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Homology
BLAST of mRNA_P-fluviatile_contig16.2811.1 vs. uniprot
Match: D7FSF1_ECTSI (Rab2A, RAB family GTPase n=2 Tax=Ectocarpus TaxID=2879 RepID=D7FSF1_ECTSI) HSP 1 Score: 412 bits (1059), Expect = 3.110e-129 Identity = 204/208 (98.08%), Postives = 208/208 (100.00%), Query Frame = 2
Query: 38 MSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMINIDNRQMKLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRRDTFNHLTRWLEEARQNSNSNMVIMLIGNKSDLSSRRAVTTKEGEQFAEENGLIFLETSAKMATNVETAFIKTAAKIYDNILSGVYDPTNEAHGIKLGPAASLNYNNIAPPAEKSSCC 661
MSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMI+IDNRQMKLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRRDTFNHLTRWLEEARQNSNSNMVIMLIGNKSDL+SRRAVTTKEGEQFAEENGLIFLETSAKMATNVETAFIKTAAKIYDNILSGVYDPTNEAHGIKLGPAASLNYNN+APPA+KSSCC
Sbjct: 1 MSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMISIDNRQMKLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRRDTFNHLTRWLEEARQNSNSNMVIMLIGNKSDLTSRRAVTTKEGEQFAEENGLIFLETSAKMATNVETAFIKTAAKIYDNILSGVYDPTNEAHGIKLGPAASLNYNNVAPPADKSSCC 208
BLAST of mRNA_P-fluviatile_contig16.2811.1 vs. uniprot
Match: A0A835Z1V8_9STRA (Rab2A, rab family GTPase n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835Z1V8_9STRA) HSP 1 Score: 363 bits (932), Expect = 1.010e-111 Identity = 184/212 (86.79%), Postives = 190/212 (89.62%), Query Frame = 2
Query: 38 MSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMINIDNRQMKLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRRDTFNHLTRWLEEARQNSNSNMVIMLIGNKSDLSSRRAVTTKEGEQFAEENGLIFLETSAKMATNVETAFIKTAAKIYDNILSGVYDPTNEAHGIKLGPAASLNYNNIAPPAEKSS----CC 661
MSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQP+HDLTIGVEFGARMIN+D RQ+KLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRRDTFNHLTRWLEEARQNSNSNMVIMLIGNKSDL RRAV+TKEGEQFA ENGLIFLETSAK A NVE AFI+TA KIY NI SGVYDPTNEAHG+KLGPAASLNY N A S CC
Sbjct: 1 MSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPLHDLTIGVEFGARMINVDARQIKLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRRDTFNHLTRWLEEARQNSNSNMVIMLIGNKSDLEHRRAVSTKEGEQFAAENGLIFLETSAKTAANVEAAFIQTAEKIYGNIQSGVYDPTNEAHGVKLGPAASLNYGNSAAARTGSGXXXGCC 212
BLAST of mRNA_P-fluviatile_contig16.2811.1 vs. uniprot
Match: A0A7S2CHD5_9STRA (Hypothetical protein n=3 Tax=Dictyochophyceae TaxID=39119 RepID=A0A7S2CHD5_9STRA) HSP 1 Score: 352 bits (902), Expect = 1.090e-107 Identity = 176/208 (84.62%), Postives = 186/208 (89.42%), Query Frame = 2
Query: 38 MSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMINIDNRQMKLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRRDTFNHLTRWLEEARQNSNSNMVIMLIGNKSDLSSRRAVTTKEGEQFAEENGLIFLETSAKMATNVETAFIKTAAKIYDNILSGVYDPTNEAHGIKLGPAASLNYNNIAPPAEKSSCC 661
MSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARM+NIDNRQ+KLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRRDTFNHLTRWLEEA+QNSN NMVIMLIGNKSDL RRAV+TKEGEQFAEENGLIFLETSAK A NVE AFIKTA KIY+ ILSGVYD TNEAHGIK+G +N + + +CC
Sbjct: 1 MSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMVNIDNRQIKLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRRDTFNHLTRWLEEAKQNSNPNMVIMLIGNKSDLDHRRAVSTKEGEQFAEENGLIFLETSAKTAANVEQAFIKTAEKIYEKILSGVYDVTNEAHGIKIGMNQHSGPDNNSGRSSNKACC 208
BLAST of mRNA_P-fluviatile_contig16.2811.1 vs. uniprot
Match: A0A7S2V0L3_9STRA (Hypothetical protein n=1 Tax=Fibrocapsa japonica TaxID=94617 RepID=A0A7S2V0L3_9STRA) HSP 1 Score: 352 bits (903), Expect = 2.460e-107 Identity = 182/213 (85.45%), Postives = 192/213 (90.14%), Query Frame = 2
Query: 32 RRMSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMINIDNRQMKLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRRDTFNHLTRWLEEARQNSNSNMVIMLIGNKSDLSSRRAVTTKEGEQFAEENGLIFLETSAKMATNVETAFIKTAAKIYDNILSGVYDPTNEAHGIKLGPAASLNYNNIAPPAEKS---SCC 661
R MSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMINID++Q+KLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRR+TF+HLTRWLEEARQNSNSNMVIMLIGNKSDL RRAV+TKEGEQFAEENGLIFLETSAK A NVE AFIKTA KIY+NILSGVYD TNEAHGIK+G A S Y+ A + S SCC
Sbjct: 29 RNMSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMINIDSKQIKLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRRETFSHLTRWLEEARQNSNSNMVIMLIGNKSDLEHRRAVSTKEGEQFAEENGLIFLETSAKTAENVEAAFIKTAEKIYENILSGVYDVTNEAHGIKVGMAGS-GYSAGAGGSNASQGKSCC 240
BLAST of mRNA_P-fluviatile_contig16.2811.1 vs. uniprot
Match: M4B5K5_HYAAE (Uncharacterized protein n=26 Tax=Oomycota TaxID=4762 RepID=M4B5K5_HYAAE) HSP 1 Score: 346 bits (888), Expect = 8.910e-106 Identity = 177/211 (83.89%), Postives = 187/211 (88.63%), Query Frame = 2
Query: 38 MSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMINIDNRQMKLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRRDTFNHLTRWLEEARQNSNSNMVIMLIGNKSDLSSRRAVTTKEGEQFAEENGLIFLETSAKMATNVETAFIKTAAKIYDNILSGVYDPTNEAHGIKLGPAASLN---YNNIAPPAEKSSCC 661
MSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMINI+N+Q+KLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRR+TFNHLTRWLEEARQNSNSNM IMLIGNKSDL RRAV+ KEGEQFA+ENGLIFLETSAK A NVE AF+KTA+KIY NI SGV D TNEAHGIK+G S + N PPA KS CC
Sbjct: 1 MSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMINIENKQIKLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRRETFNHLTRWLEEARQNSNSNMAIMLIGNKSDLEHRRAVSFKEGEQFAKENGLIFLETSAKTAANVEDAFVKTASKIYSNIQSGVCDVTNEAHGIKMGMTGSPGPGGFGNSNPPA-KSGCC 210
BLAST of mRNA_P-fluviatile_contig16.2811.1 vs. uniprot
Match: A0A6V1NY85_HETAK (Hypothetical protein n=2 Tax=Heterosigma akashiwo TaxID=2829 RepID=A0A6V1NY85_HETAK) HSP 1 Score: 338 bits (868), Expect = 4.540e-103 Identity = 174/210 (82.86%), Postives = 185/210 (88.10%), Query Frame = 2
Query: 38 MSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMINIDNRQMKLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRRDTFNHLTRWLEEARQNSNSNMVIMLIGNKSDLSSRRAVTTKEGEQFAEENGLIFLETSAKMATNVETAFIKTAAKIYDNILSGVYDPTNEAHGIKLGPAASLNYN--NIAPPAEKSSCC 661
MSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMI+ID+R++KLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRRDTFNHLTRWLEEARQNSNSNMVIMLIGNK+DL RRAV+TKEGEQFAEENGLIFLETSAK A NVE AFIKTA KIY+NILSGVYD +E+ GIK+G + N A SCC
Sbjct: 1 MSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMIDIDSRKIKLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRRDTFNHLTRWLEEARQNSNSNMVIMLIGNKADLEHRRAVSTKEGEQFAEENGLIFLETSAKTAQNVEDAFIKTAEKIYENILSGVYDIQSESSGIKVGMSGGQGGNAYGSANREGSKSCC 210
BLAST of mRNA_P-fluviatile_contig16.2811.1 vs. uniprot
Match: A0A485LBB8_9STRA (Aste57867_18783 protein n=7 Tax=Oomycota TaxID=4762 RepID=A0A485LBB8_9STRA) HSP 1 Score: 337 bits (865), Expect = 1.200e-102 Identity = 172/211 (81.52%), Postives = 183/211 (86.73%), Query Frame = 2
Query: 38 MSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMINIDNRQMKLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRRDTFNHLTRWLEEARQNSNSNMVIMLIGNKSDLSSRRAVTTKEGEQFAEENGLIFLETSAKMATNVETAFIKTAAKIYDNILSGVYDPTNEAHGIKLGPAASLN---YNNIAPPAEKSSCC 661
MSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMI+IDN+Q+KLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRR+TFNHLTRWLEEARQNSNSNM IMLIGNKSDL RRAV+ KEGEQFA+ENGLIFLETSAK A NVE AFIKTA KI+ NI +G+ D TNEAHGIK+G S + A A K CC
Sbjct: 1 MSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMISIDNKQIKLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRRETFNHLTRWLEEARQNSNSNMAIMLIGNKSDLEHRRAVSYKEGEQFAKENGLIFLETSAKTAANVEDAFIKTAQKIHANIQAGICDVTNEAHGIKVGMTGSATPTGFGGNANNANKGGCC 211
BLAST of mRNA_P-fluviatile_contig16.2811.1 vs. uniprot
Match: A0A024UMG6_9STRA (Uncharacterized protein n=1 Tax=Aphanomyces invadans TaxID=157072 RepID=A0A024UMG6_9STRA) HSP 1 Score: 338 bits (867), Expect = 1.710e-102 Identity = 172/212 (81.13%), Postives = 183/212 (86.32%), Query Frame = 2
Query: 35 RMSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMINIDNRQMKLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRRDTFNHLTRWLEEARQNSNSNMVIMLIGNKSDLSSRRAVTTKEGEQFAEENGLIFLETSAKMATNVETAFIKTAAKIYDNILSGVYDPTNEAHGIKLGPAASLN---YNNIAPPAEKSSCC 661
RMSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMINID++Q+KLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRR+TFNHLTRWLEEARQNSNSNM IMLIGNKSDL RRAV+ KEGEQFA+ENGLIFLETSAK A NVE AFIKTA KI+ NI +G+ D TNEAHGIK+G S + A K CC
Sbjct: 28 RMSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMINIDSKQIKLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRRETFNHLTRWLEEARQNSNSNMAIMLIGNKSDLEHRRAVSYKEGEQFAKENGLIFLETSAKTAANVEDAFIKTAQKIHANIQAGICDVTNEAHGIKVGMTGSATPTGFGGNGNNANKGGCC 239
BLAST of mRNA_P-fluviatile_contig16.2811.1 vs. uniprot
Match: A0A2D4BXC9_PYTIN (Rab2 family GTPase, putative n=1 Tax=Pythium insidiosum TaxID=114742 RepID=A0A2D4BXC9_PYTIN) HSP 1 Score: 341 bits (875), Expect = 4.410e-102 Identity = 175/207 (84.54%), Postives = 183/207 (88.41%), Query Frame = 2
Query: 38 MSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMINIDNRQMKLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRRDTFNHLTRWLEEARQNSNSNMVIMLIGNKSDLSSRRAVTTKEGEQFAEENGLIFLETSAKMATNVETAFIKTAAKIYDNILSGVYDPTNEAHGIKLGPAASLN---YNNIAPPAEK 649
MSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMINIDN+Q+KLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRR+TFNHLTRWLEEARQNSNSNM IMLIGNKSDL RRAV+ KEGEQFA+ENGLIFLETSAK A NVE AF+KTAAKIY NI SGV D TNEAHGIK+G S + N PA K
Sbjct: 1 MSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMINIDNKQIKLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRRETFNHLTRWLEEARQNSNSNMAIMLIGNKSDLEHRRAVSYKEGEQFAKENGLIFLETSAKTAANVEDAFVKTAAKIYSNIQSGVCDVTNEAHGIKVGMTGSPGPGGFGNPNAPANK 207
BLAST of mRNA_P-fluviatile_contig16.2811.1 vs. uniprot
Match: A0A8J5J3E0_9STRA (SWIB/MDM2 domain-containing protein n=1 Tax=Phytophthora aleatoria TaxID=2496075 RepID=A0A8J5J3E0_9STRA) HSP 1 Score: 341 bits (875), Expect = 3.630e-100 Identity = 173/208 (83.17%), Postives = 185/208 (88.94%), Query Frame = 2
Query: 38 MSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMINIDNRQMKLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRRDTFNHLTRWLEEARQNSNSNMVIMLIGNKSDLSSRRAVTTKEGEQFAEENGLIFLETSAKMATNVETAFIKTAAKIYDNILSGVYDPTNEAHGIKLGPAASLN---YNNIAPPAEKS 652
MSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMINI+N+Q+KLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRR+TFNHLTRWLEEARQNSNSNM IMLIGNKSDL RRAV+ KEGEQFA+ENGLIFLETSAK A NVE AF+KTA+KIY NI SGV D TNEAHGIK+G S + N PPA ++
Sbjct: 1 MSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMINIENKQIKLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRRETFNHLTRWLEEARQNSNSNMAIMLIGNKSDLEHRRAVSFKEGEQFAKENGLIFLETSAKTAANVEDAFVKTASKIYSNIQSGVCDVTNEAHGIKVGMTGSPGPGGFGNSNPPANRA 208
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 | 415.6 |
| Seed ortholog evalue | 1.4e-113 |
| Seed eggNOG ortholog | 2880.D7FSF1 |
| KEGG ko | ko:K07877 |
| KEGG Pathway | ko04152,map04152 |
| GOs | GO:0000139,GO:0000331,GO:0005575,GO:0005622,GO:0005623,GO:0005737,GO:0005773,GO:0005774,GO:0005794,GO:0006810,GO:0006897,GO:0006909,GO:0006950,GO:0006970,GO:0008150,GO:0008219,GO:0009628,GO:0009987,GO:0012505,GO:0016020,GO:0016192,GO:0030587,GO:0031090,GO:0031164,GO:0031410,GO:0031982,GO:0031984,GO:0032502,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0044422,GO:0044424,GO:0044431,GO:0044433,GO:0044437,GO:0044444,GO:0044446,GO:0044464,GO:0048856,GO:0050896,GO:0051179,GO:0051234,GO:0051703,GO:0051704,GO:0090702,GO:0097708,GO:0098588,GO:0098657,GO:0098791,GO:0098805,GO:0099120 |
| EggNOG free text desc. | GTPase activity |
| EggNOG OGs | COG1100@1,KOG0098@2759 |
| COG Functional cat. | F |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko00001,ko04031,ko04131,ko04147 |
| Hectar predicted targeting category | other localisation |
| Ec32 ortholog description | Rab2A, RAB family GTPase |
| Ec32 ortholog | Ec-25_000850.1 |
| Exons | 7 |
| Model size | 5594 |
| Cds size | 627 |
| Stop | 1 |
| Start | 1 |
Relationships
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815705.2123368-UTR-P-fluviatile_contig16:2125628..2125665 | 1622815705.2123368-UTR-P-fluviatile_contig16:2125628..2125665 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig16 2125629..2125665 + |
| 1693562997.7774785-UTR-P-fluviatile_contig16:2125628..2125665 | 1693562997.7774785-UTR-P-fluviatile_contig16:2125628..2125665 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig16 2125629..2125665 + |
| 1622815705.292326-UTR-P-fluviatile_contig16:2134574..2138246 | 1622815705.292326-UTR-P-fluviatile_contig16:2134574..2138246 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig16 2134575..2138246 + |
| 1693562997.847443-UTR-P-fluviatile_contig16:2134574..2138246 | 1693562997.847443-UTR-P-fluviatile_contig16:2134574..2138246 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig16 2134575..2138246 + |
| 1622815705.3020394-UTR-P-fluviatile_contig16:2138400..2139658 | 1622815705.3020394-UTR-P-fluviatile_contig16:2138400..2139658 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig16 2138401..2139658 + |
| 1693562997.8604-UTR-P-fluviatile_contig16:2138400..2139658 | 1693562997.8604-UTR-P-fluviatile_contig16:2138400..2139658 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig16 2138401..2139658 + |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815705.223291-CDS-P-fluviatile_contig16:2125665..2125711 | 1622815705.223291-CDS-P-fluviatile_contig16:2125665..2125711 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig16 2125666..2125711 + |
| 1693562997.789913-CDS-P-fluviatile_contig16:2125665..2125711 | 1693562997.789913-CDS-P-fluviatile_contig16:2125665..2125711 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig16 2125666..2125711 + |
| 1622815705.2359073-CDS-P-fluviatile_contig16:2131391..2131531 | 1622815705.2359073-CDS-P-fluviatile_contig16:2131391..2131531 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig16 2131392..2131531 + |
| 1693562997.8032188-CDS-P-fluviatile_contig16:2131391..2131531 | 1693562997.8032188-CDS-P-fluviatile_contig16:2131391..2131531 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig16 2131392..2131531 + |
| 1622815705.2482142-CDS-P-fluviatile_contig16:2132123..2132273 | 1622815705.2482142-CDS-P-fluviatile_contig16:2132123..2132273 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig16 2132124..2132273 + |
| 1693562997.8111389-CDS-P-fluviatile_contig16:2132123..2132273 | 1693562997.8111389-CDS-P-fluviatile_contig16:2132123..2132273 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig16 2132124..2132273 + |
| 1622815705.2618654-CDS-P-fluviatile_contig16:2133038..2133110 | 1622815705.2618654-CDS-P-fluviatile_contig16:2133038..2133110 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig16 2133039..2133110 + |
| 1693562997.8190231-CDS-P-fluviatile_contig16:2133038..2133110 | 1693562997.8190231-CDS-P-fluviatile_contig16:2133038..2133110 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig16 2133039..2133110 + |
| 1622815705.2735035-CDS-P-fluviatile_contig16:2133877..2134012 | 1622815705.2735035-CDS-P-fluviatile_contig16:2133877..2134012 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig16 2133878..2134012 + |
| 1693562997.8289032-CDS-P-fluviatile_contig16:2133877..2134012 | 1693562997.8289032-CDS-P-fluviatile_contig16:2133877..2134012 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig16 2133878..2134012 + |
| 1622815705.2829733-CDS-P-fluviatile_contig16:2134490..2134574 | 1622815705.2829733-CDS-P-fluviatile_contig16:2134490..2134574 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig16 2134491..2134574 + |
| 1693562997.8382902-CDS-P-fluviatile_contig16:2134490..2134574 | 1693562997.8382902-CDS-P-fluviatile_contig16:2134490..2134574 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig16 2134491..2134574 + |
The following polypeptide feature(s) derives from this mRNA:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig16.2811.1 >prot_P-fluviatile_contig16.2811.1 ID=prot_P-fluviatile_contig16.2811.1|Name=mRNA_P-fluviatile_contig16.2811.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=209bp
MSYAYLFKYIIIGDTGVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMINI DNRQMKLQIWDTAGQESFRSITRSYYRGAAGALLVYDITRRDTFNHLTRW LEEARQNSNSNMVIMLIGNKSDLSSRRAVTTKEGEQFAEENGLIFLETSA KMATNVETAFIKTAAKIYDNILSGVYDPTNEAHGIKLGPAASLNYNNIAP PAEKSSCC* back to topmRNA from alignment at P-fluviatile_contig16:2125629..2139658+ Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig16.2811.1 ID=mRNA_P-fluviatile_contig16.2811.1|Name=mRNA_P-fluviatile_contig16.2811.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=14030bp|location=Sequence derived from alignment at P-fluviatile_contig16:2125629..2139658+ (Porterinema fluviatile SAG_2381) CGTGGGGGGCGGGTAGTGAACCGGGTCAACGAGGAGGATGAGTTACGCGT
ATCTGTTCAAGTATATCATCATCGGGGATACCGGTGAGCTGACCTTGCGG
TGGGTAAAGCGCATGCACTTTACTTCTTGCGAGTGCGCAGTCACTGACAC
GCACGACTTGTCATGAACACTCACAAACGAGACCGTCTGCGGAGCATTTG
ATTTTTGGGCTCCCTCTTTTCTTCTGACGCCAAGAAGGAAGCAAAGATGG
CGGCGCATGCTCGGTCCAACGTGTTTCGTGCACCATTACGTGCTGGTTGA
GTGCTTGCCGGAAGAACAGCGACAATTAAAGTAACTTTCCATCGATCGAG
AGGCGAGTCGGGTTCGCACAACGTGCCTGCTGTGCAAATTGCTCTAAGGT
GCTGCACTACACGTGACGCCGCAGTCAGGTGTTCATCACCGCCCCAGCTA
GAAGCAATCTACAAATCACACGCGTTTGGGTTATTTTATTCGTTGGCCCT
GAGGTGATCAACAATAACACATAAATTCTTGCTCCGCGCGCTCGCGACGA
AAGGGAGTGCGGGGGTCCCACCCTGCCTCCCTGTATCAAGGCGTCCCCGC
TCCGCCTTCAAGCGGCTGGGGGGTACTCATAGTCGTGCATGCCGTAGTCG
TTAGACCATTGACCTCGCATCCCTACAAAGCCGGGATGGAGCACGCCGGG
TTCTCACCGGACCAGGCTCTCACACCACCAAGCGCAAAGCGACGTGAGGT
ATTCGGCGAGTCGCATGAAGGGTGCGCTGCATCCTGCTAAGGGTGTTCGG
CATCTTGTCCTTACTTCATTGCATACGGATGACAGCTGCGTATGGCTTAA
TTCATTTTCTAGTGCTTTCACTTCCAGAGACAGTTGTAAGTAAGCACTGT
GTAGCTGCCTCGAGGGTGCTTGACCACTTTAACACAACGTGGTGCGATCA
TCCCCCCTGCGCGGAGTGAGGGTTCTCCACCCCGCACAACATGATCTTCT
CGACCACCATTATGGTTACCGCAAAAAAAAACAGAGGAAAAAAAAGACCG
TAACCTGGTTGCCGAGTTCACGAAGTGAATTGGCTTGTTTAACAACGTCG
TTGCCGAGCGACGAAAACCCAATCCCGATGGTAAACACCGAGGTGAGAGC
CAGCGGGTAGGGGGGGGCTAgggcgcGGGGGGGGGGGCTCTCCTGGAAGA
GGTAGAATAGGAAAAGGCGGGGTGTCGCAGTTTTTTCCCTTACAACCGCC
TCAATACAACCCCCTCAATAGTTGGCAACAGTCAAGAAACGATGCAAACA
CCAGTGCTCGCCTCACAAGGATCCGATGGTGTCGAAATCTTCGAAGCTGC
GATCACTCCACTTATGCGAGCTTCTAGGAGCCAAGGCTTGGGAGCTCGGC
TGGAGCGTGCGTCCAACCCGCGCAGAAAACGGCCATTTGCAAGTGTCGAT
GTTCCCAGGGGGTTGATTCGGGAAAGGCTATGTTTCCCCACGTGCTCGCT
CCCAACTCCAACTGTTGAAATTGGTATCCTGCAGCGGGTTTGAACACATC
CCGCTCCTCCGAGCTCCTCAAACTAGGATCCGAGGAGTTCACAGCAAAAC
ACTACTGCAACCTCGAAGATTTCATTACCCATCGATCTCTGTAAGGTTAG
TACCGTGTGCTGGTTTGGGCGTTCGGTGATTTTTGTGCCATATTGCGGGA
AAGAGGGGGGCTGTCTGAAAGCCTACCACTTCCATTTTCAACCCTTCTAC
AGAGTTGAGTGCCGCCGTTTGATCTCGGGTGGCATAGCATGTTAGTGCCG
TTTCTCGGCTATTCGCAAACGCATCTTGGTGGTTACAGTGAGCAATCTGC
AAGCCCTGTTTCCTCCGAATTCAGCTCTTCCGTGCACTTCATTGCCGGTA
TTCGACCTCCACGAGCATCAAATCAAAGCAAAGTTGGTCGAGTCTCGACC
GACCAGATGTCCGCCTAACAGAGGTCCTGTGGTCATGAAAACCTCGAGAG
TGCGCACTCAAACTTTGAGGTTGCACATTCAACAGAGCTTCTCGGAGCCG
AGGCTGGGAAGCGCTGGTGAATTGTGCGTCCAACCCGCATGGGAAACGAG
CATTTCCAAGTGCTTTTTTCCACGGCGGCTCGAGTTGGAAAAGCTAACGG
TTGTTATGTGTTCTCTCTCCCAGCATTGTCACATGTCATGCTTGCTGGAC
CCATACTCCACCCAAGCTCCCCAAACTTTGCTCCGAGAAGTCCGCAGCCA
TGGAGAGTAGTGCGACCTCCAAAGTTTCGTCACAGATAGATCTCCATGAG
GCGAGCACCGATTGCTGGTATGGGCTTTTGACCAGATCCAACTCACCTCG
GGGGCGTATTCAATCGAAAAAATTCTGATGAAGCCCACCACCAATTTGCT
GCTGTTCGTTGCCGCTGTTGGATCTTCATTAGCGATAAATCAACTAAAGG
TTGGTCGCGTGCTGTTGACGACCCGGCCACCCCTGCGTTGGCTCATCGCT
GCAGAAGATCAAATACCGGCAACGAATTACACTTAAGAGCTGGACTTGGA
AATTGTAGCTTCAAAGGTTGCTATCATATTGCTCTGTTGCATGCCCCCGA
GATGAACTGGACGCAGACAAAACACGCGTCGACACTCGGTGCTCGTCTTA
CAGCGGTGCGCTCTCCATGAAACTTTCGAAGCTGTGCCTTGCTGCACGCG
TTTCGGAGCCTAGTTTGAGTAGCTCGGGTGGAGTGTGCTCCAACAGTCGT
AAAAATGAACAACTTTCGATGAACGGGGGATGGTGGAGAGCAAGTGGGAA
ATCGAAGACTAGTCCAACTCACTTCGGTGGAAACAAGCTTATGGGTGGAC
GATTTTCACACGGATTGGATGTACACTTCTCCCGAGGTCTCCAAACTCGG
CTCCGATAAGCTCGCAGCCGTGGAGTGTACAGCCTCGAAGTTTCAGTCGC
CGTTAGACTTCTGCGAGGCAGGTTCTGAGTGCTGATATCGTTTCTTGGCC
GTTTCCAAGCCGTCTCCGGAATTTTTCAAGACAGCAATCTACCTTTCTCA
ACACCAGCGCTTCCGCAACATCTGGCCTGCAACCGTTCGCAGATTTTCAT
CAGAATGGACTGGCCGTGCTTGTCTGTATCCGGGTACCATAGGCTGCTCC
TTGTTTTCGTAGGAATGGTACAACTCACATTTTCTGACAGTTCTCGTCAA
CATTAAGGTACAGTCGACCCCGCTTTAAGGACGCTCATGGTTTTTCCCGA
AAAATGCGTCCTTAAAGCGAGCTTGCGTCCTTAAAATTCAGAGGACGATA
TCTCACCATCCCCGGGGTCAATGGAGGCGTGCTATACCTCAGACTATGCG
TCGTTTGATGAGGAAGGATGTGGAACGAAAAGTGAGCACCGCCGAGACGA
CCGACAACCGTTTGTTGACGTCGAACCATTTTTCTACTCTTTGAATGAGA
TGTACCGCCGTTGGGGACGTTTTGAAACTACATCCAGCACACACGTTTGT
ACTTATTAGTAGCCACCTCGTGTACTGCTTAGCCGGCAGCGGAACAAGAA
GGAGAGTCGAAGACGAAGTACACAGATTTCGGCTCAAGCTGAGGGTTATA
TGAAAAAAATAGAGGATTCAAGCGTCGCACCGATGTACACCAGCCATGCA
TTGGCCGCCCGCATGGGCACTGGTGGACTTCGGTGATCAGTAGAGATCTC
GCCGCACATGTTTGTTCTCCACATGTATTTTCGGCAGCATCAGATTTCTA
CCTCGCATCGCGTGCAGAGGGGAGCGGAGGGCTCCAGACGATGTGCTTCG
AAGTTTGTTGGATACTATTGCTCTGTTGACCCTTCGGGTCCATATTATTT
TGTAGCGTACCGTTTTTTAGGGAAAGTTACCTAGTGAGCACGGGAATTGG
CCGTGTCTGTTGGAACAGTACGGACGTATAGAGGTACTTGGCGGAGAGAC
CGGGATGATGTGACAACAACACACACACACATCAGATGCACCGCCGGTAG
CTGGGAGGAATCTGTCCATATCAACACAAAGTTACAGCTGCAGCAGCAGC
AGACCGCTCGCTACTCTGCTGTATGTGCGTCGCTACTTCTGCTCTGTGCG
TGCAAAGAGCGGCCCGTAGGACACACCAAAGGGGGGCGCGGGAACTTTAC
ACATTACCTCCATTGTACATTCTGTTGGCCCCCCTGGTGCTCAGAAAAAA
AGATGTTCTTTGAGCGGGGAGTTTCCTTACCGCGAGCGTCCTTAAAGCGG
GGTCGACTGTATGCTCCGTTTTGTTCGTGGGGCACATTTCAACTTCACCC
TTCGCAATCTCTGTTCCCTGGCTCCAGCGGATCCGTCCAGAAAGCTGCAG
AGGAAAGAGCAGAATCGAAAGTCGACACGTACTTGCTCCGATGCCGTTCT
TCCGAGGCACGTTCGGAAGACGCGCAAGCGTTGTCCATTTCGCGCCCTCC
CATTTCGGCCTAGCGTAGAAATGATCTTGTGGGTAAGGACGTGGACTTCC
CCTTCCGGCCAGAATTGAGGAAGTCGAAAGTCACAGAACGGACCGCCTTC
GAAGGAAAATTTAGATTTTGTAGGGAGAAGACAATAGCAGGTTACTTTAG
ACATAACGCTAACCGTTTACCCCTACCCCTAATCCCCACGTCGGCGACTG
CTAGGTTTACCCGGGAGAGGTTATTTTCCCCCCCAGATCCCTATCTTAAT
CCCAGTCTTGCCACAAAACGTTACCCTAAATCGTAGGAACAAATTATTTT
CAAGTCGGCGGGGAATAGCGAGAAAGTACCTCATTGAATAAAATGGTGTA
ATGGTGGGTGTTTATTTATTTATTTGTGTTTTCATTTCTACATTTGTTTA
TTTTTTTGTGTAATATGGCATGTAGCGTCTGTGGCTTCTACACTGAGGGC
GCCCAGCATGCCTGGTGGCAAAGGCGTCAGTCAAGAAACGCCGCAGTCAA
CCCAAGGAAATCAGGGCCCAAAAACGCCGAAAGTGATTTACCTCCGCGGA
AGGTTCGGCGTGGAAGGCGGTTTCATTGTAAGGACACCGTTGCGAGGCGA
CAAAAGTTTGTTGGCACCTCAGATCTGCTGCTTGGCTTGACAACGTTATC
GACGGCTGCTGAAGTCGATCGAGGAGTCCGCGAGCTGGACGGAATTATGA
TATGGACCATAGCAGCACCCGCTGCTGTAGACCTTCGTCTCTAGTGCTGG
TCGTCCAAGGCAGCTGGTTACCCGTACAATGGCTGAGGAGATCGGGGGCC
GCAGCGGCGAGATAGCATTTCACACTCGACCGCTTGCTCTTGCTGGAACC
TTGCCCATTAGTCACAATTGCTACATGCTGCAGTCCATCGACTGATGGAA
TGGGTTGCTAACTTTTGCATGTAGTCAATGAGAGAGGCGGGTTACCCACC
GTAAAAATCCATAACTTGAAGCCCTTCCTGGCTAGCCTTGATTGCAAGTC
CATCCCCAAATTGATCATCTTATGCCCCCTGCAGGGCGTGCGGCTAGTTA
TGCTCGCTTAGTCTTGTCATCGACAGCAGATTGCCTGCAGTTCAGCAACA
CCCCTAATATACCCCGGCTCCTGACTCTTAGCTTCTTTCTCAGGCGTCGG
TATGACACTTACGCACTTCCTGGCAGACCGCGTCAATCCCAGCCCTGCCT
GACCGTGGCCTCTTTTTTTTTATGAAGGTGTGGGGAAGTCATGCTTGCTT
CTGCACTCTAAGGAACTGTAAAGGCCCCAGCCCCGCCTGACCCTGGCTTC
CTTTCCTCTCCAGGCGTCGGCAAGTCATGCTTGCTTCTGCAGTTCACCGA
CAAACGGTTTCAGCCGGTGCACGACCTAACCATCGGCGTGGAGTTTGGGG
CGAGGATGATCAACATCGACAACCGACAGATGAAGCTACAGATCTGGGAT
ACGGTGAGCGAAGGAAAAGATGAACCGTGGGGCATTTTTCGCTTTCGTGT
ATTTGCAAGTCTTTTCTTTTCTTTCTTTTCGCAAGATACAAAAAACAGCG
ATTTCCGATCGATCAAAGGTCCAGAGCTGGCATACGGTGAATGCGCGCAT
CGATCTACAAAGGTTTTAGGACATAGACCCAGCCCCGACAAAAATCGGCT
AGCGAAGGGACGGATCTGGGACGAGTTGCAAGGGGTCAACCAGGGCGGAA
AACCAAGCGTGACTGTTTGTCAGTAAACTCGGTAAGTTGCAGCAGATTTT
GTCGATGCCTGGCGCCGTTTAAGCCACGTTTTGTTCTTGCTTCCCACCGC
GATCTTTTGCAAACAGGTTGGTCAAGATTGGTTCTGTCTCTTCACGCCAT
TGAGGATGTCTTGCATTCGATTTTTCTGTTTATTGAGCCGACTAAGCATC
AAATTTGATTCGTTCATTTCAGCGCAATGTAGCTGTACCTACCTAGCCTT
GCCCCGCCCAACCCAGCCAAACCCATCCCGAAATGAAAGGAACTTACTTT
TCTAACGCAACGCGGTATGTCCTCCCACCCTGCGCCCCGCGGCAGGCGGG
GCAAGAATCTTTCCGATCCATCACGCGGTCGTACTATCGAGGTGCGGCGG
GGGCCTTGCTGGTATACGACATCACCCGCCGAGACACGTTCAACCACCTC
ACGCGCTGGCTGGAGGAAGCCCGGCAAAACTCCAACTCCAACATGGTGCG
CTATCGCTGAACATGCGCACACCGTTGGCGTGGCTGATGTCGGTTTCCCC
ATTTCTTGCTGGCGCCGTGTGTGATGTGATATCGAACTCTTTGGAGTAGA
GCAGACCCCCCAGGGCCGATTCCCTAAGCTTAGTTTCTGCAAAAACGCGG
GAACTGATATATAACGATGCAGTTTCGGAAAGCTCTGGACCAGACCTTTC
CAAAGCTGGGCAGTTCAGCCCTGACGCTCGCCCTGCTGCTGTGGAGCTCT
CAAGCTTTGAAATCGGTCCGGGATGTATGTTTTACTCCATATAATAAAAT
AGTTTGCGCTGTTTCGGCGATCTTGTGCCGGCGCGTCGGCAGGGGGTAGC
ACAAGAGGGATGATGCGCTTTGAAGAACAAAGAGGACGCCAAAGGAATAA
CGATAAAACGTTCGCTCGTTGTTGTCGACGTTGTAGCGTCTATTCGTGTT
TGGTGGGTGTCTTTTTTTGCGTGATTTCCTTTCGGCGTAGTTGTGACCAC
CAGCTTTGTGACCACGGCTTCTGATTCCTTGAAAAATAGTAACAATTTAC
CTCTGAAGGGATAGTTCGACGAGTCGTGCTGGACTCTCTCCAAGCGGGCT
TTCTATTACATCGAACTGAGAAGTTATGGTGTTGTTGACTACAAGAGTTC
GTGATAAGCCGGCTCGACTATCTTCAAGCGGCACTTTCTCTTCAATTTTT
TTTTCTTAAATCAACCCCCTACTGCTGTAGCAACCAACAATCAACAAAAA
CCGGTCGCAGGTGATCATGTTGATCGGGAACAAGTCGGACCTGTCGAGCC
GGAGGGCGGTGACGACCAAGGAAGGAGAACAGGTGGAGCAAATCAAAAAG
ACGAAACACAAAAATGGTGGTTGTGTGCTGTCCATGTAATTCGGCCGGGA
ATGCGTGTGCGTGTGTGTTGTTTAACTGTGGTACAAGCAGCAAGATACAA
CACGATTTTGTCAGGGGTACTATCCTCCGGCGTGTGTGGATGTTTGCGTG
GGGGGCAGCCTGAAACGTGGAGCGATGGGTGAGGAGCGTGTGTGGTACGC
ACGGCGATGGGGTGGGCTAAGGAGATGAGAGGGACGAGGGACGAAGGAGA
TGAGGGGGAGTAGGGGCGGCAAACCGTGGTGTTCGCTCGGCCGGGGGGGC
ACCACCATGGCGAGGTCGCGATGCTGGGTGCATCGTGAAAAGACTTGCGC
GGCACTGAGCACCACTATGGCAAGACTGGGCACGGTACGAAAATGCTTGG
TGTGTCATAGCACTGATTTACGATGTTGCACGCTGTAGAATCATGTGGCG
ACGCTTGGCTCGGCACGGTACGGCTTTGCGTGGTATGGTATGGTATGTCT
TGGAGCGATATGGTACGGTGTGATACGGATACGGGACGGCACGGTTCTGA
AGCGGTACGGCACAGCTTGGTACGGTACAGTACTACGAACGTCCGTATCG
AGCAGCACACTTGGAGCATTCAGGTCGCGGACGGCAGAATTCCGTCATTT
CTTGTTGTTCGCCATTTCGATTCGACGGAATAAATCGGTTTGTGCGTCTC
CTGTCTCTCGCACTCTGTTTGTCGTCACTTCATATGTTTGTTGTTGAAGT
TTGCGGAAGAAAACGGCCTGATCTTTTTGGAGACGAGCGCGAAGATGGCC
ACGAACGTTGAGACGGCATTCATCAAGACGGCGGCAAAGATTTACGACAA
TATTCTCTCAGGTGTCTACGATCCGACCAACGAGGTAAGATGCGCTTCTG
TTGACGGCCCCTTGTTGACGGCCCCTTGTTGTTGTTGTTGTTGTTGTTGT
TGTTGGTGGTGGTGGTGGTGGTGCGGTGGTGGTGGTGTCGGTAGTGGTGT
TGCTTGCTGCTTTTGCTTTCTTTGATGTTGCTTTCACTGTTGCTCTTCTT
GTTGCTCTTGTTGCCCCTGTTGCTGATGCTGACGCGGTGCTGGTCATGTA
GTTGCTGCTACTGCTGATGCTGTTCCTGTTGCGGTTGTTGCTTCACCTTG
AAATAAATATGTTGCCCCGAGATAACGTGCGGCTGCTTGTGTCGAGTGAC
GCCTGCTTCTCTGGTGGCAGCTTGGCTTGAGATTGTACAGCCCACTGTCA
GAGAAAATATTCTTCCTCCCTCCGCTGTCCTTCTACCCCTCCCCCCCGGC
CCCCTGTGATTTGCGATTTGAAACGGCTCATTTGCCCACCTCCGTCCTGT
GGGGGAAAAAAGGCACACGGCATCAAGCTCGGGCCGGCGGCGTCTCTGAA
TTACAACAACATTGCCCCTCCCGCGGAAAAGAGCAGCTGTTGCTAGTGGG
TTGCGGAAGGGGGGTTGGAGAGGGGAGGGAGCGGGCGCTAGGCAAGATCG
AAGCTGCCGAACGGGCCGGTCGGCGGGAGGTCCCGTGGTTGAGTCTGGAG
GAAATTGCTCTGTTGCTCGTAAACGGGGTAGACGGCGGGACGACGGTTTA
GGGGCGTCAACGGTGAACGGTAGAGATGAGGCAGAAACTATTGGAGAGCA
TCAATTGGCCAAGCACCAGCGGAGTCAAAAGTAGATTGGTAACCTGCGCC
GTGTGAAAGGCTTCTCGCTCCGGTGGCGGCTCAAGCGGCACAGGAGGGTT
GATGGAAGGCTTGAGCACGTGGCACAGTGAAGCGTGATTTTCGTGCAGTT
TTACGAGAGATGTGCGTCCAGATAGATCGTACGTCTTTCTCCGTGCCCCT
ATCTTCGCTGCGTGACAGCGGGGTTTTTGTATGTGGATCCAGTCCAGCTT
TTTCAGCAAGAGGGGCGCCGCAAGTTTCGCTCATTTGACATGTTTTTACC
ACCTATTGTCGTGTTCCTTTGTTTGCAGTGGACGGGCTTGCTTAAATATC
TATACGCGTGACACCCCAGGACGATGATATGTCCCCTCGTTCTCGGCGGG
GCGTAGAGTAAGTATGCAATCCAGGCCGGACAAGGGTGACGTGAAGGGAT
TGGAAGGAGAAGAGAAACCACTCCCCAAACACTTCGCTGGCCGTGGTGGT
GAAATCGTGGTCACCGGCGGCGCGGGAGGAGGGAGTGAAAATACGAAATC
GCCGAAAGCTCCGGGCACGTGGGCCAACCACACGGATGGACGTTTGGGAC
AATCGCCGACGCGCGTAGTTCCCAAAGGTCTCCATCCCCACCGCCGCGCC
CCCTGCACCCCCGCGAGCCTCTCCCACTAATGGGTTTTATGGGGAGCTCG
ATTCAGGGGATACGTAGCTTCAGTTGTCTCGATTTACGCCGTAGGTCCGA
GCGGCATACGGGGCGGGGCGGCAGGCGGAGGGTCGTAACTCTCTGCGGAA
GGTCCCTTTATGGCACAGATAACACTTTTTCTCGGCGTTCCTCTTCTGTT
GTATCTTTTGCCCTGAGGCTTCGCGCGCGGGGTGGGTGTTGCTTTATTTG
CGCAGGCAGTGCTTGCCCTAGTGGGGCGGATATCGGATATCTTCGGGGGC
GGGAGGTGGTCGCCTCGCGTTCGAGGGCCCTCTCTGGTGGTCGGCTGCGG
TCCTCCCGTCCGTCAGCGGCAGGAAACAAAAGCTACATTTTTATCGAAGC
GGTCAGCGACGGAGGGCGATCCAGACATGCACACAGCGTGATTTTTTTTT
TCTTTTGCAAGGCCGTGGGCGAGTGACGAAGAAGCGAGATCCATGTGCGC
GTGCACACGATAGGAACCCTGTAAAACCCCACTCGGATTCTTCCGACGTT
AAATCTGTTCACTGCACAGACTTCAAGGGAAAGCAAGATTCATCCGCACA
AAAGTTTTGATTGCCGGCGGGTTGTTGTCTTCGGTGTTGGGTTTGTCCCG
AACGAGCGGGCGCTTTGCTTTCGTCGCAAGCGGTTTTCGTGCAATGCCAA
AATCTCATTGTCTTGGTGCCCAATGTCCGCCAGTTGTCCGGCCCTACCTC
CGCGAAAGGCAAATGAAACACGTCCTGCTTTCCCCGCTTAACATAACCTT
GTGTGTCATCATGATTCAACTAAAAGGGATGCCTCAAGGGAATTCGAACA
TTTTCTGTTATTTAAGAAACGTCAACATTCAGGTACGCACGAATGCAGAA
ATTTGTGTCTCGTCATCCCCTCACAGTGTAGACCCTTCTGTTCTATTTGA
ACCCAAGGGCAACAAAAACAATCAACTCTGCATTGCAACCAGCCTTCTTC
GTCGGGCAGTGAGATGCGCTCTCCTCCTCTTTCCGCCAGTTTTCTCGCGT
CAAAATGCGACAGGAGCCTCCTCTTATGCTACTCGGTGGGTGTCGTGGTC
AACCACCGTGACAAGAGACCCTCTCTCTGAACTCTTATGTAACTGGCTGC
CGGAACACATTTAGCAAGGCAGCAAAGCCGACGGTTGCCTCGGTTGCCTC
GCCAGACATGGATCAGGTGCGCACGATACGCGGGGAGTTAAGTCGGCCAT
TTTTTGCGTTTCGATAATCGGTAGTTCTTTCTCGCCATCGCCCAACAGAA
AATGACCGTTGGCAATCTTTCCCACCACCATCGCCAACCTAAACATGGAT
TGCTGCATGCAGCGCGAGTAGCAGGTGGGCTCTCTGTGACTGAGCCACAG
CCACCACGTGCGGCCGGAACCGGTCTCCAAGTTGTACGGGGAGCACCCCA
CTTTTTCTAAACTATTTACCGTCGACTCGACTTCCGATTCGCCTCACCCA
TACCGGTTCGCACCAAGCGCCACAACGAACGCAAATCTTGAAATAAAACG
AACACTGCACTGACGAGAACATCTAGACTAAGATACACGCTCAGATCCCA
CCCTTGTCCCCACAAGAACGACAAAATATGCCCCTGCTCCTGGAATGTCA
TAATAAAATCATCCACAACACATTCTACGCAACAAGAAATTGATGCAACA
TATTCCTGACTGGAAAAGCATCGTCCTCGAGAACGACACGAGCGTGCATG
AGGAACGAATAATTTTGCACTCATCGGAAATCAACGTGCCACCTTCCATT
CGTGACATAGACGCCAGTCCAACCCCTCTCCTGTCCACAGCCGTTGTCCC
TGTGGCATGGCATCCTTACCGTGCACAAAACCCGTCCAGCCTCCCTCCCC
TTCCATTTCTGTACACAAACTTTTCAAAGCCCCTGAGCTGGCTCCGCATC
GCAACGGACACATACACCCTACTTTTCCCTCCTTCGCTACACTTCCACAC
TCTCCAAGATTTTCAGAGGGGAAATCGCTCCAAAAAATGCAGACACTCCG
GCATGTCGCTGCCTTTCGTTCTCGTGGAGCACAAGACGACGCGGGAACAA
CGTCGCCGCAAAAGTCGGCAGCAGCCCCAATACCTCACCCCCGTGCGACT
TCGATCAACCTCATCTTCAAGCTTTTCCGCCTTCCAGAGAGCCGGACCGT
GACTTCCCTCCACCCACCCGCAAGACATCGATTGCCACCAACGATAAGGA
CGACCTCGCTGTCCTCATCGTTGCTGTCCCCTTCTAAACATTAAGGACAC
CCGTTATTCTCTTTTGCCCGAGATTCAGAAAGTGCAGGTCTTCCAAACAC
AGTAGGACACCAGCTATCGCCAGCCGACACCGCCTCCTGAGGTGAAGACG
GACGCCGGTCGGCGCTGTAGGGGGCGTACAATAAAAAAAAAACATCAGCA
GAGGGGCAAGAAACGAAAACTCCCGCCGCGAGGCAGCACGCATTCATGGA
CTTCCACCAAAAAACTTCATCTGCATCATCAAATATGCCGCTCAAGACTC
CCCAAACCAGCTCCAACTGTATGCCTCTTCACTTCACTTGCCTCGTCCCG
TCCGTGCGCGTAAGATCAATCCCCGCCTGCACCGCACGGTCCTAACCCCC
CCTGTCACCGCTCCCTGAATGGTGCCGGAACAAGCACTTGATATACAACT
CCGAGTGTTCGCGCGATTGCAGTCATCGTATTCACAAGAAGGAATCCAAG
CGCCTGGTCGTCTTCAGCAGACCGATTGACGAATCCCCCGGTAGGGGGGC
TGGCTGACAACTAGACAAGCGCTGTATCGACCACCAAGAACATAGCTCGC
AAGGAGGTGTCCCCTCGTCCCGAGACATAGCTTTCCCGTCGAGACATCTA
TGCGAAAAAAAAAAAAGGAAACTCAGCAAACACACACGAATCCACCGGGG
GATATGGCCGTCCAATTACGAGAATTCACACTGTCGCTACCGCTGCCGCC
ACCCTTTTGGGAGCATAAGCCGACTCCCGGCAGCGGCTCAAGCTACCGTC
CGTTGGGCTACTAGTCTAGTGCTCGGGAGCTTACCATCGCTGGAAGTTGC
CATGCACGTTGATTAACTTACCGCAAGGCAATGAACCCGAGCCTGCGTAC
TCTTCCCTTTGCTGCAATTTTGCCGCGTATGATGTCGTTTCCGAGCTTAT
TTTTTATGAGGTATTGAAATATTCTCCCCAGATGTGAGCTCACGGTGGGG
GGACATATCCAACAAAAACACAACAAACACGCGCACGAATACTCTCCGCC
CCCAAAAGAATCAAACGAAGTAGCGGTCTTCCCTTATAACCCTGGGGTCC
CACCACCTAAATTGCCGTTTCCGTGGGTTGAGCACTCGAGGGGGGGGGGA
TGCCCTCCTTGTCGCCTCCCTCAGCAAGCGCTCCATTTGACGGAGTCGTC
CAAGATTGCCGGGGGTGGACCTCCTTCGGCGTTCCCAGAGAAGGGCGTAC
GCCTGACTTTCCCTGTGGAGAGTCGCGCGCGTCGCCTTTCGCCGCCGCCG
CCGGGGGGCTTCTCTCATGCTCTCGCTGCTGCTGCTGCTGTTGCCGTTGC
TGCTCCGAGGCCGTCACAATTCCTCCGGAACTCAGCGCCTTCTTGTAGGT
CCCCGTTCCGGAAGCCAGCTTCGCGGCAGGTTGGGGCGACGTTGCTGGAG
CTGCTGAAGCGGCCTCCATCAAAGGCTTGTCCGCAGCAGGGGACAACGAC
GTCGCCGAAGCTGAAGCGGGCATCGCGGCACGCTTGGCAGCGGGCTTGGC
ATCAGGCTCGGCGTGGGGCGATAACGACGCCGCTGAAGCAGGCTGCGCGA
TAGGCTTGTTGGCAGGAGACCGCGACAACGTCGCAGAAGCTGATGACTTC
CCGGAAAATTCCATACTCAACTCCGGGGCAAGCACGAACTCCGTCGACGG
CGGCGCGGCGGCGGCGGCGGCGTTCCCCCCTCCATTGGCAGTCCCGCTGA
TACCCCCAGCCTTCGGCCGTGCCTTCGGGCTGCAGCCCGGCGGCGACGGC
GCGTTTGCGGAAACCTTCTTGTCCGGCGCACACTCCCTCTTGCCAAGGGG
GTCGGCGGCTGCCTGGCGGTTTATCACAGCTTCGCGAGCGGTTCTGCTGC
CGCCGCCGCCGCCGCTGCCGCTACCCGTGACTGGTGCGGTTTGCGCCGTT
CGGACGCCGTCGCCCACCGCGGGTCCGGCA back to topCoding sequence (CDS) from alignment at P-fluviatile_contig16:2125629..2139658+ >mRNA_P-fluviatile_contig16.2811.1 ID=mRNA_P-fluviatile_contig16.2811.1|Name=mRNA_P-fluviatile_contig16.2811.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=1254bp|location=Sequence derived from alignment at P-fluviatile_contig16:2125629..2139658+ (Porterinema fluviatile SAG_2381) ATGAGTTACGCGTATCTGTTCAAGTATATCATCATCGGGGATACCGATGA GTTACGCGTATCTGTTCAAGTATATCATCATCGGGGATACCGGCGTCGGC AAGTCATGCTTGCTTCTGCAGTTCACCGACAAACGGTTTCAGCCGGTGCA CGACCTAACCATCGGCGTGGAGTTTGGGGCGAGGATGATCAACATCGACA ACCGACAGATGAAGCTACAGATCTGGGATACGGCGTCGGCAAGTCATGCT TGCTTCTGCAGTTCACCGACAAACGGTTTCAGCCGGTGCACGACCTAACC ATCGGCGTGGAGTTTGGGGCGAGGATGATCAACATCGACAACCGACAGAT GAAGCTACAGATCTGGGATACGGCGGGGCAAGAATCTTTCCGATCCATCA CGCGGTCGTACTATCGAGGTGCGGCGGGGGCCTTGCTGGTATACGACATC ACCCGCCGAGACACGTTCAACCACCTCACGCGCTGGCTGGAGGAAGCCCG GCAAAACTCCAACTCCAACATGGCGGGGCAAGAATCTTTCCGATCCATCA CGCGGTCGTACTATCGAGGTGCGGCGGGGGCCTTGCTGGTATACGACATC ACCCGCCGAGACACGTTCAACCACCTCACGCGCTGGCTGGAGGAAGCCCG GCAAAACTCCAACTCCAACATGGTGATCATGTTGATCGGGAACAAGTCGG ACCTGTCGAGCCGGAGGGCGGTGACGACCAAGGAAGGAGAACAGGTGATC ATGTTGATCGGGAACAAGTCGGACCTGTCGAGCCGGAGGGCGGTGACGAC CAAGGAAGGAGAACAGTTTGCGGAAGAAAACGGCCTGATCTTTTTGGAGA CGAGCGCGAAGATGGCCACGAACGTTGAGACGGCATTCATCAAGACGGCG GCAAAGATTTACGACAATATTCTCTCAGGTGTCTACGATCCGACCAACGA GTTTGCGGAAGAAAACGGCCTGATCTTTTTGGAGACGAGCGCGAAGATGG CCACGAACGTTGAGACGGCATTCATCAAGACGGCGGCAAAGATTTACGAC AATATTCTCTCAGGTGTCTACGATCCGACCAACGAGGCACACGGCATCAA GCTCGGGCCGGCGGCGTCTCTGAATTACAACAACATTGCCCCTCCCGCGG AAAAGAGCAGCTGTTGCTAGGCACACGGCATCAAGCTCGGGCCGGCGGCG TCTCTGAATTACAACAACATTGCCCCTCCCGCGGAAAAGAGCAGCTGTTG CTAG back to top
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