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Homology
BLAST of mRNA_P-fluviatile_contig1.3.1 vs. uniprot
Match: D7FS85_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FS85_ECTSI) HSP 1 Score: 186 bits (473), Expect = 5.350e-44 Identity = 232/549 (42.26%), Postives = 266/549 (48.45%), Query Frame = 2
Query: 32 DAESLLVRLAGKAKRAAAAVLSASAXXXGAISPPLVSPPRQNGRDGARPGTAGSKPAAV--HRMASVALDPAADAVGGVHKLAGS--HANTTAGPGANRQERRRGDDTAEAINGAQAPGPVAGPVAVAVVGPAGARLAELCKEDKAKVARLMQDLVKLRAERDGQKARFERLRGQNDVIVKEMAALKVKFGQSVQLLRKYQSIIQAGLPAS-GGAVGVDGVNGSHSWPV---ESVAARAXXXXXXXXXENQSLREALRAAEXXXREXXXXXXXXXXGRAAMAEELRAAKKQADDLRRHLDSHRMAAAASSATARKATRHGGRLDPPSDGAVGATGI----------PFGGTTAP--STITPSASAAVRMNPAAA-DTAL----------WEAFLRAA-GRDQAGQPEPDPDVHIRGV------------DGGSEASAXXXXXXXXXXXXXXXXXXXXXXXXXXXSEQQLPE-----------EGVGRGGLASSTELAALKEQVETLKQQLVMVGVQQLALTGIPTGAALLKWHE------GP-FPFRDP 1492
DAE+LL RLAGKAK+AAA LSASA G ++P L TA S P + S ++ DA V + +G H G ++ R D++ G Q P A VAV G GARLAELCKEDK KVARLMQDLVKLR E++GQK RFERLR QN+ IVK+MA LK KFGQS+QLLRKYQSI+Q G A GG VGV G + XXXXXXXX E Q+LRE LR AE R+ GR AMAEELR A+ QAD+LRR LD HR A S A R G R + G +G G P AP T S A +P+AA DTA A +R A GR + E P GV GG XXXXXXXXXX + P EG G A S EL +KEQ+E LKQQLVMVGVQQLALTG+ TGAALL GP PF DP
Sbjct: 123 DAEALLARLAGKAKQAAAVALSASAASGG-MTPDL---------------TARSAPTGTVTRNVKSAGVESITDATVRV-RFSGDKGHLGAAIKRGTTGEDCR--DESTVTAVGRQVPEVAAAAGGVAVDG--GARLAELCKEDKTKVARLMQDLVKLRQEKEGQKTRFERLRAQNESIVKQMAGLKDKFGQSMQLLRKYQSIVQEGGAADEGGGVGVRGKGXXXXXXKRLEKXXXXXXXXXXXXXXAEIQALRETLRLAEESTRKAEAEAAAQRSGRTAMAEELRQARGQADELRRQLDHHRRLQARDSPVA---AREGPRRN--DLGLLGGEGAHSSGPASHQQPVAPLLAPVHDHATKGVSNATAASPSAAVDTAEPLPGTGGKEGVAAVVRGADGRAVSISGEEKPSAPSGGVVLVSPGGGRTTGPGGDITGGNFGVVGRGGGVNPPPPIXXXXXXXXXXXXRGCPPPPSPKRVRPCLEGEAVPGAAFSVELDPVKEQMEILKQQLVMVGVQQLALTGVRTGAALLNGRHSGGSGGGPAHPFNDP 645
BLAST of mRNA_P-fluviatile_contig1.3.1 vs. uniprot
Match: A0A6H5K9R0_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5K9R0_9PHAE) HSP 1 Score: 180 bits (456), Expect = 7.540e-42 Identity = 236/565 (41.77%), Postives = 273/565 (48.32%), Query Frame = 2
Query: 32 DAESLLVRLAGKAKRAAAAVLSASAXXXGAISPPLVSPPRQNGRDGARPGTAGSKPAAV--HRMASVALDPAADAV------GGVHKLAGSHANTTAGPGANRQERRRGDDTAEAINGAQAPGPVAGPVAVAVVGPAGARLAELCKEDKAKVARLMQDLVKLRAERDGQKARFERLRGQNDVIVKEMAALKVKFGQSVQLLRKYQSIIQ-AGLPASGGAVGVDG----VNGSHSWPVESVAARAXXXXXXXXXENQSL--REALRAAEXXXREXXXXXXXXXXGRAAMAEELRAAKKQADDLRRHLDSHR-MAAAASSATARKATRHG--GRL-------------------------DPPSDGAVGATGIPFGGTTAPSTITP--------SASAAVRMNPAAADTALWEAFLRA---------AGRDQAGQPEPDPDVHIRGVDGGSEASAXXXXXXXXXXXXXXXXXXXXXXXXXXXSEQQLPEEGVGRGGLASSTELAALKEQVETLKQQLVMVGVQQLALTGIPTGAALLKWHE-----GPF-PFRDPPPPSTNPSTVDV 1528
DAE+LL RLAGKAK+AAA LSASA G P TA + P + + S ++ DA G + + +T G E R + A A+ G Q P A VA+ G GARLAELC+EDK KVARLMQDLVKLR E++GQK RFERLR QN+ IVKEMA LKVKFGQS+QLLRKYQSI+Q G P G VGV G + AA A E S RE+ R AE R AMAEELR A+ QAD+LRR LD HR + A S A AR+ R G L D ++G AT P + A +T P A+A VR A + E A AG + P D GV G XXXXXXXXXXXXXXXXXXXXXXXXXX SS EL A+KEQ+E LKQQLVMVGVQQLALTG+PTGAALL GP PF+DPP + VD
Sbjct: 212 DAEALLARLAGKAKQAAAVALSASAASGGMTPDP----------------TARAAPTGIVTRNVKSAGVESITDAAVRVRFSGDTGHVGAAIRRSTTG------EECRDESMATAV-GRQVPEVAAAAGGVAIDG--GARLAELCQEDKTKVARLMQDLVKLRQEKEGQKTRFERLRAQNESIVKEMAGLKVKFGQSMQLLRKYQSIVQEGGAPGGGXXVGVRGKXXXXGACKRLEKQEAAATAAAAEIQALREXPSAKRRESARKAEAEA-------AVQRSDRTAMAEELRQARGQADELRRQLDHHRRLQARDSPAAAREGPRRNDLGLLRGEGPHSVGPVSHQQPVAPLLARVHDHVTEGVSNATAAPP--SAAVNTAEPLPGTGGKEGAAAVVRDADGRAVSISGEEKPPARSGGVVPVSAGGGRTTGPGGDITGGKLGVAGSGSXXQPXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXSSAELDAVKEQMEVLKQQLVMVGVQQLALTGVPTGAALLSGRHSGRGGGPARPFKDPPAAAAAAPAVDA 742
BLAST of mRNA_P-fluviatile_contig1.3.1 vs. uniprot
Match: A0A7S2SSJ5_9STRA (Hypothetical protein n=1 Tax=Rhizochromulina marina TaxID=1034831 RepID=A0A7S2SSJ5_9STRA) HSP 1 Score: 60.1 bits (144), Expect = 2.090e-5 Identity = 37/83 (44.58%), Postives = 52/83 (62.65%), Query Frame = 2
Query: 422 ARLAELCKEDKAKVARLMQDLVKLRAERDGQ-----------KARFERLRGQNDVIVKEMAALKVKFGQSVQLLRKYQSIIQA 637
ARL +LC DK++VARL+ L+++ E D ++R +RLR QND IV EMAAL+ KFGQ++ L ++YQ I A
Sbjct: 56 ARLTDLCAADKSRVARLIDQLLRVTTEHDKAVEDWGRERATFESRIQRLRKQNDEIVGEMAALRKKFGQTLTLAQQYQDRIAA 138
BLAST of mRNA_P-fluviatile_contig1.3.1 vs. uniprot
Match: A0A835Z7B7_9STRA (Uncharacterized protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835Z7B7_9STRA) HSP 1 Score: 59.3 bits (142), Expect = 4.230e-5 Identity = 35/68 (51.47%), Postives = 45/68 (66.18%), Query Frame = 2
Query: 422 ARLAELCKEDKAKVARLMQDLVKLRAERDGQKARFERLRGQNDVIVKEMAALKVKFGQSVQLLRKYQS 625
ARL +LC DKAKVA+LMQ+L +AE + R ERLR QN IV E A + + Q+V LL+KYQ+
Sbjct: 44 ARLVDLCPSDKAKVAKLMQELSAAQAEAAARAHRLERLRAQNAEIVAETADTRSRLTQAVLLLKKYQA 111
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 |
| Hectar predicted targeting category | other localisation |
| Ec32 ortholog description | expressed unknown protein |
| Ec32 ortholog | Ec-05_004990.1 |
| Exons | 7 |
| Model size | 4246 |
| Cds size | 3357 |
| Stop | 1 |
| Start | 1 |
Relationships
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815258.024822-UTR-P-fluviatile_contig1:31606..31820 | 1622815258.024822-UTR-P-fluviatile_contig1:31606..31820 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 31607..31820 + |
| 1693561230.753434-UTR-P-fluviatile_contig1:31606..31820 | 1693561230.753434-UTR-P-fluviatile_contig1:31606..31820 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 31607..31820 + |
| 1622815258.1190426-UTR-P-fluviatile_contig1:37121..37796 | 1622815258.1190426-UTR-P-fluviatile_contig1:37121..37796 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 37122..37796 + |
| 1693561234.11433-UTR-P-fluviatile_contig1:37121..37796 | 1693561234.11433-UTR-P-fluviatile_contig1:37121..37796 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 37122..37796 + |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815258.035424-CDS-P-fluviatile_contig1:31820..32228 | 1622815258.035424-CDS-P-fluviatile_contig1:31820..32228 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 31821..32228 + |
| 1693561231.010006-CDS-P-fluviatile_contig1:31820..32228 | 1693561231.010006-CDS-P-fluviatile_contig1:31820..32228 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 31821..32228 + |
| 1622815258.047779-CDS-P-fluviatile_contig1:32753..32924 | 1622815258.047779-CDS-P-fluviatile_contig1:32753..32924 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 32754..32924 + |
| 1693561231.3318577-CDS-P-fluviatile_contig1:32753..32924 | 1693561231.3318577-CDS-P-fluviatile_contig1:32753..32924 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 32754..32924 + |
| 1622815258.0617895-CDS-P-fluviatile_contig1:33283..33376 | 1622815258.0617895-CDS-P-fluviatile_contig1:33283..33376 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 33284..33376 + |
| 1693561232.0716815-CDS-P-fluviatile_contig1:33283..33376 | 1693561232.0716815-CDS-P-fluviatile_contig1:33283..33376 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 33284..33376 + |
| 1622815258.0741203-CDS-P-fluviatile_contig1:33708..34194 | 1622815258.0741203-CDS-P-fluviatile_contig1:33708..34194 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 33709..34194 + |
| 1693561232.4288924-CDS-P-fluviatile_contig1:33708..34194 | 1693561232.4288924-CDS-P-fluviatile_contig1:33708..34194 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 33709..34194 + |
| 1622815258.0857303-CDS-P-fluviatile_contig1:34361..36182 | 1622815258.0857303-CDS-P-fluviatile_contig1:34361..36182 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 34362..36182 + |
| 1693561232.8802578-CDS-P-fluviatile_contig1:34361..36182 | 1693561232.8802578-CDS-P-fluviatile_contig1:34361..36182 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 34362..36182 + |
| 1622815258.0974061-CDS-P-fluviatile_contig1:36482..36551 | 1622815258.0974061-CDS-P-fluviatile_contig1:36482..36551 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 36483..36551 + |
| 1693561233.3301394-CDS-P-fluviatile_contig1:36482..36551 | 1693561233.3301394-CDS-P-fluviatile_contig1:36482..36551 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 36483..36551 + |
| 1622815258.1100082-CDS-P-fluviatile_contig1:36812..37121 | 1622815258.1100082-CDS-P-fluviatile_contig1:36812..37121 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 36813..37121 + |
| 1693561233.7112-CDS-P-fluviatile_contig1:36812..37121 | 1693561233.7112-CDS-P-fluviatile_contig1:36812..37121 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 36813..37121 + |
The following polypeptide feature(s) derives from this mRNA:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig1.3.1 >prot_P-fluviatile_contig1.3.1 ID=prot_P-fluviatile_contig1.3.1|Name=mRNA_P-fluviatile_contig1.3.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=1119bp
MASVALDPAADAVGGVHKLAGSHANTTAGPGANRQERRRGDDTAEAINGA QAPGPVAGPVAVAVVGPAGARLAELCKEDKAKVARLMQDLVKLRAERDGQ KARFERLRGQNDVIVKEMAALKVKFGQSVQLLRKYQSIIQAGLPASGGAV GVDGVNGSHSWPVESVAARAAAAAAAATAENQSLREALRAAEKASRESNA EAAAEQAGRAAMAEELRAAKKQADDLRRHLDSHRMAAAASSATARKATRH GGRLDPPSDGAVGATGIPFGGTTAPSTITPSASAAVRMNPAAADTALWEA FLRAAGRDQAGQPEPDPDVHIRGVDGGSEASAATATDAAAASAAAVSPAD CAATSSSSASEQQLPEEGVGRGGLASSTELAALKEQVETLKQQLVMVGVQ QLALTGIPTGAALLKWHEGPFPFRDPPPPSTNPSTVDVNPSTGGQQVQKG GGGGGTAVNTGSALSCLPAQQDRGGSVELLAQQHQLRHHHHQQKRTLEKE QEQFLERNHEPRGASRGKEGDGGTRDEQAEASGRMFAGPNTRNRHRGGSE TNSGVVRIGETVREESHAGPGEEVAHVDTTTDDEEAVGWWLRSADKLLLV PGDSVGLLGREECSGGSSKSGHFGQSGATSEAHVKYTAADSEGCGQGLLS DKANRHDDAESVDIYGNSTRPEAAAAESGAPRLRVSWSSISVRSSESGLG PELASASIFSNGSSRKNGDGMSSQRRDSDAPGVVRAGPRPRDPRRHQEPQ PGRLDGSCDGASPSSFSSFRASSSVFGQRTGGSVAGSSQVGVGINRGVLS TGRRHRSGAAVPGGGSGGDGARRASTTCEKHHSQSKSSPMTPMPLPRQCL GHRAPIAGVGTTIALQAAGSSGKAVATASKSRRAPSHRRFATTVEFSRES GGDGGGGGSARGSSPSSSSSSSVRQAGVENGWQAATRPERARHGPQSASA AQATRVAPGVSKRDEGWVWRGPPENGRDRRQGATAASDGDPSEVLPMLGG DDFFDGSLLDLIDDLEEEDRGTMAAEGSARSAADTTQETAEVEEEAAQLR RRGEAARSGTGSRRGSAEDGRRIRDGGRWGPMRGETFFDWSSSPSRVSLS SGNGGLGRSLTERAKGDY* back to topmRNA from alignment at P-fluviatile_contig1:31607..37796+ Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig1.3.1 ID=mRNA_P-fluviatile_contig1.3.1|Name=mRNA_P-fluviatile_contig1.3.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=6190bp|location=Sequence derived from alignment at P-fluviatile_contig1:31607..37796+ (Porterinema fluviatile SAG_2381) GGAAAGGGCCGGGGACGACTCTGGCGGAGACGACGCCGAGTCGTTGCTAG
TGCGCCTCGCCGGGAAGGCCAAGCGCGCGGCGGCCGCTGTGCTGTCGGCG
TCGGCAGCATCATCGGGCGCGATTTCGCCGCCGCTCGTCTCGCCGCCGCG
GCAGAATGGGAGGGACGGTGCTCGACCGGGAACGGCGGGATCCAAACCGG
CAGCCGTGCATCGGATGGCAAGCGTTGCGCTGGATCCTGCCGCCGACGCT
GTTGGCGGTGTACACAAGCTGGCTGGAAGCCACGCCAACACCACCGCCGG
GCCTGGAGCAAACAGACAGGAAAGGCGACGCGGCGACGACACCGCCGAAG
CGATCAACGGCGCACAAGCTCCAGGGCCGGTGGCAGGGCCGGTGGCAGTG
GCAGTGGTCGGACCCGCGGGCGCGAGGCTTGCGGAGCTGTGCAAGGAGGA
CAAGGCAAAGGTGGCTCGCCTGATGCAGGACCTGGTGAAGCTGAGGGCCG
AGAGGGACGGGCAGAAGGCTCGCTTCGAGCGGCTGCGGGGACAGAACGAC
GTCATCGTGAAGGAGATGGCCGCGCTGAAGGTCAAGTTTGGCCAAAGCGT
GCAGCTCCTCAGAAAATACCAGGTCAGTTGCCGTTGTTGTTATTGTTGTT
GTTGTGGTCGTCGTCGTCGTCGTCGTCGTCGTCGTCGTCGTCGTCGTCGC
CGTTGGTGTTGGTGTTGGTGTTGTGGTCGTCGTCATCGTCGTCGTCCTTG
ACGTGGTCGTTGTTGCTGTGACCGCTGTCGCTGATGCGGCTGTGTCCGCT
TGGACTTCATTGGCGATGCTGCCGGCAGTCTCTTTGCCTTTTTTTGTCCG
CCATTTCGCCGGCGAGGGATACTCGCTCGACGTCGCGGACCTTGTCGGAG
GATAATTTGCTTGTGAACAACTTCATGTTCCCGGGTCTAGAAGGCTGGCA
GTGAATAATTGCAGTCGGAGTCGTTGCTCCTGGTGTCTGCCCGTTGCGCA
GCACCAGGTACCTCGCTCGATTGGAACAACACTCTGCCCTCTTCGCTCTG
TCACGAATGGGGTGCTTAAGCCACCTGACCTATCGAAAAAACAAGTTGCT
TGCTGTGCATTGTGCCGCGCCCCCCACACTCGCCCGCAATACTTCAGAGC
ATTATCCAAGCCGGGCTACCAGCTTCTGGTGGAGCAGTGGGCGTGGACGG
TGTAAATGGTTCTCATTCATGGCCTGTGGAAAGCGTGGCGGCAAGGGCAG
CCGCGGCGGCGGCGGCGGCGACGGCGGAGAACCAGTCCCTCCGCGAGGCT
CTCAGAGCGGCAGAGAAGGTGAATGGGCGGGTAGTGTAGGCTGAATCATT
TTCCATTTTCGCGCGAGCGGGACGCCAGCTCTTGAGCATTCGCTCCATGG
GCCTTAGAGTTACTCTGTTGCTGGTCCGAGAATTGACGTCGAAGTCGATG
AAGGTGTTCAGTTAATGTCGAACATTATCTGTCAGCCAGCCAGCTCCGCC
CGGCAACTTCGGCAAGAAAACTGTGAAGGTCTGAATTCGAAGTCTGACTT
GCCGGGGCTCAGAGTTCGGGCGAGACTTTCCCCTACTCGGTGTACCGTAA
ACGTGCCAATACGCTCCCACCTCTGCTTCCGCGCGCCTTTCCCGCATATT
GGCTGGCCGCATCGGATTTCCCTGAAGGCTTCGCGCGAATCAAACGCGGA
AGCGGCGGCGGAACAGGCTGGACGTGCTGCAATGGCTGAGGAGCTCCGGG
CGGCAAAGAAGCAGGCAGATGTGAGCATCCACCCTCTGTACTCACGAAGA
CCCGGGGTGTTGTACTTGTCGTCGCTGTTGCCTCTTCGTGGCTGGACTGC
CTGTGCGTCTTCTTTAGGCATCTTGGATTGTCTGATTTCGTCGGACACGA
TTTCACACGTAGTTGAGCTCGGGCATCATTCGTAGCACTCTTCGAGCTCG
ACGGCTTCACCTTCGCCGCGGGGGTAAAAATCGAATCTGCTGCGATACCA
TTCCTTTTGTCCAGCCGAGAGCCCCAAGAGAGCCCCCGACGTTAGCTTCC
ACCGTTGCGCGCCCTCTTACATCTGCCTGCGGTTCTACTGTGTGCTTGGT
AGGACCTGAGGCGCCACCTCGACTCTCATCGAATGGCGGCGGCAGCGAGC
TCCGCGACTGCGAGGAAAGCGACTCGCCACGGCGGCCGTCTCGATCCACC
CAGTGACGGAGCCGTCGGTGCGACGGGGATTCCCTTCGGCGGCACAACGG
CGCCGAGTACCATTACTCCATCAGCGTCAGCCGCGGTCCGAATGAATCCC
GCCGCGGCTGATACCGCTCTGTGGGAGGCTTTCCTGAGGGCGGCCGGCCG
GGACCAGGCAGGGCAGCCAGAGCCAGACCCGGATGTGCATATTCGCGGCG
TCGATGGAGGCAGCGAAGCCTCTGCTGCTACCGCCACCGACGCCGCTGCC
GCTTCCGCTGCCGCCGTAAGCCCTGCCGATTGTGCCGCTACAAGTTCCAG
TTCGGCGTCCGAGCAGCAGCTGCCGGAGGAAGGGGTCGGGCGTGGGGGTT
TGGCGTCCAGCACTGAGCTCGCCGCCTTGAAGGAGCAGGTGTGGTGGGCT
GAACGGTTTGGCGGCGTGGGCAACAAGTTCGTCGTGCGAGATGAACTGCC
TCATGTTTCTGGTTTGCAATGCTGCGATACTGCCTATGGGTCGTCTCGCG
GATATTTGATTCCCCCAACCGTTCCCACTGCCACACGCTGCCCCCTACGT
ACCAGGTGGAAACGCTCAAGCAGCAGCTGGTTATGGTCGGAGTGCAGCAG
TTGGCGCTCACCGGTATCCCCACGGGGGCCGCCCTTCTAAAGTGGCACGA
AGGGCCATTCCCCTTCCGAGATCCGCCCCCCCCTTCGACGAACCCTTCCA
CCGTGGATGTCAACCCTTCGACCGGAGGCCAGCAAGTCCAAAAAGGTGGT
GGGGGCGGCGGCACGGCAGTCAACACGGGCTCTGCGTTGTCCTGTTTGCC
GGCGCAGCAGGACAGAGGCGGCTCTGTGGAGCTACTCGCGCAGCAGCACC
AACTGCGGCATCACCATCATCAGCAGAAGCGGACGCTGGAGAAGGAGCAG
GAGCAGTTTCTAGAGAGAAATCATGAGCCTCGAGGGGCCTCGCGAGGGAA
GGAAGGGGATGGCGGTACGCGTGATGAGCAAGCGGAAGCCTCGGGGCGGA
TGTTCGCTGGCCCGAACACAAGGAATAGACATCGAGGGGGGAGCGAGACA
AATAGTGGGGTTGTGCGGATAGGTGAGACGGTACGCGAGGAGAGCCACGC
TGGGCCGGGGGAAGAGGTCGCGCACGTCGATACAACCACCGACGACGAGG
AAGCCGTTGGCTGGTGGTTGCGGTCGGCCGATAAGCTACTGCTTGTCCCA
GGAGATTCGGTTGGATTGCTCGGGCGAGAGGAGTGCAGCGGCGGTAGCAG
CAAGAGCGGCCACTTTGGCCAAAGCGGCGCCACAAGCGAGGCACACGTAA
AATACACTGCTGCCGATAGCGAGGGCTGCGGCCAAGGGCTTCTTTCGGAC
AAGGCAAATCGGCACGATGATGCCGAAAGTGTAGATATTTACGGCAATTC
GACGAGACCGGAAGCGGCGGCAGCTGAATCGGGGGCGCCCAGGCTTCGGG
TAAGCTGGAGTTCCATCAGCGTCCGGTCCTCGGAGAGTGGGTTGGGGCCC
GAGCTCGCTTCAGCAAGCATCTTTAGCAACGGCAGCAGTCGTAAGAATGG
GGACGGTATGTCCAGCCAGCGGCGGGACAGCGATGCTCCAGGCGTCGTGC
GGGCAGGACCAAGACCGCGGGATCCGCGGCGGCACCAAGAGCCGCAGCCG
GGGCGACTCGACGGCTCGTGCGACGGGGCATCCCCGTCCTCGTTCTCGTC
GTTCAGAGCGTCCTCATCTGTCTTCGGCCAGCGGACCGGGGGAAGCGTGG
CCGGGAGCAGTCAGGTGGGCGTAGGCATTAACCGTGGCGTGCTTTCGACC
GGGCGCCGTCATCGCAGCGGAGCGGCGGTACCGGGTGGTGGAAGCGGTGG
CGACGGCGCACGTCGGGCATCCACCACCTGCGAAAAGCACCATTCGCAGT
CAAAATCGAGTCCGATGACTCCTATGCCTCTACCTCGCCAATGTTTGGGG
CATCGTGCCCCGATCGCCGGCGTGGGGACGACAATCGCACTCCAGGCAGC
GGGAAGCAGCGGAAAAGCTGTTGCCACGGCCTCAAAGTCTAGGAGAGCGC
CATCCCACCGCCGGTTTGCTACCACCGTTGAGTTTTCGCGAGAGAGCGGC
GGCGACGGCGGCGGCGGTGGTTCTGCGCGGGGCTCGTCGCCTTCCTCGTC
GTCTTCGTCGTCCGTTCGGCAGGCAGGTGTGGAAAACGGATGGCAGGCAG
CCACCAGGCCTGAGAGAGCAAGGCATGGCCCGCAAAGTGCATCAGCAGCT
CAGGCGACGAGGGTAGCGCCGGGCGTTAGCAAGAGGGACGAAGGGTGGGT
CTGGCGCGGGCCGCCGGAAAATGGGCGGGATCGCCGGCAGGGGGCGACAG
CAGCGTCTGATGGAGATCCCAGTGAGGTACGCGGGAGGAAAACGGGGCTA
TAAGCTGCAACACTCAAGCTAGTAAATTGGTGATTGCGATCGTCCCTTAT
GATGCTTAGAAGGTGTGGGAAGCGATCCACTTCACTTCTTATGGCGAAAG
CAGACCCTAGTTCGGGTAACAAACGGTGCGTGGACATAGCGCGAGACGTT
CAGTCGGGTGCCGGCGCTCTGTAGCTTGAGGGTCAACTGTAGGAGTGCCT
GTGATACAAAATGGCTACCCTTTCTCGCCGGTTTACCTCCTGCTCGATTT
TGTTTTTTCGATGCCATGGGCACCAGGTACTGCCAATGCTTGGGGGAGAC
GACTTTTTCGACGGCTCTCTCCTAGACTTGATCGATGACCTCGAGGTAAG
GACAACTTGGTCAAAATTTTGGCCCCGTCCCCGTCGTTCTCGCAGAAACG
CTTTAAATCTTGTTGAAGGTTGTATTTTGATAAGACGCACTGCGAAACGC
GCGTGCGCAGCTTTAGGTGAGAAGTGCTGTATCGGTTCTTTTCGTTTGGC
CTCATTTTTGGTGGGAATCTGACTGATAGGTCGTTGGATTATCCCCCAAG
ATTCACGACATTTCCCTTGCAATCTGCCGCTGACCTTCCTTCGGTGAATA
ATGGAGGAAGAAGACAGGGGCACCATGGCAGCCGAAGGATCAGCACGTTC
AGCCGCTGACACCACACAAGAAACGGCAGAAGTAGAAGAAGAAGCGGCGC
AACTAAGACGTCGCGGCGAGGCAGCCCGCAGCGGTACTGGTAGCCGACGG
GGATCGGCGGAAGACGGACGTAGGATACGCGATGGTGGTCGATGGGGACC
AATGCGCGGGGAAACTTTTTTTGATTGGTCATCATCGCCATCACGTGTCT
CATTGTCTTCGGGAAACGGAGGTCTAGGGAGAAGTCTGACGGAGAGAGCG
AAGGGCGACTACTGAACGGTGTGGCGTGTGGTCAGTTCTTGATGGTGTGT
AGAGCCCCCGGGTTCCGCAGCCTTTGGGCCAAAAATGATGGTGGAATCTG
CATGGCGAGAATGACATCTCTGGCGTTGGCGCACGAGCGTTGCAAAATAG
ATGAGTACGAAGTTTCCACCAAGCACGCTCCGCGTCGTTTCGTTACCTGA
CAGTGTTGAACACCGGCGGGAAGATAGCCGCCAACCTCGCGGCAAGAAGA
TTGACGAACCCTCGTTTCGGCAGAAAAGAGATTGACCGTTGCTGGGGCTG
CCTCCAACCCCCGGTTTGTTTGCTTATGTTTTCCTCTAGAAATACAAAGA
CGGGGCGGAGATAGAAAGAACGAGATTGAATTGTTTCTCGACGCCGTCGG
ATACGAAGTCTGAGAAGGGTACGGATGGCATATCAAAACTGTTGTGTCGG
GCTGCGGCAGAGGGAGAGCGCGTTCATGTTGGCTCAATATCTTGCCACAA
TATACACCCGTTGAAAATGCTTCAAAAAACAGCTGGGACCCGCAAAATGT
TGTTTGTGGAAATGGGGGGTTGAAACCCCGGAGGCCCACCGTGTTTTGGT
GGGTGCAGGTGCTTTGTCCAATTGCGTTTTCTTTCTGTATCTTGCGAAAC
GATGGGCGTACAGTTCGTTTCACCGATCCATGCAACCGGC back to topCoding sequence (CDS) from alignment at P-fluviatile_contig1:31607..37796+ >mRNA_P-fluviatile_contig1.3.1 ID=mRNA_P-fluviatile_contig1.3.1|Name=mRNA_P-fluviatile_contig1.3.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=6714bp|location=Sequence derived from alignment at P-fluviatile_contig1:31607..37796+ (Porterinema fluviatile SAG_2381) ATGGCAAGCGTTGCGCTGGATCCTGCCGCCGACGCTGTTGGCGGTGTACA CAAGCTGGCTGGAAGCCACGCCAACACCACCGCCGGGCCTGGAGCAAACA GACAGGAAAGGCGACGCGGCGACGACACCGCCGAAGCGATCAACGGCGCA CAAGCTCCAGGGCCGGTGGCAGGGCCGGTGGCAGTGGCAGTGGTCGGACC CGCGGGCGCGAGGCTTGCGGAGCTGTGCAAGGAGGACAAGGCAAAGGTGG CTCGCCTGATGCAGGACCTGGTGAAGCTGAGGGCCGAGAGGGACGGGCAG AAGGCTCGCTTCGAGCGGCTGCGGGGACAGAACGACGTCATCGTGAAGGA GATGGCCGCGCTGAAGGTCAAGTTTGGCCAAAGCGTGCAGCTCCTCAGAA AATACCAGATGGCAAGCGTTGCGCTGGATCCTGCCGCCGACGCTGTTGGC GGTGTACACAAGCTGGCTGGAAGCCACGCCAACACCACCGCCGGGCCTGG AGCAAACAGACAGGAAAGGCGACGCGGCGACGACACCGCCGAAGCGATCA ACGGCGCACAAGCTCCAGGGCCGGTGGCAGGGCCGGTGGCAGTGGCAGTG GTCGGACCCGCGGGCGCGAGGCTTGCGGAGCTGTGCAAGGAGGACAAGGC AAAGGTGGCTCGCCTGATGCAGGACCTGGTGAAGCTGAGGGCCGAGAGGG ACGGGCAGAAGGCTCGCTTCGAGCGGCTGCGGGGACAGAACGACGTCATC GTGAAGGAGATGGCCGCGCTGAAGGTCAAGTTTGGCCAAAGCGTGCAGCT CCTCAGAAAATACCAGAGCATTATCCAAGCCGGGCTACCAGCTTCTGGTG GAGCAGTGGGCGTGGACGGTGTAAATGGTTCTCATTCATGGCCTGTGGAA AGCGTGGCGGCAAGGGCAGCCGCGGCGGCGGCGGCGGCGACGGCGGAGAA CCAGTCCCTCCGCGAGGCTCTCAGAGCGGCAGAGAAGAGCATTATCCAAG CCGGGCTACCAGCTTCTGGTGGAGCAGTGGGCGTGGACGGTGTAAATGGT TCTCATTCATGGCCTGTGGAAAGCGTGGCGGCAAGGGCAGCCGCGGCGGC GGCGGCGGCGACGGCGGAGAACCAGTCCCTCCGCGAGGCTCTCAGAGCGG CAGAGAAGGCTTCGCGCGAATCAAACGCGGAAGCGGCGGCGGAACAGGCT GGACGTGCTGCAATGGCTGAGGAGCTCCGGGCGGCAAAGAAGCAGGCAGA TGCTTCGCGCGAATCAAACGCGGAAGCGGCGGCGGAACAGGCTGGACGTG CTGCAATGGCTGAGGAGCTCCGGGCGGCAAAGAAGCAGGCAGATGACCTG AGGCGCCACCTCGACTCTCATCGAATGGCGGCGGCAGCGAGCTCCGCGAC TGCGAGGAAAGCGACTCGCCACGGCGGCCGTCTCGATCCACCCAGTGACG GAGCCGTCGGTGCGACGGGGATTCCCTTCGGCGGCACAACGGCGCCGAGT ACCATTACTCCATCAGCGTCAGCCGCGGTCCGAATGAATCCCGCCGCGGC TGATACCGCTCTGTGGGAGGCTTTCCTGAGGGCGGCCGGCCGGGACCAGG CAGGGCAGCCAGAGCCAGACCCGGATGTGCATATTCGCGGCGTCGATGGA GGCAGCGAAGCCTCTGCTGCTACCGCCACCGACGCCGCTGCCGCTTCCGC TGCCGCCGTAAGCCCTGCCGATTGTGCCGCTACAAGTTCCAGTTCGGCGT CCGAGCAGCAGCTGCCGGAGGAAGGGGTCGGGCGTGGGGGTTTGGCGTCC AGCACTGAGCTCGCCGCCTTGAAGGAGCAGGACCTGAGGCGCCACCTCGA CTCTCATCGAATGGCGGCGGCAGCGAGCTCCGCGACTGCGAGGAAAGCGA CTCGCCACGGCGGCCGTCTCGATCCACCCAGTGACGGAGCCGTCGGTGCG ACGGGGATTCCCTTCGGCGGCACAACGGCGCCGAGTACCATTACTCCATC AGCGTCAGCCGCGGTCCGAATGAATCCCGCCGCGGCTGATACCGCTCTGT GGGAGGCTTTCCTGAGGGCGGCCGGCCGGGACCAGGCAGGGCAGCCAGAG CCAGACCCGGATGTGCATATTCGCGGCGTCGATGGAGGCAGCGAAGCCTC TGCTGCTACCGCCACCGACGCCGCTGCCGCTTCCGCTGCCGCCGTAAGCC CTGCCGATTGTGCCGCTACAAGTTCCAGTTCGGCGTCCGAGCAGCAGCTG CCGGAGGAAGGGGTCGGGCGTGGGGGTTTGGCGTCCAGCACTGAGCTCGC CGCCTTGAAGGAGCAGGTGGAAACGCTCAAGCAGCAGCTGGTTATGGTCG GAGTGCAGCAGTTGGCGCTCACCGGTATCCCCACGGGGGCCGCCCTTCTA AAGTGGCACGAAGGGCCATTCCCCTTCCGAGATCCGCCCCCCCCTTCGAC GAACCCTTCCACCGTGGATGTCAACCCTTCGACCGGAGGCCAGCAAGTCC AAAAAGGTGGTGGGGGCGGCGGCACGGCAGTCAACACGGGCTCTGCGTTG TCCTGTTTGCCGGCGCAGCAGGACAGAGGCGGCTCTGTGGAGCTACTCGC GCAGCAGCACCAACTGCGGCATCACCATCATCAGCAGAAGCGGACGCTGG AGAAGGAGCAGGAGCAGTTTCTAGAGAGAAATCATGAGCCTCGAGGGGCC TCGCGAGGGAAGGAAGGGGATGGCGGTACGCGTGATGAGCAAGCGGAAGC CTCGGGGCGGATGTTCGCTGGCCCGAACACAAGGAATAGACATCGAGGGG GGAGCGAGACAAATAGTGGGGTTGTGCGGATAGGTGAGACGGTACGCGAG GAGAGCCACGCTGGGCCGGGGGAAGAGGTCGCGCACGTCGATACAACCAC CGACGACGAGGAAGCCGTTGGCTGGTGGTTGCGGTCGGCCGATAAGCTAC TGCTTGTCCCAGGAGATTCGGTTGGATTGCTCGGGCGAGAGGAGTGCAGC GGCGGTAGCAGCAAGAGCGGCCACTTTGGCCAAAGCGGCGCCACAAGCGA GGCACACGTAAAATACACTGCTGCCGATAGCGAGGGCTGCGGCCAAGGGC TTCTTTCGGACAAGGCAAATCGGCACGATGATGCCGAAAGTGTAGATATT TACGGCAATTCGACGAGACCGGAAGCGGCGGCAGCTGAATCGGGGGCGCC CAGGCTTCGGGTAAGCTGGAGTTCCATCAGCGTCCGGTCCTCGGAGAGTG GGTTGGGGCCCGAGCTCGCTTCAGCAAGCATCTTTAGCAACGGCAGCAGT CGTAAGAATGGGGACGGTATGTCCAGCCAGCGGCGGGACAGCGATGCTCC AGGCGTCGTGCGGGCAGGACCAAGACCGCGGGATCCGCGGCGGCACCAAG AGCCGCAGCCGGGGCGACTCGACGGCTCGTGCGACGGGGCATCCCCGTCC TCGTTCTCGTCGTTCAGAGCGTCCTCATCTGTCTTCGGCCAGCGGACCGG GGGAAGCGTGGCCGGGAGCAGTCAGGTGGGCGTAGGCATTAACCGTGGCG TGCTTTCGACCGGGCGCCGTCATCGCAGCGGAGCGGCGGTACCGGGTGGT GGAAGCGGTGGCGACGGCGCACGTCGGGCATCCACCACCTGCGAAAAGCA CCATTCGCAGTCAAAATCGAGTCCGATGACTCCTATGCCTCTACCTCGCC AATGTTTGGGGCATCGTGCCCCGATCGCCGGCGTGGGGACGACAATCGCA CTCCAGGCAGCGGGAAGCAGCGGAAAAGCTGTTGCCACGGCCTCAAAGTC TAGGAGAGCGCCATCCCACCGCCGGTTTGCTACCACCGTTGAGTTTTCGC GAGAGAGCGGCGGCGACGGCGGCGGCGGTGGTTCTGCGCGGGGCTCGTCG CCTTCCTCGTCGTCTTCGTCGTCCGTTCGGCAGGCAGGTGTGGAAAACGG ATGGCAGGCAGCCACCAGGCCTGAGAGAGCAAGGCATGGCCCGCAAAGTG CATCAGCAGCTCAGGCGACGAGGGTAGCGCCGGGCGTTAGCAAGAGGGAC GAAGGGTGGGTCTGGCGCGGGCCGCCGGAAAATGGGCGGGATCGCCGGCA GGGGGCGACAGCAGCGTCTGATGGAGATCCCAGTGAGGTGGAAACGCTCA AGCAGCAGCTGGTTATGGTCGGAGTGCAGCAGTTGGCGCTCACCGGTATC CCCACGGGGGCCGCCCTTCTAAAGTGGCACGAAGGGCCATTCCCCTTCCG AGATCCGCCCCCCCCTTCGACGAACCCTTCCACCGTGGATGTCAACCCTT CGACCGGAGGCCAGCAAGTCCAAAAAGGTGGTGGGGGCGGCGGCACGGCA GTCAACACGGGCTCTGCGTTGTCCTGTTTGCCGGCGCAGCAGGACAGAGG CGGCTCTGTGGAGCTACTCGCGCAGCAGCACCAACTGCGGCATCACCATC ATCAGCAGAAGCGGACGCTGGAGAAGGAGCAGGAGCAGTTTCTAGAGAGA AATCATGAGCCTCGAGGGGCCTCGCGAGGGAAGGAAGGGGATGGCGGTAC GCGTGATGAGCAAGCGGAAGCCTCGGGGCGGATGTTCGCTGGCCCGAACA CAAGGAATAGACATCGAGGGGGGAGCGAGACAAATAGTGGGGTTGTGCGG ATAGGTGAGACGGTACGCGAGGAGAGCCACGCTGGGCCGGGGGAAGAGGT CGCGCACGTCGATACAACCACCGACGACGAGGAAGCCGTTGGCTGGTGGT TGCGGTCGGCCGATAAGCTACTGCTTGTCCCAGGAGATTCGGTTGGATTG CTCGGGCGAGAGGAGTGCAGCGGCGGTAGCAGCAAGAGCGGCCACTTTGG CCAAAGCGGCGCCACAAGCGAGGCACACGTAAAATACACTGCTGCCGATA GCGAGGGCTGCGGCCAAGGGCTTCTTTCGGACAAGGCAAATCGGCACGAT GATGCCGAAAGTGTAGATATTTACGGCAATTCGACGAGACCGGAAGCGGC GGCAGCTGAATCGGGGGCGCCCAGGCTTCGGGTAAGCTGGAGTTCCATCA GCGTCCGGTCCTCGGAGAGTGGGTTGGGGCCCGAGCTCGCTTCAGCAAGC ATCTTTAGCAACGGCAGCAGTCGTAAGAATGGGGACGGTATGTCCAGCCA GCGGCGGGACAGCGATGCTCCAGGCGTCGTGCGGGCAGGACCAAGACCGC GGGATCCGCGGCGGCACCAAGAGCCGCAGCCGGGGCGACTCGACGGCTCG TGCGACGGGGCATCCCCGTCCTCGTTCTCGTCGTTCAGAGCGTCCTCATC TGTCTTCGGCCAGCGGACCGGGGGAAGCGTGGCCGGGAGCAGTCAGGTGG GCGTAGGCATTAACCGTGGCGTGCTTTCGACCGGGCGCCGTCATCGCAGC GGAGCGGCGGTACCGGGTGGTGGAAGCGGTGGCGACGGCGCACGTCGGGC ATCCACCACCTGCGAAAAGCACCATTCGCAGTCAAAATCGAGTCCGATGA CTCCTATGCCTCTACCTCGCCAATGTTTGGGGCATCGTGCCCCGATCGCC GGCGTGGGGACGACAATCGCACTCCAGGCAGCGGGAAGCAGCGGAAAAGC TGTTGCCACGGCCTCAAAGTCTAGGAGAGCGCCATCCCACCGCCGGTTTG CTACCACCGTTGAGTTTTCGCGAGAGAGCGGCGGCGACGGCGGCGGCGGT GGTTCTGCGCGGGGCTCGTCGCCTTCCTCGTCGTCTTCGTCGTCCGTTCG GCAGGCAGGTGTGGAAAACGGATGGCAGGCAGCCACCAGGCCTGAGAGAG CAAGGCATGGCCCGCAAAGTGCATCAGCAGCTCAGGCGACGAGGGTAGCG CCGGGCGTTAGCAAGAGGGACGAAGGGTGGGTCTGGCGCGGGCCGCCGGA AAATGGGCGGGATCGCCGGCAGGGGGCGACAGCAGCGTCTGATGGAGATC CCAGTGAGGTACTGCCAATGCTTGGGGGAGACGACTTTTTCGACGGCTCT CTCCTAGACTTGATCGATGACCTCGAGGTACTGCCAATGCTTGGGGGAGA CGACTTTTTCGACGGCTCTCTCCTAGACTTGATCGATGACCTCGAGGAAG AAGACAGGGGCACCATGGCAGCCGAAGGATCAGCACGTTCAGCCGCTGAC ACCACACAAGAAACGGCAGAAGTAGAAGAAGAAGCGGCGCAACTAAGACG TCGCGGCGAGGCAGCCCGCAGCGGTACTGGTAGCCGACGGGGATCGGCGG AAGACGGACGTAGGATACGCGATGGTGGTCGATGGGGACCAATGCGCGGG GAAACTTTTTTTGATTGGTCATCATCGCCATCACGTGTCTCATTGTCTTC GGGAAACGGAGGTCTAGGGAGAAGTCTGACGGAGAGAGCGAAGGGCGACT ACTGAGAAGAAGACAGGGGCACCATGGCAGCCGAAGGATCAGCACGTTCA GCCGCTGACACCACACAAGAAACGGCAGAAGTAGAAGAAGAAGCGGCGCA ACTAAGACGTCGCGGCGAGGCAGCCCGCAGCGGTACTGGTAGCCGACGGG GATCGGCGGAAGACGGACGTAGGATACGCGATGGTGGTCGATGGGGACCA ATGCGCGGGGAAACTTTTTTTGATTGGTCATCATCGCCATCACGTGTCTC ATTGTCTTCGGGAAACGGAGGTCTAGGGAGAAGTCTGACGGAGAGAGCGA AGGGCGACTACTGA back to top
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