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Homology
BLAST of mRNA_P-fluviatile_contig23.5212.1 vs. uniprot
Match: D7G5I7_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G5I7_ECTSI) HSP 1 Score: 402 bits (1033), Expect = 7.670e-126 Identity = 186/200 (93.00%), Postives = 194/200 (97.00%), Query Frame = 1
Query: 823 RNGMSGSAKGGAEHLARIHGTEEDKVNCPFFYKIGACRHGDRCSRQHHKPPFSQTILVQNLYQNPVSAIMAAGGDPSQLPEDHVQDDFEDFFEEVYLELSKFGEISEMNVCDNLGDHLIGNVYVKFMDEEDADAALKGLMGRWYAGRPIMCEFSPVTDFREARCRQFDEGTCNRGGQCNFMHVKPVPRLVMSYLDKVIRK 1422
RNGMSGSA+GGAEHLARIHGTEEDKVNCPFFYKIGACRHGDRCSRQHHKPPFSQTILVQNLYQNPVSA+MAAGGDPSQLP+DHVQDDFED VY ELSKFGEISEMNVCDNLGDHLIGNVYVKF+DEEDAD+ALKGLMGRWYA RPIMCEFSPVTDFREARCRQFDEGTCNRGGQCNFMHVKPVPRLVMSYL+K++RK
Sbjct: 50 RNGMSGSARGGAEHLARIHGTEEDKVNCPFFYKIGACRHGDRCSRQHHKPPFSQTILVQNLYQNPVSAVMAAGGDPSQLPKDHVQDDFEDXXXXVYQELSKFGEISEMNVCDNLGDHLIGNVYVKFLDEEDADSALKGLMGRWYASRPIMCEFSPVTDFREARCRQFDEGTCNRGGQCNFMHVKPVPRLVMSYLEKLLRK 249
BLAST of mRNA_P-fluviatile_contig23.5212.1 vs. uniprot
Match: A0A835YWK2_9STRA (Uncharacterized protein (Fragment) n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835YWK2_9STRA) HSP 1 Score: 336 bits (861), Expect = 1.500e-104 Identity = 149/198 (75.25%), Postives = 173/198 (87.37%), Query Frame = 1
Query: 829 GMSGSAKGGAEHLARIHGTEEDKVNCPFFYKIGACRHGDRCSRQHHKPPFSQTILVQNLYQNPVSAIMAAGGDPSQLPEDHVQDDFEDFFEEVYLELSKFGEISEMNVCDNLGDHLIGNVYVKFMDEEDADAALKGLMGRWYAGRPIMCEFSPVTDFREARCRQFDEGTCNRGGQCNFMHVKPVPRLVMSYLDKVIRK 1422
G +G +GGAEHLARIHGTEEDKVNCPF+YKIGACRHGDRCSRQHHKPPFSQT+L+ ++YQNP SA++AAGGDP+ + +D D+FEDF+EEVY EL KFG + EM+VCDNLGDHL+GNVY+KF DEEDADAALKGL GRWY GRP++ EFSPV DFREARCRQ+DEGTC RGGQCNFMHV+ V + V+ YLDKV RK
Sbjct: 13 GGAGGPRGGAEHLARIHGTEEDKVNCPFYYKIGACRHGDRCSRQHHKPPFSQTLLLSHMYQNPASALLAAGGDPNAIDQDAANDEFEDFYEEVYEELCKFGSVEEMHVCDNLGDHLVGNVYIKFSDEEDADAALKGLFGRWYGGRPMVPEFSPVNDFREARCRQYDEGTCGRGGQCNFMHVRHVSKDVVRYLDKVARK 210
BLAST of mRNA_P-fluviatile_contig23.5212.1 vs. uniprot
Match: A0A6H5L153_9PHAE (Uncharacterized protein (Fragment) n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5L153_9PHAE) HSP 1 Score: 328 bits (842), Expect = 2.300e-102 Identity = 154/168 (91.67%), Postives = 159/168 (94.64%), Query Frame = 1
Query: 823 RNGMSGSAKGGAEHLARIHGTEEDKVNCPFFYKIGACRHGDRCSRQHHKPPFSQTILVQNLYQNPVSAIMAAGGDPSQLPEDHVQDDFEDFFEEVYLELSKFGEISEMNVCDNLGDHLIGNVYVKFMDEEDADAALKGLMGRWYAGRPIMCEFSPVTDFREARCRQFD 1326
RNGMSGSA+GGAEHLARIHGTEEDKVNCPFFYKIGACRHGDRCSRQHHKPPFSQTILVQNLYQNPVSA+MAAGGDPSQLP+DHVQDDF ELSKFGEISEMNVCDNLGDHLIGNVYVKF+DEEDAD+ALKGLMGRWYAGRPIMCEFSPVTDFREARCRQFD
Sbjct: 5 RNGMSGSARGGAEHLARIHGTEEDKVNCPFFYKIGACRHGDRCSRQHHKPPFSQTILVQNLYQNPVSAVMAAGGDPSQLPKDHVQDDFXXXXXXXXXELSKFGEISEMNVCDNLGDHLIGNVYVKFLDEEDADSALKGLMGRWYAGRPIMCEFSPVTDFREARCRQFD 172
BLAST of mRNA_P-fluviatile_contig23.5212.1 vs. uniprot
Match: A0A7S3XMX4_HETAK (Hypothetical protein (Fragment) n=1 Tax=Heterosigma akashiwo TaxID=2829 RepID=A0A7S3XMX4_HETAK) HSP 1 Score: 329 bits (844), Expect = 9.310e-102 Identity = 148/205 (72.20%), Postives = 174/205 (84.88%), Query Frame = 1
Query: 823 RNGMSGSAKGGAEHLARIHGTEEDKVNCPFFYKIGACRHGDRCSRQHHKPPFSQTILVQNLYQNPVSAIMAAGGDPSQLPEDHVQDDFEDFFEEVYLELSKFGEISEMNVCDNLGDHLIGNVYVKFMDEEDADAALKGLMGRWYAGRPIMCEFSPVTDFREARCRQFDEGTCNRGGQCNFMHVKPVPRLVMSYLDKVIRKKKGGG 1437
R+ + A+GGAEHLARIHGTEEDKVNCPF++KIGACRHGDRCSRQHHKPPFSQT+LVQ++YQNP SAI AAGGDP+ + Q+DFE+F+EEV+ ELSKFG + E+N+CDNLGDHL+GNVY K+ DEEDAD+ALK L GR+YAGRP++CEFSPVTDFREARCRQFDEGTC RGG CNFMHVK VPR + L + K+GGG
Sbjct: 13 RSQYNHEARGGAEHLARIHGTEEDKVNCPFYFKIGACRHGDRCSRQHHKPPFSQTVLVQHMYQNPASAIAAAGGDPNSIDHRQAQEDFEEFYEEVFEELSKFGAVEELNICDNLGDHLVGNVYAKYADEEDADSALKALYGRFYAGRPLICEFSPVTDFREARCRQFDEGTCARGGYCNFMHVKAVPRGLQRDLLRKFAPKRGGG 217
BLAST of mRNA_P-fluviatile_contig23.5212.1 vs. uniprot
Match: A0A835ZC00_9STRA (Uncharacterized protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835ZC00_9STRA) HSP 1 Score: 330 bits (846), Expect = 9.730e-101 Identity = 148/196 (75.51%), Postives = 170/196 (86.73%), Query Frame = 1
Query: 853 GAEHLARIHGTEEDKVNCPFFYKIGACRHGDRCSRQHHKPPFSQTILVQNLYQNPVSAIMAAGGDPSQLPEDHVQDDFEDFFEEVYLELSKFGEISEMNVCDNLGDHLIGNVYVKFMDEEDADAALKGLMGRWYAGRPIMCEFSPVTDFREARCRQFDEGTCNRGGQCNFMHVKPVPRLVMSYLDKVIRKKKGGGA 1440
GAEHLARIHGTEEDKVNCPF+YKIGACRHGDRCSRQHHKPPFSQTIL+ +++QNP SA++AAGG+P + ++ D+FEDF+EEVY EL KFG + EMNVCDNLGDHL+GNVYVKF DEEDAD ALKGL GRWYAGRP++ EFSPVTDFREARCRQ+DEGTC RGGQCNFMHV+ V R V Y DK+ R+ + GGA
Sbjct: 62 GAEHLARIHGTEEDKVNCPFYYKIGACRHGDRCSRQHHKPPFSQTILLSHMFQNPASALIAAGGNPETIDQEATNDEFEDFYEEVYEELCKFGTVEEMNVCDNLGDHLVGNVYVKFSDEEDADNALKGLFGRWYAGRPMVPEFSPVTDFREARCRQYDEGTCGRGGQCNFMHVRHVSRDVARYCDKMARRARRGGA 257
BLAST of mRNA_P-fluviatile_contig23.5212.1 vs. uniprot
Match: A0A7S3ZUE9_9STRA (Hypothetical protein n=4 Tax=Pelagomonas calceolata TaxID=35677 RepID=A0A7S3ZUE9_9STRA) HSP 1 Score: 312 bits (799), Expect = 3.780e-93 Identity = 139/196 (70.92%), Postives = 166/196 (84.69%), Query Frame = 1
Query: 838 GSAKGGAEHLARIHGTEEDKVNCPFFYKIGACRHGDRCSRQHHKPPFSQTILVQNLYQNPVSAIMAAGGDPSQLPEDHVQDDFEDFFEEVYLELSKFGEISEMNVCDNLGDHLIGNVYVKFMDEEDADAALKGLMGRWYAGRPIMCEFSPVTDFREARCRQFDEGTCNRGGQCNFMHVKPVPRLVMSYLDKVIRKK 1425
G A+GGA HLARIHGTEEDKVNCPF++KIGACRHGDRCSRQHHKPPFSQT++VQ++YQNP S I AAGGDPSQL VQ++F+DF+EEVY EL+ +GEI E+NVC+NLGDH++GNVY KF DEE +DAALK L GR+YAGRP++CEFSPVTDFREARCRQ+DE C RGG CNFMH++ R + L+K +KK
Sbjct: 124 GGARGGATHLARIHGTEEDKVNCPFYFKIGACRHGDRCSRQHHKPPFSQTMIVQHMYQNPASQIAAAGGDPSQLDPKKVQEEFDDFYEEVYDELAGYGEIEELNVCENLGDHMVGNVYCKFADEEHSDAALKALFGRFYAGRPLVCEFSPVTDFREARCRQYDEAVCTRGGYCNFMHIRTPSRSLRKDLEKRYKKK 319
BLAST of mRNA_P-fluviatile_contig23.5212.1 vs. uniprot
Match: A0A024TD10_9STRA (Uncharacterized protein n=7 Tax=Aphanomyces TaxID=100860 RepID=A0A024TD10_9STRA) HSP 1 Score: 306 bits (785), Expect = 7.530e-93 Identity = 141/201 (70.15%), Postives = 167/201 (83.08%), Query Frame = 1
Query: 850 GGAEHLARIHGTEEDKVNCPFFYKIGACRHGDRCSRQHHKPPFSQTILVQNLYQNPVSAIMAAGGDPSQLPEDHVQDDFEDFFEEVYLELSKFGEISEMNVCDNLGDHLIGNVYVKFMDEEDADAALKGLMGRWYAGRPIMCEFSPVTDFREARCRQFDEGTCNRGGQCNFMHVKPVPRLVMSYLDKVIR-----KKKGGG 1437
GGAEHLARIHGTEED+VNCPF++KIGACRHGDRCSR H+KP FSQT+LV+++YQNP+S ++AA GDP+QL + V +DFEDFFEEV+ EL KFG++ E+NVCDNLGDHL+GNVY KF DEE A AA L GR+Y GRPIMCE+SPVTDFREARCRQFDEGTCNRGG CNFMH+K V R +M L++ +KKGGG
Sbjct: 36 GGAEHLARIHGTEEDRVNCPFYFKIGACRHGDRCSRSHNKPVFSQTLLVKHMYQNPLSTVIAANGDPNQLDQKTVDEDFEDFFEEVFEELCKFGKLEELNVCDNLGDHLVGNVYAKFEDEECAAAAHTALYGRFYGGRPIMCEYSPVTDFREARCRQFDEGTCNRGGYCNFMHIKMVSRAMMIELERHYNTYGDDEKKGGG 236
BLAST of mRNA_P-fluviatile_contig23.5212.1 vs. uniprot
Match: T0S0M7_SAPDV (Uncharacterized protein n=2 Tax=Saprolegnia TaxID=4769 RepID=T0S0M7_SAPDV) HSP 1 Score: 307 bits (786), Expect = 1.220e-92 Identity = 141/193 (73.06%), Postives = 163/193 (84.46%), Query Frame = 1
Query: 850 GGAEHLARIHGTEEDKVNCPFFYKIGACRHGDRCSRQHHKPPFSQTILVQNLYQNPVSAIMAAGGDPSQLPEDHVQDDFEDFFEEVYLELSKFGEISEMNVCDNLGDHLIGNVYVKFMDEEDADAALKGLMGRWYAGRPIMCEFSPVTDFREARCRQFDEGTCNRGGQCNFMHVKPVPRLVMSYLDKVIRKKK 1428
GGAEHLARIHGTEED+VNCPF++KIGACRHGDRCSR H+KP FSQTILV+++YQNP+S I+AA GDPSQL + V +DFEDFFEEVY EL KFG++ E+NVCDNLGDHL+GNVY KF DEE A AA K L GR+Y GRP++CEFSPVTDFREARCRQFDEGTCNRGG CNFMH+K V +M L++ KK
Sbjct: 51 GGAEHLARIHGTEEDRVNCPFYFKIGACRHGDRCSRLHNKPVFSQTILVKHMYQNPLSVIIAANGDPSQLDQKTVDEDFEDFFEEVYEELCKFGKVDELNVCDNLGDHLVGNVYAKFDDEECAAAAQKALYGRFYGGRPLICEFSPVTDFREARCRQFDEGTCNRGGYCNFMHIKMVSHAMMIELERHYNIKK 243
BLAST of mRNA_P-fluviatile_contig23.5212.1 vs. uniprot
Match: F0Y2V2_AURAN (Uncharacterized protein (Fragment) n=1 Tax=Aureococcus anophagefferens TaxID=44056 RepID=F0Y2V2_AURAN) HSP 1 Score: 302 bits (773), Expect = 2.980e-92 Identity = 133/185 (71.89%), Postives = 158/185 (85.41%), Query Frame = 1
Query: 856 AEHLARIHGTEEDKVNCPFFYKIGACRHGDRCSRQHHKPPFSQTILVQNLYQNPVSAIMAAGGDPSQLPEDHVQDDFEDFFEEVYLELSKFGEISEMNVCDNLGDHLIGNVYVKFMDEEDADAALKGLMGRWYAGRPIMCEFSPVTDFREARCRQFDEGTCNRGGQCNFMHVKPVPRLVMSYLDK 1410
A HLARIHGTEEDKVNCPF++KIGACRHGDRCSRQHHKPPFSQT++VQ++YQNP S I AAGGDPSQL VQ++F+DF+EEVY EL+K+GEI E+NVC+NLGDH++GNVY KF DEE DA+LK L GR+YAGRP++CEFSPVTDFREARCRQ+DE C RGG CNFMH++ R + L+K
Sbjct: 1 ATHLARIHGTEEDKVNCPFYFKIGACRHGDRCSRQHHKPPFSQTMIVQHMYQNPASQIAAAGGDPSQLDPKKVQEEFDDFYEEVYDELAKYGEIEELNVCENLGDHMVGNVYAKFADEEHTDASLKALFGRFYAGRPLVCEFSPVTDFREARCRQYDEAVCTRGGYCNFMHIRTPSRSLRRDLEK 185
BLAST of mRNA_P-fluviatile_contig23.5212.1 vs. uniprot
Match: H3G5Y3_PHYRM (Uncharacterized protein n=2 Tax=Phytophthora TaxID=4783 RepID=H3G5Y3_PHYRM) HSP 1 Score: 302 bits (773), Expect = 5.380e-92 Identity = 131/189 (69.31%), Postives = 161/189 (85.19%), Query Frame = 1
Query: 856 AEHLARIHGTEEDKVNCPFFYKIGACRHGDRCSRQHHKPPFSQTILVQNLYQNPVSAIMAAGGDPSQLPEDHVQDDFEDFFEEVYLELSKFGEISEMNVCDNLGDHLIGNVYVKFMDEEDADAALKGLMGRWYAGRPIMCEFSPVTDFREARCRQFDEGTCNRGGQCNFMHVKPVPRLVMSYLDKVIRK 1422
AEHLARIHGTEED+VNCPF++KIGACRHGDRCSR H+KP FSQTILV ++YQNP++ ++A GDP+ L + HV ++FEDF+EE++ EL KFG++ E+N+CDNLGDHL+GNVY KF DEE A AA K L GR+YAGRP++CEFSPVTDFREARCRQFDEGTCNRGG CNFMH+K VPR + L+K+ +
Sbjct: 1 AEHLARIHGTEEDRVNCPFYFKIGACRHGDRCSRLHNKPVFSQTILVSHMYQNPIAQVIAQNGDPASLDQRHVDEEFEDFYEEIFEELCKFGKLEELNICDNLGDHLVGNVYAKFDDEEHAAAAQKALYGRFYAGRPLVCEFSPVTDFREARCRQFDEGTCNRGGYCNFMHIKTVPRAMQRELEKMFNR 189
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 | 395.2 |
| Seed ortholog evalue | 4.2e-107 |
| Seed eggNOG ortholog | 2880.D7G5I7 |
| Preferred name | U2AF1 |
| KEGG ko | ko:K12836 |
| KEGG Pathway | ko03040,ko05131,map03040,map05131 |
| GOs | GO:0000003,GO:0000243,GO:0000375,GO:0000377,GO:0000381,GO:0000398,GO:0003006,GO:0003674,GO:0003676,GO:0003723,GO:0003727,GO:0003729,GO:0005488,GO:0005515,GO:0005575,GO:0005622,GO:0005623,GO:0005634,GO:0005654,GO:0005681,GO:0005684,GO:0006139,GO:0006355,GO:0006357,GO:0006396,GO:0006397,GO:0006403,GO:0006405,GO:0006406,GO:0006611,GO:0006725,GO:0006807,GO:0006810,GO:0006886,GO:0006913,GO:0007275,GO:0008104,GO:0008150,GO:0008152,GO:0008187,GO:0008380,GO:0009314,GO:0009416,GO:0009628,GO:0009648,GO:0009791,GO:0009889,GO:0009987,GO:0010228,GO:0010467,GO:0010468,GO:0010556,GO:0010810,GO:0010811,GO:0015030,GO:0015031,GO:0015833,GO:0015931,GO:0016070,GO:0016071,GO:0016604,GO:0016607,GO:0019219,GO:0019222,GO:0019904,GO:0022414,GO:0030155,GO:0030628,GO:0031123,GO:0031124,GO:0031323,GO:0031326,GO:0031503,GO:0031974,GO:0031981,GO:0032501,GO:0032502,GO:0032991,GO:0033036,GO:0034613,GO:0034641,GO:0036002,GO:0042710,GO:0042886,GO:0043170,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0043233,GO:0043484,GO:0043900,GO:0043902,GO:0044010,GO:0044011,GO:0044237,GO:0044238,GO:0044422,GO:0044424,GO:0044428,GO:0044446,GO:0044451,GO:0044464,GO:0044764,GO:0045184,GO:0045292,GO:0045785,GO:0046483,GO:0046907,GO:0048024,GO:0048518,GO:0048522,GO:0048573,GO:0048608,GO:0048731,GO:0048856,GO:0050657,GO:0050658,GO:0050684,GO:0050733,GO:0050789,GO:0050794,GO:0050896,GO:0051028,GO:0051168,GO:0051169,GO:0051171,GO:0051179,GO:0051234,GO:0051236,GO:0051252,GO:0051641,GO:0051649,GO:0051703,GO:0051704,GO:0060255,GO:0061458,GO:0065007,GO:0070013,GO:0070727,GO:0071004,GO:0071010,GO:0071013,GO:0071166,GO:0071426,GO:0071427,GO:0071702,GO:0071704,GO:0071705,GO:0080090,GO:0089701,GO:0090304,GO:0090605,GO:0090609,GO:0097159,GO:1900187,GO:1900189,GO:1900190,GO:1900192,GO:1901360,GO:1901363,GO:1902494,GO:1903311,GO:1903506,GO:1990904,GO:2000112,GO:2001141 |
| EggNOG free text desc. | pre-mRNA 3'-splice site binding |
| EggNOG OGs | KOG2202@1,KOG2202@2759 |
| COG Functional cat. | S |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko00001,ko03041 |
| Hectar predicted targeting category | other localisation |
| Ec32 ortholog description | Nucleotide-binding alpha-beta plait domain |
| Ec32 ortholog | Ec-22_000800.1 |
| Exons | 10 |
| Model size | 3313 |
| Cds size | 1380 |
| 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 |
| 1622816012.8566206-UTR-P-fluviatile_contig23:1878504..1879606 | 1622816012.8566206-UTR-P-fluviatile_contig23:1878504..1879606 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig23 1878505..1879606 - |
| 1693564075.6186626-UTR-P-fluviatile_contig23:1878504..1879606 | 1693564075.6186626-UTR-P-fluviatile_contig23:1878504..1879606 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig23 1878505..1879606 - |
| 1622816012.9901452-UTR-P-fluviatile_contig23:1889560..1890391 | 1622816012.9901452-UTR-P-fluviatile_contig23:1889560..1890391 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig23 1889561..1890391 - |
| 1693564075.7162173-UTR-P-fluviatile_contig23:1889560..1890391 | 1693564075.7162173-UTR-P-fluviatile_contig23:1889560..1890391 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig23 1889561..1890391 - |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622816012.8673398-CDS-P-fluviatile_contig23:1879606..1879917 | 1622816012.8673398-CDS-P-fluviatile_contig23:1879606..1879917 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig23 1879607..1879917 - |
| 1693564075.6283767-CDS-P-fluviatile_contig23:1879606..1879917 | 1693564075.6283767-CDS-P-fluviatile_contig23:1879606..1879917 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig23 1879607..1879917 - |
| 1622816012.8773756-CDS-P-fluviatile_contig23:1880892..1881113 | 1622816012.8773756-CDS-P-fluviatile_contig23:1880892..1881113 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig23 1880893..1881113 - |
| 1693564075.6361625-CDS-P-fluviatile_contig23:1880892..1881113 | 1693564075.6361625-CDS-P-fluviatile_contig23:1880892..1881113 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig23 1880893..1881113 - |
| 1622816012.8869727-CDS-P-fluviatile_contig23:1881984..1882062 | 1622816012.8869727-CDS-P-fluviatile_contig23:1881984..1882062 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig23 1881985..1882062 - |
| 1693564075.6466362-CDS-P-fluviatile_contig23:1881984..1882062 | 1693564075.6466362-CDS-P-fluviatile_contig23:1881984..1882062 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig23 1881985..1882062 - |
| 1622816012.896944-CDS-P-fluviatile_contig23:1882878..1882968 | 1622816012.896944-CDS-P-fluviatile_contig23:1882878..1882968 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig23 1882879..1882968 - |
| 1693564075.654398-CDS-P-fluviatile_contig23:1882878..1882968 | 1693564075.654398-CDS-P-fluviatile_contig23:1882878..1882968 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig23 1882879..1882968 - |
| 1622816012.9080684-CDS-P-fluviatile_contig23:1884064..1884165 | 1622816012.9080684-CDS-P-fluviatile_contig23:1884064..1884165 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig23 1884065..1884165 - |
| 1693564075.6622484-CDS-P-fluviatile_contig23:1884064..1884165 | 1693564075.6622484-CDS-P-fluviatile_contig23:1884064..1884165 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig23 1884065..1884165 - |
| 1622816012.9241023-CDS-P-fluviatile_contig23:1884402..1884469 | 1622816012.9241023-CDS-P-fluviatile_contig23:1884402..1884469 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig23 1884403..1884469 - |
| 1693564075.6705596-CDS-P-fluviatile_contig23:1884402..1884469 | 1693564075.6705596-CDS-P-fluviatile_contig23:1884402..1884469 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig23 1884403..1884469 - |
| 1622816012.9357932-CDS-P-fluviatile_contig23:1885610..1885756 | 1622816012.9357932-CDS-P-fluviatile_contig23:1885610..1885756 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig23 1885611..1885756 - |
| 1693564075.6788845-CDS-P-fluviatile_contig23:1885610..1885756 | 1693564075.6788845-CDS-P-fluviatile_contig23:1885610..1885756 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig23 1885611..1885756 - |
| 1622816012.9480178-CDS-P-fluviatile_contig23:1886738..1886852 | 1622816012.9480178-CDS-P-fluviatile_contig23:1886738..1886852 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig23 1886739..1886852 - |
| 1693564075.686835-CDS-P-fluviatile_contig23:1886738..1886852 | 1693564075.686835-CDS-P-fluviatile_contig23:1886738..1886852 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig23 1886739..1886852 - |
| 1622816012.9612176-CDS-P-fluviatile_contig23:1888585..1888771 | 1622816012.9612176-CDS-P-fluviatile_contig23:1888585..1888771 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig23 1888586..1888771 - |
| 1693564075.6977336-CDS-P-fluviatile_contig23:1888585..1888771 | 1693564075.6977336-CDS-P-fluviatile_contig23:1888585..1888771 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig23 1888586..1888771 - |
| 1622816012.972429-CDS-P-fluviatile_contig23:1889494..1889560 | 1622816012.972429-CDS-P-fluviatile_contig23:1889494..1889560 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig23 1889495..1889560 - |
| 1693564075.707853-CDS-P-fluviatile_contig23:1889494..1889560 | 1693564075.707853-CDS-P-fluviatile_contig23:1889494..1889560 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig23 1889495..1889560 - |
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig23.5212.1 >prot_P-fluviatile_contig23.5212.1 ID=prot_P-fluviatile_contig23.5212.1|Name=mRNA_P-fluviatile_contig23.5212.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=460bp
MSGSAKGGAEHLARIHGTEEDKVNCPFFYKIGACRHGDRCSRQHHKPPFS QTILVQNLYQNPVSAIMAAGGDPSQLPEDHVQDDFEDFFEEVYLELSKFG EISEMNVCDNLGDHLIGNVYVKFMDEEDADAALKGLMGRWYAGRPIMCEF SPVTDFREARCRQFDEGTCNRGGQCNFMHVKPVPRLVMSYLDKVIRKKKG GGADYDDDASERRSRKRSRSRSRDRDRKKRSRSRERRSSRRSRSRERRSH RDKDKDRDRRDRDRDRDSKKDRKDKDKDKEKDRSERKRRHYTEAPDGASD KAASKDDKNKDKDKEDTHGEDMKGGDNGTTSPGPGADAEAGPEVSKKGTE NGAGATGGDESVEANGAGAEDGSKSASNGVAAASGGAGVNLVPSADDDDD EDEAEEAQDDGEEKKGSRGDKRTENGGEVEDEEGSGGNKATRGGGGAEDG DGDGDGEDE* back to topmRNA from alignment at P-fluviatile_contig23:1878505..1890391- Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig23.5212.1 ID=mRNA_P-fluviatile_contig23.5212.1|Name=mRNA_P-fluviatile_contig23.5212.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=11887bp|location=Sequence derived from alignment at P-fluviatile_contig23:1878505..1890391- (Porterinema fluviatile SAG_2381) TGTATGGCGGAGGCGGAATGGACCGCAACCCTCGCGATAGGTGAATCGGT
GAAATTGCTGTCGGGCGGTGCGGCCAATATTTCGTAGTCCGCGGAGTGTT
GTGCTCTCGGAAACCGTTTTGCGCAGAGATTCATGTCATTCCACACTGTC
CTTATTCCAGTTCTGTTCGTGATGTCGTTCTCTTGAATGGGTCAGACCGG
TGCAATTCCTATCAGATACCGAAGGTCGTGTGCTAAGACTGTGAATGCAA
TCCGAGGATCGTCGCTTCACGCTCTCCCAGTGGTCCGCGAAGGACATAAT
TTATCCGTCTCGTGCTGGTATCGCTGATGCTTCTGCTGCGGGGACGGCTG
CTCGACTACTTTAGTCTTGCGGATTTAGGGGTCGGAAAGGATATTTGTTC
GGGAGGGAGATATTGAGGGACTGAGGATTTGATCCAGCTCTACTCACTTC
ACCAATATCTCACGATGCCAGCCGTTTACAGCTCTACGTGTGCACGCGAA
TTGCCCCATGTCCCCGGGAACTTCTGACATCTCATGTCAAAATCAAGCCG
CGGGACTTGTTTGCTCGACTTGTTTGCTCGACTTGTTTGCTCCTTTGTCG
AGATCAAATCCGGCGCCGCAAGAGTACATTTCATGCATTGTTTCTTACTG
CACATGGGACATCCCTCCTCCACGCTGCGCACCGCACGTTGAGCTTTCCG
AACATCACGAAACTATTTGTGGAAGATTCCTGTGTTGTTGTTGTGTCTCG
CTTGTTCGTCTCCCTTACTGGTCGTGATTCCCACACTTTACTGCAAATGA
ACACGTCAAACACTTGACGGCTAGGAACGGCATGTCCGGATCGGCTAAAG
GGGGAGCTGAGCACTTGGCCCGCATCCACGGCACAGAGGAAGACAAGGTG
AGGGGGGAAATGCGAAGGCAGAGGCTGAGGTCTACGCTGTCTCCCTACGG
GAGTGATGGGACAGAGCGGGGAATTTCCGAACTGAAGAAAGGAGAAAGTG
ATGGGAAACAATACCCATCGCTTGTTCGATGCGAAACGAAGTGCACGCGC
TTTTCACGCATAATTTTTCATGGTCTTGCATGAAGTAGAAATGGTGGTGG
TAGTCGCCAACGTCGTGGTCGCCATTTTGTCGTTGGTTGTTTTCGGCATG
TTGTTAACGTTATTTCGGTCGCGCTGTGTCTCTTTTACTGCAGATTTCGT
TGGCATTTCTGGTATCGTTGCGACCGTTGTGTACCGTGTGAGCCTGAGAC
TTCGCATCCCTTTTCTGGCCTCCGATACGTTGCGTCTCCATCGGCGCAAT
GGGCCCTCGGTCCTCTGTTGACGAACCCCGAAATCTTAGTCTCATTCACG
CCATCAGGGAACAGCCTAAGCATGCTCGCCGCGCACGCTTCGAAACGAGG
GCTCACCGTGATACGTATGGTCAGGAGAGCCACTATTGGGGTGACGGAAG
AATATCAGTACGCTCGAAGAAATAATTACGGAGGAACCCTGATATTTCGC
GTGTGCTACTTTGCACCGACGCGCACCTGCGTGTGCTTCTGGTTATCGTC
TCATCGCCGCTTTTTCTTACCCATTAAGCTACTGTAACCTTCTACACGTC
GTCTTGCTTCTTTCGTTCAGGTGAACTGCCCCTTCTTCTACAAGATCGGC
GCTTGCCGCCACGGAGACAGGTGCTCCCGGCAGCACCACAAGCCCCCCTT
CAGCCAGACGATCCTGGTGCAGAATCTCTACCAGAATCCGGTGTCGGCCA
TCATGGCTGCAGGTGGAGACCCCTCCCAGCTTCCCGAAGACCACGTCCAG
GATGATGTGAGTGAGACTGAGCCCCGCTACTTTCTCCCTCCTCGCTCTCT
CCTCCTCTGTCTCGCGTGTTATGTTTTGTACTCCGTAGGCGACTGACTGA
TCTTTGAAGGAGGGTGGGGGAGCTTTCATGCTGAAGTCAGCATCGACCAA
AGCTGGGGTATCTATGACAATACATGAATCGCGTAAGGAGTACAAGCCTA
AAGGAAACACATTTTGTGTTCTGGCGACTGCCACGTACAGTGCAGGATGG
TTTGATAGGGCGCTCGCTCTCCCGGCTGTTCTTTATTCCCGGAAGCTAAG
TCTCTGCTCTCGCGGATATTACTGACGGGATGACGTAGGTGAGCCCTCTG
TTCTCCCGTGCGTTATTTGCGCTCGCCCTTTATCTGGCAAGGACAAGTAT
ATTCTCGCTCACATCAAAGCCAAAAGCAGGGCGATGTGATCTCCCTCTCA
CTCATTCGTACGTGCGTTCGCCTCCGTCTCAAAAGTAGTCTCTGCTCCGA
CAGCGAAGGGCAGGAGGATGTCAGGCCTCTCCTCCGGTATCTCTCGCTCT
CGCTCTCTCTCCTTTCTACCGTCCCCATCCGAAGAGCCGCTGACTCTAGC
ACGACACATTCCGTTCTTTGGTAGAGCCACAGCTCGGCCACCCTTTACCG
TCGTCAAGGCGCTCCTGGCAAACAACGCCAAGATCACGGGATCGCCGGCA
TCCGTGTGATGGCTTCTTGGTTCACGTTGCCACCGAAGCTGTAAATTCCG
ATGTCTGCTTTCCGGGACTACTCCGTTGTCTCCGTGGTCGCGTCCCGGAG
AGCAGTTGCAACCTCGTTGTTTCCAGCCCTTGCAGCGAAGTGGATTACAG
AGGCAAAACCCGGATGCCGGATGGCCGTTGGTTGGCTTTGTTTGCCAACA
GCTTTTTTACGATGGAAGTTGGCCGCATGATGGAACCCAGGCATCGTGCC
CACCTCCGACTGTGCCGCGAAAACATGAAGGAAAACCCGCGGTGGTGATT
ACACCGCACATCGGCACTGTCGGCCAAAATCGCCGTTATGATGCCACGGC
GGTCGCAGTATGAAGCCAAAAACAGTTCTGATTAATGATTCGCTGACGGT
TGGCATGGCACCCGGTCGATTGTTGCCCTCATACCGTCGTCTCCACCTTC
ACGTTTCCATGTTTTCGCATCGGACAACGGCGAGCGTATTCCCCTTCACT
CATAGAGCGATAGCGGAGGACCGTAGACGGCCACAGCAGCAGAAGCAGCA
GTAGCAGCAGCAGTAGCAGCGGCGACGGCAATGCAGCAACACGAACAAAA
ACGGCAGCAGCGAAGCGTGCGCCAGATCGGACCAGCGAGGGCAGCCTCGT
GTACACAGCGCAAGATCGACGTTCGCCGTCCACTTTGGGCCTCGCTGTTG
CTGCGTCAATCTCCGCTCTGATCACAAAGAAGGTTGATCGCCCAACGGCT
GTCCTCTCCCCGCCCTCTCTTTTGCCGTCTCCATTTTCTGCCCCCTTCCC
CCCCCCTGCTCGTCCGGTTGAAAAGGCGGGAAGTGACATCGGTAGGATAG
ATAGACTAGGCAAGACATTGTTGAGCCACATTGGCAAAGTAGGAAGGAAC
GATTGGCCGTCGGTGATCGGTCCCGTGGGAACAATGCTCCGTCCTCTCGA
GTACACGTGGTCAATGGTCTAACCGCTAATGCATGCAAAACATACGAGTA
CGCCCCCCCTGCCCTGCTCGTCCACTACCCTGCGAGTAGTTCGAAGACTT
CTTCGAGGAGGTCTACCTGGAGCTCAGCAAGTTCGGGGAAATTTCCGAGA
TGAACGTGTGCGATAATCTCGGTGACCACCTCATCGGGAACGTCTACGTG
AAGGTCAGTTCGCCCTCGTCGTGAAGTGCGAAGACTGGCAGGTTGACGGA
GGACAAATGACTGGTCTGCCGCATTCGATTTGAGATGCCGAAAACTGACA
GCACCGCTGCTACAAAATCGTCGTATTTTGCGTGCTATAGCCGGTCGCCC
CGGTGGTCTAGTTGGTATCCTTGTAACCCTCTGGCACCCAGGTCACGGGT
TCAAATCTCGGCGAGAATGGTTTTTTCTCACTTTCGTACCTGGAAGTAGA
AAGCGGTGAAAAGCTGAAAAGCTTCGTGAGTACACAAAATTCGAAGTGGC
GGTCGACGAGGGAAAGGGACGACTGAACCCTTCTCGCGATAAAAGTGAAA
GCAAGCACCGCAGGAGGAAGGCGGGGCACAAAAGAAAAAGAAAAAGAAAA
GAAGAATGTTCAGGACTTTACCCCTCCTGTGTGACCACGGTTGGTTCTAG
CTGGACAGAAAATACACTGAACAAGTGTCGTCCTCTAAATACGCTGCAAA
GTGTAGTACACGTCTCGCCTTGATCGGAGGGACTGTCGCCAATAAAGTGA
CGAAAACACATTGTTGGGAGACGTGGTTGTACGATGGACGTCCGCAGGGC
GTGGGCGTGTGTGTGTGTGTGTGTGTGTGCGTGTGTGTGTGTGTTTTTAT
CTCAAAATACTCTTATGAGCATGAAATTGCGCACTTTTTTTATATAGAAC
GCTCCGAATATGTGGTGTGGCAGGAATGTGTGGCAGAAAGGCCAGGCGCT
GAGATCTGTCCGATCAGGGGTAATCCCGGAATACCCAACCTTCTATTCTG
CAGCTTACGCCCTCGGCTGCTGCTGCCCGTGCTGTCGTTGTCGTTGTTGT
TGTTGTTGTTGTTGAGTTGTTGGCGGCGGTAGACTTGACTTTTTGGGTGG
TGTGGCGGCAATTGCAGCGACGCTCACGTTTGTCTTCCTGCTGTTGACGT
TGGCGGTTTCGCCGATGCGTTCGTTGTCGTCACAGTTCATGGACGAGGAG
GACGCGGACGCTGCCCTGAAGGGTCTCATGGGAAGGTGGTACGCCGGACG
GCCCATCATGTGCGAGTTCAGCCCGGTGACCGACTTCCGGGAAGCCCGCT
GCCGCCAATTCGACGAGGGGACGTGCAACAGGCGAGACACGAAACAGCAA
GAAATAAGGGGGCGTACTCATGTTTTGTATGCCTTAGTTGTTAGACCATT
GACCACGTGTCCTCGAGAGGACGGAGCATTGTTCCCGCAGGATCGATCAC
CGATGACCAATCGTTCCTTCCTACTTTGCCAAAGGTGGCTCAAAAATGTT
TTCCCTAACCTGCATACTTTATACCTGTCCTTCCTGGGCCACATCTTACA
CCCGAGTGCCGCTACCGTCTTCTCCTCTTTGTTCCATGCCTCAAACTTCT
CTCTATACCGACTGTCTACTTTTTCCAGCTCAATCATGTACCCTTCTCTC
TCCTGATCGTATAACGGGCGGTGGGCTTATGAAGAGAATACGCTTGAAAT
ATGATGCCCATCTTGTACATGCGCTTCAAGGAGACGTCGTGCGATGGATC
ACTTTTGTACGCTGTATTGTAGTCGAGGTTAATTTTCTTTGGCCTGGGTA
GGAAGCCTGTGGCCACAAAAGTGGGTGTACTGTCGGAGTGACCAAACGGA
TGATTGACATGTTTAGACTACAATTGAGGACGAGGTAGGGGCGATCTTTG
GTGTGCGGAAACAAACGGTACAGCAACAGCAGCAGCAGCCGCAATAACAA
TGACAACGTCAGGGGAATATTAACAACTGTGGCATTCCAGCGACGAAATC
ATAACCATCACCACCCGGTGCTTGAGTGAGGGCTGTTGATTCCGAGTGCA
GACGTGAAGTGTTGATTTGAGTCCGGAGGTCAGCTTGTCGCTTCAGAAAC
TGGGAATACTGCAGGGCTGACGGACCTTTGCTGAAAGGCTGATCGGTGGG
CATTTTCCCCTTCGTGGTCACATTGAGCGCCGCATCATTCGCACCCATGA
GAGAGTTGAAGCGGGGTCGCGATGACGCGTTTGCTTGCCGTGAAATCACT
AACCGCGCCACCATCAGTCAGCACTCCGTTTTTGTAATGGTCGCGATCGC
TTGCCGCCGTCCGTGCCTTGATGCCATGTGTCGTTCTTGATGGAAGTGTT
GTTGCTCTTGTTTGTTTTGAAACAGCATCAGTATCTTGGACGTGCTCAGC
CGTATGATTCCCCCTCCCGTCATTGCATGTTTTCAATTTTAATGTGTGTT
TCCATATCTTTTTTGCCACCAGGGGAGGACAGTGCAACTTCATGCACGTC
AAGCCCGTGCCCCGCTTGGTGATGTCCTACCTCGACAAGGTGAGACCAAG
GAAAGCGCTTTAGCTATTTTGCCTCGCGTGTCGCACTCGCCTTGGTCCTC
ATCCTGCATTATCTCTGCAGAATGCTCGGTGCAAACGGTGTTCGGTTCAT
CAGTTCCCCCGTTCATCATACAGACAAATGTCAATAACGGAAGTCGCGGC
GGGAGCTTGTTTCTCATTTCCCACCTGTGACGATTGCTGTTTCGTGTTCT
CCCCCTACGCCCCCCCCTTTCGCCAGGTCATCCGCAAGAAAAAAGGGGGC
GGCGCCGACTACGACGACGACGCAAGCGAACGCAGGAGCAGAAAGCGCTC
CCGCAGCCGCTCCCGCGACAGAGACAGGTGAATCAAAGCTTCTCTTGCTT
TTTCGTGGGGGGAGGGCTCCGTGTTAGCGTAGCTGACATTTCCGCCGCCC
ATCTTTCCCCCCCACCCGCAACCCTGTGGCCGAGCATTCGTAGTATGATG
CTGCCCACCCATCACGCGACTCGTCGGATGGATCAAGGCACTTTGCGCTT
GGTGAAGGCACGAGCTTGGGCCGGTGAAAACCAGGCAAATCGCTCCGTCC
CGGGCTAGGAACGATGCGACGGCTATGGCCCAATGGCTACGGCATGCGTG
AATTGAGCCCCCCCCCCTCCCCTATACCCAAGCCTCTGGGACAGTGAGGC
ATGAGCGGGAAGGATGGGTTACTGCTGTGCGGGATTCCAGATCCAGTGAA
GGCAGCGCTTCGCTGGCCCATGAGGCCGCTCATAAGGAGCCTATCCGTTT
AACACCCCGTGTGTTGGAGATTCTTCCTCCGACCCACGTTTTGAGGTTGA
GTGCTAACAGGAGCGGCAGGGCACGCGCGCATTTCCTGCAGAGACGCGCC
CCCCACGCCACCAGCTGCTGGCATGTGGAGCGCGACGAAAACAGTCTTGC
CCGCCCCGCCCCGCCTCTCCTAGCCCCCGCCCCGTAGCCCTCTTACCCCC
CCTCTTAAAGGTACTCCCCAGTCGGTAAAAAGACATATCGAGGTTGTGCT
CTTTCGTTCTTCTCTTTGCCATCGGCAAGGAAACCACGAGGATTACATTG
CTCGGCGGGTACGCATAGACGATGAAGGATGAAGTGCGTCATTCGAAGAG
GACACGGGTTAGTGTAAGGATCCTGAGCCACAAGAGAGATCGGAGAGCAT
GTGTCCTACTGTTGCCGTGACGTTGAAGGACACAACACAACATCTGCCCG
CAGCTGTCTATCTCAGTACAACATCTGCCCCCGGCTGTCTATCTCTCATT
GAAGTGCTGGCCCCGCAGATGTATGTGCCTTGGCTCTAGCCCAGCGATCG
AGTCAATCTCTCTGGCGGGATGTCTAGCAACAGCGATGACGACGCGATTT
TCTTCCTTGTGCTTGTCAACGATGTGCCGATGCTTCACGCTGTCGCTCCT
CTGCCCGTGATGGTTTTGTGAAGGAAAAAGCGCAGTCGGTCTCGGGAGCG
CCGCAGCAGCAGGCGTAGCCGCAGCCGCGAGCGCAGGAGCCACCGGGACA
AGGATAAGGACAGGCAAGATGAGGCCATGAATTTTATCTTTTTGGTTGAT
CGAAGGGTGTGTGCTTTCATGTATCCAAGTCTTCCCCGGAACCTGTGATG
CACGTGAGTTCGTGCATGCACTGATTGTCGATTCCTGGAACACAGGTACA
ACACTCCGACCATTTGTTTAACTCGAACCCAACAGAGTATGACGTTTGAG
ATGAAAACTCGATGTGCTTTTTGTATGATCCTTCCAGCCGTGGCGTTCCA
TCCAATCAGACCCTCTGCTTTTAGCCCCGGCTAAAGGTTTGGGTCTCTGC
TGCATTTCCCCTCGCGCACGGTTCTGGCCGCAGCTGCACAATGAACAGCG
CAAATTGCGATGGTCTTGCCCGTGCTCGCTCGCTTGTTTGTCGGACGACG
TGACCTTTTTTCTTTTCACAATATTTCCCCCCGGTTTCCCTTCTGTCACT
GCAACATCCAGGTATATATACACTCATCAACCGGATGCTCTGGCTCCGAC
AACCTTCAATATTAATTCCTTTATTCCTTCCCTTTCGCCGAGACACAGGC
ACCTCGTTCATGGTTTGTTACACCTTTGACGTGCGCTTTCGTCCCTTCGA
CGAGCGTGCCTGATGGGCTTGCTGGTGCTTGCTCCGTTGCGCATCCCATG
GCAAAACGCATTGAACGATCGTGTTTCGTTTTCCTCTTTTCATTTGTTCC
GATGCCATTGACTTGGTTTCGTGAGGTTTTTCCTCTATCGTCTGGTCGAT
TATTTTCTTGTATGTGCTTGTCTGTTCCGCTCTGCTCGGCTCCGCGTCGC
CACCATCGTTTCTGTCCCCGTTCTGGCAGGGACAGGCGGGACCGGGACCG
GGACCGGGACAGCAAGAAGGACAGGAAGGACAAAGATAAGGACAAGGAAA
AAGACAGGTACGCTTTTTGTGATTTCGTCATCCCTCCCTTTTCGGTGGAG
ACCCTATGCTCCCCGCCGCTGACGTGTGCAGCCTTCTTCAATTCCGACCC
TTGTTTTCTGCAGGAGTATGCCCCCCGTTTTTTTTTAGCTTGCAGTCTCT
GAATCGGTGGAATTATCAGTACTCTCGCTTGTGCTCCGAAGTCGTTGACC
CTTCCCGCGCTGTCCTTCCTCCCTCCCTCGTCTAACACCAATCCCGTTTT
TCATGACAACGCTAGCTGGTTTCAAGTTGAAAAATTATCGCCTCCCAGCG
ATTACTACCTCCTGGCGCTTATCGCCTACCAGCACACGCGTTATCCTTTT
TGGTCCGTGCCAGTTCAATGCGAAACCGGCGTCTGTTTGCCCCGAAGGCG
CGGTGTGCCGCGGTGCGGTGCGGTGCGGTGCCGTGCGGCGTGTTGCGCTT
CGCTTCACTAGGACTTTGCGAGTGTTTTTTTACTTGGGTCGATCTAGCCG
CCAAGTAGGATGCTTCTCGGTACGGTACATGGAAAACGGTACACGGAAAA
CAGTGGACAACAGAAAAAAGCGAAGTCTTGCCCACAACCCCCCCTGTTTT
CTCTGCCTCTGGGAGGAGAGGTATGCAAGGTTCGCTTTTCCCGACCCTCT
ACCCCCCGTTTACCCGACATCCCTCGTGACCTCCAGGCGGTGTTCGTGCA
AGTTTTCATTTCCCAAGGTGTCTGGCGCACTAAGCTTTGATTTGACTCGT
GACTCCTCCGCTTTCCCCCCCTCTCTTCGTTGGCCTCTCCCCCCCTCTCC
CTCTCCCTCTTGTGCTCTTTCCCATATTTCGCTCTCACTCTCTTCTCTCT
TTCCCTCTCCTCTGTCGCCTTCCTGCAGAAGTGAGCGCAAGCGGCGCCAC
TACACCGAGGCACCGGATGGCGCGTCTGACAAGGCCGCCAGCAAGGACGA
CAAGAACAAGGACAAGGACAAGGAGGACACTCACGGCGAGGATATGAAGG
GAGGGGACAACGGAACCACATCCCCCGGCCCCGGAGCTGACGCCGAGGCT
GGCCCAGAGGTCTCGAAGAAGGGAACGGAGAACGGCGCCGGTGCTACCGG
TGGGTCTGTCGGTCTTTTTTGCTCTTCTCTGTTCGCAGTGCCACGGTTGG
TCTTGTATCTTTTCGTGCTCTGTTCCCATGCCACGTTTTCTGTATTGCCG
CGGTTGGTCTGTATCTTTTCCTGCTCCGTTCTGATGCCACCCTGTACTGC
CACGGTTGGGGGCGGAGAGTTGCCGCTCAGCAGCTTTCGACGACGAGAAC
AAACCTGATTTCAGCAGCTCCGACCCACCGCCTGACTCGGAATATTCGAG
CAGCAATTCCAGTTGACGCCCGTTGCGCGGCACGCGTTGCGGTTCAGCGT
TTGTGAATTTTTTTTGTCAATCGTCGGCGTGCGGGGTAACGGACAGCTTG
TATTCGCCGCGCGGGGATTCCGTGAAAAGTAGAAGCAGTTGTAGATGGAA
AATGGCCCTTGCAATCTCCAGCGTTTCAACGCGTGTCAGCCATTTTTCGT
CGGAATCGAGGTTGGGCCGACGTCGAATACGTGGGACAACTTTAGCCTTG
AATTCCAATTGCCAGGGGTATTCCCGGATAGATGATGACCAAAGAGCGTA
GCAAAATTAATGTCGCGAACAGACACAAAGCGAAACAATGAGGGAGAGAG
TGACAGAGTGCCATCTCGCATGTGTGATTTGTATTTCATGCCACTAAACT
TATGCTAGAGCAGGCACTGTTTCCTCGTTTTTCCGTAGAATTTTATCCCC
AGAACCCCCCCCGTTCCGACGTGCTAAAACTGCCTTCCGCCGGGCTCAGG
CGCCTCTCCTTCAGAATCCTGCTCATGTTCGTCCGTCCGGCTTGCTTGGT
GGTTCTTCTCCTTCTCCTTGCTCCACTTTTTTTCTTAGGGAGCCGTGAAA
TTTGCGAAGTCAGTCACAACAATAAAAAACTGGAAAGCCGAACCCCCCCC
CCCTGAACCCTATCCACTTGCGCAATCTCTCCCCCGCCGGAACATTGGAT
TCGGTCCCGGCTCCGTTGCAGCAGGTGGTGATGAGAGTGTCGAGGCAAAC
GGCGCGGGCGCGGAAGACGGCAGTAAGAGCGCTTCGAACGGCGTCGCCGC
CGCCTCCGGGGGCGCTGGGGTCAACCTAGTCCCGTCTGCCGATGACGACG
ACGACGAGGATGAGGCAGAGGAAGCGCAAGACGACGGTGAGGAGAAGAAA
GGCAGCCGCGGTGACAAGAGGACAGAGAACGGGGGGGAAGTGGAGGACGA
GGAAGGGAGCGGAGGAAACAAGGCGACCAGGGGCGGGGGCGGCGCCGAAG
ACGGCGACGGCGACGGTGACGGCGAAGACGAATAGGAATGAGAGAAGAGG
GCGGGGGTACGAATTAGAAAAATAAGCGTGGTGGGCGTGCCCCACGTAGG
TACCGCACGAACCCAAGGAGCAAGCAGAGTGGTGACCGGTGACCGGTGTT
AACTGGGTCCCCGGGGAGGAAGTGACATGCTGCCTCATTAATACGGGTCG
TGATCACAAATGTTTTGTGAGTATGGTTTGTTCGCATCGAGCATCAACCG
CGATAAGTAAGCACCTTACCAAGAGAACAAACAGGCGATCTACTGTTCGT
TCGTGTGGCAGAGAGTTTGCGTGCTTTCTCAACATTTGTGTGTTTCTTGG
GGGCGGGGAGATCACCGCGCTAGCATGCCTAGAGAGCCAACACAAGGCTG
CAATCTACCTTCATGTTCCACAGCAGTAAACGGCGGATTTTGGGTTGTTG
CGATGGAGCACGGCGTGACTGCTGAGTTGCAGCTGGCGCCTTGGGAAGGC
CTTGAGATACCCGATTCTTGCCGTGATGCTCGGCGGCGATTGACATAAGC
TGCCGGCAACTGCTGCCGGTTTTCGGTGGAGTTTACGATGTTGCTGCTGA
TTCCATTGACCGTAAATCATGGCCCACTTTTGTTGCGAGGATATCGCGAC
TCGGCACCGTGGTTTTTTCGCTCGTCGACCGATTGGGGATCGTCGCCAGG
AGTTGCTCCACGCATCCACCGAAGAATTTCAATCGATCGTTCGGTGTTCT
TTGCAAAGATAAAACTAGGTGAGTGTGGGCGGGATCCACAAGCTTCCGGG
GGGAGCGTGATTCTGGGGGCAGCGTCTCTCTCGCTCTCCCGCTCACGCAA
GACATGGCATTCCGTCTGTAGTTAAAGGACAACGCAACGATGAAGGAATC
TATCTATTTTGTCTATTTCTCTAGTTATGTCGTCGTTGAGGGCGGGTATC
GGTCGAAGGTGTTACGACCGAAAAACTTGAGTACCTTTCAACGCTCCAAA
GTAGTATGGGATGGCGAGGAACGCAGATGCGAAGAATGGGGGACATTGTA
GGAAAGTCACATGCGTACAGCACGCAATCAACGCAGGCCCTCGCGCGTGT
GGGCGTTGTCCCGAATCGCCGAGGAATTCCAGCGGGC back to topCoding sequence (CDS) from alignment at P-fluviatile_contig23:1878505..1890391- >mRNA_P-fluviatile_contig23.5212.1 ID=mRNA_P-fluviatile_contig23.5212.1|Name=mRNA_P-fluviatile_contig23.5212.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=2760bp|location=Sequence derived from alignment at P-fluviatile_contig23:1878505..1890391- (Porterinema fluviatile SAG_2381) ATGTCCGGATCGGCTAAAGGGGGAGCTGAGCACTTGGCCCGCATCCACGG CACAGAGGAAGACAAGATGTCCGGATCGGCTAAAGGGGGAGCTGAGCACT TGGCCCGCATCCACGGCACAGAGGAAGACAAGGTGAACTGCCCCTTCTTC TACAAGATCGGCGCTTGCCGCCACGGAGACAGGTGCTCCCGGCAGCACCA CAAGCCCCCCTTCAGCCAGACGATCCTGGTGCAGAATCTCTACCAGAATC CGGTGTCGGCCATCATGGCTGCAGGTGGAGACCCCTCCCAGCTTCCCGAA GACCACGTCCAGGATGATGTGAACTGCCCCTTCTTCTACAAGATCGGCGC TTGCCGCCACGGAGACAGGTGCTCCCGGCAGCACCACAAGCCCCCCTTCA GCCAGACGATCCTGGTGCAGAATCTCTACCAGAATCCGGTGTCGGCCATC ATGGCTGCAGGTGGAGACCCCTCCCAGCTTCCCGAAGACCACGTCCAGGA TGATTTCGAAGACTTCTTCGAGGAGGTCTACCTGGAGCTCAGCAAGTTCG GGGAAATTTCCGAGATGAACGTGTGCGATAATCTCGGTGACCACCTCATC GGGAACGTCTACGTGAAGTTCGAAGACTTCTTCGAGGAGGTCTACCTGGA GCTCAGCAAGTTCGGGGAAATTTCCGAGATGAACGTGTGCGATAATCTCG GTGACCACCTCATCGGGAACGTCTACGTGAAGTTCATGGACGAGGAGGAC GCGGACGCTGCCCTGAAGGGTCTCATGGGAAGGTGGTACGCCGGACGGCC CATCATGTGCGAGTTCAGCCCGGTGACCGACTTCCGGGAAGCCCGCTGCC GCCAATTCGACGAGGGGACGTGCAACAGTTCATGGACGAGGAGGACGCGG ACGCTGCCCTGAAGGGTCTCATGGGAAGGTGGTACGCCGGACGGCCCATC ATGTGCGAGTTCAGCCCGGTGACCGACTTCCGGGAAGCCCGCTGCCGCCA ATTCGACGAGGGGACGTGCAACAGGGGAGGACAGTGCAACTTCATGCACG TCAAGCCCGTGCCCCGCTTGGTGATGTCCTACCTCGACAAGGGGAGGACA GTGCAACTTCATGCACGTCAAGCCCGTGCCCCGCTTGGTGATGTCCTACC TCGACAAGGTCATCCGCAAGAAAAAAGGGGGCGGCGCCGACTACGACGAC GACGCAAGCGAACGCAGGAGCAGAAAGCGCTCCCGCAGCCGCTCCCGCGA CAGAGACAGGTCATCCGCAAGAAAAAAGGGGGCGGCGCCGACTACGACGA CGACGCAAGCGAACGCAGGAGCAGAAAGCGCTCCCGCAGCCGCTCCCGCG ACAGAGACAGGAAAAAGCGCAGTCGGTCTCGGGAGCGCCGCAGCAGCAGG CGTAGCCGCAGCCGCGAGCGCAGGAGCCACCGGGACAAGGATAAGGACAG GAAAAAGCGCAGTCGGTCTCGGGAGCGCCGCAGCAGCAGGCGTAGCCGCA GCCGCGAGCGCAGGAGCCACCGGGACAAGGATAAGGACAGGGACAGGCGG GACCGGGACCGGGACCGGGACAGCAAGAAGGACAGGAAGGACAAAGATAA GGACAAGGAAAAAGACAGGGACAGGCGGGACCGGGACCGGGACCGGGACA GCAAGAAGGACAGGAAGGACAAAGATAAGGACAAGGAAAAAGACAGAAGT GAGCGCAAGCGGCGCCACTACACCGAGGCACCGGATGGCGCGTCTGACAA GGCCGCCAGCAAGGACGACAAGAACAAGGACAAGGACAAGGAGGACACTC ACGGCGAGGATATGAAGGGAGGGGACAACGGAACCACATCCCCCGGCCCC GGAGCTGACGCCGAGGCTGGCCCAGAGGTCTCGAAGAAGGGAACGGAGAA CGGCGCCGGTGCTACCGAAGTGAGCGCAAGCGGCGCCACTACACCGAGGC ACCGGATGGCGCGTCTGACAAGGCCGCCAGCAAGGACGACAAGAACAAGG ACAAGGACAAGGAGGACACTCACGGCGAGGATATGAAGGGAGGGGACAAC GGAACCACATCCCCCGGCCCCGGAGCTGACGCCGAGGCTGGCCCAGAGGT CTCGAAGAAGGGAACGGAGAACGGCGCCGGTGCTACCGGTGGTGATGAGA GTGTCGAGGCAAACGGCGCGGGCGCGGAAGACGGCAGTAAGAGCGCTTCG AACGGCGTCGCCGCCGCCTCCGGGGGCGCTGGGGTCAACCTAGTCCCGTC TGCCGATGACGACGACGACGAGGATGAGGCAGAGGAAGCGCAAGACGACG GTGAGGAGAAGAAAGGCAGCCGCGGTGACAAGAGGACAGAGAACGGGGGG GAAGTGGAGGACGAGGAAGGGAGCGGAGGAAACAAGGCGACCAGGGGCGG GGGCGGCGCCGAAGACGGCGACGGCGACGGTGACGGCGAAGACGAATAGG TGGTGATGAGAGTGTCGAGGCAAACGGCGCGGGCGCGGAAGACGGCAGTA AGAGCGCTTCGAACGGCGTCGCCGCCGCCTCCGGGGGCGCTGGGGTCAAC CTAGTCCCGTCTGCCGATGACGACGACGACGAGGATGAGGCAGAGGAAGC GCAAGACGACGGTGAGGAGAAGAAAGGCAGCCGCGGTGACAAGAGGACAG AGAACGGGGGGGAAGTGGAGGACGAGGAAGGGAGCGGAGGAAACAAGGCG ACCAGGGGCGGGGGCGGCGCCGAAGACGGCGACGGCGACGGTGACGGCGA AGACGAATAG back to top
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