Homology
BLAST of mRNA_P-fluviatile_contig1.149.1 vs. uniprot
Match:
A0A6H5JXK0_9PHAE (RING-type domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JXK0_9PHAE)
HSP 1 Score: 241 bits (616), Expect = 5.390e-66
Identity = 172/390 (44.10%), Postives = 199/390 (51.03%), Query Frame = 3
Query: 24 ILVVMGMVVVFGLIFATTRRLCRDPDILQAEADLDRQQALAEAVLRQMNTHELVALASGRLGSGVLLARGGRGGRPAFHRTSSGALQVDQAAGGVSEETRMSFVKLSAGRGGRAPSHEAATFAIPRPPXXXXXXXXXXPLSAHLASSPEPGDERKGHQVTDNSXXXXXXXDRRGDWSPPGGTMSPGGAGCGGRHPHPSARKASMISSMTSSRSSKRFFLAGYAEGAPGSETPAAAVVDGAAPAATG-----------------------------------------LYSDNSCSVCLDDYEEGDQLLQLTCGHVFHRACIDQWLKGHNVCPCCRTDLDKLAQIVQLFPQTSRRVIQRALARAEGNLPLAVEILLARPRSLAAAGSAGAG 1070
IL+++GM+ VFGLIFA TR LCRDPD+LQ E ++RQQALAEAV+RQM+THELVA+ASGR GSG L GRG R + Q +Q AG VS+ETRMSFVKLSAG+ G AP+H+ P P XXXX S +R R P +S S RSSKRFF+ G + G LYSDNSCSVCLDDYEEGD+LLQ+TCGHVFHRACID WL H VCPCCRTDLDKLAQ+VQLFPQ S+R +Q AL RA GN+ LAVEILL RP + AG G
Sbjct: 5 ILLLLGMIGVFGLIFAVTRTLCRDPDLLQPEGYMERQQALAEAVVRQMDTHELVAIASGRFGSGGGLLSRGRG------RATRRFQQAEQTAG-VSQETRMSFVKLSAGKRGHAPAHDVTA---PPPSTAVTRLXXXXXXXXXXXXXXXXXXXXXXXXXXXXSKSPTSYYERSNPLC---------------RKPSVGVGSSSPSLSSARPRSSKRFFIDGGSGGGXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXGXXXXXXXXXXXXXXLYSDNSCSVCLDDYEEGDELLQVTCGHVFHRACIDHWLMAHRVCPCCRTDLDKLAQVVQLFPQISKRSLQNALTRAGGNIVLAVEILLTRPGGDGSTPDAGIG 369
BLAST of mRNA_P-fluviatile_contig1.149.1 vs. uniprot
Match:
D7G9H7_ECTSI (RING-type domain-containing protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G9H7_ECTSI)
HSP 1 Score: 219 bits (558), Expect = 1.760e-58
Identity = 156/322 (48.45%), Postives = 179/322 (55.59%), Query Frame = 3
Query: 123 LDRQQALAEAVLRQMNTHELVALASGRLGSGVLLARGGRGGRPAFHRTSSGALQVDQAAGGVSEETRMSFVKLSAGRGGRAPSHEAATFAIPRPPXXXXXXXXXXPLSAHLASSPEPGDERKGHQVTDNSXXXXXXXDRRGDWSPPGGTMSP------GGAGCGGRHPHPSARKASMISSMTSSRSSKRFFLAGYAEGAPGSETPAAAVVDGAAPAATGLYSDNSCSVCLDDYEEGDQLLQLTCGHVFHRACIDQWLKGHNVCPCCRTDLDKLAQIVQLFPQTSRRVIQRALARAEGNLPLAVEILLARPRSLAAAGSAGAG 1070
++RQQALAEAV+RQM+THELVA+ASGR GSG L GRG R S Q +Q AG VS+ETRMSFVKLSAG+ G AP+H+ ++A XXXXX D G GG+ SP C R P +S S RSSKRFF A G+YSDNSCSVCLDDYEEGD+LLQ+TCGHVFHRACID WLK H VCPCCRTDLDKLAQ+VQLFPQ S+R +Q AL RAEGN+ LAVE LL RP + AG+G
Sbjct: 1 MERQQALAEAVVRQMDTHELVAIASGRFGSGGGLLSRGRG------RASRRFQQAEQTAG-VSQETRMSFVKLSAGKRGLAPAHD---------------------VTAPXXXXXXXXXXXXXXXXXXXXXXXXXAADCSGCAWAGGGSKSPTLYYERSNPLC--RKPCVGVGSSSPSLSSARPRSSKRFFXXXXXXXXXXXXXXXXXXXX---XATRGVYSDNSCSVCLDDYEEGDELLQVTCGHVFHRACIDHWLKAHRVCPCCRTDLDKLAQVVQLFPQISKRSLQNALTRAEGNIVLAVEFLLTRPGGDGSTPDAGSG 289
BLAST of mRNA_P-fluviatile_contig1.149.1 vs. uniprot
Match:
D2VEK0_NAEGR (RING-type domain-containing protein (Fragment) n=1 Tax=Naegleria gruberi TaxID=5762 RepID=D2VEK0_NAEGR)
HSP 1 Score: 75.5 bits (184), Expect = 1.990e-13
Identity = 28/52 (53.85%), Postives = 38/52 (73.08%), Query Frame = 3
Query: 759 GLYSDNSCSVCLDDYEEGDQLLQLTCGHVFHRACIDQWLKGHNVCPCCRTDL 914
G + D SC+VC+ D+EE D+L++L CGHVFH+ C+ WL HN CP CR +L
Sbjct: 2 GEHCDQSCAVCICDFEECDELIRLPCGHVFHKDCVSTWLNEHNTCPTCRYEL 53
BLAST of mRNA_P-fluviatile_contig1.149.1 vs. uniprot
Match:
A0A7I8JQX8_SPIIN (Hypothetical protein n=1 Tax=Spirodela intermedia TaxID=51605 RepID=A0A7I8JQX8_SPIIN)
HSP 1 Score: 70.9 bits (172), Expect = 7.370e-11
Identity = 26/53 (49.06%), Postives = 37/53 (69.81%), Query Frame = 3
Query: 747 PAATGLYSDNSCSVCLDDYEEGDQLLQLTCGHVFHRACIDQWLKGHNVCPCCR 905
P++T SD +C +C +DY+EG+ + L+CGH FH AC+ +WL NVCP CR
Sbjct: 79 PSSTAYASDETCCICQEDYDEGEDVGMLSCGHGFHAACVGRWLTQRNVCPICR 131
BLAST of mRNA_P-fluviatile_contig1.149.1 vs. uniprot
Match:
A0A7I8LIF4_SPIIN (Hypothetical protein n=2 Tax=Spirodela intermedia TaxID=51605 RepID=A0A7I8LIF4_SPIIN)
HSP 1 Score: 70.9 bits (172), Expect = 7.550e-11
Identity = 26/53 (49.06%), Postives = 37/53 (69.81%), Query Frame = 3
Query: 747 PAATGLYSDNSCSVCLDDYEEGDQLLQLTCGHVFHRACIDQWLKGHNVCPCCR 905
P++T SD +C +C +DY+EG+ + L+CGH FH AC+ +WL NVCP CR
Sbjct: 80 PSSTAYASDETCCICQEDYDEGEDVGMLSCGHGFHAACVGRWLTQRNVCPICR 132
BLAST of mRNA_P-fluviatile_contig1.149.1 vs. uniprot
Match:
A0A7S2BFF5_9DINO (Hypothetical protein n=1 Tax=Alexandrium andersonii TaxID=327968 RepID=A0A7S2BFF5_9DINO)
HSP 1 Score: 74.3 bits (181), Expect = 8.480e-11
Identity = 28/49 (57.14%), Postives = 37/49 (75.51%), Query Frame = 3
Query: 771 DNSCSVCLDDYEEGDQLLQLTCGHVFHRACIDQWLKGHNVCPCCRTDLD 917
+ SC+VCL ++E GD + QL CGH FHRACID+WLK + VCP C D++
Sbjct: 230 ETSCAVCLSEFERGDMMRQLPCGHNFHRACIDKWLKRNKVCPLCLQDIE 278
BLAST of mRNA_P-fluviatile_contig1.149.1 vs. uniprot
Match:
T1EHN1_HELRO (RING-type domain-containing protein n=1 Tax=Helobdella robusta TaxID=6412 RepID=T1EHN1_HELRO)
HSP 1 Score: 67.4 bits (163), Expect = 1.360e-10
Identity = 24/48 (50.00%), Postives = 34/48 (70.83%), Query Frame = 3
Query: 765 YSDNSCSVCLDDYEEGDQLLQLTCGHVFHRACIDQWLKGHNVCPCCRT 908
++DNSC++C+D +EEG + +L C HVFH CI +W K + CP CRT
Sbjct: 3 FTDNSCAICMDPFEEGSFVRELHCAHVFHHQCIGEWFKENASCPICRT 50
BLAST of mRNA_P-fluviatile_contig1.149.1 vs. uniprot
Match:
A0A7I8LKQ4_SPIIN (Hypothetical protein n=1 Tax=Spirodela intermedia TaxID=51605 RepID=A0A7I8LKQ4_SPIIN)
HSP 1 Score: 67.8 bits (164), Expect = 1.520e-10
Identity = 24/50 (48.00%), Postives = 34/50 (68.00%), Query Frame = 3
Query: 756 TGLYSDNSCSVCLDDYEEGDQLLQLTCGHVFHRACIDQWLKGHNVCPCCR 905
T +D +C +C +DY+EG+ + L+CGH FH AC+ +WL NVCP CR
Sbjct: 16 TAYANDETCRICQEDYDEGEDIGMLSCGHAFHVACVGRWLTQRNVCPICR 65
BLAST of mRNA_P-fluviatile_contig1.149.1 vs. uniprot
Match:
A0A1Q3C140_CEPFO (Zf-RING_2 domain-containing protein n=1 Tax=Cephalotus follicularis TaxID=3775 RepID=A0A1Q3C140_CEPFO)
HSP 1 Score: 68.9 bits (167), Expect = 2.130e-10
Identity = 30/60 (50.00%), Postives = 39/60 (65.00%), Query Frame = 3
Query: 777 SCSVCLDDYEEGDQLLQLTCGHVFHRACIDQWLKGHNVCPCCRTDLDKLAQIVQLFPQTS 956
SCS+C +DYEE D+L L CGH FH ACI+QWL+ N+CP C++ + FPQ S
Sbjct: 60 SCSICQEDYEEEDELGTLDCGHSFHIACIEQWLRCKNICPICKSTGLCTRLGIASFPQFS 119
BLAST of mRNA_P-fluviatile_contig1.149.1 vs. uniprot
Match:
A0A7S1QQM9_ALECA (Hypothetical protein n=1 Tax=Alexandrium catenella TaxID=2925 RepID=A0A7S1QQM9_ALECA)
HSP 1 Score: 68.2 bits (165), Expect = 2.270e-10
Identity = 23/43 (53.49%), Postives = 34/43 (79.07%), Query Frame = 3
Query: 777 SCSVCLDDYEEGDQLLQLTCGHVFHRACIDQWLKGHNVCPCCR 905
+C +C++D+EEGD+L L C H+FH C+DQWLK +++CP CR
Sbjct: 53 NCQICMEDFEEGDELRTLPCFHLFHSKCVDQWLKVNSICPTCR 95
The following BLAST results are available for this feature:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig1.149.1
>prot_P-fluviatile_contig1.149.1 ID=prot_P-fluviatile_contig1.149.1|Name=mRNA_P-fluviatile_contig1.149.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=714bp
MEGSQILVVMGMVVVFGLIFATTRRLCRDPDILQAEADLDRQQALAEAVL
RQMNTHELVALASGRLGSGVLLARGGRGGRPAFHRTSSGALQVDQAAGGV
SEETRMSFVKLSAGRGGRAPSHEAATFAIPRPPPLPLPLPLPPPLSAHLA
SSPEPGDERKGHQVTDNSSSSGGGGDRRGDWSPPGGTMSPGGAGCGGRHP
HPSARKASMISSMTSSRSSKRFFLAGYAEGAPGSETPAAAVVDGAAPAAT
GLYSDNSCSVCLDDYEEGDQLLQLTCGHVFHRACIDQWLKGHNVCPCCRT
DLDKLAQIVQLFPQTSRRVIQRALARAEGNLPLAVEILLARPRSLAAAGS
AGAGVETAAAAIVDEEADDDKVGEGRRGGGVAVIELEDGQTAAASMADAV
SFLSGGGDEEEEEEAGRRGWDGSVRTTQRFQSQGLLPLPDGEADGIRSPS
LPLPPVERARPPLFFQGGGRGAGYDSSTAEVPAPVPSPVPVPVLGAEEDL
ELDGGEIEVGKTGATRGRDAAATMATATAVAVLAAASKNSSNGDVHPAEQ
LRPVRTAGTWTLRQRSASFVAPPKVAPPTSGSRSANALSMMMMTPQWGEP
AAAAAAAAVPSGPGRYGGSGDSCGGDGDGDGAGDRDGARSIALYVPAAGP
APSIPHGLFRRRPLDARAAAWRSKGPSFSFSSYSCRCCFFFFSLCARRLL
GWGMVLGGSRGQC*
back to topmRNA from alignment at P-fluviatile_contig1:1968187..1974900+
Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig1.149.1 ID=mRNA_P-fluviatile_contig1.149.1|Name=mRNA_P-fluviatile_contig1.149.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=6714bp|location=Sequence derived from alignment at P-fluviatile_contig1:1968187..1974900+ (Porterinema fluviatile SAG_2381)
GCTCTGCCATGGAAGGGTCGCAAATTCTGGTCGTGATGGGCATGGTGGTG
GTCTTCGGACTGATTTTTGCTACGGTGAGGCAGGGAGAGGGGTCGGGAAC
TGCTGTGAAGTTGTATTTTCACCATTTTTGGTGCGCCAACCTCGAAAGCA
ATCTGTCTTCCACTTCCGATATTTTGTCCGCACTAGCCCGGTCCAATCCA
ACCCTACCCCGCCCTACTCGACCTCTATTGGCCGTCGTAGGGTGGCTTAA
GTTATCCCTTCCTCGTGCAACTTGTGCTTATTTCCGATGAGAGGAAAGCG
CTTGTGTCAAACTGAAACCCCGGTTTGCGTCCCTCTCGCTCCCTCTCCCT
CACGCTTTTGTCTCTCTTACACTTGAAAGTGCCTTTTACTGAAAAGTGCT
GCCCCGGTCCCTGTGAACACGTTTGAAGAAATACATGTAGAGGCTCCGAT
TTTTTGAAAAAACAAGAAAATCCCTGTGAGAAGTTGGGCCCAGCTGCCGG
CGCCGTGCTAAATCGTTTAAAATAGCCTGTGCTCAGGCGTTAGGATCAAC
ATAAGAAATGAGCCTCGCTCGAAATAGGCGTTTCTTATGAACGGGCCCAC
GGGGCACTTCGTCTCACAAGAGGAAGTTCTCTCAGAGGTGTTGAATCGAG
AGACTGTACTCAATCAACATATCGAAGGAGACACCCAACGTACACTCACG
AGTGAATACCAGATATGTTTATGCTCGTCCTCCAACATCTCTCCACACCA
TGTACAAATCTCTGAGGTTCAGGTTCTCCCCTACACACGCGAATCACGTG
CCCAACTTGCGCCACTGGCAGACACCACACCCAAATCCTCTCCCTGCCGC
CCTTCTGACCCAAGTCGGATTGCGATACATCGCGACGCCATCCTGGCACG
CGCATCGTCTAGGTCCACTCCGATATTCGCGTGAAGCATGCCTAATAGAT
CATCGAGACACGTGAGGGCAGAAGAAAATGGAAATATTCCTGCACGTCAA
AGCCAGTCCAGGAGAGAGGATCTCTCGTAGCAGTAACCTCGAAGGGGCGC
AGACCAAGGCTCGGGTCTCTCTCGCACAGCAATCTTGACGAGGTAACAAA
GCCATTAGGATCCGTGGACCGCGAATACTCGTTTCTCGGCCTGATGGCAG
TTTTGCAGTTGTACAAGTCCGGGTTGCTGCTGTCATGCGGCCAACAATTA
CATCAATTCCTCCCCGAGATCGACTTCCGGCGCCTCACGGTCATGTCAAC
AGGGAACCAATCTTGACTCGCATCAGTGCCTGTTTTGTGCTCATCACGAT
TATCCACGATTGACCCGCACTATTCGCGACATGGGACATATCGAATTTGG
TGTGAGTACTATACAGGGCACCGGTCCGTCTGGAGCGAGAAGCGCTGTGA
GAGCGCCCATCCATGGCTGTAAACCGCCGTAGGCGTGTTGCACAAGACAC
GGCACCCGAGTGCCCTAGTTGTCAGGGGCGAGTTTTCGATCAACAGAGGA
GTGCTGCCTACTTGTATACGTCGGCGGACGGTGCTGTGGTGCCCAAGTCG
CAGAACGAACCTTAGCTTGGTTTGAACGGGGAGAGAGGAAAAGGTGTGCA
CAGCAGGCGCTATGAAGTCAAACTTGCTGGCGCCCCCACCGGAGGGAAGG
TTGTTTGCACTGAACATCTCCTCGTCCGAGCGATTGATCTACATCAGTAG
ACAGAGGTAGCTTGTGACTGTCTCAGGGGCTGGGCGCGGTTAGATTTTCG
CGATTTCCTCCCCCCGCGTTTGGGCGAACGCACTGCGGATACCCAGCTAT
CAAACGGACATTAGCATACCTCGCCGATGTAGCCCACTTCTGCGATGGGT
AGGTGCTTTCCTCTGCGGTGCGGTCCACTTGTGCGATGCGCAACTCGGAG
GGGAAAAGCTCTCAGTTGGTTGATGCCTCTCTTTTTCACCTTCCGCTGCC
ACGGGCCCGAGGTTCTCTGAAGTGCGCAACAGTGCAACAATTAGCAGCAA
CGCCAGCTGGCATGAGCATGCGCGGAGGAAAACTTGCGCGTGCCCCGTTA
TTAGTGAGCCTCTTACTTAAAAGTTACATTTTGTCTTCTCTTTTTGCCTA
AATCCCGCACCCTGTGCTCTGTTATTTTTGTTATCTCTGCGTGTCTGCCT
TCCTTCCGTTCTTTCCCTTCGGAAACCCACCCCGCGCCTTTAGCCCTTTT
TTCAGCAACATGTCAATGGTCGCCCTCAATCCTTCCCCGTCCCACCCGAC
TCCAATTTTTACTATTTATTGTTGCGCCCAATCCCCCCGACTGAAGGATT
CCAACTGTCGATCATCGCTCTGAATCCCCCTCGTGTCTGGTACATGTAGT
TGCGGAATGCCCGTTGTACGATCAGGAGAGAGAAGGGTACATCGTTGAGC
TGGAAAAAGTAGACAGTCGGTATAGAGAGAAGTTTGAGGCATGGAACAAA
GAGGAGAAGACGGTAGCGGTACTCGGGTGTAAGATGTGGCCCAGGACGGA
CAGGTATAAAGTAGACAGGTTAGGGAAAACATTTTTGAGCCACCTTTGGC
AAAGTAGGAAGGAACGATTGGCCATCGGTGGTCGATCCTGCGGGAACAAT
GCTCCGTCCTCTCGAGGACGCGTGGTCAATGGTCTAACAACTAAGGCATG
CAAAACATGAGTACGCCCCCTCGTGTCTGGATAAAGACGCGAAGGCTCTG
CCGCGACCCGGACATCCTCCAAGCGGAGGCCGACTTGGATCGGCAGCAGG
CCCTGGCCGAGGCGGTGCTAAGGCAGATGAACACGCATGAGCTGGTGGCG
TTGGCGTCGGGGCGACTCGGTTCCGGGGTGCTGCTGGCTAGAGGAGGCAG
GGGTGGGCGACCGGCGTTCCACCGCACCTCCTCCGGCGCCCTCCAGGTGG
ATCAGGCGGCGGGTGGGGTCAGCGAGGTACGCGTTTTTGCGTGTGTACGC
GCGCAGAGAGATCCTGCCGCTGGTGGTGCAGCCTGTTGGAAGTGGTGCTT
TTACTGCTGCTGCTGCTGCTGCTGCTACTGATGTGCGTGGAATCTTCTTC
GTAATCGGAGTGTGGCATTTTTGTATTTTTCGTTGCAACGCGGGCGGTCT
GCCCCCGCAAGCACAGAAAGCCGGTCCAGGTTGGAAACGGCTGCATATGT
TCGCTCTCTTGGCATCTTTGCCTGCCGCGTCGAGTCGGCGCGGCGATGTA
GGAGCGTGGCAACGAGAGAAATTTGCTCCACCCAAGGCGGGTAAACGAGC
CACGGCGCATGCGAATTTGCAGTGCACGCATGTAGCTCGTGGTAGGAGTA
GACTCGCGACTTCTTTTTCATCACCGAAGTGAGTCGGTGCTGCAGTCGAA
CCGGCAAAGAAAGAGGAATAGATATTTCACGGTCGAGGGTAACGTCCGAA
GACGGCCCTTCACAGCGGAAGCCATTTTTGGCGGCCTGGCTCTTCTCGGA
GGGGAGGAAGGAGAGGCTAGCCACCTAGGGTGGTTTTCCGCCTTCTTTTT
TCACGAGATTGTGCCCTAGCCCACAAACGGCGCGAATAATCTACAGCCCC
AGAGAACCTCCAACGCGCGGCCCTCTCAGGTCGATCTGCTCCTCTCTCGC
TCTCTGCATCCCTCCCTACATGCGGGGTCCGCTAAAATACCCCCCTCATC
CCCCCCTCCCCTTGCATGTGTGCGTGCGTGGCCGCAAATTGCAGGAGACG
CGCATGTCGTTCGTTAAGCTGTCGGCAGGGCGCGGTGGCCGCGCGCCCTC
ACACGAGGCTGCCACCTTCGCTATACCGCGGCCGCCACCTTTGCCGCTGC
CGCTGCCGCTGCCACCGCCGTTGTCGGCGCATCTCGCGTCCTCCCCGGAA
CCTGGCGACGAACGGAAAGGCCATCAGGTCACTGACAACAGCAGCAGTAG
CGGCGGCGGCGGCGATAGGAGGGGAGACTGGTCGCCTCCGGGCGGGACGA
TGAGCCCCGGCGGCGCCGGCTGCGGTGGCCGCCACCCCCACCCGTCGGCT
CGCAAGGCCTCGATGATCTCGTCGATGACGTCATCGAGGAGCTCTAAACG
TTTTTTTCTTGCCGGATACGCTGAGGGGGCGCCCGGAAGTGAGACGCCAG
CGGCGGCCGTGGTAGACGGGGCGGCGCCGGCGGCGACGGGGCTGTACTCG
GACAACTCGTGCTCAGTGTGCCTGGACGACTACGAGGAGGGGGACCAGCT
CCTGCAGCTCACTTGTGGCCACGTGTTCCATCGCGCCTGCATAGACCAGT
GGCTGAAGGGGCACAACGTCTGCCCTTGCTGCAGGTGCCCGGTGTTGCGG
TGGGACGTGGTCGGAAGCGGTCGGAAGTGCGCCAAGAAAGGAAAGCATCC
GCAAGTGATTTTTCTCCCTCTCTCGATATATATATGTATCTGTCTCTTGC
TCTCTCTCGCGCCCGCGCGCTCGCCCTCTTGCGCTCGATGACTTTCGGCG
CAGCGCCGTTCCGGGAGGGCGACTGCCGTCGTGTTTGCGTTTTCAGCGAG
AGACTGCTGCTGTGTTGACGCTTGGGGGGAGAGGCCGCTACTGTCATGCA
GTGCGCCGAGCGTCACATTTCTCAGAGCGGACATGCATCTCCACCCGAAG
GAGCGCGCACCGTGTGCCGATGTTGTTGTCGTTTGTTCACATTCAGATAC
TTCTGGTCAAATGTACCCTTACCCGCCGAGCCGACTCCGTGGTCAAAGGC
TATTAAAATACTCAAAGGAGGTACGAGACGATGGCGAACATAAGAAGGGA
TCCCAGAGAATCACACGAGGCAAAAAAACACAAGGAAGTACATGGATGTA
TTTCAGTGCGTGCCACACATTCACCCCAGGTGCATCGGAGCTTGGTCACA
AGGCGCAGAGCGACATGACACGGTTTGTGGTGGTGGCCGAATGAATGATT
CCTTTGTCCCTGCGGAACGCTCATTGCATTTTACTCGCTCATCTGTCGAA
ATTCGCGCTGGCCCTGTTTGAATTTTCCTCGAGCTTCCTTGCTGCCGGGT
GACGAAGCGATTGTGCGCACTATCGGATGGGCATGTGCTTTCCCACCTCG
CTCCATTCCTCCAACCTTCCCTTGTCTCTCCATACAAGTATCCTCCCCCC
TCCCCTCCTTCGTCCGCGGAAACCACATCTCGCAACACGGTGCCTCCTGC
CCACAGGACGGACCTGGATAAGCTCGCACAGATCGTCCAGCTGTTCCCTC
AGACGAGCAGACGGGTCATCCAGAGGGCGCTCGCCCGAGCGGAGGGCAAC
CTGCCTCTGGCCGTCGAGATTCTCCTGGCGCGACCGAGAAGCCTCGCCGC
CGCTGGCTCGGCGGGAGCGGGGGTAGAAACTGCGGCCGCTGCCATCGTTG
ACGAGGAGGCGGACGACGACAAGGTGGGCGAAGGGCGTCGTGGCGGCGGG
GTCGCCGTGATCGAGCTCGAGGATGGGCAAACAGCGGCGGCCTCGATGGC
GGATGCGGTGTCGTTCTTGTCGGGAGGCGGTGACGAGGAGGAGGAGGAGG
AGGCGGGTCGTAGGGGCTGGGACGGAAGTGTGAGGACAACGCAACGCTTT
CAATCTCAAGGGCTGCTGCCGCTGCCCGATGGCGAAGCGGATGGGATCAG
GTCGCCGTCGCTGCCGCTGCCACCGGTGGAGCGCGCCAGGCCTCCGTTGT
TTTTCCAAGGAGGAGGAAGAGGGGCGGGATACGACAGCAGCAGCAGCAGC
AGCAGCAGCAGCAGCAGCCGCAGCCGCAGCAGCCGCTGCAGCATATTTCC
GAGGGACTCGATCGACCCCGCCCTCGTCCTACCCGAAGCAGAATACAACG
GCGGAAGAAGCGAACAGGAGGAGGACAAGAAGGAGGCGGAGGAGAAGGAA
GTTGGCATCGCGATGACAGTAGTAGACGTCGGCGCGTTCCGTGGCGCACC
AGCAGCGGCAGCAGCTGAAGTGCCGGCGCCGGTGCCATCACCAGTTCCGG
TACCTGTGCTGGGGGCGGAGGAGGATCTGGAGCTAGACGGCGGCGAGATT
GAGGTTGGAAAGACGGGGGCGACGCGAGGACGCGACGCGGCGGCCACCAT
GGCGACGGCGACGGCGGTGGCGGTTCTAGCGGCGGCGAGTAAGAACAGCA
GCAACGGCGACGTGCACCCTGCGGAACAGCTTCGTCCGGTGCGTACAGCC
GGCACCTGGACGTTGCGGCAGAGGTCGGCTTCCTTCGTAGCCCCCCCCAA
GGTGGCGCCGCCGACATCCGGGAGTCGCTCGGCAAATGCCCTCTCGATGA
TGATGATGACACCGCAGTGGGGCGAGCGCTTCGGCGGCGAAGATTCGCCG
CCGCCACCGGCGTCGCCGCCGCCGACTCAGCAGCAGCAGCAGCAGCAGCA
GCAGCAGCAGTCCCTAGCGGGCCGGGACGTTACGGCGGCAGCGGTGATAG
CTGCGGCGGAGACGGAGACGGAGACGGAGCCGGAGACAGAGACGGCGCCC
GCTCCATAGCCTTGTACGTTCCCGCCGCCGGCCCCGCGCCCTCTATCCCG
CACGGCCTTTTCCGCCGCCGGCCCTTGGACGCACGCGCGGCTGCTTGGCG
CAGCAAGGGGCCCTCCTTCTCCTTCTCCTCGTACAGCTGCCGCTGCTGCT
TCTTCTTCTTCTCCCTCTGCGCAAGGAGACTCTTGGGGTGGGGAATGGTT
CTGGGGGGCTCTAGAGGGCAGTGCTAGATATAACGGTGGTAATGCCGGAA
GCGTGCCGAAGCAA
back to topCoding sequence (CDS) from alignment at P-fluviatile_contig1:1968187..1974900+
>mRNA_P-fluviatile_contig1.149.1 ID=mRNA_P-fluviatile_contig1.149.1|Name=mRNA_P-fluviatile_contig1.149.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=4284bp|location=Sequence derived from alignment at P-fluviatile_contig1:1968187..1974900+ (Porterinema fluviatile SAG_2381)
ATGGAAGGGTCGCAAATTCTGGTCGTGATGGGCATGGTGGTGGTCTTCGG
ACTGATTTTTGCTACGATGGAAGGGTCGCAAATTCTGGTCGTGATGGGCA
TGGTGGTGGTCTTCGGACTGATTTTTGCTACGACGCGAAGGCTCTGCCGC
GACCCGGACATCCTCCAAGCGGAGGCCGACTTGGATCGGCAGCAGGCCCT
GGCCGAGGCGGTGCTAAGGCAGATGAACACGCATGAGCTGGTGGCGTTGG
CGTCGGGGCGACTCGGTTCCGGGGTGCTGCTGGCTAGAGGAGGCAGGGGT
GGGCGACCGGCGTTCCACCGCACCTCCTCCGGCGCCCTCCAGGTGGATCA
GGCGGCGGGTGGGGTCAGCGAGACGCGAAGGCTCTGCCGCGACCCGGACA
TCCTCCAAGCGGAGGCCGACTTGGATCGGCAGCAGGCCCTGGCCGAGGCG
GTGCTAAGGCAGATGAACACGCATGAGCTGGTGGCGTTGGCGTCGGGGCG
ACTCGGTTCCGGGGTGCTGCTGGCTAGAGGAGGCAGGGGTGGGCGACCGG
CGTTCCACCGCACCTCCTCCGGCGCCCTCCAGGTGGATCAGGCGGCGGGT
GGGGTCAGCGAGGAGACGCGCATGTCGTTCGTTAAGCTGTCGGCAGGGCG
CGGTGGCCGCGCGCCCTCACACGAGGCTGCCACCTTCGCTATACCGCGGC
CGCCACCTTTGCCGCTGCCGCTGCCGCTGCCACCGCCGTTGTCGGCGCAT
CTCGCGTCCTCCCCGGAACCTGGCGACGAACGGAAAGGCCATCAGGTCAC
TGACAACAGCAGCAGTAGCGGCGGCGGCGGCGATAGGAGGGGAGACTGGT
CGCCTCCGGGCGGGACGATGAGCCCCGGCGGCGCCGGCTGCGGTGGCCGC
CACCCCCACCCGTCGGCTCGCAAGGCCTCGATGATCTCGTCGATGACGTC
ATCGAGGAGCTCTAAACGTTTTTTTCTTGCCGGATACGCTGAGGGGGCGC
CCGGAAGTGAGACGCCAGCGGCGGCCGTGGTAGACGGGGCGGCGCCGGCG
GCGACGGGGCTGTACTCGGACAACTCGTGCTCAGTGTGCCTGGACGACTA
CGAGGAGGGGGACCAGCTCCTGCAGCTCACTTGTGGCCACGTGTTCCATC
GCGCCTGCATAGACCAGTGGCTGAAGGGGCACAACGTCTGCCCTTGCTGC
AGGAGACGCGCATGTCGTTCGTTAAGCTGTCGGCAGGGCGCGGTGGCCGC
GCGCCCTCACACGAGGCTGCCACCTTCGCTATACCGCGGCCGCCACCTTT
GCCGCTGCCGCTGCCGCTGCCACCGCCGTTGTCGGCGCATCTCGCGTCCT
CCCCGGAACCTGGCGACGAACGGAAAGGCCATCAGGTCACTGACAACAGC
AGCAGTAGCGGCGGCGGCGGCGATAGGAGGGGAGACTGGTCGCCTCCGGG
CGGGACGATGAGCCCCGGCGGCGCCGGCTGCGGTGGCCGCCACCCCCACC
CGTCGGCTCGCAAGGCCTCGATGATCTCGTCGATGACGTCATCGAGGAGC
TCTAAACGTTTTTTTCTTGCCGGATACGCTGAGGGGGCGCCCGGAAGTGA
GACGCCAGCGGCGGCCGTGGTAGACGGGGCGGCGCCGGCGGCGACGGGGC
TGTACTCGGACAACTCGTGCTCAGTGTGCCTGGACGACTACGAGGAGGGG
GACCAGCTCCTGCAGCTCACTTGTGGCCACGTGTTCCATCGCGCCTGCAT
AGACCAGTGGCTGAAGGGGCACAACGTCTGCCCTTGCTGCAGGACGGACC
TGGATAAGCTCGCACAGATCGTCCAGCTGTTCCCTCAGACGAGCAGACGG
GTCATCCAGAGGGCGCTCGCCCGAGCGGAGGGCAACCTGCCTCTGGCCGT
CGAGATTCTCCTGGCGCGACCGAGAAGCCTCGCCGCCGCTGGCTCGGCGG
GAGCGGGGGTAGAAACTGCGGCCGCTGCCATCGTTGACGAGGAGGCGGAC
GACGACAAGGTGGGCGAAGGGCGTCGTGGCGGCGGGGTCGCCGTGATCGA
GCTCGAGGATGGGCAAACAGCGGCGGCCTCGATGGCGGATGCGGTGTCGT
TCTTGTCGGGAGGCGGTGACGAGGAGGAGGAGGAGGAGGCGGGTCGTAGG
GGCTGGGACGGAAGTGTGAGGACAACGCAACGCTTTCAATCTCAAGGGCT
GCTGCCGCTGCCCGATGGCGAAGCGGATGGGATCAGGTCGCCGTCGCTGC
CGCTGCCACCGGTGGAGCGCGCCAGGCCTCCGTTGTTTTTCCAAGGAGGA
GGAAGAGGGGCGGGATACGACAGCAGCAGACGGACCTGGATAAGCTCGCA
CAGATCGTCCAGCTGTTCCCTCAGACGAGCAGACGGGTCATCCAGAGGGC
GCTCGCCCGAGCGGAGGGCAACCTGCCTCTGGCCGTCGAGATTCTCCTGG
CGCGACCGAGAAGCCTCGCCGCCGCTGGCTCGGCGGGAGCGGGGGTAGAA
ACTGCGGCCGCTGCCATCGTTGACGAGGAGGCGGACGACGACAAGGTGGG
CGAAGGGCGTCGTGGCGGCGGGGTCGCCGTGATCGAGCTCGAGGATGGGC
AAACAGCGGCGGCCTCGATGGCGGATGCGGTGTCGTTCTTGTCGGGAGGC
GGTGACGAGGAGGAGGAGGAGGAGGCGGGTCGTAGGGGCTGGGACGGAAG
TGTGAGGACAACGCAACGCTTTCAATCTCAAGGGCTGCTGCCGCTGCCCG
ATGGCGAAGCGGATGGGATCAGGTCGCCGTCGCTGCCGCTGCCACCGGTG
GAGCGCGCCAGGCCTCCGTTGTTTTTCCAAGGAGGAGGAAGAGGGGCGGG
ATACGACAGCAGCACAGCTGAAGTGCCGGCGCCGGTGCCATCACCAGTTC
CGGTACCTGTGCTGGGGGCGGAGGAGGATCTGGAGCTAGACGGCGGCGAG
ATTGAGGTTGGAAAGACGGGGGCGACGCGAGGACGCGACGCGGCGGCCAC
CATGGCGACGGCGACGGCGGTGGCGGTTCTAGCGGCGGCGAGTAAGAACA
GCAGCAACGGCGACGTGCACCCTGCGGAACAGCTTCGTCCGGTGCGTACA
GCCGGCACCTGGACGTTGCGGCAGAGGTCGGCTTCCTTCGTAGCCCCCCC
CAAGGTGGCGCCGCCGACATCCGGGAGTCGCTCGGCAAATGCCCTCTCGA
TGATGATGATGACACCGCAGTGGGGCGAGCCAGCTGAAGTGCCGGCGCCG
GTGCCATCACCAGTTCCGGTACCTGTGCTGGGGGCGGAGGAGGATCTGGA
GCTAGACGGCGGCGAGATTGAGGTTGGAAAGACGGGGGCGACGCGAGGAC
GCGACGCGGCGGCCACCATGGCGACGGCGACGGCGGTGGCGGTTCTAGCG
GCGGCGAGTAAGAACAGCAGCAACGGCGACGTGCACCCTGCGGAACAGCT
TCGTCCGGTGCGTACAGCCGGCACCTGGACGTTGCGGCAGAGGTCGGCTT
CCTTCGTAGCCCCCCCCAAGGTGGCGCCGCCGACATCCGGGAGTCGCTCG
GCAAATGCCCTCTCGATGATGATGATGACACCGCAGTGGGGCGAGCCAGC
AGCAGCAGCAGCAGCAGCAGCAGTCCCTAGCGGGCCGGGACGTTACGGCG
GCAGCGGTGATAGCTGCGGCGGAGACGGAGACGGAGACGGAGCCGGAGAC
AGAGACGGCGCCCGCTCCATAGCCTTGTACGTTCCCGCCGCCGGCCCCGC
GCCCTCTATCCCGCACGGCCTTTTCCGCCGCCGGCCCTTGGACGCACGCG
CGGCTGCTTGGCGCAGCAAGGGGCCCTCCTTCTCCTTCTCCTCGTACAGC
TGCCGCTGCTGCTTCTTCTTCTTCTCCCTCTGCGCAAGGAGACTCTTGGG
GTGGGGAATGGTTCTGGGGGGCTCTAGAGGGCAGTGCTAGCAGCAGCAGC
AGCAGCAGCAGCAGCAGTCCCTAGCGGGCCGGGACGTTACGGCGGCAGCG
GTGATAGCTGCGGCGGAGACGGAGACGGAGACGGAGCCGGAGACAGAGAC
GGCGCCCGCTCCATAGCCTTGTACGTTCCCGCCGCCGGCCCCGCGCCCTC
TATCCCGCACGGCCTTTTCCGCCGCCGGCCCTTGGACGCACGCGCGGCTG
CTTGGCGCAGCAAGGGGCCCTCCTTCTCCTTCTCCTCGTACAGCTGCCGC
TGCTGCTTCTTCTTCTTCTCCCTCTGCGCAAGGAGACTCTTGGGGTGGGG
AATGGTTCTGGGGGGCTCTAGAGGGCAGTGCTAG
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