Homology
BLAST of mRNA_P-fluviatile_contig14.2150.1 vs. uniprot
Match:
A0A6H5JDI2_9PHAE (RING-type domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JDI2_9PHAE)
HSP 1 Score: 177 bits (448), Expect = 9.850e-42
Identity = 80/105 (76.19%), Postives = 92/105 (87.62%), Query Frame = 1
Query: 2410 LAALQGRELTSADYQQLLALDEAGGGTRAKKGLSPSEVAMLPQQTGNGSGPMEQCCICMEDMKSRQSITRLPACLHTFHSKCIKKWLEVKPCCPVDKTTVSVSNS 2724
LA+LQGRELTS DYQQLLALD+ G AKKGLSPSE+ +LPQQTGNGSGP++QCC+CMEDMK R+ ITRLPACLHTFHSKCI KWL+ KPCCP+DK VSV++S
Sbjct: 763 LASLQGRELTSEDYQQLLALDDTGXXXGAKKGLSPSEIGLLPQQTGNGSGPVDQCCVCMEDMKPREKITRLPACLHTFHSKCISKWLKEKPCCPIDKVAVSVNDS 867
BLAST of mRNA_P-fluviatile_contig14.2150.1 vs. uniprot
Match:
D7FI15_ECTSI (zf-rbx1 domain-containing protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FI15_ECTSI)
HSP 1 Score: 84.7 bits (208), Expect = 1.500e-16
Identity = 36/47 (76.60%), Postives = 41/47 (87.23%), Query Frame = 1
Query: 2584 MEDMKSRQSITRLPACLHTFHSKCIKKWLEVKPCCPVDKTTVSVSNS 2724
MEDMK R+ ITRLPACLHTFHSKCI KWL+ KPCCP+DK VSV++S
Sbjct: 1 MEDMKPREKITRLPACLHTFHSKCISKWLKEKPCCPIDKVAVSVNDS 47
BLAST of mRNA_P-fluviatile_contig14.2150.1 vs. uniprot
Match:
A0A7S0H3R0_9EUKA (Hypothetical protein n=1 Tax=Amorphochlora amoebiformis TaxID=1561963 RepID=A0A7S0H3R0_9EUKA)
HSP 1 Score: 72.8 bits (177), Expect = 1.740e-10
Identity = 40/114 (35.09%), Postives = 60/114 (52.63%), Query Frame = 1
Query: 2365 AGLMGGMPGGADGTGLAALQGRELTSADYQQLLALDEAGG--GTRAKKGLSPSEVAMLPQQTGNGSGPMEQCCICMEDMKSRQSITRLPACLHTFHSKCIKKWLEVKPCCPVDK 2700
A L+ G+ A G+G +Q E + + + +GG G +++GL ++ P T P ++CCICM+DM S ++ RLP C H FH KCI WL+ P CP+ K
Sbjct: 108 AALVRGLAAMALGSGGIFMQQVESNHPNVLRRGNMSSSGGRQGQSSRRGLDDRTISRFPTSTVPKGAPSQECCICMDDMTSGDTVRRLP-CFHVFHDKCIDPWLKRDPSCPICK 220
BLAST of mRNA_P-fluviatile_contig14.2150.1 vs. uniprot
Match:
UPI000B76C4B0 (E3 ubiquitin-protein ligase ATL23-like n=1 Tax=Hevea brasiliensis TaxID=3981 RepID=UPI000B76C4B0)
HSP 1 Score: 64.3 bits (155), Expect = 3.870e-8
Identity = 29/67 (43.28%), Postives = 39/67 (58.21%), Query Frame = 1
Query: 2494 AKKGLSPSEVAMLPQQTGNGSGPMEQCCICMEDMKSRQSITRLPACLHTFHSKCIKKWLEVKPCCPV 2694
A+KGLS SE+ MLP+ TG C +C+ED++S Q + +P C H FH +C WL CPV
Sbjct: 77 AEKGLSASELEMLPKITGRELVMGTDCAVCLEDVESEQPVRLVPGCNHGFHLECADTWLSKHSVCPV 143
BLAST of mRNA_P-fluviatile_contig14.2150.1 vs. uniprot
Match:
A0A1E5VC97_9POAL (RING-type E3 ubiquitin transferase n=1 Tax=Dichanthelium oligosanthes TaxID=888268 RepID=A0A1E5VC97_9POAL)
HSP 1 Score: 64.7 bits (156), Expect = 5.040e-8
Identity = 28/73 (38.36%), Postives = 43/73 (58.90%), Query Frame = 1
Query: 2503 GLSPSEVAMLPQ-QTGNGSGPMEQCCICMEDMKSRQSITRLPACLHTFHSKCIKKWLEVKPCCPVDKTTVSVS 2718
GLS V +P + +GP EQC +C+ ++ +++ RLPAC HTFH+ C+ WL P CP+ + V V+
Sbjct: 107 GLSQEGVEAIPAFEYQRKAGPAEQCAVCINVVRDGETVRRLPACGHTFHTTCVDGWLRAHPTCPMCRADVKVA 179
BLAST of mRNA_P-fluviatile_contig14.2150.1 vs. uniprot
Match:
A0A2T8JCQ5_9POAL (RING-type domain-containing protein n=1 Tax=Panicum hallii TaxID=206008 RepID=A0A2T8JCQ5_9POAL)
HSP 1 Score: 63.9 bits (154), Expect = 6.820e-8
Identity = 24/55 (43.64%), Postives = 35/55 (63.64%), Query Frame = 1
Query: 2542 TGNGSGPMEQCCICMEDMKSRQSITRLPACLHTFHSKCIKKWLEVKPCCPVDKTT 2706
TG+ ++CC+C+ M+ Q++ LP C H+FH KCI KWL+ P CPV + T
Sbjct: 98 TGSAGAGADKCCVCLAGMREDQALRELPRCGHSFHDKCIGKWLKAHPTCPVCRAT 152
BLAST of mRNA_P-fluviatile_contig14.2150.1 vs. uniprot
Match:
A0A1E5VCH7_9POAL (RING-type E3 ubiquitin transferase n=1 Tax=Dichanthelium oligosanthes TaxID=888268 RepID=A0A1E5VCH7_9POAL)
HSP 1 Score: 64.7 bits (156), Expect = 3.000e-7
Identity = 28/73 (38.36%), Postives = 43/73 (58.90%), Query Frame = 1
Query: 2503 GLSPSEVAMLPQ-QTGNGSGPMEQCCICMEDMKSRQSITRLPACLHTFHSKCIKKWLEVKPCCPVDKTTVSVS 2718
GLS V +P + +GP EQC +C+ ++ +++ RLPAC HTFH+ C+ WL P CP+ + V V+
Sbjct: 235 GLSQEGVEAIPAFEYQRKAGPAEQCAVCINVVRDGETVRRLPACGHTFHTTCVDGWLRAHPTCPMCRADVKVA 307
BLAST of mRNA_P-fluviatile_contig14.2150.1 vs. uniprot
Match:
A0A3B6RES3_WHEAT (RING-type domain-containing protein n=18 Tax=Triticum TaxID=4564 RepID=A0A3B6RES3_WHEAT)
HSP 1 Score: 64.3 bits (155), Expect = 3.060e-7
Identity = 35/92 (38.04%), Postives = 51/92 (55.43%), Query Frame = 1
Query: 2449 YQQLLALDEAGGGTRAKKGLSPSEVAMLPQQT----GNGSGPMEQCCICMEDMKSRQSITRLPACLHTFHSKCIKKWLEVKPCCPVDKTTVS 2712
Y++L+AL E G +G+S +A LP T N MEQC IC + + +S+ LP C H++HS CIK+WL++ CP+ VS
Sbjct: 193 YEELVALGEVVG--TESRGVSADTLASLPSVTYQAEDNQDSNMEQCVICRVEFEEGESLVALP-CKHSYHSDCIKQWLQLNKVCPMCSAEVS 281
BLAST of mRNA_P-fluviatile_contig14.2150.1 vs. uniprot
Match:
A0A6A6LBN7_HEVBR (Uncharacterized protein n=1 Tax=Hevea brasiliensis TaxID=3981 RepID=A0A6A6LBN7_HEVBR)
HSP 1 Score: 65.1 bits (157), Expect = 3.840e-7
Identity = 29/67 (43.28%), Postives = 40/67 (59.70%), Query Frame = 1
Query: 2494 AKKGLSPSEVAMLPQQTGNGSGPMEQCCICMEDMKSRQSITRLPACLHTFHSKCIKKWLEVKPCCPV 2694
A+KGLS SE+ MLP+ TG +C +C+ED++S Q + +P C H FH +C WL CPV
Sbjct: 30 AEKGLSASELEMLPKITGRELVMGTECAVCLEDIESEQPVRLVPGCNHGFHLECADAWLSKHSVCPV 96
BLAST of mRNA_P-fluviatile_contig14.2150.1 vs. uniprot
Match:
A0A152A070_9MYCE (RING-type domain-containing protein n=1 Tax=Tieghemostelium lacteum TaxID=361077 RepID=A0A152A070_9MYCE)
HSP 1 Score: 63.5 bits (153), Expect = 5.840e-7
Identity = 38/99 (38.38%), Postives = 49/99 (49.49%), Query Frame = 1
Query: 2428 RELTSADYQQLLALDE---AGGGTRAKKGLSPSEVAMLPQQTGN--GSGPMEQCCICMEDMKSRQSITRLPACLHTFHSKCIKKWLEVKPCCPVDKTTV 2709
R+ S DY+ LLALD A G T+ + L P + + + C IC+E I LP C+H FHSKCI KWL +KP CP+ K V
Sbjct: 196 RDFNSNDYEMLLALDNQNIAQGATQDQIDLLPFHLLESTKDLDSLLNQNQCNNCSICLEVYNVGDCIRTLP-CIHHFHSKCIDKWLRIKPLCPICKFQV 293
The following BLAST results are available for this feature:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig14.2150.1
>prot_P-fluviatile_contig14.2150.1 ID=prot_P-fluviatile_contig14.2150.1|Name=mRNA_P-fluviatile_contig14.2150.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=865bp
MEFQSSPHRGPRWNSSETSSDDENQIGPTPGEGQRRRELEQQRQHDEVAS
RKSTGSSTTRTEGVSSSDEDDDDGESASLDLLMDRKGPPFGGLPTSSSRI
PPSASSATARGHDSSGSTTASEATVGNGAGHNSDSSTCSDDSFSVGPSRR
RCGKAKRQMLPNRDSDCSSFAHAPASSVPAPFLASRSRALRTSPPQRGVD
VDEVEVMLTGPGGDNKERGKGKGKATPEILAATAAARVAASSTTASLASP
ERQVSGNSSRRTGKRKRGFGALGPRSSSFSSPVLLRDSPVRGSSHGRQQR
DSTPILSGIDRRGEGGLEPSSSDAVGHKRTAIIRRRGERVNHNTSAPGGQ
GKERLPGTPSTAAVSSPPRLAASATPRLAARTAPAAAPFSSASCPDVLDL
SSAPPREVIEVLDDSTSTHGAPLSQPSSWVSGGAPGQAQSGAGGESVGGG
GGLERGACSSRCLLGAAGATVARAPAPPRVPGAARNRWREPAVASSRSSA
DGAAAPGNAAIVVDEDDDDGTAERARQQRRRRRRRLAAAADAATAGGGWA
GRGMGSATAAAVARQKQRPNSSRDHLAAARLQREENREQERRDAEMARRL
QSEERRSGGAAGALSGMSDYVGMLDSSASAFWDQAGGALQGVPASGGSSG
AGDTASAAGGRAGVRVGASRSLSSGRSRGGSSPARPGARGSTGTARGRSG
GSVASQWGGNSAAVNLARHHQSFSHAALQMMALLTQHHGHGNLAGLMGGM
PGGADGTGLAALQGRELTSADYQQLLALDEAGGGTRAKKGLSPSEVAMLP
QQTGNGSGPMEQCCICMEDMKSRQSITRLPACLHTFHSKCIKKWLEVKPC
CPVDKTTVSVSNSA*
back to topmRNA from alignment at P-fluviatile_contig14:1350449..1355607-
Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig14.2150.1 ID=mRNA_P-fluviatile_contig14.2150.1|Name=mRNA_P-fluviatile_contig14.2150.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=5159bp|location=Sequence derived from alignment at P-fluviatile_contig14:1350449..1355607- (Porterinema fluviatile SAG_2381)
TCTCACGTGCCCCCGGACGTTGGACTAAGTGTTCAAGTTGTTAGTTGTTC
TGTCGACAAACAACAACACCGCTCGCGTACAACGGCGCCAACCCTTCTTT
TACCCCTGTACACGGGAAAGTCAAAGATTCTCGGCATGGAATTTCAGTCA
TCTCCTCACCGGGGACCGCGATGGAACTCGTCAGAAACTTCGTCCGACGA
CGAAAACCAAATCGGTCCGACTCCCGGGGAGGGGCAGAGGCGGCGCGAGC
TGGAGCAGCAACGACAGCACGACGAGGTGGCATCCCGTAAGTCCACCGGA
TCGTCGACCACGCGAACAGAAGGAGTCTCTTCCTCGGATGAAGACGACGA
CGACGGCGAAAGTGCCAGCCTGGATCTTCTGATGGACAGGAAAGGACCGC
CTTTCGGAGGCTTACCAACCAGCAGCAGCCGCATTCCTCCCTCCGCTTCC
TCAGCAACGGCCCGCGGCCACGACTCGTCGGGATCAACAACGGCCTCCGA
GGCCACCGTGGGGAACGGGGCTGGGCACAATTCAGACTCTTCGACATGTT
CAGATGACAGTTTCTCCGTCGGGCCGAGCCGGCGGCGATGGTGAGAGACG
TCGCCGGGGCATTCATGAATTGGAAATATCATCGGACAACGCAGCCCTAG
TTCAGTCTCGCAATTGGGGTACAACAGCAGTCACTTCCATTACAGCTCCG
GGGTAGCTGGGTAGGGTGGAGTACATCGCTGATGGTTTGTGTTTTCGTAT
TCAATTTTGCGGACATTCTCCGTGGGGAGATTGTGTGATTCGGAGAACAG
AGTTGTGTGGTGCGAATATTCTTGAGTGCCTCACTATACTTTTGCCACCC
ACGTGCGAACCTCGCACGCCGTGACGGTTCTTCTCCGTTGACTGCTGTAG
CTGCAGAGCTGAAGCTCCTGGAAAGGAGGCAATTTGATTTGTACTGACAA
CGCAGGAGAAATTCGTGACCAATTTAAGCCTCTCTCGTCGCCGGTCGCGC
ACTACATGATTATCTTTCAAAAATCGAATACTGTACGCGTCTAGAACTAG
GGGGGGGGTGCGCTTCCGCGCGCAGCCGTTGTGGGGTGTTCCTTGGTGGC
GGTGTTGGCAGTCTCTGACTCTCGATACCCCTGTACCAGTCGTTTTCAAA
ACGAGTCCCGCGCTTGGTTCGTGGAGAGGTAGGTCTTTCCCGGGGGAAAT
CTGTCCGCTGCACCGCTGCTTCCTTTGACGTGATGGCTCCACGAGATGGT
TGATCGCCAACGGTGTGTCATGAATGGCCGCTGCTGGTTTCGCGCTGTCA
CGCGCAACACACAGCGTCGCTAGTTTACCTAAAGCCCCGAGATCGAATGT
TTTTGGTTTCGAACCGCAGATATTTTATCATCCAGCTGCCGACCGACTCC
CCGCCTGACCTGCTTTGTGAATTTCACCGGCGATTTTTGTGACGAAAACA
GCGGGAAGGCGAAAAGGCAGATGCTTCCTAACCGCGACAGCGACTGCAGC
AGCTTTGCACACGCGCCCGCATCGTCAGTTCCAGCTCCTTTTCTGGCGAG
TAGGTCCCGTGCCTTACGCACTTCGCCACCGCAGCGCGGCGTTGACGTCG
ATGAAGTCGAAGTCATGCTCACGGGTCCGGGGGGAGACAACAAAGAACGG
GGGAAAGGGAAAGGAAAGGCGACGCCAGAAATTTTGGCCGCGACTGCTGC
AGCACGTGTCGCTGCTTCTTCTACTACAGCTTCCCTGGCCTCGCCGGAGC
GGCAAGTGAGCGGTAACTCCAGCCGGAGGACCGGGAAGCGGAAGCGTGGT
TTCGGAGCGCTTGGGCCACGCTCATCATCTTTCTCTTCGCCGGTTCTATT
GCGCGACAGTCCAGTACGTGGTTCTTCTCATGGCCGGCAACAGCGTGATT
CGACCCCAATATTGTCCGGAATCGATCGCCGTGGAGAGGGCGGGTTGGAG
CCTTCCTCGTCCGATGCGGTCGGCCACAAACGTACTGCGATCATTCGCCG
CAGAGGGGAACGGGTGAATCATAATACATCCGCACCTGGAGGTCAGGGAA
AAGAACGATTGCCCGGGACCCCGAGCACGGCCGCTGTCAGCTCGCCGCCT
CGATTAGCCGCGTCGGCAACGCCGCGGCTTGCCGCTCGCACCGCTCCCGC
CGCTGCCCCTTTTTCCTCAGCTTCGTGCCCGGACGTGCTGGACCTCTCGT
CCGCGCCTCCGCGTGAAGTGATCGAAGTTCTGGACGACAGCACCAGCACC
CACGGGGCGCCACTCTCGCAGCCGTCATCGTGGGTGAGCGGCGGCGCCCC
CGGGCAGGCGCAGTCTGGTGCTGGTGGCGAGAGTGTAGGCGGCGGCGGCG
GCTTGGAAAGGGGAGCCTGCAGCAGCAGATGCTTGCTCGGGGCCGCAGGA
GCCACGGTAGCACGCGCACCGGCGCCTCCACGAGTTCCGGGTGCCGCGAG
GAATCGCTGGAGAGAGCCAGCGGTGGCGTCTTCCCGCTCCAGTGCAGACG
GCGCAGCCGCTCCCGGGAACGCAGCTATCGTGGTCGACGAGGACGACGAC
GACGGAACGGCCGAAAGAGCCCGGCAGCAGCGCCGCCGACGCCGCCGCCG
TCTCGCTGCTGCGGCCGACGCCGCTACCGCTGGCGGTGGCTGGGCAGGAA
GAGGGATGGGCTCCGCTACAGCGGCGGCGGTGGCGCGGCAAAAGCAACGC
CCGAACAGCAGCCGGGACCACTTGGCGGCGGCGAGGCTGCAGCGCGAAGA
AAACCGGGAACAAGAGCGCCGGGATGCGGAGATGGCGCGGCGGCTGCAGT
CGGAAGAGCGGCGTAGCGGCGGCGCGGCGGGCGCACTCAGTGGCATGAGT
GACTACGTGGGTATGCTTGACAGCAGCGCATCAGCATTTTGGGATCAAGC
TGGCGGCGCCTTGCAAGGCGTGCCGGCTTCTGGTGGTAGCTCTGGCGCTG
GTGATACGGCAAGCGCTGCCGGCGGACGAGCGGGTGTCCGGGTCGGTGCC
AGCAGAAGCTTAAGCAGTGGCAGGAGCAGGGGTGGATCGAGCCCGGCAAG
ACCAGGCGCACGCGGTAGCACCGGCACTGCTCGCGGTAGATCCGGCGGCA
GTGTCGCCAGTCAGTGGGGCGGGAACTCGGCGGCGGTCAATTTGGCAAGG
CATCATCAGTCTTTCAGCCATGCAGCTCTTCAAATGATGGCCCTGCTTAC
CCAGCATCATGGCCACGGGAACCTCGCCGGCTTGATGGGCGGTATGCCGG
GTGGGGCAGATGGCACGGGTCTCGCGGCTCTGCAGGGTAGGGAGCTGACC
TCGGCGGATTACCAGCAGCTGCTCGCGTTGGGTGAGTGCGGCAAATAGCT
TTCGTCGAGATGTGGGCGATGCGAGCGGCGTTGCTCACACGGGGCAGGGT
CCTGTCGGGATGGACAGGTTGCAAGAAAACAGCCGTCGCTTACGCATGCA
ACACGGTGTGCAACGGTCGGAATACTTGAGGTCTCTTGATGAAGTTTTAT
TTGTAGGCGTGTGGTAGGTATGTTGTGCGGGTGCATTGAACGAACGTCCG
ACCGTACCCTTCATATTCGATATTGGGGCATGTGGCGATCGTGGGTGGCG
CACAAAACCGCCGAGTTTGCTGTTGATGAGCTCATGCCTCCTCTTCCTCG
TCAATACTCGCCCTCACTCAGACGAAGCGGGCGGGGGGACACGCGCCAAA
AAGGGCCTTTCGCCCTCGGAGGTGGCGATGCTGCCGCAGCAAACCGGCAA
CGGGAGCGGCCCCATGGAGCAGTGCTGCATCTGCATGGAGGACATGAAGT
CGAGGCAGAGCATCACCCGCCTGCCTGCCTGCCTGCACACATTCCACAGG
TGTGCCTTTGTTTGGCTTACGAGTCTTGTGTGGCTTTTTCGTTGGAGGTC
GTGGCTGTGGTGGTGGAAGGGGCCGGAGTCTTCTTCGTGCTCTTGCTTGT
GTCGGTCGATGACTGTTTTTTGTAGCGTGAGCTGACGGTTGTTGGTGGAG
GGATTCCGCCGATGGAATTTCTCAAAAAACGCTCTACGGTTCTTTCCCTG
TCAGCCATAAACTCATATCGCGTGTCTCTCACCCCGCTCTAGCTGAACTG
CAACTGCTGAAGGGGGCGGGCCACAGAACGTCGGTAAATTAGGGCTCTCG
GTTGGGCAGGGGGCAGAGGACCGCCCGTCTGATCTCGTGTTCGACCGCGC
CGGCATTCCAAACCAGTCATGAAAAGGAATTCTTGCACAAAACCCGTCTC
GCTGATATATCACCGGTGAACGTTGTAAGCCATGGCCCGACCAAATGCAT
GTCCCGTTCTGACTCCTCCCCCCCCTTCCCCCCGCCGTGACTCCCGATGT
TCTTCGTTTCTCTGATCAACAAACATCCCTTCATCCTCTCAGCAAGTGCA
TTAAGAAGTGGCTGGAAGTTAAGCCCTGCTGTCCCGTCGACAAGACGACC
GTGAGCGTGAGCAATTCAGCTTAAGCTGCCGCCCATTGCCCATCGCCGGA
CGCGAGCCGATCGCTGGCACAGCAGCTGGCTCTAACCTCCGGCCCGTTGT
CTGCCTGCTCGGCGTTGCTTGCGTCGGCTGGTTTGGGTGGCCTCCCGCTT
TTTTTCGTCCCCCTTCGCTGGACGCGGGGCGCTGGTGTGCGGTCCTTGCG
ATATGCCCCAAGTGTGAGCTCTGTTGTTTCATTGCCGTTAGATCCCATTT
ACGGCGTTGCGAGGACTGACAGGCGCGTTGAAGATGCGGCTCTGTCGGGG
GGAAAGTTGCTTGTATGTGCTCGGTTTCATGGAAATGGCCAGTACGGCAA
GGCCTCGGAAGCTAAAGCATTTATTGTGGCTTCGTGGTGGTTTTTGTGGT
GTGTGCGTGCGGAGGGATTAGGGAGTCCATTTCTCCGCCTTGTTGCTATT
TATCGCGCGCATGTGCGTGTTTCGTCCGGGGGAACCGGTCGGAATGCGAT
GGGTACTGCTGGAGTAGGAGATGGCCATTGCGAGAGACTCGATCCGACGC
AGCAGGAGGTTCACGATGGGTGCACAACACCGCGCCTGTGGAGCCTGTCT
CGCAACTTTTCTGTCGCATCTATCGTGCATCAAGCGGTGCGCCCGTTACC
CGAAGGTTGACGACTTCCCCACGCTTGGCGCGTGTTGCATGCTCGGCACG
GCGCCCCCC
back to topCoding sequence (CDS) from alignment at P-fluviatile_contig14:1350449..1355607-
>mRNA_P-fluviatile_contig14.2150.1 ID=mRNA_P-fluviatile_contig14.2150.1|Name=mRNA_P-fluviatile_contig14.2150.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=5190bp|location=Sequence derived from alignment at P-fluviatile_contig14:1350449..1355607- (Porterinema fluviatile SAG_2381)
ATGGAATTTCAGTCATCTCCTCACCGGGGACCGCGATGGAACTCGTCAGA
AACTTCGTCCGACGACGAAAACCAAATCGGTCCGACTCCCGGGGAGGGGC
AGAGGCGGCGCGAGCTGGAGCAGCAACGACAGCACGACGAGGTGGCATCC
CGTAAGTCCACCGGATCGTCGACCACGCGAACAGAAGGAGTCTCTTCCTC
GGATGAAGACGACGACGACGGCGAAAGTGCCAGCCTGGATCTTCTGATGG
ACAGGAAAGGACCGCCTTTCGGAGGCTTACCAACCAGCAGCAGCCGCATT
CCTCCCTCCGCTTCCTCAGCAACGGCCCGCGGCCACGACTCGTCGGGATC
AACAACGGCCTCCGAGGCCACCGTGGGGAACGGGGCTGGGCACAATTCAG
ACTCTTCGACATGTTCAGATGACAGTTTCTCCGTCGGGCCGAGCCGGCGG
CGATGATGGAATTTCAGTCATCTCCTCACCGGGGACCGCGATGGAACTCG
TCAGAAACTTCGTCCGACGACGAAAACCAAATCGGTCCGACTCCCGGGGA
GGGGCAGAGGCGGCGCGAGCTGGAGCAGCAACGACAGCACGACGAGGTGG
CATCCCGTAAGTCCACCGGATCGTCGACCACGCGAACAGAAGGAGTCTCT
TCCTCGGATGAAGACGACGACGACGGCGAAAGTGCCAGCCTGGATCTTCT
GATGGACAGGAAAGGACCGCCTTTCGGAGGCTTACCAACCAGCAGCAGCC
GCATTCCTCCCTCCGCTTCCTCAGCAACGGCCCGCGGCCACGACTCGTCG
GGATCAACAACGGCCTCCGAGGCCACCGTGGGGAACGGGGCTGGGCACAA
TTCAGACTCTTCGACATGTTCAGATGACAGTTTCTCCGTCGGGCCGAGCC
GGCGGCGATGCGGGAAGGCGAAAAGGCAGATGCTTCCTAACCGCGACAGC
GACTGCAGCAGCTTTGCACACGCGCCCGCATCGTCAGTTCCAGCTCCTTT
TCTGGCGAGTAGGTCCCGTGCCTTACGCACTTCGCCACCGCAGCGCGGCG
TTGACGTCGATGAAGTCGAAGTCATGCTCACGGGTCCGGGGGGAGACAAC
AAAGAACGGGGGAAAGGGAAAGGAAAGGCGACGCCAGAAATTTTGGCCGC
GACTGCTGCAGCACGTGTCGCTGCTTCTTCTACTACAGCTTCCCTGGCCT
CGCCGGAGCGGCAAGTGAGCGGTAACTCCAGCCGGAGGACCGGGAAGCGG
AAGCGTGGTTTCGGAGCGCTTGGGCCACGCTCATCATCTTTCTCTTCGCC
GGTTCTATTGCGCGACAGTCCAGTACGTGGTTCTTCTCATGGCCGGCAAC
AGCGTGATTCGACCCCAATATTGTCCGGAATCGATCGCCGTGGAGAGGGC
GGGTTGGAGCCTTCCTCGTCCGATGCGGTCGGCCACAAACGTACTGCGAT
CATTCGCCGCAGAGGGGAACGGGTGAATCATAATACATCCGCACCTGGAG
GTCAGGGAAAAGAACGATTGCCCGGGACCCCGAGCACGGCCGCTGTCAGC
TCGCCGCCTCGATTAGCCGCGTCGGCAACGCCGCGGCTTGCCGCTCGCAC
CGCTCCCGCCGCTGCCCCTTTTTCCTCAGCTTCGTGCCCGGACGTGCTGG
ACCTCTCGTCCGCGCCTCCGCGTGAAGTGATCGAAGTTCTGGACGACAGC
ACCAGCACCCACGGGGCGCCACTCTCGCAGCCGTCATCGTGGGTGAGCGG
CGGCGCCCCCGGGCAGGCGCAGTCTGGTGCTGGTGGCGAGAGTGTAGGCG
GCGGCGGCGGCTTGGAAAGGGGAGCCTGCAGCAGCAGATGCTTGCTCGGG
GCCGCAGGAGCCACGGTAGCACGCGCACCGGCGCCTCCACGAGTTCCGGG
TGCCGCGAGGAATCGCTGGAGAGAGCCAGCGGTGGCGTCTTCCCGCTCCA
GTGCAGACGGCGCAGCCGCTCCCGGGAACGCAGCTATCGTGGTCGACGAG
GACGACGACGACGGAACGGCCGAAAGAGCCCGGCAGCAGCGCCGCCGACG
CCGCCGCCGTCTCGCTGCTGCGGCCGACGCCGCTACCGCTGGCGGTGGCT
GGGCAGGAAGAGGGATGGGCTCCGCTACAGCGGCGGCGGTGGCGCGGCAA
AAGCAACGCCCGAACAGCAGCCGGGACCACTTGGCGGCGGCGAGGCTGCA
GCGCGAAGAAAACCGGGAACAAGAGCGCCGGGATGCGGAGATGGCGCGGC
GGCTGCAGTCGGAAGAGCGGCGTAGCGGCGGCGCGGCGGGCGCACTCAGT
GGCATGAGTGACTACGTGGGTATGCTTGACAGCAGCGCATCAGCATTTTG
GGATCAAGCTGGCGGCGCCTTGCAAGGCGTGCCGGCTTCTGGTGGTAGCT
CTGGCGCTGGTGATACGGCAAGCGCTGCCGGCGGACGAGCGGGTGTCCGG
GTCGGTGCCAGCAGAAGCTTAAGCAGTGGCAGGAGCAGGGGTGGATCGAG
CCCGGCAAGACCAGGCGCACGCGGTAGCACCGGCACTGCTCGCGGTAGAT
CCGGCGGCAGTGTCGCCAGTCAGTGGGGCGGGAACTCGGCGGCGGTCAAT
TTGGCAAGGCATCATCAGTCTTTCAGCCATGCAGCTCTTCAAATGATGGC
CCTGCTTACCCAGCATCATGGCCACGGGAACCTCGCCGGCTTGATGGGCG
GTATGCCGGGTGGGGCAGATGGCACGGGTCTCGCGGCTCTGCAGGGTAGG
GAGCTGACCTCGGCGGATTACCAGCAGCTGCTCGCGTTGGCGGGAAGGCG
AAAAGGCAGATGCTTCCTAACCGCGACAGCGACTGCAGCAGCTTTGCACA
CGCGCCCGCATCGTCAGTTCCAGCTCCTTTTCTGGCGAGTAGGTCCCGTG
CCTTACGCACTTCGCCACCGCAGCGCGGCGTTGACGTCGATGAAGTCGAA
GTCATGCTCACGGGTCCGGGGGGAGACAACAAAGAACGGGGGAAAGGGAA
AGGAAAGGCGACGCCAGAAATTTTGGCCGCGACTGCTGCAGCACGTGTCG
CTGCTTCTTCTACTACAGCTTCCCTGGCCTCGCCGGAGCGGCAAGTGAGC
GGTAACTCCAGCCGGAGGACCGGGAAGCGGAAGCGTGGTTTCGGAGCGCT
TGGGCCACGCTCATCATCTTTCTCTTCGCCGGTTCTATTGCGCGACAGTC
CAGTACGTGGTTCTTCTCATGGCCGGCAACAGCGTGATTCGACCCCAATA
TTGTCCGGAATCGATCGCCGTGGAGAGGGCGGGTTGGAGCCTTCCTCGTC
CGATGCGGTCGGCCACAAACGTACTGCGATCATTCGCCGCAGAGGGGAAC
GGGTGAATCATAATACATCCGCACCTGGAGGTCAGGGAAAAGAACGATTG
CCCGGGACCCCGAGCACGGCCGCTGTCAGCTCGCCGCCTCGATTAGCCGC
GTCGGCAACGCCGCGGCTTGCCGCTCGCACCGCTCCCGCCGCTGCCCCTT
TTTCCTCAGCTTCGTGCCCGGACGTGCTGGACCTCTCGTCCGCGCCTCCG
CGTGAAGTGATCGAAGTTCTGGACGACAGCACCAGCACCCACGGGGCGCC
ACTCTCGCAGCCGTCATCGTGGGTGAGCGGCGGCGCCCCCGGGCAGGCGC
AGTCTGGTGCTGGTGGCGAGAGTGTAGGCGGCGGCGGCGGCTTGGAAAGG
GGAGCCTGCAGCAGCAGATGCTTGCTCGGGGCCGCAGGAGCCACGGTAGC
ACGCGCACCGGCGCCTCCACGAGTTCCGGGTGCCGCGAGGAATCGCTGGA
GAGAGCCAGCGGTGGCGTCTTCCCGCTCCAGTGCAGACGGCGCAGCCGCT
CCCGGGAACGCAGCTATCGTGGTCGACGAGGACGACGACGACGGAACGGC
CGAAAGAGCCCGGCAGCAGCGCCGCCGACGCCGCCGCCGTCTCGCTGCTG
CGGCCGACGCCGCTACCGCTGGCGGTGGCTGGGCAGGAAGAGGGATGGGC
TCCGCTACAGCGGCGGCGGTGGCGCGGCAAAAGCAACGCCCGAACAGCAG
CCGGGACCACTTGGCGGCGGCGAGGCTGCAGCGCGAAGAAAACCGGGAAC
AAGAGCGCCGGGATGCGGAGATGGCGCGGCGGCTGCAGTCGGAAGAGCGG
CGTAGCGGCGGCGCGGCGGGCGCACTCAGTGGCATGAGTGACTACGTGGG
TATGCTTGACAGCAGCGCATCAGCATTTTGGGATCAAGCTGGCGGCGCCT
TGCAAGGCGTGCCGGCTTCTGGTGGTAGCTCTGGCGCTGGTGATACGGCA
AGCGCTGCCGGCGGACGAGCGGGTGTCCGGGTCGGTGCCAGCAGAAGCTT
AAGCAGTGGCAGGAGCAGGGGTGGATCGAGCCCGGCAAGACCAGGCGCAC
GCGGTAGCACCGGCACTGCTCGCGGTAGATCCGGCGGCAGTGTCGCCAGT
CAGTGGGGCGGGAACTCGGCGGCGGTCAATTTGGCAAGGCATCATCAGTC
TTTCAGCCATGCAGCTCTTCAAATGATGGCCCTGCTTACCCAGCATCATG
GCCACGGGAACCTCGCCGGCTTGATGGGCGGTATGCCGGGTGGGGCAGAT
GGCACGGGTCTCGCGGCTCTGCAGGGTAGGGAGCTGACCTCGGCGGATTA
CCAGCAGCTGCTCGCGTTGGACGAAGCGGGCGGGGGGACACGCGCCAAAA
AGGGCCTTTCGCCCTCGGAGGTGGCGATGCTGCCGCAGCAAACCGGCAAC
GGGAGCGGCCCCATGGAGCAGTGCTGCATCTGCATGGAGGACATGAAGTC
GAGGCAGAGCATCACCCGCCTGCCTGCCTGCCTGCACACATTCCACAGAC
GAAGCGGGCGGGGGGACACGCGCCAAAAAGGGCCTTTCGCCCTCGGAGGT
GGCGATGCTGCCGCAGCAAACCGGCAACGGGAGCGGCCCCATGGAGCAGT
GCTGCATCTGCATGGAGGACATGAAGTCGAGGCAGAGCATCACCCGCCTG
CCTGCCTGCCTGCACACATTCCACAGCAAGTGCATTAAGAAGTGGCTGGA
AGTTAAGCCCTGCTGTCCCGTCGACAAGACGACCGTGAGCGTGAGCAATT
CAGCTTAACAAGTGCATTAAGAAGTGGCTGGAAGTTAAGCCCTGCTGTCC
CGTCGACAAGACGACCGTGAGCGTGAGCAATTCAGCTTAA
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