG
CATTTAGCCGAAGTCTAGAACGGAGTCCTTAGGCTGTCCCGCGAATGGAA
AAGGCTAAGGGCTGTCTAAAAAGCATCACTCGGCGGCACAGTTTGATGTG
AGGCACCCGCCGCGCCCTGGAAAGCGCGAGAGATGACCTGCGCTGGCGAC
ATCTAGTGGTTGCGTAAACCGCTGCTCGGTGTGTTTTTCG back to topCoding sequence (CDS) from alignment at P-fluviatile_contig14:1392709..1404298- >mRNA_P-fluviatile_contig14.2156.1 ID=mRNA_P-fluviatile_contig14.2156.1|Name=mRNA_P-fluviatile_contig14.2156.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=2568bp|location=Sequence derived from alignment at P-fluviatile_contig14:1392709..1404298- (Porterinema fluviatile SAG_2381) ATGGGGCCGTGGCACCATCGCCTCCTCTTGCTAGGAGCAGCTTTCACCAC GTACACTCGAGAGTCAACTGCCTTCACGTGTGATGGTGGTGCTTCAGTTT TGAAGGAAGACAAAATGGGGCCGTGGCACCATCGCCTCCTCTTGCTAGGA GCAGCTTTCACCACGTACACTCGAGAGTCAACTGCCTTCACGTGTGATGG TGGTGCTTCAGTTTTGAAGGAAGACAAAATAAATGACGACTATTGCGACT GTCGTGACGGGTCCGATGAGACACTGACGCCAGCGTGCTCTCAACTCCAA CAGTCCAGATAAATGACGACTATTGCGACTGTCGTGACGGGTCCGATGAG ACACTGACGCCAGCGTGCTCTCAACTCCAACAGTCCAGGTTCCTTTGCGC CAACACCGGTGCGCTGAACCAGACGATCCCCACGTCCAGGGTGTGGGATG GTTCCTTTGCGCCAACACCGGTGCGCTGAACCAGACGATCCCCACGTCCA GGGTGTGGGATGGAGTGTGCGACTGCTGCGATGGTAGCGACGAGCTCATC GGCGGCGGGCGGGGTATGCGGCACGGGAGGTGGGCGCTTGTGGGCGCAGG CATGGCAGCAGGGGCAGCAGCAGCAACGGTGTGCGATCGCAACGGCTGCA CGCGGCTGTTGGAAGAAGCTCGGACGAAGGCGGCCGAGGAGTACAGGAGG AGTGTGCGACTGCTGCGATGGTAGCGACGAGCTCATCGGCGGCGGGCGGG GTATGCGGCACGGGAGGTGGGCGCTTGTGGGCGCAGGCATGGCAGCAGGG GCAGCAGCAGCAACGGTGTGCGATCGCAACGGCTGCACGCGGCTGTTGGA AGAAGCTCGGACGAAGGCGGCCGAGGAGTACAGGAGGGCAGAGGCTGGGC TTGCTGCACGAAGATTGGCGGAGGAAGAGAGCGCGAGGGCCGTGGCGAGG TGGGAGGCGACCCTCAGGGCGGAGCAGGTCAGCGAAGAGGTTCGGCGAGA GGAGCTCACCGCGGTGGAGAAACTGGAAGTGCTACTGAAGGCAAGATTTT GTTTGGGCAGAGGCTGGGCTTGCTGCACGAAGATTGGCGGAGGAAGAGAG CGCGAGGGCCGTGGCGAGGTGGGAGGCGACCCTCAGGGCGGAGCAGGTCA GCGAAGAGGTTCGGCGAGAGGAGCTCACCGCGGTGGAGAAACTGGAAGTG CTACTGAAGGCAAGATTTTGTTTGGTGTACCTCCAGGACGAGGAGCGACT AGAGACGAAAGAAAGGGTGCAGCTGGCAGAAAGGAGCCGCTGCAGCAGCA ACTCCGGGCGTGGTGGGGACGGGGGCGCGGGCGGGCAGGGGGGGCAGCAC GACGGGGAGGGTGTACCTCCAGGACGAGGAGCGACTAGAGACGAAAGAAA GGGTGCAGCTGGCAGAAAGGAGCCGCTGCAGCAGCAACTCCGGGCGTGGT GGGGACGGGGGCGCGGGCGGGCAGGGGGGGCAGCACGACGGGGAGGCGGC GGCGCTGGGCCCGTGCGAAGACAAGACCTGGGAGTGGGAGGCGGCGGCAA AGCGGCGGCGCTGGGCCCGTGCGAAGACAAGACCTGGGAGTGGGAGGCGG CGGCAAAGGTTCGGGCGGCGCGGGCTACGGCAAGATCACGGCATGACGCC GAAGAGGAGAAGCGGCAGCGGCAAGGGCGGGTGGCTTCCACCCGCAATAA ATCGCGCCGGGGGGGACAACAAACGGGGAACAAGAACAATAAACACAGCG GCGGCGGCGGCGGTTTAGACGGCGCCACCACGGCCGAAGACATTCTAGAA CTCTGCTGGCCGGCGGTGGCGCAAGCGGAAAGCGGTGCCGACCATGGCAA CAGCGGCACCACCAGGGGCGGCACCGGCAGTAGTACAAGCGGTAGCACTA GCGACACCGGCGGCGGCGGTGAAGGCGGGGGGGGTGGACACGCGGATGCG ACGACCGCTTTGCTCAGCCTGAGGGTGTACGTCAAGCAGAGGCAGGCAGG TAGCGCGGCAGTAGAAGGTGGCAAGGCGCGGGGGAGGAGAGGAAGGCCGA GGAGCTGCGGAAGACGGCCCTGCTGGGTCCGGTGCTGAGTTCGGGCGGCG CGGGCTACGGCAAGATCACGGCATGACGCCGAAGAGGAGAAGCGGCAGCG GCAAGGGCGGGTGGCTTCCACCCGCAATAAATCGCGCCGGGGGGGACAAC AAACGGGGAACAAGAACAATAAACACAGCGGCGGCGGCGGCGGTTTAGAC GGCGCCACCACGGCCGAAGACATTCTAGAACTCTGCTGGCCGGCGGTGGC GCAAGCGGAAAGCGGTGCCGACCATGGCAACAGCGGCACCACCAGGGGCG GCACCGGCAGTAGTACAAGCGGTAGCACTAGCGACACCGGCGGCGGCGGT GAAGGCGGGGGGGGTGGACACGCGGATGCGACGACCGCTTTGCTCAGCCT GAGGGTGTACGTCAAGCAGAGGCAGGCAGGTAGCGCGGCAGTAGAAGGTG GCAAGGCGCGGGGGAGGAGAGGAAGGCCGAGGAGCTGCGGAAGACGGCCC TGCTGGGTCCGGTGCTGA back to top
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