Homology
BLAST of mRNA_P-fluviatile_contig101.942.1 vs. uniprot
Match:
D8LIE5_ECTSI (Putative phospholipase n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LIE5_ECTSI)
HSP 1 Score: 231 bits (589), Expect = 3.220e-65
Identity = 104/133 (78.20%), Postives = 113/133 (84.96%), Query Frame = 1
Query: 1798 PASISQVNKPMQVWRTEEDRAIADRDQWGKPGSLGWGHNMKFNMALNMMDMIEVVYSRLSDVKFPFLVMHDPGDAIVQFGPVTELMEKAATPTDDPRARELKTMDGWLHDLLTNATDLVIEHFTNWVVYQTTR 2196
P ++ V P QVW+TEEDRA ADRDQWG PG+LGWGHNMKFNM LNMMDM+ VVYSRLSDVKFPFL+MHDPGDAIVQFGP ELMEKAATP DDPRARELK MDGWLHDLLTN DL+I H T+W+VYQ R
Sbjct: 138 PNALESVKNPTQVWKTEEDRAKADRDQWGNPGALGWGHNMKFNMGLNMMDMVGVVYSRLSDVKFPFLIMHDPGDAIVQFGPARELMEKAATPKDDPRARELKEMDGWLHDLLTNCPDLIIGHLTDWIVYQINR 270
BLAST of mRNA_P-fluviatile_contig101.942.1 vs. uniprot
Match:
A0A6H5JJB5_9PHAE (Hydrolase_4 domain-containing protein n=2 Tax=Ectocarpus TaxID=2879 RepID=A0A6H5JJB5_9PHAE)
HSP 1 Score: 117 bits (293), Expect = 1.380e-24
Identity = 60/154 (38.96%), Postives = 88/154 (57.14%), Query Frame = 1
Query: 1714 RDEPRAVNIAVFFMGRLRPSLSSSSCPKPASISQVNKPMQVWRTEEDRAIADRDQWGKPGSLGWGHNMKFNMALNMMDMIEVVYSRLSDVKFPFLVMHDPGDAIVQFGPVTELMEKAATPTDDPRARELKTMDGWLHDLLTNATDLVIEHFTNW 2175
R P + + P S PK + +V+ P VW E + D+ G+PG LGW M+F ++DM+ +YSRLS+V FPFLV+HDP D IV+F +L+++A+TP D PR +E+K M G HDLL+NAT ++ +T+W
Sbjct: 199 RANPPKEPVLFLLKHVIAPLFPSRQIPK--FMEKVSLPELVWLKPEHIEMGALDKIGQPGGLGWPGTMRFGTGSQLIDMLGELYSRLSEVDFPFLVLHDPEDGIVRFEGTQKLLDEASTPADVPRGKEVKEMLGLKHDLLSNATTQMLAAYTDW 350
BLAST of mRNA_P-fluviatile_contig101.942.1 vs. uniprot
Match:
A0A835Z2I8_9STRA (Alpha/Beta hydrolase protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835Z2I8_9STRA)
HSP 1 Score: 114 bits (285), Expect = 2.660e-23
Identity = 53/127 (41.73%), Postives = 74/127 (58.27%), Query Frame = 1
Query: 1798 PASISQVNKPMQVWRTEEDRAIADRDQWGKPGSLGWGHNMKFNMALNMMDMIEVVYSRLSDVKFPFLVMHDPGDAIVQFGPVTELMEKAATPTDDPRARELKTMDGWLHDLLTNATDLVIEHFTNWV 2178
P S+ +V P +W +E D+ DQWG PG LGWGHNM+ L ++DM++ + S + V FPF V+HDP D +V F L+ +A+T R REL + G HDLLTNA V++ T W+
Sbjct: 228 PDSLERVQIPSLIWVSEADQVRTKLDQWGLPGGLGWGHNMRLGTGLQLLDMLDDIRSNVEKVAFPFAVIHDPEDGVVLFEGTQLLLARASTAEGVYRGRELYELRGLKHDLLTNAGPAVVDFVTQWL 354
BLAST of mRNA_P-fluviatile_contig101.942.1 vs. uniprot
Match:
A0A7S3UYY9_HETAK (Hypothetical protein n=1 Tax=Heterosigma akashiwo TaxID=2829 RepID=A0A7S3UYY9_HETAK)
HSP 1 Score: 100 bits (248), Expect = 3.430e-21
Identity = 50/106 (47.17%), Postives = 64/106 (60.38%), Query Frame = 1
Query: 1879 WGKPGSLGWGHNMKFNMALNMMDMIEVVYSRLSDVKFPFLVMHDPGDAIVQFGPVTELMEKAATPTDDPRARELKTMDGWLHDLLTNATDLVIEHFTNWVVYQTTR 2196
WG+PG L WGHNM+ A +M M+ + + L V FPFL +HDP D IVQ EL E AATP +D R EL G HDL+ NATD+VIE+ +W+ Q +
Sbjct: 11 WGEPGGLRWGHNMRLGTAYALMQMLGSLGTELQSVDFPFLALHDPEDRIVQCAATRELAEAAATPEEDRRFVELP---GGRHDLICNATDIVIENVKSWIEDQKNK 113
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig101.942.1 vs. uniprot
Analysis Date: 2022-09-19 (
Diamond blastx: OGS1.0 vs UniRef90 )
Total hits: 4
0 1 Expect = 3.22e-65 / Id = 78.20 Expect = 1.38e-24 / Id = 38.96 Expect = 2.66e-23 / Id = 41.73 Expect = 3.43e-21 / Id = 47.17 Sequence D8LIE5_ECTSI A0A6H5JJB5_9PHAE A0A835Z2I8_9STRA A0A7S3UYY9_HETAK
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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 234.2
Seed ortholog evalue 4.9e-59
Seed eggNOG ortholog 2880.D8LIE5
EggNOG free text desc. acylglycerol lipase activity
EggNOG OGs COG2267@1,KOG1455@2759
COG Functional cat. I
Best tax level Eukaryota
Best eggNOG OG NA|NA|NA
Hectar predicted targeting category other localisation
Ec32 ortholog description Putative phospholipase
Ec32 ortholog Ec-18_003970.1
Exons 6
Model size 3232
Cds size 549
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
1622815421.806248-UTR-P-fluviatile_contig101:37372..38291 1622815421.806248-UTR-P-fluviatile_contig101:37372..38291 Porterinema fluviatile SAG_2381 UTR P-fluviatile_contig101 37373..38291 +
1693561798.3819442-UTR-P-fluviatile_contig101:37372..38291 1693561798.3819442-UTR-P-fluviatile_contig101:37372..38291 Porterinema fluviatile SAG_2381 UTR P-fluviatile_contig101 37373..38291 +
1622815421.8209376-UTR-P-fluviatile_contig101:39758..39835 1622815421.8209376-UTR-P-fluviatile_contig101:39758..39835 Porterinema fluviatile SAG_2381 UTR P-fluviatile_contig101 39759..39835 +
1693561798.3953938-UTR-P-fluviatile_contig101:39758..39835 1693561798.3953938-UTR-P-fluviatile_contig101:39758..39835 Porterinema fluviatile SAG_2381 UTR P-fluviatile_contig101 39759..39835 +
1622815421.836452-UTR-P-fluviatile_contig101:40206..40863 1622815421.836452-UTR-P-fluviatile_contig101:40206..40863 Porterinema fluviatile SAG_2381 UTR P-fluviatile_contig101 40207..40863 +
1693561798.4027889-UTR-P-fluviatile_contig101:40206..40863 1693561798.4027889-UTR-P-fluviatile_contig101:40206..40863 Porterinema fluviatile SAG_2381 UTR P-fluviatile_contig101 40207..40863 +
1622815421.8897996-UTR-P-fluviatile_contig101:43948..44978 1622815421.8897996-UTR-P-fluviatile_contig101:43948..44978 Porterinema fluviatile SAG_2381 UTR P-fluviatile_contig101 43949..44978 +
1693561798.4449303-UTR-P-fluviatile_contig101:43948..44978 1693561798.4449303-UTR-P-fluviatile_contig101:43948..44978 Porterinema fluviatile SAG_2381 UTR P-fluviatile_contig101 43949..44978 +
The following CDS feature(s) are a part of this mRNA:
Feature Name Unique Name Species Type Position
1622815421.8496869-CDS-P-fluviatile_contig101:40863..41101 1622815421.8496869-CDS-P-fluviatile_contig101:40863..41101 Porterinema fluviatile SAG_2381 CDS P-fluviatile_contig101 40864..41101 +
1693561798.4099722-CDS-P-fluviatile_contig101:40863..41101 1693561798.4099722-CDS-P-fluviatile_contig101:40863..41101 Porterinema fluviatile SAG_2381 CDS P-fluviatile_contig101 40864..41101 +
1622815421.8599164-CDS-P-fluviatile_contig101:41500..41629 1622815421.8599164-CDS-P-fluviatile_contig101:41500..41629 Porterinema fluviatile SAG_2381 CDS P-fluviatile_contig101 41501..41629 +
1693561798.41699-CDS-P-fluviatile_contig101:41500..41629 1693561798.41699-CDS-P-fluviatile_contig101:41500..41629 Porterinema fluviatile SAG_2381 CDS P-fluviatile_contig101 41501..41629 +
1622815421.8698113-CDS-P-fluviatile_contig101:43085..43158 1622815421.8698113-CDS-P-fluviatile_contig101:43085..43158 Porterinema fluviatile SAG_2381 CDS P-fluviatile_contig101 43086..43158 +
1693561798.4245462-CDS-P-fluviatile_contig101:43085..43158 1693561798.4245462-CDS-P-fluviatile_contig101:43085..43158 Porterinema fluviatile SAG_2381 CDS P-fluviatile_contig101 43086..43158 +
1622815421.8800704-CDS-P-fluviatile_contig101:43839..43948 1622815421.8800704-CDS-P-fluviatile_contig101:43839..43948 Porterinema fluviatile SAG_2381 CDS P-fluviatile_contig101 43840..43948 +
1693561798.4349256-CDS-P-fluviatile_contig101:43839..43948 1693561798.4349256-CDS-P-fluviatile_contig101:43839..43948 Porterinema fluviatile SAG_2381 CDS P-fluviatile_contig101 43840..43948 +
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig101.942.1
>prot_P-fluviatile_contig101.942.1 ID=prot_P-fluviatile_contig101.942.1|Name=mRNA_P-fluviatile_contig101.942.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=183bp
MLLLPSSFAGMPRTRHQIHARDEPRAVNIAVFFMGRLRPSLSSSSCPKPA SISQVNKPMQVWRTEEDRAIADRDQWGKPGSLGWGHNMKFNMALNMMDMI EVVYSRLSDVKFPFLVMHDPGDAIVQFGPVTELMEKAATPTDDPRARELK TMDGWLHDLLTNATDLVIEHFTNWVVYQTTRV* back to top mRNA from alignment at P-fluviatile_contig101:37373..44978+
Legend: UTR polypeptide CDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig101.942.1 ID=mRNA_P-fluviatile_contig101.942.1|Name=mRNA_P-fluviatile_contig101.942.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=7606bp|location=Sequence derived from alignment at P-fluviatile_contig101:37373..44978+ (Porterinema fluviatile SAG_2381)CTGGACCTGCCCGGCCACGGCTACTCGGAGGGCGAGCGGGCCTACGTAAA
GAGCTACACGCACTGGGTGGACGACACCTTTCAGGTGCGTTGCAACCCCA
TACGATGCCGTTTTCCACCGCGGAGGGACTGAGTAACTGCAGTGTCGTTT
CGGTAGCTGCTGTACCCCCACTGCTGTTGTCGATCAATTATCGGCTTCAT
TTTATATACACTGTTGTGGTCTAGTGCTGTTTGGAAAGGAATGACCAGTC
AATCTTCGCATGAGTGACGAGGTAAGTCCGTCGGCACAAAGTCGAAATAA
CGGTCGACGGCCGCCCCTTGTTCCAATTTTGACCCCTCTCCTTCACGACT
TTGTGCACAGCCATACAAAAATAAAACGTCGAAAACGCCGACGGCCTATC
AAGCGACACCTCGATAAAGTCGAAAAGGCGAGAAGACAAGCAAGAAGCGT
TTCTTGTATGATTGGTGGCGGAAGCGCGTGGACTGCGTCGCCGACAGTCG
GGGTGATAAAAAACCAACGGCGTGCCCCCTGCTTGTGCAAGAGTCGGCAG
GGTATCGTAGGTGCGTGATCGATGGTCAAATGGCGATTGCAAGCATGAAT
GGGGCGTACGCCGCATCTAGAACATcCCCCGTCCGACCTCGAgGGGGTTT
CGATGCGCAAGCGTGGGCTTCATGCGCTGCGCCTCTCTCTCACTCCGCCT
TAAAGAACATAGCGTCGTCTTGAGGGCCGAGTGCTTTGAGGGGAGCAGCC
AATCATTTGACCTTCCGCCCCTCAGCACAATTTGACTGCTATGCTGTACG
CGCCAATGCGGAACCTTCGAACGTTGAAGCTCCTAGAGGCGATCACGGGA
GGGGGCTTCGCTTCGACGGCGGAGGGGAAGTTTTCGCTTTCCAAGGAACA
GCTGGAGCGTTTGAAGACG GTGAGTTATCGACGTTGTCCGAGTTTGCGTC
TGTGAAGTGCACATTGAGCACAAGACTCAAAATTGTGCAGGTAGGTGTGA
TAGACTGTTGAAGAGTTGGACACGTTCGGTCATGTATTGGGAACCCTTGT
CCACGAATCTCGTCGCATGCGTCCGCCTTTTGCTGTGCCCCAGAGTGTCG
CTTTCTCCGTGGATTTTGCGTTTATCATGTACACAAGTCCCTTTTTTGGA
GGCGATCACCGTGAAATGGAAGGTATGGGTCAATCAAGTCTTGGATCGAA
GGATGCGTCGACCGAACCTTAGCACTGCGACAGCTGAAATGGCGTTCGAG
ACAATATGACGGGTGCAGTCGCTTGGACTGAGCGTACGTCCCCGCCGGCT
TTCCATGGAGGATGCAGGACGACGGTCGAGGAAAGACCGTATTTGCCTAC
TCTCTACACGTGATAGTCGAGAGGAGGGTAATGGGTTCTTTGCCTGTGCG
TCTTGCCAAGTAGTTCGCTTCGTGCGGTGCTAGATATCTGAGACCGATTT
TTCTTGTAGGGTGGAACTCCAACATTACGGGGATCGTCATCTTTTCGTAG
CCTGTGACCACGATAGGATAGGGTACGGACACTTGGAGGTACCAGGAGTG
AGCGGCGAGGGGTGTTGATGTGAAGACAATACTGCCGGGCTCGTGATAAA
CGTCAATTGCAGAAAGCATGCATCGTCATCAAGCCTCGTCTTTGTGTGTC
ACACATCAGTGCGAGTTTTGATATGGCATCGCGCGTATCGACCGTATCGA
TTAATCTCCTGAAAGGTTCAATCGAACTCATACTTCGAAGTAGTAGTCTA
CAGCAGATAGGTGTGCCTTTTCCGAGCTGTGGGTAGTTTTCTCGAGAGGG
CTCCCTGGAAGTAGGCATTGAGGACGACACGGGTATGGTGGTACTCCACC
TTCACCCTGTGACGCGAGTTGAAGAGGAGCATTGAAAATGTGGCAGCCAC
AAAAATATATATTGCACTCTCGGACGTCCCATGTATGGCGCTGAGTTCGG
AGGCTGAAGCTTACAGAAAACCCAGGGCTGCCTCTTGGTGGTGCCGCTCA
AATCGCTTGCACGGGATGTAATCGGCTGCTACACGAAAACCTAACCGGTA
GGTCGAAACAGTTACAGTTTGCTCGTGTCGCCTTGTCAGACGCACGAAAT
CGTCATTTTTGAGGGCTCTCGACTGCTGTGCGGATGTTTCGTTCACGAAG
CTTTTGGAATTTCCAGCGGATGGATTCCGGGGCCGCTGGTTCTAAACAGT
TGGCTTGATATGCGTACCCGGTGACCGGCCGAAGTCCGAGATATCAAGCA
TGTGCCTAGCGGCCCAGTGTCACGGGTGTTACATTCTATTTGTGAACGCG
ATTGTTGTCCATCCCCGACGCTGGTGCAACGACCCGGCTTGTGCTCCTTT
TCGCCTTCCTCGTGCTGCCGCTTCGCGATTCGAAAGGTGCCCATCTTCTT
GTCCGGCGAGTCTATGGGGGGCGGGCTGTGCCTGTTGACGGACTGACCCT
TTATGATCGGAAG GTGAGACTTCCAGCTCCTTTCGAAAGATTGGCAACAT
CGCGATCGGAAGCGGCGCTTTTTCAAGGCTCTTGGCACATGGTTCAGCCA
ACGGCACCGTTCTGCTTTGCTTTAAGGCTGAGCAACACAACGCGATGACC
GAATCCGCGAAAAATTGCAATCTTTTCGCTTGTCGGGCATGACGTGTGCT
TGAGTGGCGCGGTGGCATTCGGGCGGCGCGCCTTGTTGTATTATGAGGAA
GGAGGGAGAAAGTAGGGAAGATAAGTCTCAAGCAGAATTGCATTCAAAGG
TTGTGGCCCGTAGTGCACCGGAATGAACCATGGTTGTTCATCCTCCCACC
GCCCGACCCTGCTGCGCTGGTTTCGAATGACCAGCACCCTCTTTTTGCCG
CGATTCAAGGGGTCTGCCTCATCGCCCCGGCCATCCAGGGCAACCTACCC
CCGAGCCAATAGTGTCGATTCTGAGGTATCTCGTGGCACCCATCATTCCC
CGGCGGCAGATTCCATCAGCGCTGTACACGGGTGGGTGCTGATAATGCGC
CAAGTCGATTTTTGAACCGTTGGCACGGTTGCCTGCAGTGGATTGGTTGG
CTCGTTGCAGAGCTTCTCGTACACCCGGTGTTGAGTATGAAACGCAGAAG
AGGTGCTCCAAGAGAGTGCAGTCGCACGCGGCTCGTTGTTACTGTTAAAC
GTCGGCCGTACGTAAGGCACAAACACAGATTGAGCAAAGTCGGGAGCAGA
GCTCATCTCTGGTTTCAAAAATGATTTCCAACCACGGAATACCACCCGAA
ACCCAATCAAACGCACAAAAACATTTTTCGATGTCCCAGACATGCGCAAC
ACGCTACATTTGCGTAACTCCAGTTTCCTAGACATACCGCAGGTGTTTAA
ATAGTATCATTCAGCTAGCTTTCCTTGCATCGAGCACTCAAGGTACTTGG
CTACTTTTTCACGAGTACCATTGGCTCCGAACACGAGCCTCACGTATACC
TGAAAGCGGTGGGCGGGAGTGCCCTGCCGTCATTGTTGCCT ATGTTATTG
TTGCCGTCCTCCTTTGCCGGCATGCCGCGCACTCGCCATCAAATTCATGC
AAGGGATGAGCCACGCGCCGTCAATATTGCGGTGTTTTTCATGGGCCGAT
TGCGACCATCATTGTCAAGCTCCTCCTGCCCCAAACCCGCCTCAATATCG
CAAGTGAACAAACCCATGCAAGTGTGGAGGACGGAAGAAGACAGAGCAAT
CGCGGATCGGGACCAGTGGGGCAAGCCCG GTGAGAACTCGACTCCGCTCA
CGCTTTTGAGTAATGCAGGGGCTCGTATAGTATGTTTGTTTGGTACGGGG
TTGAAGTACAAACCAGGTCGTTGGTCATGACGCCGACATGAGAATCGGAA
TCTTGGCGCTGTTTTTCAGCGTTTTTGATTCGTTGCCCTCGAGGCAGATT
TTTCGCATCCACTGTGGTCGACAATGATTTGCATTGTAGTTCCCACATAT
ATATATATATATTTTCGGAAAATGCGATGTTCATTTCATCTCTGCGACTT
TGCTGCGTGTCACGGTCTACCCATTTTTGCTTTCCATGTTTTTATGACGT
CCATGAGGTGGAGATGACTCAACGCCCTACCCCCCCGCCCCTTGAGCACC
CCTCGAATCGTTCGCGTGTTTGTACCAGGGTCCCTCGGGTGGGGGCACAA
CATGAAGTTCAACATGGCGCTGAACATGATGGACATGATCGAGGTCGTGT
ACAGTCGACTTTCGGACGTGAAGTTCCCGTTCCTCGTGATGCACGACCCC
GGAGACG GTAAGGAAGAATCCCCGACACCTGCTTGCGCACAAACACGCGC
ATCGATGTGCACAGCCTATCGAATGTATATCGGGTGCTGCCCGCACGTGA
CTTCTTGTCCGTAGGATTTTCCCGCGGCGGCTCTCCTTCATAGGATCGGA
TCCCCGGTCATTTGGCGGGTTTCAGCGGCATGTGTGTCTGACTTCGGCTG
CAAAGTGCGTTTGAAACACACCCAAAACCAAAGCTTACTGAACCAAGGTA
GTGCAAGACGCCATCATGAAGTTTTGATGAGGCTTAAAGACTTTCGTCAC
GCACGGCCGTGCAGAACCCTCACTTCGCTGAGCGAGATTCGCGCCATCGT
TGCCTGGTCAGCGGGATTTCCATGGGCGCCGAAGAGATCAGAGCAAGAAA
TGGATAGTTGTGCTGACTCTACGAACTGGCGGTGGATGATCATAATAGTC
GCCAGATGTGTGTCCCGTGGATCTAGCGAAGGAGAATGTAACTGTTTGTA
ATAGCGCATGTGCCTGACCCGCCACCCCCTGCTTTCTTGAGATTTTCGTC
CATGAACCCCGATCATTCCCGAAAAAAGAGCGCGCACGAGAGAGCGCGCG
CACTTCCCAGACCCGTCGAGCGTCCGCCGCACAGAGTGACAACACAGGTC
CACAAGTCACCCTCGGCAGTATCCGCACTGTGTTTTCGGGGACCACTGCT
GCGAAATACGCGGGTCAGGGTTAAAGTCGCACCCAGCGGTCCTTTGATTC
GAAACACACGCAGGGCACACACATTCTTGATATCCACACATTTCATCCCT
CTACCTGGAAACAAAACTGAGCACAAGGCAGAGGAACCGGTTCTTGTGAA
GAGGTGGAAATCTCCGGGAGGAGGGGAGGCTCACGGCCGCTCTCTGTGTC
GTGCCGCTTGGCGTGCATGCTACGTTTCTTAGTCCGGAGGGAACGGGGCC
ACAATGACACAGCTTGCAGGACGAACAAAACAATACTTCGTTTACACGCA
CACCACCGTCCAACTGCTGGAACGAAGGGGCTGCACTACAACCGGGCTGC
AGCTCCTGCTCGCTCGGAAGCGGGTATGTCACGTGCTGCTTCTTTCTTGC
TCGGGCCCTCGACTCCCCGTCGATCTCTTCTCCTCGACGTCATTGTGAAC
AAGAAAAAATCGGTTCGCTCGAGGTCACTGCTTTCAATCATATCTGTATA
TGCCAAGATAATCCCAGCACATTCGAGCTTTGTTATCGGTTTTTTTTTTT
TTTTTTTTTAGACCACTCGCGTCGACGTAGCACTCAAGATTACGTCGACC
TACTCGGGGTCGCATGCCGGAACGATGTTCACGTGCTTGTGAGCGTGCGC
AACTCTTGGGAGCACCGACCCCCTCCAAGGAGCCGCCCCTTTAGTAATTA
TGGCACCGCAGCAACGCGCAAGGAGTGAAATGCTTGGCCCTTGTGTGCAT
GCATGCGTCGCAGCTATCGTCCAGTTCGGGCCGGTGACGGAGCTGATGGA
GAAGGCGGCAACTCCAACAGATGATCCCCGTGCAAG GTGAAAACAGTCGT
TGCGGGTTATGTGCTTGCTCCGAAGTGTGTAACGTATGGTTGCGAGGTGG
TATTATGCCTTCTGTACGCTCATCGCAGAGCGTCTGTTTGTCGGTACTCG
ACATGAAGTGTATTCTATTCGTAGTAACCGAAATCTTCAGCGTGTTGTGG
ATATCGTCTGAGATACCCCTGACACGTGGGAAGGCTGCGCCTCTCGAAGT
TCCTCGAGATGATTTGGCACCGCGAGTGGTTGAAGAGCAGAAGAAGGAGC
ACTTCTTCCGCTGTACAGAGAAGTGATGATATGTTGAACACTGGCGCTTA
TTTGGCCAACACGCACACAGGGATAGATCCACAGAACACGCGGAAGTCCA
GATGACGGCAGTTCCTAACGATGACCAGTAAAGCTGAGACCCGTGATTGT
CCAGAGAAGTCCATGCGAGAGTGAGAGACACACGATCCCTCGAGCAGTGA
TGCTACAGCAGTAGTTTCTTCGCATTCAGGTGCGTTACCTATGAACCGAA
ACATGTGATATGTACGATTCATGATCCACGATAGAGAGCGATGCTACTGA
ACATTGACTTGTACATGGACGTGAGCCAATATTTCCATAACACAGCCCTA
TCACCCCTTATCGACGTTGCTGTTGTTGGTCACTCGTGCTATCGTTTCCG
TTTCAAACGCATCGTAGGGAATTGAAAACGATGGACGGCTGGCTCCACGA
CCTCCTCACTAACGCGACGGACCTCGTGATTGAGCACTTTACGAACTGGG
TTGTCTACCAAACGACCCGCGTTTAG TAACCCTATCACGGTCCCTCGTCG
TTGCTACAAGTTGGAGTGACACGAAACGGTTGGGGAGTTCATCAACTCGC
ACTTCCGAAAACAGGGACAAAAATTTGCTGGAAATATACTTATGAGGGCG
GTGGTGGAGTTCTTCAACTGCCAGAGTCGCAATCAGAGACAGGTCACGAG
TTGGATGCGCACCTTGGGGGGTGAAATGCAATGCGCGCGAGCCTCAGCAC
ACCTGTCAGAATTGGGTTGTGTCGAACGAAGATGGGCTAGCCCCCGCCAG
ACCTATGGCAGGGACCTCGTCAACACTTGCGCCAGTTCATCGATGGCGAT
CGGTACATACTTTCTCGACTGTGTAAGCTACCAAACGGGCCACGTTCGCT
CCGCTGTGAGGATCAAATGGGATTTGTCGAGCCAGGACCCACATTGGCCA
CGTGACGTGTTTATTTGATTGTTCAAATATCGAAAATACGGCGGCGTGTG
GGTTCGGGCGGTACTGTAGCCGAGGTTTTGGAAGCGGGATTGAGCATTTT
GGGTAGATTGCAGTGTGCATGAGGGGGCGAGGCCTGTTTTCGGTACAGTC
TCTTCTCCCGTGTGGTCCGTGCATTTCAAGTGTTGAGGTGTGATTTCGAA
AGCACAGCTGTGTTTCCAGAGTCTTGGAGCTGTGTGCCACTACTGTGGTC
GTCCTTGCAGCTTGCTTCGTCTACCGCGCGCACCCGTTCTTTCGGCGTGG
AGGAATATTGACGTCTCCCTCAGGCGACGTTGTCGAGTGCACGTTTCTCA
TAGGGGGGCGATGGCGGGGATAAGTGATCGCACATGAAGACCCATGTACT
ACGTTGTGTGCCCACGAGGGTGCATTTTTTTCACGAAGGCTTGCGTTATA
TGTTGTGGAGATAGGCAACTTTTTCCTCGAATGCGCTGGCGACGCGGTCG
CCACGGCCGAGAGTTGTTTTTTTGTTATCCAAATCTGTCACCCGGTAAAA
GTACGTTCCGCTCTGACTCCTTTAATACTAGGATTAACTTTTTCCATTCA
CTGCGG back to top Coding sequence (CDS) from alignment at P-fluviatile_contig101:37373..44978+
>mRNA_P-fluviatile_contig101.942.1 ID=mRNA_P-fluviatile_contig101.942.1|Name=mRNA_P-fluviatile_contig101.942.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=1098bp|location=Sequence derived from alignment at P-fluviatile_contig101:37373..44978+ (Porterinema fluviatile SAG_2381) ATGTTATTGTTGCCGTCCTCCTTTGCCGGCATGCCGCGCACTCGCCATCA AATTCATGCAAGGGATGAGCCACGCGCCGTCAATATTGCGGTGTTTTTCA TGGGCCGATTGCGACCATCATTGTCAAGCTCCTCCTGCCCCAAACCCGCC TCAATATCGCAAGTGAACAAACCCATGCAAGTGTGGAGGACGGAAGAAGA CAGAGCAATCGCGGATCGGGACCAGTGGGGCAAGCCCGATGTTATTGTTG CCGTCCTCCTTTGCCGGCATGCCGCGCACTCGCCATCAAATTCATGCAAG GGATGAGCCACGCGCCGTCAATATTGCGGTGTTTTTCATGGGCCGATTGC GACCATCATTGTCAAGCTCCTCCTGCCCCAAACCCGCCTCAATATCGCAA GTGAACAAACCCATGCAAGTGTGGAGGACGGAAGAAGACAGAGCAATCGC GGATCGGGACCAGTGGGGCAAGCCCGGGTCCCTCGGGTGGGGGCACAACA TGAAGTTCAACATGGCGCTGAACATGATGGACATGATCGAGGTCGTGTAC AGTCGACTTTCGGACGTGAAGTTCCCGTTCCTCGTGATGCACGACCCCGG AGACGGGTCCCTCGGGTGGGGGCACAACATGAAGTTCAACATGGCGCTGA ACATGATGGACATGATCGAGGTCGTGTACAGTCGACTTTCGGACGTGAAG TTCCCGTTCCTCGTGATGCACGACCCCGGAGACGCTATCGTCCAGTTCGG GCCGGTGACGGAGCTGATGGAGAAGGCGGCAACTCCAACAGATGATCCCC GTGCAAGCTATCGTCCAGTTCGGGCCGGTGACGGAGCTGATGGAGAAGGC GGCAACTCCAACAGATGATCCCCGTGCAAGGGAATTGAAAACGATGGACG GCTGGCTCCACGACCTCCTCACTAACGCGACGGACCTCGTGATTGAGCAC TTTACGAACTGGGTTGTCTACCAAACGACCCGCGTTTAGGGAATTGAAAA CGATGGACGGCTGGCTCCACGACCTCCTCACTAACGCGACGGACCTCGTG ATTGAGCACTTTACGAACTGGGTTGTCTACCAAACGACCCGCGTTTAG back to top