Homology
BLAST of mRNA_P-fluviatile_contig2.3944.1 vs. uniprot
Match:
D7FW34_ECTSI (Peptidyl-prolyl cis-trans isomerase n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FW34_ECTSI)
HSP 1 Score: 260 bits (664), Expect = 3.150e-83
Identity = 119/127 (93.70%), Postives = 125/127 (98.43%), Query Frame = 1
Query: 199 SGYYEGTKFHRNIKGFMVQGGDPLGTGKGGESVWGGPFPDEFHPDNKHDRRGMVSMASKGPNTNKSQFFITYTRQPHLNNVYTVFGKVIDGFDVLDVMEKAPVGKKERPVTDIIIKHVKIHANPIAE 579
SGYY+GTKFHRNIKGFMVQGGDPLGTGKGGES+WGGPFPDEFHPDNKHDRRGMVSMASKGPNTNKSQFFITYTRQPHLNNVYTVFGKVIDG DVLDV+EKAPVGKKERP+T+IIIKHV IHANP+AE
Sbjct: 34 SGYYDGTKFHRNIKGFMVQGGDPLGTGKGGESIWGGPFPDEFHPDNKHDRRGMVSMASKGPNTNKSQFFITYTRQPHLNNVYTVFGKVIDGLDVLDVIEKAPVGKKERPLTEIIIKHVTIHANPVAE 160
BLAST of mRNA_P-fluviatile_contig2.3944.1 vs. uniprot
Match:
K3X4J3_GLOUD (Peptidyl-prolyl cis-trans isomerase n=2 Tax=Pythiaceae TaxID=4782 RepID=K3X4J3_GLOUD)
HSP 1 Score: 212 bits (539), Expect = 2.360e-64
Identity = 96/126 (76.19%), Postives = 108/126 (85.71%), Query Frame = 1
Query: 202 GYYEGTKFHRNIKGFMVQGGDPLGTGKGGESVWGGPFPDEFHPDNKHDRRGMVSMASKGPNTNKSQFFITYTRQPHLNNVYTVFGKVIDGFDVLDVMEKAPVGKKERPVTDIIIKHVKIHANPIAE 579
G Y+GT+FHRN+KGFMVQGGDP GTGKGGES+WGG F DEFHP N+H+ RG+VSMA+ GPNTNK QFFITY +QPHLNNVYTVFGKVIDGFDVLD +EK PV K RPV DI I+ V IHANP+AE
Sbjct: 38 GAYDGTRFHRNMKGFMVQGGDPTGTGKGGESIWGGKFDDEFHPQNRHNCRGIVSMANNGPNTNKQQFFITYAKQPHLNNVYTVFGKVIDGFDVLDTLEKVPVDTKYRPVKDITIQSVTIHANPLAE 163
BLAST of mRNA_P-fluviatile_contig2.3944.1 vs. uniprot
Match:
A0A8K1CJL0_PYTOL (Uncharacterized protein n=1 Tax=Pythium oligandrum TaxID=41045 RepID=A0A8K1CJL0_PYTOL)
HSP 1 Score: 209 bits (533), Expect = 1.710e-63
Identity = 94/126 (74.60%), Postives = 108/126 (85.71%), Query Frame = 1
Query: 202 GYYEGTKFHRNIKGFMVQGGDPLGTGKGGESVWGGPFPDEFHPDNKHDRRGMVSMASKGPNTNKSQFFITYTRQPHLNNVYTVFGKVIDGFDVLDVMEKAPVGKKERPVTDIIIKHVKIHANPIAE 579
G Y+GTKFHRNI+GFMVQGGDP GTGKGGES+WGG F DEFHP N+H+ RG+VSMA+ GPNTN+ QFFITY +QPHLNNVYT+FGKVIDG DVLD MEK+ V K RP+ DI+I+ V IHANPIAE
Sbjct: 35 GSYDGTKFHRNIRGFMVQGGDPTGTGKGGESIWGGKFDDEFHPQNRHNCRGIVSMANNGPNTNRQQFFITYAKQPHLNNVYTIFGKVIDGMDVLDAMEKSQVDAKNRPLKDIVIESVTIHANPIAE 160
BLAST of mRNA_P-fluviatile_contig2.3944.1 vs. uniprot
Match:
A0A067DAD1_SAPPC (Peptidyl-prolyl cis-trans isomerase n=3 Tax=Saprolegniaceae TaxID=4764 RepID=A0A067DAD1_SAPPC)
HSP 1 Score: 207 bits (526), Expect = 1.850e-62
Identity = 94/139 (67.63%), Postives = 110/139 (79.14%), Query Frame = 1
Query: 163 PTSTIRSLTPQRSGYYEGTKFHRNIKGFMVQGGDPLGTGKGGESVWGGPFPDEFHPDNKHDRRGMVSMASKGPNTNKSQFFITYTRQPHLNNVYTVFGKVIDGFDVLDVMEKAPVGKKERPVTDIIIKHVKIHANPIAE 579
PT+ L S Y+ T FHRN+KGFM+QGGDP GTGKGGES+WGG F DEFHP N+H+ RG+VSMA+ GPNTNK QFFITY +QPHLNNVYTVFGKVIDGFDVLD MEK PV K RP+ +I++ + IHANP+AE
Sbjct: 22 PTTAENFLALCASNAYDKTTFHRNMKGFMIQGGDPTGTGKGGESIWGGKFNDEFHPQNRHNARGIVSMANSGPNTNKQQFFITYAKQPHLNNVYTVFGKVIDGFDVLDAMEKTPVDAKSRPLKEILLHSITIHANPLAE 160
BLAST of mRNA_P-fluviatile_contig2.3944.1 vs. uniprot
Match:
A0A485L1A0_9STRA (Peptidyl-prolyl cis-trans isomerase n=2 Tax=Aphanomyces TaxID=100860 RepID=A0A485L1A0_9STRA)
HSP 1 Score: 205 bits (521), Expect = 1.040e-61
Identity = 93/127 (73.23%), Postives = 105/127 (82.68%), Query Frame = 1
Query: 199 SGYYEGTKFHRNIKGFMVQGGDPLGTGKGGESVWGGPFPDEFHPDNKHDRRGMVSMASKGPNTNKSQFFITYTRQPHLNNVYTVFGKVIDGFDVLDVMEKAPVGKKERPVTDIIIKHVKIHANPIAE 579
S Y+ T FHRN+KGFM+QGGDP GTGKGGES+WGG DEFHP N+H+ RG+VSMA+ GPNTNK QFFITY +QPHLNNVYTVF KVIDGFDVLD MEKAPV K RPV DI++ V IHANP+AE
Sbjct: 34 SNGYDNTLFHRNMKGFMIQGGDPTGTGKGGESIWGGAMNDEFHPQNRHNTRGIVSMANSGPNTNKQQFFITYAKQPHLNNVYTVFAKVIDGFDVLDQMEKAPVDAKHRPVKDIVLHKVTIHANPLAE 160
BLAST of mRNA_P-fluviatile_contig2.3944.1 vs. uniprot
Match:
D0MRP3_PHYIT (Peptidyl-prolyl cis-trans isomerase n=21 Tax=Peronosporaceae TaxID=4777 RepID=D0MRP3_PHYIT)
HSP 1 Score: 205 bits (521), Expect = 1.080e-61
Identity = 92/127 (72.44%), Postives = 106/127 (83.46%), Query Frame = 1
Query: 199 SGYYEGTKFHRNIKGFMVQGGDPLGTGKGGESVWGGPFPDEFHPDNKHDRRGMVSMASKGPNTNKSQFFITYTRQPHLNNVYTVFGKVIDGFDVLDVMEKAPVGKKERPVTDIIIKHVKIHANPIAE 579
SG Y+GTKFHRN+KGFMVQGGDP GTGKGG+S+WGG DEFHP N+H+ RG+VSMA+ GPNTNK QFFITY +QPHLNNVYTVFGK+IDG D LD +EK PV K RP+ +I IK V IHANPIA+
Sbjct: 34 SGAYDGTKFHRNMKGFMVQGGDPTGTGKGGQSIWGGTIDDEFHPQNRHNCRGIVSMANSGPNTNKQQFFITYGKQPHLNNVYTVFGKIIDGMDTLDAIEKTPVDAKNRPLKEIAIKSVTIHANPIAD 160
BLAST of mRNA_P-fluviatile_contig2.3944.1 vs. uniprot
Match:
A0A024U9Y3_9STRA (Peptidyl-prolyl cis-trans isomerase n=6 Tax=Aphanomyces TaxID=100860 RepID=A0A024U9Y3_9STRA)
HSP 1 Score: 202 bits (513), Expect = 1.760e-60
Identity = 91/127 (71.65%), Postives = 105/127 (82.68%), Query Frame = 1
Query: 199 SGYYEGTKFHRNIKGFMVQGGDPLGTGKGGESVWGGPFPDEFHPDNKHDRRGMVSMASKGPNTNKSQFFITYTRQPHLNNVYTVFGKVIDGFDVLDVMEKAPVGKKERPVTDIIIKHVKIHANPIAE 579
S Y+ T FHRN+KGFM+QGGDP GTGKGGES+WGG DEFHP N+H+ RG+VSMA+ G NTNK QFFITY +QPHLNNVYTVFGKVIDGFDVLD MEKA V K RP+ DI++ +V IHANPIA+
Sbjct: 34 SNSYDNTVFHRNMKGFMIQGGDPTGTGKGGESIWGGAIDDEFHPQNRHNVRGIVSMANSGANTNKQQFFITYAKQPHLNNVYTVFGKVIDGFDVLDAMEKAQVDSKHRPLKDIVLNNVTIHANPIAD 160
BLAST of mRNA_P-fluviatile_contig2.3944.1 vs. uniprot
Match:
A0A6U3ZYE6_9STRA (Peptidyl-prolyl cis-trans isomerase n=1 Tax=Ditylum brightwellii TaxID=49249 RepID=A0A6U3ZYE6_9STRA)
HSP 1 Score: 201 bits (512), Expect = 4.770e-60
Identity = 94/145 (64.83%), Postives = 116/145 (80.00%), Query Frame = 1
Query: 163 PTSTIRSLTPQRSGYYEGTKFHRNIKGFMVQGGDPLGTGKGGESVWGGPFPDEFHPDNKHDRRGMVSMASKGPNTNKSQFFITYTRQPHLNNVYTVFGKVIDGFDVLDVMEKAPV--GKKE----RPVTDIIIKHVKIHANPIAE 579
P ++ L SGYY+GT FHRN++GFM+QGGDP GTGKGGES+WGG F DEFH N HDRRG+VSMA+KGPNTNKSQFFITY RQPHLNNVYTVFG+++DG+DVL+ ME+ PV G K+ RP+T +++ V IHANP+A+
Sbjct: 22 PRTSFNFLALCASGYYDGTVFHRNMRGFMIQGGDPKGTGKGGESIWGGTFEDEFHSTNTHDRRGVVSMANKGPNTNKSQFFITYERQPHLNNVYTVFGRILDGWDVLEQMERLPVVGGTKKSVAHRPITPPVVEKVTIHANPLAD 166
BLAST of mRNA_P-fluviatile_contig2.3944.1 vs. uniprot
Match:
H3G7R5_PHYRM (Peptidyl-prolyl cis-trans isomerase n=1 Tax=Phytophthora ramorum TaxID=164328 RepID=H3G7R5_PHYRM)
HSP 1 Score: 201 bits (510), Expect = 5.130e-60
Identity = 96/142 (67.61%), Postives = 110/142 (77.46%), Query Frame = 1
Query: 163 PTSTIRSLTPQRSGYYEGTKFHR---NIKGFMVQGGDPLGTGKGGESVWGGPFPDEFHPDNKHDRRGMVSMASKGPNTNKSQFFITYTRQPHLNNVYTVFGKVIDGFDVLDVMEKAPVGKKERPVTDIIIKHVKIHANPIAE 579
P S L SG Y+GTKFHR NI GFMVQGGDP GTGKGG+S+WGG F DEFHP N+H+ RG+VSMA+ GPNTNK QFFITY +QPHLNNVYT+FGKVIDG D LD MEK+PV K RP+ +I +K V IHANPIA+
Sbjct: 22 PRSAENFLALCASGAYDGTKFHRQVANILGFMVQGGDPTGTGKGGQSIWGGAFGDEFHPQNRHNCRGIVSMANSGPNTNKQQFFITYAKQPHLNNVYTMFGKVIDGMDTLDAMEKSPVDAKNRPLKEIELKSVTIHANPIAD 163
BLAST of mRNA_P-fluviatile_contig2.3944.1 vs. uniprot
Match:
A0A7S1ZV93_TRICV (Peptidyl-prolyl cis-trans isomerase n=1 Tax=Trieres chinensis TaxID=1514140 RepID=A0A7S1ZV93_TRICV)
HSP 1 Score: 199 bits (506), Expect = 3.780e-59
Identity = 94/145 (64.83%), Postives = 114/145 (78.62%), Query Frame = 1
Query: 163 PTSTIRSLTPQRSGYYEGTKFHRNIKGFMVQGGDPLGTGKGGESVWGGPFPDEFHPDNKHDRRGMVSMASKGPNTNKSQFFITYTRQPHLNNVYTVFGKVIDGFDVLDVMEKAPV--GKKE----RPVTDIIIKHVKIHANPIAE 579
P ++ L SGYYEG FHRN+K FM QGGDP GTGKGGES+WGG F DEFHPDN HDRRG++SMA+KGP TN+SQFF+TY RQPHLNNV+TVFG+++DG+DVLD ME+ PV GKK+ RPV +I+ V IHANP+A+
Sbjct: 22 PRTSFNFLALCASGYYEGAMFHRNMKSFMAQGGDPTGTGKGGESIWGGTFGDEFHPDNVHDRRGVLSMANKGPGTNRSQFFVTYERQPHLNNVHTVFGRLLDGWDVLDQMERLPVEGGKKKSRANRPVDPPVIQRVTIHANPLAD 166
The following BLAST results are available for this feature:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig2.3944.1
>prot_P-fluviatile_contig2.3944.1 ID=prot_P-fluviatile_contig2.3944.1|Name=mRNA_P-fluviatile_contig2.3944.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=114bp
MVQGGDPLGTGKGGESVWGGPFPDEFHPDNKHDRRGMVSMASKGPNTNKS
QFFITYTRQPHLNNVYTVFGKVIDGFDVLDVMEKAPVGKKERPVTDIIIK
HVKIHANPIAEAS*
back to topmRNA from alignment at P-fluviatile_contig2:2558709..2573446-
Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig2.3944.1 ID=mRNA_P-fluviatile_contig2.3944.1|Name=mRNA_P-fluviatile_contig2.3944.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=14738bp|location=Sequence derived from alignment at P-fluviatile_contig2:2558709..2573446- (Porterinema fluviatile SAG_2381)
AACTTCGTTGGGAGACATCAAGATTGAGGTTTTCTGCGACACGGCGCCGC
GAACCGCGGAAAATTTCCTCGCCCTCTGCGCAAGGTGGGGAAGCCCAAGT
TTACAGCGCTGACATTGCCTTGAGCACACTGTGTGCTTGGGTCGGCTGGT
CCGCTTGATTGATTGGATCCAACTTTCATGAAATGGCTGATGGCTTGGAT
AATGAAAGCCTGTCCGTCAAGGTCAAGCTTTTGCGTGCACACGCTTTCTG
CAAACGAGAGCAGTCGAATTTGTGTCTGGTTGGGCACACATAGTCTACAC
CGCATACAACAGACTGGTTCGCACTCTTCCCTGCCCAAACCACACCTGGA
ACGATACGTGTCGCCCCTCACCCACCGCAACTGAAAAAACCGCTCGTGGC
TTAGTTTGCTCACAGCAGTGCGCTCTACCTCTGCTTGCAATCCATCTTGA
GCTAGGTTCCCACGCCCAAGTTGCGGTGTGATGTGAGAGAGCGAGGATAT
GACAGAGTTCGGCAGCAGCCTCCTCCTGAACCCCCCACGTCGACCATCCG
ATCGTTGACGCCCCAACGCAGTGGCTACTACGAAGGGACAAAGTTCCACC
GAAATATCAAGGGCTTCATGGTCCAGGGCGGGGATCCTCTGGGCACGGGG
AAGGGCGGGGAGAGCGTCTGGGGTGGACCATTCCCGGACGAGTTCCACCC
GGACAACAAACACGACCGAAGGGGGATGGTGAGCGGCAAACTGTTGATGC
GCCACGTTGCGTACTTTCCGTAGTGGTATGACGTCGAACAGCGAGACAGA
GCTCGTCCAAGAGGGGAACGTGGAGAAGATAAGAAACCACGCAGGCTCAA
TCAGAGGGTACGTGTACCGGATCACGAAACAATACCCCCCCCACAGGTCA
CCCTGTTCTATAAATCGGAATATAGGTTGGCGTCGGGTGGCACCGCGCTG
TAAAATAGCCACCGAACCCTAGACATGAAAGAACTGTGGCTACCGGCTTT
TATTGCCCGTACCGTAACACAAACCTGATATAGACATGAAATAGCGGAAC
TAACTGACCTTTTATTTACCATACCATAACGCAAAGCTCACAATAGACAT
GAAACTACGAAGGTAATCCATACCGTAACACAAACCTGATATAGACGTGA
AATAGCGGAGCTAACTGACCTTTTATTTACCTTACCATAACGCGAAGCTC
ACAATAGACATGAAACTACGAAACTAATCCATACCGTAACACAAACCTGA
TATAGACGTGAAATAGCGGAACTTACCAACTGTTTACCATTCCATAACAC
GAAGCAAACAATAGACATGAAACTACGAAACTAATCCATACCGCCACGAA
CCTGATATGGACATGAAATAGCGCAACTTACCAATTTTTGTTTACATTAC
CATAACACGAAGCAAACAATAGACTTGAAACTACGAAACTAATCCATACC
GCCACAAACCTGATATAGACGTGAAATAGCGGAACTTACCAACTTTTGTT
TACCATACCATACCACGAAGCTCACAATAGACATGAAAATACTAAACTAA
TCAGTTTTATTTCCCATACCTTAAACAATAACCCGGAGGAATATAAAACT
AGAATTGGAATTACGAATCTAACCAATTTTCTTTACCATACCATAACAAA
CAGTAAAGAATATCACCCCCCCTCAATAGTCCAACCCCAAACAAAAATAT
AGATACGGGTCGAATTGGGCCGACCCCCCTCCACCACCCCCCTGCCCCAG
ATGGGAGGAGGGTACAGTCCAAAGTAAGCACAAGCTTACCCAAGGTCAAT
GTCTATTGGTACGGCATTGGAAAAATACTAGTCCCCATTGGGCGGTGGAA
GACTGGAGCTACGACATCCCTAAATTCTCCGACGTGCGACCCAAAACGGG
TCGGCGGAGGAGAGGGGTGGGATGATCATTATCTGATGTGGGTCTAGTTT
AGATGGACCCATAGAGAAAAGCTTATTACTCAACGTCGAGATATGACCCA
TAAGTAATTGACCAACCACGCAAGACCATGCGGAGCTAAATGGGCGGCAC
ATTCGGGATGTTGTTTTCTGGAGTGACAGAGGCGAGTACAAAGCGTAAAG
GGATTGTTGGCTAAACTTTCGGCAGATAGGTCTACTCGGGAGCGTAAGTG
GGGTAGCAACCCATGGTGGAACGTGTAGGAGAAGCAGGACGTTGTTATGC
GTTTCATCCCAGCGTGTGCGTAGGATCTTAGGTTATGCAAGTCGCCCCTG
AACTTTATGTGGTGAAAATGACCTCCCTGGAGGAAAGTAACCTGTATAGC
GAGATAAAAGGGAGAACATGTCGGGTGGTCGGGGGACGTCTGGGCAGTAA
CCAATCAGCATCCGGTACAAGACTAGGGTACTTGTATCACCAGGTGTGGA
ATTGGGTCTAGACTACGAGCCTATGTTGGAGGCGCTATTTTAGCGTTGGT
GAGCCGGCAAAAGAATCGAATGGAACCATAACCCTCACCGGACGCTCGGA
TTGGGAAGACCGTGCATTCCGTAATTTTTCCCACAAACCAAAACGACCAA
AGAGGCTACGGTCCACTACTGTGTGTAGATATCATGAGAAGGGTGCGGTA
CAAAGACGGATGGGAGACGAAGTTGTACAAGGAGGGAGACAAGATGGAGT
TACTAGTTTTTGGAGTCGAAAGAGACATGACCAGGATAGAGTTCAAGAAA
GCCTGCGTGACGGAAGGACTACATTGCTTAGCTAAGGGGGAAGTAGGTAG
AGAACATCATCACTTCAGGGTAACAATGACCAGAGGTGATAGTAAAACGG
GCCAGCAGGTTGACATTGAGAAGCTGTCGAAATACGTACGGAAGGTGGGA
TGGAGGGTTTGCACAGCCAACATGATAGAATCAGAGAAGGTAAGAAGACA
GGGACGAATGAAGAATGAGGTGGACAGGGGGGGCGGGAAGGTTAGTCAAG
CAAGTAAGAAGATCGCGCAGAGGCGACAGGCGGGCGTAAGGGTGCGGAAA
GAGTCCAATAGGGACAAACACCAGCTACGAGTAGGGTCGTGGAACGTGTG
CGGGTTTGCGAGAGACAAGCGCAAGAGGTTGGAAATAGTTGAGCAAGTAG
AACAGGCTGAGCTAGATGTGGTGGGGATCCAAGAGTCATGGGAGTTGAAA
GATGGGGATATCGAAAGCAGGATAGGAGAATACCGGTGGATAGGAAAGGC
ACGGAAAGGTTTAGACCCGAAAAAAAGGGGAGAGGGGGGAGTCGGATTTC
TCACCAAGGAACACTTGTTTGAGTTGGTAGAAATAGTGGTAAAGACGACG
TTCGAGGAAAGCTTATGGATAAGGGTACCAGGAGAAAGGGGTGATCGACT
TATTTATAGGGAATGTATATATTCCACCGTCGTCGAAGAAAGTCGCATGT
AAGGCGCAAGAGAATTTCGAGCAAGTGGGGGAAGGTGTTCAGAAGTTCAA
GAGGAAGGGAGAAGTTGTCATAGTAGGCGATTTCAACTCTCGAGTTGGGA
AAGCTAGTCGGGGGGGGCAGGTGATAGGGCAATACGGAGAAAACCGAGTT
AATGCCAACGGGGAAAAAATGCTTGACTTCCTTGGCAGTAACGAGCTGAT
GGCAACAAACAATAGGAGTAGGGAGGACACCCCGCAGTATACAAGACAGC
GGGCAAGTTGCGGAGAATTATCGATTCTTGACTACATCCTGGTAGACAGA
GAAACAAACCGGATCCCAAGATTGCAAGTAAACAAGGTAGATATAGGCAC
GACTGACCACTTCCTTATTTGGGCTAAAACAACACGTAGCAAGAGGGTCA
AGAGTACGAAGACGAGGAAGGTATTCAGATGGAAAGTAGAACGACTGGGA
AACGAGAGAGTACGTGCTGAATTCCAACAAAGGAATGCAGACAGCGTAGA
ACAAGTAAGGGAACTGATGGGGAAAGCGGGAGAGGAAGAGGACGTTCAAG
TAAAAGGGGACAGACTAATCGCAGGATGGGAAAACATAGTGAACACAACC
GCAGAGGAAGTGATAGGGAAAAAGATGGTCCGGTGTGGTCAGGCGGTTAA
GTGGTGGGACGAAGAATTGAGGGAAGAAATAGGGGAACGAAGAGAACTGT
TTAAGCGGCACATGGATGAGAAGACAGAGGAGAGTTGGGAAACCTACAGA
GCCAAGAGGAAAGATGTGAATAGAGTAGTGAAAAAGAAGAAGAAAGGCAT
CTGGGACGAAGTGGTGCAGGAAGCGAACGGGGGGTTGGAGGGTAGCGTAA
AACAGATGTGGCAGGGAATTAATGGATTGGTAAAAAAGAATGAACATGGG
GGGGAAACAGGAGTAGCAACATTGCGAAGCGTAGACGGTAAACTAGTCAG
CAGTGGCAAGGGTAAGAGACAGGTACTAGCAGGACACTTTAGGAGACTCG
GGGTGCCGTCGGAAAAGGCAGACTTCGACCAAGTATTCAAGGAAGAGGTA
GACGCGTGGGCCCAAGCAGAAGAGAGAGCTTCGATGGAGGAAGTTGGGAA
TGCAGAGCTCCAAAAGAAGTTCACCGAGGAAGAGGTTGAGAGTTGTGTGA
AAAATCTACAGTGTCACAAGGCCGCAGGGGTAGATGGGATAGTGAACGAA
ATCATGAAGTTCGGGGGAGAGGGGATGATTCAGATGATGGTGCTGTTGTT
CAACTGGGTATGGGAAAACGAATACGCACCGAGTAGATGGAGGGAAAGGG
TGGTGGTGAACCTATTTAAGAAAGGAGATAAGACTGACCCAGGAAACTAT
AGGGGAATCACCCTGTTGAGCACAGTGGGGAAAGTGTTCTTCAATATCCT
CAACAACAGAATAGTAAGAGTACTGGAGATGGAAAAGAGAATTAGTGAGG
GTCAAGCAGGTTTCAGGGAGGCTAGGGGGTGTGGAGATCACCTATACACG
GTAGGGAGAATCATACAAGGTCGGAAGAGGGTGGGAAAGCCGACATATTG
TTTTTTCCTAGACGTTCAGAAAGCGTATGATACAGTATGGAGAAATGGGC
TCTGGAAAAAGTTGGCGAAGTATGGGATAAACGGGAAGATGTGGAGAATG
ATTAAGAAGATGACAGAGAGTACGAAAAGCGCCGTGATGTTAGATGGAGA
ACTCTCGAGGTTCTTCGACATTGAGCAGGGGGTCCCACAGGGGTGCACAA
TGTCCCCAACGTTGTTCCAGGTATTCATCAACGACTTACTTAAAGAGGTA
GAGGCGGTAGGGAAGGGAGTAGAAGTAGGGGAAACCTCGGTATCGGGACT
GCTATTTGCTGACGACTTTGTTGGGATGTCGGACACGCCTGAGGGGCTCC
AACTACAGATTAACGTAGCGAAGACCTACGCTGATAAGTGGAGATTCTCG
GCCAACGTCCCAAAGTGTGCCGTAATGGTATGCAACGAAGTTGGTGACGA
GGAAGTAGGTACCAAGCGGACGTGGGGGGACAAGGAGCTACCAAGAGTGG
AAAAGTACACATACCTTGGAGTAGAGATAGCAAAAGACTGTAAATGGGAT
GCACACATGCACGAAATAGCGGACAAGGGCAAAGCAAGGGCAGGGAAGTT
GCACCCAATCCTAGCAGACCGGCACCTTGATACACGCGTCAAAATGACCA
TTCTGAAATGTGTCATCATCCCGCCACTAGAGTACGCGGGAGAAGTTTGG
GAAGGGAACAAGAACATAGTAGCAGAGTTGGAGGCAGCACAGGTGAAAGC
AGCGAAGATCATTCTAGGATGCTCCCAGCGCACAAGTAACGCAGCAGTAA
GAGCAGAGTTGGGGATTAACTCCTTAAGAACGGGAAGAGACAGGAGGAAG
TTGACATGGCAATGCCGGATGGAAAACATGGGAAAGGAGAGGTTACCGAG
AATAGCTTGGGAGGCGAGATGGGTAAACAAGGCCAAGGGTAGACAACCCA
TTGAGTGGGCTAAGGTTGTACAGGGAGTGTGGAGTGGGTTAGATATTGAC
GAACGGGAGACGACGGGAGCAGAAAGCTTAGAAGGGTACAAGAAGAGCAT
CTCAGAAGCCTTTGAAAATAGAGAAGACCAAAGCTTGCGGAAAGAGACCA
AGGAAAAGGAGGTTCTAGAAGTGTACGGAAGGCTGAACGAAGGAATAGGG
TTCAAGGAGTACCTGAACGGACCATTGGATGAAGGGACAAAGATGAAGGT
CAAAACATTGACCTACCGGAACGTAGAAGGAGGTTTAGGAAGGCAGACGA
CGACGAAGACAAGTTCAAATGTGACTGCGGCGCCGAATGCGAAGAACGGG
TACATGTAGTTGCGGAATGCCCGTTGTACGATCAGGAGAGAGAAGGGTAC
ATCGTTGAGCTGGAAAAAGTAGACAGTCGGTATAGAGAGAAGTTTGAGGC
ATGGAACAAAGAGGGGAAGACGGTAGCGGTACTCGGGTGTAAGATGTGGC
CCAGGAAGGACAGGTAAAAAGTAGACAGGTTAGGGAAAACATTTTTGAGC
CACCTTTGGCAAAGTAGGAAGAAACGATTGGCCATCGGTGGTCGATCCTG
CGGGAACAATGCTCCGTCCTCTCCTGGACGCGTGGTCAATGGTCTAACAA
CTAAGGCAAGCAAAACATGAGTACGCCCCCCACAGGTCTCTACGCACGAA
GCGACATGAAACCGTCCGACGACATATCCCTGTAAATCCATGCTGGCACG
AACACTCTCCCTGGTTCTTCACGCTAAGTGACTAACCAACAAGTGGGGCA
AGGACGCCCCGGATACATAAAAAAAACTTGCGAAAATGAAGACGGTAATC
GAGGGGGGAAAATCCGGCCTCCCGGACGAAAACCCTCGCAAATATCTTCA
AACAACAAGCAGATACCGTCGCTGTCGCACAGGAATCCAACGGTCGCACT
ACAAGGCAAACTACGCCGGCAAGTTCATCAACGTCTGCCGGTGCTTGGAC
ACCTTGTCCCTGCTAAGGGCCTCGGTGAGCAGGGCTGCGTGCTGCTCCGA
CGACTTCACGTACTCGATCGTAATCACGCCCGACCTGAACAACTCCCGAA
TGAATGGAATCGTACGTCTATATGCTTGGTACGCCTGGAGCTCAGGGGGT
TCTCCACCAGCGAGATAGCCCCCTGGTTGACCTCAAGGACCCTTATTCTA
CCTCCTCTAGTCTCGGGCGCAACGAAGGAAAGCACCTTGTGCACAAATTA
TGCCTCCTTCACACCATCGCCGGCAACAATGTACTCTGATTCCGTAGAGG
ACGACGCAGTGATCCCCTGGGTCTTGCTGCTGTGGCTGACTACGGTTCGT
CCGACTGTCGTAGCCAACCCGGACACAGAACGCCTGTCTACAGGGTCGTC
AGCATAGCTGGTGTCTACATACACGGCCAATTCGAGTCCCGAGCCCCTCT
GGTAGGTTATCAACAGGTCCCTGGTACCTTTCAGATACGCCAGAAATTTT
TGAATCGCCTTCCATTGCCTAGCGGTCGGCGCGTGGGCGTGGCGTGCGAC
CGCGCGTACCGCAAACGAAATTTCCGGCCTAGTCATAGTCGACAACCACA
TCAGGCAACCGATTGCCTCTCTAACCGGCCAATCCCCCCCGCTTTCGCCG
TTTCGCTTCGGCCCAAGATCGGCGTCAGTCGAGACGGGGATGAGGGAGGT
CGTGTGCACGTCGAAACGATCAACAAGAGAGTCGATGTACGCGCTCTGGC
TGACCTTAAGGATGCCGGCTTCTAGGTCACGGTCAATACCACACCCATCA
AACCACTTGCACTCCCCGAGGTCCTTGGTGGGGAACTTCTTGTTCAACGA
AGCCAACAACTCGTCGCAGTCCTTGTCAGATCCCGCCACCAAGAGGTCGT
CAACATAGATCGCAATTATCATCACCACGACCCCGTCAACAATCTTGCGG
AAGATGCAAGGGTCTGCCTTACTCTGCTCAAACCCGTTCTCCACCAACGT
GTGAGCGGCGTGGTTCCCCCACTCCCACCCGCTCTGCTTCAGGCCGTAAA
TAGCACTCTCACACGTTACGATCTTGTGGGAGTTGTCCCCGCTACCAGCG
AGAACCTTTGTCAACACCAAGTCTTTGAGTGGGGCGTGGATGTACACCTG
GACTACGTCCATGTGCCGCAACGACATGCCCTTCTCATTCGCCACTGAAA
GCACTACTTTGATGGATGCAGCCGACGGGCAGGGAGAGGACGAATGGAAA
AAGTCTACGCCGGGGACTTGCGTAAATCCCCGCGCTACCATCCGCGCCTT
AAACCTTTCAATCTTCCCTTCCTTATTCGTCTTCCAACTGAAAACCCACT
TCGAGGACACGTACGTGCTCCTCTTTGGGATCTCGTCTAAGAAAGAGAAA
GTGTTCTTTTCATAGAGCCCATCTAAATCCTTCTCTTGGGCCTGCCTCCA
GCCGGTACACAGACCTCTCTACATCAGCATCAGTCAGTGGGAGGGACTCT
ACCTCACTTGGGAGCTTGCCAATGGGCGACACGGCTTCCTTCGCCGAGGC
ACAAATGTTCAGCGGCTCCACCGCCACGTACTCGACCGGTTCAGAGGCAG
GGTCAAACAGTGCGGGCCCCTCGGGGCGATCCTCGAGAGCGTCAAGCAGA
CGTTTTTCGGTATCCGCGCGCTCCTTTCCGGCATCCTCCACGCGCTCCTC
CACCAGCGATTGCTCCGCCCACCCCTGCAGTGCCGCTAGCTCCATACGTG
TCAGCCTCTCGCATGCCGCCTCTTCGGCGAACGGGGCGGACAACTCCGCG
AACTTCGGGTTTCGACGGGGTGCCGTTCTACGGCTGCCGAGTATCTCACC
CGTTTTGCCGTCGTTGGCGAGATTCCACTGCTCTCGCCGCGGGAGCGCCG
GCAGGTCCGTCTCGCTCCCGCTGCTGCTGTTGCTGCTGCTGCTGCTTTCG
TCGGCACCATCTCCGGTGCCGGCACCGTCATCGCTGCTGCTGCTGCTGCT
GCTGCGGAGATCGGCGTCGCCGCCGCCCCCGCCGCCCCCGCCGGTCGAGC
CGGCCGGCGTGGTGTGGGCCCCGCCCTCGGGGGTAGAGCCCTCCCCGCTC
GGGAACGCGCCTCCCGCGCCCTCCCTGCTCCCGGCCAGCTGCGCCGCCAT
CGCCGGCGGCCCCGCGGTGCTCGGGGATATCACCGTCACGTCGGTCACGT
CGAGGATGGAACCTTCCGGCTCTCCCTCCCCCCCCCTTCCTCGGCTTGAC
GTGTCCTTCCCATCACCTCCGGCAGACAGCTCGGGGGCGACAGTAGCGGA
GGGCACGGGGGGGGTCGGCACGTGTTGCCAAGTGAAGTTACGTGTGACGA
TTACGGTGTGCTTGTCGGTTAGCATGCGGACGCAGTCACGATTGTGGCCG
ATGCTCGGGCCGAGGTAAAAGCCTTTCTGGCCTTTTGGCTCGGTTTTGCC
TGCGCTTTGCCTTGAAAACAGCAGGCTTGAGGAATGGGAACGTCGCATCT
CTCGGGGGGGGGTGCCCGTAGAACATTTCGTATGGGCTCTTGTCTCCGGG
GTTGGCGGTCGTGGCAGTGCAGTTTCGGGCTTTGCAAGACCACGCCACCG
ATTCGGCCCAAAGGCGTCGGTCGGTGGGCGCACCAGGAAAGAGGTGCGGC
GCTTGGATACGGGCAGCGAGTGCTCCTTCGTTGATCAGACCTAGGCCTCT
CTCAGTTACACACCGTTGAATTCTGCGCTGTAAGGGGGAGAGCGTCGGTA
CTGGATGCAGTACTTTGGGAGCATCTCGTCGAATGGCCCATCATCCGACC
CATTATCCGTGTGGACCACCATGACTATCGACGGGGCACCGTTGCACGGG
TTCTCTGCCAGGAATTGCTCAAAAGATCCGGTGGCGTCCGACTTACGCCG
CAAGAAGTAAATGCGAGTGAACCGCATGCAGTCATCTCTCACGATCATGC
TGTAATTCGCCCCCGAAAAACTCGGCACTTCCGCCTTCCCACTCAGATCG
ACAAAATCGCCCTCCAATTTCTTATCTGAGCGTGAAGATGTCTTGTTTTT
GATTGGCTTCGCCAACCCTTTACACATGGAACAGCCCAGGCACTCCGACT
CTTTTTGGTCGTCGCGCGGCACACTGCTATGCCGCCGTTTTCCTGAGCAA
AACCTCGTGCGTGTGACCGTACGAGTTGTGGTAAATGTTGACATCCTCGG
GGGCATTGGGCGCTTTCGCTAACCCAGGGGCAATAAATGGCACGTGCGAA
GGAGTCTGCATGTCCACGGGAGCCGCGTCGCATCGGCAATCTAACGTAGT
ATGGAAAGTATTCCGTTTCCCCGCCCTTGAGCCGCAAATCTACCCACTCG
TCATCCCCGAAATACTTGTGGCCACCATCGATTGCAAGGGTTGGGAGTGA
GATGAGGTTGTGGGATGCTTGCGGAACGTATCCCACGTTCTCGAGGGTCA
AGTCAACGAAGCCACCGTCAGTCGTTTGTAAAGTTACGACAAAACGACCG
CATCCTACGATCGCGACGGAGTCCCCGTTGGCTACATGCAGGCGGTTGCC
GCTCTCCCTAAAATCAGAGAGGTTCTCAGCGCTCGCTGTCCAGTGATCGG
TATAAGCCGAGTCAACAGGGAACATCTCTTGCTCGGCCTGCCCATCTACA
CCCCCTCCGACCACGTTTCCACACTTGCCTGGCAGCTCCCCACGGGCTAC
GAATGCCTGTTGCTCCACCTCTGGATCCACGCCCTCGAGCACCGGCGCCA
GTGCAAACTCGATCGCCATCAGCGCTCTCGAAGGTGCTGACGTGGACGTG
CACTTGCTCTTGTCGTGCCCAAGCCCCATGCAGTTTTCGCATCGCACAGG
ACACTCGCTCTCCGGCACGGTGCATGCGACCTATCGGTGGCCGTGTTTCC
CGCACCTGAAGCAACGGGGGCCGCCGCCGCTGCTGCTGCCACCGGCGCCA
CCGCCGGCGCCTTCGGACTTCGATGCTCCTCCCGAGCTCTGGTTTCTACC
ACCGCCACCGCCCGCTTTCTTGCCGCCGCCGCCGCGACCGCTGCCGCCAC
GGCGGGAGTCTCGCCCTCCTCCCCCACTGCCGCTCGCGAGGAAGGTCTGC
TCGGACTTCTTGGGAGCCTTCCCGTTCTTCTAGCCGTCCGCGAGGTTGGT
GCGGACCGTGCCGACCATCCGAACGATCTCCGCCCTGTAGACACCGACCT
TCGTTTCCAGCGCAAATTTCGCTTGGTGGTACTTATGGGGGAGGCGAGCA
AGGAATTGGGCGTGTACAAAGCGTGAGTCAACCTTGATCCCCTTGGTATC
GAGGCGGTTGTAGATGTGCTCCCATGAGTAGAGTTTCTCCACGACATTAG
CACCGGAGTCAATGCAAAAATCTAGCGCTCTCAAAATGAGCGACTGGATG
GAGGCTTGCGACTCTGGGTCATGTACTTTCTCCAACTCTTCCAGTGCGTC
TCTTGCCGTGAAGCTTTTCTCCAAAATAGCTTTGTCGGAGGAGGGAGTGA
GAGCAGTCTCGAGGTAGTAGAGCGCCTTTAGCCCCTTCTGAACTTCCTCG
TATTTGAACCCCATGCGGTACATCTCCTCATCGGTGATGCTGATATCACC
CACAGGTGCCAATCTTACGCCCTTGGCGAACTGCTCACTGATGCCGAGAA
ACTTGGTTGTACGTAAGAAGCTGATCATCCAGCGGGAGAATTCTTGTCCC
CCCCTCTCTTCAGCTTGCATTTTCGGAGGTTGAAAAATTCGTGAAGAACA
ACCATCAAGGAATGCACCATTCCTGTTGCGGGTACTCTCACCTTGGGGAA
AACCCCCGCTTCCCCGCTGGTTGTTGCTCTCCCAAGACCCACGGTGGTCG
GAACAGCTGGTGTTGGCGGCGCTCCCGCTGTGTCGCCTCGAGAAAATTCG
CCGCCGCGCGGCTGATCGCTCGCTGAAAATGTGCCGCCGCGCGACCCATC
TTCATGTTGTGATGGGGGAGCCGAACTGCCCCCCGCGGCCGCGGCCGCGC
CGCTTGGCGCTCCAGCGGCCGCGCCGCTGGGTACTCCTTTCCTAGACACG
AGCGTGTTGAGAAAGTCCATCACTAAAGCCATATATTTCTTTCCACTCGG
CCCAGTCTCTGTTCTGATGTAGCGGCCGCGCCGCTGCTGTTGACGACGCC
TGACGCTGCCCTGGCGTGGGATTATCGTCCTGACTTATCGGGAGCAACCC
ACTCCGGAGGGATCAACCAAAAAAAAAACCTAGAGTGTTGATGCGCCACG
TTGCGTACTTTCCCTAATGGTCTGATTTAAGTGTCTTATGACGTCGAACA
GCGAGACAGAGCTCGTCCAAGAGGGGAACGAGGAGGAGATAAGAAACCAC
GCAGGCTCAACGAGGGGGTACGTGTACCGGATCACGAAACAATATCCCCC
CGACAGGTCTCTACGCACGAAGCGACATGAAACCGTCCGACGACATATCC
CTGTACGTCCATGCTCACACGAACACAAACGAGCGGAAGTTACGATAATA
TTTCACTTCGTCCGAAGCGAAGGGCCACGCAGCCAGTACCTACCTCGCTC
CGAGTAACGATCCAGTTCTTCGTGTTGGCGGCTGTGTGTGTGCCGGGTGG
ATTTGATCGCTTCAGTTACTACCGACATGTGCGTGCTGTCCCTGTCGATG
CGTAGGGAGGAACGGAAGACGATGATGTGAAACTCACTTTTATGTACTAG
AACGAACAATTTTTGCTGTACCGGCGTGTCGACGGAGGGAAAGGAGCCAG
GGGGTGCGCTTTCAACGCTTGCACGCCGTACACATGCTCCCCGACGATCG
GCCCTTCACGTCCCTACGCACAGACCCTCAGGAGACATCGCCGACACTCG
GGTGCTCTCCCTGTGCGTGGTACGACACACTGTTTTCTTGTATACTTTTC
AAAACGTTTCACTTCTTGAGGCCAACACGTATGGACCGCGTATCGTGTGC
CAAAAATGATTACTTCTTCTGAAGGGCATCCCTTGCCTCCTTCCTTGATT
CTTGCCAACATCTTGGTGATCCTTGCCATTGATTTGTTCGATATTTTCGT
CGGGAATACAGCGCCTCTGGCTCATAAAGAAGGCACCGGAGTACAGGACA
AAATGCTGAAAGCAAAGCCGATGTTTCACAACTGAAATGATGAGTCGTGA
TGTTCACGCCAACCTCGCTCTTGCCCTTACGGTCGACTTGTTTTACTGTA
TGCATTCTACATCTGCAGTTTCGGCTGAATCCTTCGTGCATCATCTGGTC
TTGCGCGACGAAGGGCCACCCATCTCCGCGCAGTCAACTCCGATCATCCA
CAACGCCATTTTCGAAGTATTTCGTTTACATACCTCGAAGGATCGGCCGT
TGCCGTTGTGACCGCGCTCGCTCCGTTACCCGCACTGTCATAGGTATCGA
TGGCGAGTAAAGGACCGAACACGAACAAAAGCCAGTTCTTCATCACCTAC
ACGCGGCAGCCACACCTCAACAACGTCTACACCGTCTTCGGCAAGGTAAG
AGGCCTGCCTCGTGTACAGCGCGCGGGCGAATTGAGAGGCGGTAGAGGGT
GAATTGTTGGTGGGAGAGTTAAGTGTTATTGGCTGCCATCGGAGAATACG
TATAGTATGAATGCTGCGGGGCCGACTTTTGGAAAACTCTTGTCGTCTTT
GGGACAGCGGTGAAACCACATCCTTGCCGTTGACCGCCCGTTTAGTTGAT
TCAGCGAAAGGGTGCTCTTGGAAGTCTTGTACTTCGGAAATTCTCAATGC
TCAGCTCCCTGGCCGCTAAGATTGTGAACAGGGAGACCCTCCACCATGGT
CGAGACTCGCAGGAAGGGCGAGTAGAAGTATTTATCTCTTGCTCGAGTGG
GGGATGGAACAACAGTCGCTTAGCACGCTCTCCCTCTTCGTGATTGGTGC
ACAGCGTGGGGCAAGCCGCTACTCTAGCGTGCAATCACGTCTCTATGAGC
GGCGGAATCCCTCTGAGCACCCGGAGAGTAGTCTAGACATGCCCGTGAAG
AATGACCGTCTTGCTTCATCTTCATTGCTCGACTCCCGTCTGGACATCGC
TGCGAAGAATAACTGGGCCTCATATACTTAGTGCCTACTTGGCCACTCTG
TCACGCCAAAGGTGATCGACGGATTCGACGTCCTGGACGTGATGGAAAAG
GCGCCCGTGGGCAAGAAGGAGAGGCCCGTGACCGACATCATCATCAAGCA
CGTCAAGATACACGCCAACCCGATCGCAGAGGCATCCTGAGGCGCTCAAC
AACAGGAATAGAACCATGGAGGGAGAGGCGACAAAAAAGTATGCATTTTT
GTCCTTCATCAGGGAAAGCGGCCGAGACACTTCGTGGCGTGAAATTTTTT
TTTTTGGTGAGCGGGCAAGTTTCAGCGCCTTGTTCGTGCGTGTGGTCTGA
TCGGGGGTGACCGTTACCTGGCGAGCGGTTTGTCGATCGTGTATTGTATA
GTGTGTGTCGTGTGAACTTTGCGCGAGTGTTGCACCTTTTGGCGGGAGTC
AAGAACGTACTAGGATACAACCATGAAAAAGAAACGCAGGGTCTGGCTAG
TTTTGTCCGTGGAACTCAGCCTTGTTGGCCGGAATGACCTCTGCCACTCG
TCCCCCGAAGCCTTCAACGCGTGTACGTGTACGCGAGAGGGAAGTCATGC
CGCTGAGAGCCTGTGCAGAAAAATGGAAGGAGTGACAGAATTTTGCTATG
ATTTTTTTGGGGGGGGATTCAGGTCGTTGACACATGGCTCTCGACGGCAG
CAGCCATTTCTACGAATTCAGCGCATTTCTACGAATGGTCTGCAGCGTCA
ACGTGGCAGCAGCAGCAGCTGGAAGCGTTAAAGACATT
back to topCoding sequence (CDS) from alignment at P-fluviatile_contig2:2558709..2573446-
>mRNA_P-fluviatile_contig2.3944.1 ID=mRNA_P-fluviatile_contig2.3944.1|Name=mRNA_P-fluviatile_contig2.3944.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=684bp|location=Sequence derived from alignment at P-fluviatile_contig2:2558709..2573446- (Porterinema fluviatile SAG_2381)
ATGGTCCAGGGCGGGGATCCTCTGGGCACGGGGAAGGGCGGGGAGAGCGT
CTGGGGTGGACCATTCCCGGACGAGTTCCACCCGGACAACAAACACGACC
GAAGGGGGATGATGGTCCAGGGCGGGGATCCTCTGGGCACGGGGAAGGGC
GGGGAGAGCGTCTGGGGTGGACCATTCCCGGACGAGTTCCACCCGGACAA
CAAACACGACCGAAGGGGGATGGTATCGATGGCGAGTAAAGGACCGAACA
CGAACAAAAGCCAGTTCTTCATCACCTACACGCGGCAGCCACACCTCAAC
AACGTCTACACCGTCTTCGGCAAGGTATCGATGGCGAGTAAAGGACCGAA
CACGAACAAAAGCCAGTTCTTCATCACCTACACGCGGCAGCCACACCTCA
ACAACGTCTACACCGTCTTCGGCAAGGTGATCGACGGATTCGACGTCCTG
GACGTGATGGAAAAGGCGCCCGTGGGCAAGAAGGAGAGGCCCGTGACCGA
CATCATCATCAAGCACGTCAAGATACACGCCAACCCGATCGCAGAGGCAT
CCTGAGTGATCGACGGATTCGACGTCCTGGACGTGATGGAAAAGGCGCCC
GTGGGCAAGAAGGAGAGGCCCGTGACCGACATCATCATCAAGCACGTCAA
GATACACGCCAACCCGATCGCAGAGGCATCCTGA
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