Homology
BLAST of mRNA_P-fluviatile_contig9.14999.1 vs. uniprot
Match:
D8LCA4_ECTSI (Peptidylprolyl isomerase n=2 Tax=Ectocarpus TaxID=2879 RepID=D8LCA4_ECTSI)
HSP 1 Score: 613 bits (1581), Expect = 4.850e-211
Identity = 359/550 (65.27%), Postives = 396/550 (72.00%), Query Frame = 3
Query: 81 SLLARGSLLLLFCPHLRLSCTAFLVVCP--------RDRSPHRVSARGGPWEA--TTSATVGAFATPPLGSCRRCHSLPCEETRQRAGSEELAPNCLRGGTASGGSRRNTAKDWGVNRRRRIRLRLQAKSNKGDVPGSEVMDAEFSEIIGEIERADLESQGKKREEQEETEAPPTAVENDIGKQAPXXXXXXXXXXXXXXXXXXXXXXXXXXAGSGFTSLEDASASGEFVDLSGGRKSCLKRVDQAGFKSDGNPAKGSKIKVHYKMKVVGGKNIASSGEDRSKPFEFRLGRWPSEATHGWDKAVSAMHKGEVATLICGPQYAFGEAGAPPRIPPNATVETRLELVDWLDLAAAYNAVPGKVETDEELRDRWSSEIADGTSPMKDEAGLKKRMQAEMATKAATTPPNTDHRGKKIYDLNSKEAREIMAKQKVQGYTPEFAYVERGGYLDLYIPVPEGTRAKDMNVEIHPDRMLVEVNGTGIVTQGYFQGKVALDGCHWFMSDLSLDPPGSAALGTQDDEVRQGPVDRGETCVQVYLEKRKPHDTLWENVYR 1700
++LA SLLLL P L AF+VV P R R +A W TT+ + GS RCH + + G GG+ R R RL N+ + P EV+DAEFS+ +I AD S+ KK E++ XXXXXXXXXXXX XXXXXXXXAGSGF SLE+A ASGEF DLSGGR SCLKRVD+ GF++DGNP KGSKIKVHYKMKVV G+NIASSGEDR+KPFEFRLGRWPSEATHGWDKA+SAMH+GEVATLICGPQYAFG AGAPPRIPPNATVETRLEL DWLDLAA YNAVPGKVETDEELR+RWS ++ADGTSPMKDEAGL K++QAEM+ KA+ TP NTDHRGKKIYDL SKEAREIMAKQKVQGYTP+F YVER YLDLYIPVP GTRAKD+ VEIHPDRMLV V GTG+VTQG+FQGKVALDGCHW MSDLSLDPPGS ALGTQDDEVRQGPV RGETCVQV+LEKRKP DTLWENVYR
Sbjct: 6 NVLASVSLLLLS-PQLWHLSVAFVVVHPPSDHGGASHGRFSERAAAAASQWARAPTTAVHADSPGRTRQGSRCRCHPPSFDSSSXXXXXXXXXXXXASEGRVVGGAGRXXXXXXXS----RQRLLQARPGNEVEPPEREVIDAEFSDDFSKIVEADRASKRKKPREEKPA-------------XXXXXXXXXXXXXXXAASTPAXXXXXXXXAGSGFASLEEALASGEFADLSGGRGSCLKRVDEDGFETDGNPPKGSKIKVHYKMKVVDGENIASSGEDRTKPFEFRLGRWPSEATHGWDKAISAMHRGEVATLICGPQYAFGAAGAPPRIPPNATVETRLELEDWLDLAAEYNAVPGKVETDEELRERWSEDLADGTSPMKDEAGLNKKLQAEMSAKASATPENTDHRGKKIYDLESKEAREIMAKQKVQGYTPDFGYVERANYLDLYIPVPAGTRAKDVTVEIHPDRMLVVVKGTGVVTQGHFQGKVALDGCHWLMSDLSLDPPGSTALGTQDDEVRQGPVYRGETCVQVFLEKRKPFDTLWENVYR 537
BLAST of mRNA_P-fluviatile_contig9.14999.1 vs. uniprot
Match:
A0A835YYM1_9STRA (Peptidylprolyl isomerase n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835YYM1_9STRA)
HSP 1 Score: 173 bits (439), Expect = 2.540e-45
Identity = 107/297 (36.03%), Postives = 150/297 (50.51%), Query Frame = 3
Query: 945 GWDKAVSAMHKGEVATLICGPQYAFGEAGAPPRIPPNATVETRLELVDWLDLAAAYNAVPGKVETDEELRDRWSSEIADGTSPMKDEAGLK---KRMQAEMATKAATTPPNTDHRGKKIYDLNSKEAREIMAKQKVQGYTPEFAYVERGGYLDLYIPVPEGTRAK--------------------------------------DMNVEIHPDRMLVEVNGTG-----IVTQGYFQGKVALDGCHWFMSDLSLDPPGSAALGTQDDEVRQGPVDRGETCVQVYLEKRKPHDTLWENVY 1697
GWD AV M KGE A++IC PQYA+GEAGAPP+IPP A++E LEL+DW D+AA Y+ ET EE +RW EI GTSP+K++ G + + + A+ TK K+ D+N + R A+Q V G + Y+E+G +LDLY+ VPEGTRA D+ +I P R+ + + + +G G+VALDG +W MS+++ + A +V G RG VQVYLEK P DT+W +V+
Sbjct: 3 GWDVAVQTMEKGERASIICSPQYAYGEAGAPPKIPPGASLECELELLDWEDVAARYSEYARPGETHEERMERWEQEIESGTSPIKEDVGPQPGIRTVTADEVTKG------------KMVDVNDPQVRRAAARQLVCGQGEGYTYLEKGAFLDLYVTVPEGTRAXXXXXXXXXXXXXXXXXAANEXXXXXXXXXXXXXXXXXADVLCDIAPRRLSLRITAQPDAPPLTILEGTLHGRVALDGSYWVMSEVAPE-----AYDELRSDVGFGLTARG-AFVQVYLEKLPPDDTIWPDVF 281
BLAST of mRNA_P-fluviatile_contig9.14999.1 vs. uniprot
Match:
A0A0L7KRI6_9NEOP (Peptidylprolyl isomerase (Fragment) n=1 Tax=Operophtera brumata TaxID=104452 RepID=A0A0L7KRI6_9NEOP)
HSP 1 Score: 104 bits (259), Expect = 1.390e-22
Identity = 57/128 (44.53%), Postives = 80/128 (62.50%), Query Frame = 3
Query: 738 VDLSGGRKSCLKRVDQAGFKSDGNPAKGSKIKVHYKMKVVGGKNIASSGEDRSKPFEFRLGRWPSEATHGWDKAVSAMHKGEVATLICGPQYAFGEAGAPPRIPPNATVETRLELVDWL--DLAAAYN 1115
VD+SG R LKR+ Q G SD P G ++ VHY +V G SS +DR++PFEF+LG+ WD V+ M KGEV L C P+YA+G AG+PP+IPPN+ ++ +E++DW DL+ + N
Sbjct: 7 VDISGDR-GVLKRIIQEGEGSD-TPNPGCQVTVHYTGTLVDGSKFDSS-KDRNEPFEFQLGK-------AWDVGVATMKKGEVCVLTCAPEYAYGAAGSPPKIPPNSILQFEIEMIDWKVEDLSPSKN 124
BLAST of mRNA_P-fluviatile_contig9.14999.1 vs. uniprot
Match:
A0A2A4IZY8_HELVI (Peptidylprolyl isomerase n=1 Tax=Heliothis virescens TaxID=7102 RepID=A0A2A4IZY8_HELVI)
HSP 1 Score: 99.8 bits (247), Expect = 2.740e-20
Identity = 52/121 (42.98%), Postives = 74/121 (61.16%), Query Frame = 3
Query: 732 EFVDLSG-GRKSCLKRVDQAGFKSDGNPAKGSKIKVHYKMKVVGGKNIASSGEDRSKPFEFRLGRWPSEATHGWDKAVSAMHKGEVATLICGPQYAFGEAGAPPRIPPNATVETRLELVDW 1091
E VD++ G + LKR+ + G +D P G ++ VHY ++ G SS DR++PFEF LG+ WD V+ M KGEV L C P YA+G AG+PP+IPPNAT++ +E++DW
Sbjct: 5 EGVDITKTGDRGVLKRIIKEGTGTD-TPNPGCQVTVHYTGTLLDGTKFDSS-RDRNEPFEFNLGK--GSVIKAWDIGVATMKKGEVCVLTCAPLYAYGNAGSPPKIPPNATLQFEIEMIDW 121
BLAST of mRNA_P-fluviatile_contig9.14999.1 vs. uniprot
Match:
E2B9Y2_HARSA (Peptidylprolyl isomerase n=4 Tax=Ponerini TaxID=141711 RepID=E2B9Y2_HARSA)
HSP 1 Score: 103 bits (257), Expect = 1.160e-19
Identity = 55/119 (46.22%), Postives = 76/119 (63.87%), Query Frame = 3
Query: 738 VDLSGGRKS-CLKRVDQAGFKSDGNPAKGSKIKVHYKMKVVGGKNIASSGEDRSKPFEFRLGRWPSEATHGWDKAVSAMHKGEVATLICGPQYAFGEAGAPPRIPPNATVETRLELVDW 1091
VDLS + + LK + Q G + D P G K+KVHY ++ G SS +DR KPF+F LGR GWD V++M KGE+ATL C P+YA+G+ G+PP IPP+AT++ +EL+ W
Sbjct: 4 VDLSPAKDNGVLKEITQEG-QGDDTPTVGCKVKVHYTGTLLDGTKFDSS-KDRGKPFKFDLGR--GSVIKGWDIGVASMKKGEIATLTCAPEYAYGKNGSPPLIPPDATLKFEVELLSW 118
BLAST of mRNA_P-fluviatile_contig9.14999.1 vs. uniprot
Match:
A0A0N1IEI0_PAPMA (Peptidylprolyl isomerase n=7 Tax=Papilio TaxID=7145 RepID=A0A0N1IEI0_PAPMA)
HSP 1 Score: 103 bits (256), Expect = 1.730e-19
Identity = 52/121 (42.98%), Postives = 78/121 (64.46%), Query Frame = 3
Query: 732 EFVDLS-GGRKSCLKRVDQAGFKSDGNPAKGSKIKVHYKMKVVGGKNIASSGEDRSKPFEFRLGRWPSEATHGWDKAVSAMHKGEVATLICGPQYAFGEAGAPPRIPPNATVETRLELVDW 1091
E +D+S G + LKR+ + G +D P G ++ VHY ++ G SS +DR++PFEF+LG+ E WD V+ M KGEV L C P+YA+G AG+PP+IPPN+T++ +E++DW
Sbjct: 5 EGIDISKAGDRGVLKRIIKEGEGTD-TPNPGCQVTVHYTGTLLDGTKFDSS-KDRNEPFEFQLGK--GEVIKAWDIGVATMKKGEVCVLTCAPEYAYGAAGSPPKIPPNSTLQFEVEMIDW 121
BLAST of mRNA_P-fluviatile_contig9.14999.1 vs. uniprot
Match:
UPI0010407870 (FK506-binding protein 59 isoform X1 n=2 Tax=Ostrinia furnacalis TaxID=93504 RepID=UPI0010407870)
HSP 1 Score: 102 bits (255), Expect = 2.320e-19
Identity = 53/121 (43.80%), Postives = 75/121 (61.98%), Query Frame = 3
Query: 732 EFVDLS-GGRKSCLKRVDQAGFKSDGNPAKGSKIKVHYKMKVVGGKNIASSGEDRSKPFEFRLGRWPSEATHGWDKAVSAMHKGEVATLICGPQYAFGEAGAPPRIPPNATVETRLELVDW 1091
E VD+S G + LKR+ + G +D P G ++ VHY ++ G SS DR++PFEF LG+ WD V+ M KGEV L C P+YA+G AG+PP+IPPNAT++ +E++DW
Sbjct: 5 EGVDISKNGDRGVLKRIIKEGEGTD-TPNVGCQVTVHYTGTLLDGSKFDSS-RDRNEPFEFNLGK--GSVIKAWDVGVATMKKGEVCVLTCAPEYAYGAAGSPPKIPPNATLQFEIEMIDW 121
BLAST of mRNA_P-fluviatile_contig9.14999.1 vs. uniprot
Match:
UPI0010FB2D5F (FK506-binding protein 59 isoform X1 n=2 Tax=Nylanderia fulva TaxID=613905 RepID=UPI0010FB2D5F)
HSP 1 Score: 102 bits (254), Expect = 2.820e-19
Identity = 54/119 (45.38%), Postives = 76/119 (63.87%), Query Frame = 3
Query: 738 VDLSGGR-KSCLKRVDQAGFKSDGNPAKGSKIKVHYKMKVVGGKNIASSGEDRSKPFEFRLGRWPSEATHGWDKAVSAMHKGEVATLICGPQYAFGEAGAPPRIPPNATVETRLELVDW 1091
+DLS + K LK + + G K D P+ G K+KVHY ++ G SS DR KPF+F LGR + W+ V++M KGEVA L C P+YA+G+ G+PP IPP+AT++ +EL+DW
Sbjct: 6 IDLSPAKDKGVLKEIIKEG-KGDETPSPGCKVKVHYTGTLLDGTKFDSS-RDRQKPFKFDLGR--NSVIKAWEIGVASMKKGEVAMLTCAPEYAYGQNGSPPSIPPDATLKFEIELLDW 120
BLAST of mRNA_P-fluviatile_contig9.14999.1 vs. uniprot
Match:
UPI00200E11E9 (FK506-binding protein 59 isoform X1 n=2 Tax=Leguminivora glycinivorella TaxID=1035111 RepID=UPI00200E11E9)
HSP 1 Score: 102 bits (254), Expect = 3.090e-19
Identity = 56/131 (42.75%), Postives = 83/131 (63.36%), Query Frame = 3
Query: 732 EFVDLS-GGRKSCLKRVDQAGFKSDGNPAKGSKIKVHYKMKVVGGKNIASSGEDRSKPFEFRLGRWPSEATHGWDKAVSAMHKGEVATLICGPQYAFGEAGAPPRIPPNATVETRLELVDWL--DLAAAYN 1115
E VD+S G + LKR+ Q G +D A G ++ VHY ++ G SS +DR++PFEF+LG+ + WD V+ M KGEV L C P+YA+G AG+PP+IPPN+T++ +E++DW DL+ + N
Sbjct: 5 EGVDISKAGDRGVLKRIIQEGQGTDTANA-GCQVTVHYTGTLLDGTKFDSS-KDRNEPFEFQLGK--GQVIKAWDIGVATMKKGEVCVLTCAPEYAYGAAGSPPKIPPNSTLQFEIEMIDWKVEDLSPSKN 131
BLAST of mRNA_P-fluviatile_contig9.14999.1 vs. uniprot
Match:
UPI000D625D1F (peptidyl-prolyl cis-trans isomerase FKBP4 isoform X1 n=3 Tax=Cephus cinctus TaxID=211228 RepID=UPI000D625D1F)
HSP 1 Score: 101 bits (252), Expect = 6.130e-19
Identity = 50/131 (38.17%), Postives = 79/131 (60.31%), Query Frame = 3
Query: 699 FTSLEDASASGEFVDLSGGRKSCLKRVDQAGFKSDGNPAKGSKIKVHYKMKVVGGKNIASSGEDRSKPFEFRLGRWPSEATHGWDKAVSAMHKGEVATLICGPQYAFGEAGAPPRIPPNATVETRLELVDW 1091
F+ ++ +A +D+S + + + + G D PA GSK+ VHY ++ G SS +DR +PF+F LG+ WD ++ M KGEVA L C P+YA+G++G+PP IPPNAT++ +E++DW
Sbjct: 18 FSFIDYQAARMAAIDISPSKDNGVLKEIIKGGTGDETPAAGSKVTVHYTGTLLDGTKFDSS-KDRHEPFQFDLGK--GSVIKAWDIGIATMKKGEVAVLTCAPEYAYGQSGSPPTIPPNATLKFEVEMIDW 145
The following BLAST results are available for this feature:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig9.14999.1
>prot_P-fluviatile_contig9.14999.1 ID=prot_P-fluviatile_contig9.14999.1|Name=mRNA_P-fluviatile_contig9.14999.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=578bp
MSTPSLLARGSLLLLFCPHLRLSCTAFLVVCPRDRSPHRVSARGGPWEAT
TSATVGAFATPPLGSCRRCHSLPCEETRQRAGSEELAPNCLRGGTASGGS
RRNTAKDWGVNRRRRIRLRLQAKSNKGDVPGSEVMDAEFSEIIGEIERAD
LESQGKKREEQEETEAPPTAVENDIGKQAPAPAPASAPAPAPAPAPAPNP
SAPFAFAGSGFTSLEDASASGEFVDLSGGRKSCLKRVDQAGFKSDGNPAK
GSKIKVHYKMKVVGGKNIASSGEDRSKPFEFRLGRWPSEATHGWDKAVSA
MHKGEVATLICGPQYAFGEAGAPPRIPPNATVETRLELVDWLDLAAAYNA
VPGKVETDEELRDRWSSEIADGTSPMKDEAGLKKRMQAEMATKAATTPPN
TDHRGKKIYDLNSKEAREIMAKQKVQGYTPEFAYVERGGYLDLYIPVPEG
TRAKDMNVEIHPDRMLVEVNGTGIVTQGYFQGKVALDGCHWFMSDLSLDP
PGSAALGTQDDEVRQGPVDRGETCVQVYLEKRKPHDTLWENVYRSSKEVS
AGGGVESAPPERAVAAAANEAGAGGGS*
back to topmRNA from alignment at P-fluviatile_contig9:28603..38773-
Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig9.14999.1 ID=mRNA_P-fluviatile_contig9.14999.1|Name=mRNA_P-fluviatile_contig9.14999.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=10171bp|location=Sequence derived from alignment at P-fluviatile_contig9:28603..38773- (Porterinema fluviatile SAG_2381)
CCCTCCCTCCACACCGGTGTGCAGCTTTTGTGCTGCTGTGTGCCCTCCGG
CATTCGATCTTGCGAAAGATGAGCACACCATCCTTGCTTGCTCGAGGAAG
CTTACTGCTACTGTTTTGTCCTCACTTAAGGCTCTCCTGCACTGCTTTCC
TGGTCGTCTGTCCTCGGGATAGATCCCCACATCGAGTTTCAGCCAGGGGA
GGGCCATGGGAGGCAACAACCTCAGCAACAGTTGGCGCCTTTGCCACCCC
ACCGTAAGCGAGATGCTCCTTGGAAGTGGCCGTATTACCAGTGCAGTTGG
CTTGTTGTTGTTGCGTGGAGCAATGAAGGTCCTTTGGTTGCTGCTGCCTT
ACCAGTGGCTGCGAATTTTACTGCCGAGGGAGAGATTTAAACCGAAATGA
CCACACACCGGCGCGGTTTGACTGTTCGAATCTCGGTGAGATTTGAACAC
TTCTCCTGAAGCTGGTGCACCGGCGGAGCCACACCTGACTGTTCTTACTT
CGTGCAACACGGCAAGTTTGGCAGCTCAGTATGAGTTTTCTTAGACCGTT
TTCCGCGAATATTGTCACCTGGCACTGGAGTGCAATCTGCTTTGCCCAGC
TGTCATAACAGAACGGACCGCGATGTTCAGCCGATGAGCATGCACAACTG
GCCGACCGCTGCACACCAACAGAGTAACGCTGTGCCTTCGTTGCCGTCGC
GCGCAACGATCCCAAATCTGCCAGCAGGCTTGGGTCCTGTCGAAGATGCC
ACTCACTCCCATGTGAAGAAACTCGACAGCGAGCAGGATCAGAGGAGCTG
GCCCCTAACTGTCTCCGTGGTGGCACCGCGTCCGGCGGTAGCCGCCGAAA
TACGGCGAAGGATTGGGGGGTGAACAGGAGAAGACGGATTCGCCTGCGGC
TGCAGGCAAAGTCAAACAAGGGAGACGTTCCGGGGAGTGAGGTGATGGAC
GCAGAATTCTCGGAAATAATCGGCGAGATCGAGCGGGCTGATCTGGAGAG
CCAGGGGAAGAAGCGGGAGGAGCAGGAAGAAACAGAAGCTCCTCCCACGG
CGGTCGAGAATGATATCGGAAAGCAGGCCCCGGCTCCGGCCCCGGCCTCG
GCTCCGGCTCCGGCTCCGGCTCCGGCTCCGGCCCCAAACCCCTCGGCTCC
TTTCGCCTTTGCGGGCTCTGGTTTCACGTCCTTGGAGGATGCGTCGGCCT
CGGGCGAGTTCGTCGATCTGTCAGGCGGGCGGAAATCGTGTCTGAAGCGC
GTCGATCAAGCCGGGTTCAAGAGCGACGGCAACCCAGCGAAAGGCTCGAA
GGTGTGCATCCACCATCGTCTTTTGGCACGAAACTTTGGACGCAGAAATG
CGGTCAAAACTGCGCTTATGCGGCATCTGCGAGGCGGGATTTAAAGACGA
TTGTGGGTTTGGCAGCGAGCACAGGAGGCGGCCGATTTCTCAAGGGCCCA
AAACTGATTTTGGTGAAGTTCACACCTGGGGACTGCTGATTGTCGTTTGC
GTGAGGCTTAACATCGTGCTTGTATGATCCGGGAAAAAAACACTATTTCT
CCTTGAGTTTGCTGCCTTGTGGCACCCTTAGCCCAGTTCTCGATTGTTTT
CTGCTTTGTTGTCTCATTGATGGGCAACCGTGTCGTGTGCCGTGTTCGCA
TTCCACACGAGTGTTGGCAACCTCGGCTACTTCCTCCCTTCCGCTCTCTC
TCTTTCTCCGACAGACATATCCGTCGCTAAGCTACTTAAACGCGTGATCA
ACATCCCATCGACGCACACACACGCCCTCCTGCGTTCACCACTGCTGCTG
CCGCTTCACCCCTGCGGCAGATCAAGGTGCACTACAAGATGAAGGTTGTC
GGCGGCAAGAACATCGCCTCCAGTGGAGAGGACAGGAGCAAGCCCTTCGA
GTTCAGATTGGTGAGAATATATTCGAGCTATCTTCTCCGTTTCTTTCGCA
GGAGCTTCTCGACCGGCCAGCCTGTTCGGAGATCAAACGGACACACTACC
CCTTCCGGAGCGGAAGGGATTGAGCCTCACCCTGCACCCCATCACGGAAA
CGCTGCGTCGCTTCGCCGCTCAATCCTTCGATCAAATCCAAGATGCGTAA
TAGCAAACATCAACCACGACGATTGCGACGAAAACAACAACAGGGTCGCT
GGCCGAGCGAGGCCACGCATGGCTGGGACAAGGCCGTTTCGGCGATGCAC
AAGGGAGAGGTCGCCACTCTGATCTGCGGGCCGCAGTACGCGTTCGGCGA
GGCCGGGGCGCCGCCCAGGATCCCCCCCAACGCGACTGTGGAGACGCGGC
TGGAGCTGGTGGACTGGCTTGACCTCGCAGCGGCGTACAACGCGGTCCCA
GGCAAGGTGGAGACGGACGAGGAGCTCAGGGACAGGTGGAGCTCGGAAAT
CGCGGACGGAACTAGCCCTATGAAGGATGAAGCAGGTACCATTCGGGCTT
CTGCGAGTGCGAAGGTTGTGGGCAGGGGTGGGAGGTCGGCAAGGGGGGCT
GGCAGGGGTCTGCGAGGGCAAATGAGGCTGATACGTGCGCTTTCGAAAGT
ACGAGTATCGCATATGTGATATGTAACGGTCGCAGGGCGAGGGTATCCCT
CCGATCATATTCTCACGTTTGCAAGCTTCAGAGTGCGATAGCTTTTTTCA
ATTCGCGTGTTTTGTGAGATGCTCAGGCAGCTGTCGTGAGCAAATGCTGT
GAAACTTTTCGTTGTGTCTTGATGTGCACGCGTTCCCGTCTTGATCATTG
AAATCTGAACACATGCGTACTGTCCTACATCTGTGCACGCGTTCCCGTCT
TGATCATTGAAATCTGAACACATGCGTACTGCCCTACATCTGCGCCCGCC
AAGGTGACCCCTCCCCTCTTCCCCCCATTTATCCCCTTTCCTCCCTCTCC
ATTGCTGAATTGTTTCTTTCGCCTTGACGGCCGCCACGACCAGGGTTGAA
AAAAAGAATGCAGGCTGAGATGGCGACCAAGGCGGCCACAACCCCGCCAA
ATACCGACCATCGCGGCAAGAAGATTTACGACCTCAACAGTAAGGAGGCG
CGCGAGATCATGGCGAAGCAGAAGGTGCAGGGGTACACGCCTGAGTTCGC
GTACGTGGAGAGGGGCGGCTACCTCGACCTCTACATACCTGTCCCAGAGG
TGAGACGGTACATGCTAGATTTCAACGTTGCCTGAAGGGGGATGGAAACA
ACCGTGGGGGTGCAATGGACATGATGATGACCAGATATTGTGCTCCGAAA
ATGTTTACGCATTCTGTATGTGGTGCACTACCTGTGGGCGTAGGGAACCG
GGCATTTGCCACACCAGTTGATTCAACCGTTAAGAAGCGTCGTACATCTC
GCCAGTCGTGTGTGGATTGTACAATCCGTGTTTCCGCGGCGGGCCGATCA
GTTGTGCGGACCAATACGCACCTGCTCACCGGGACAGGTGTTGTTCGTCG
TGTCACGCTTCTGTCCTCCACGCCCCTCGTCGGTCAGGTACTTTAAATCC
ATACTGGACTGCCGTGCTGACAAGAACCGATGTGTTTGGTGCTTACCCCG
TCCAAAAAATTCGGTGACCTCCCCCCTTGCGGCACAGGGAGACGAGAGTC
AGTAGGGATCGCAATCACACGCGTGCGCTGGATTCCTGCTTGGAAGAGTA
CGTGCGCATAGAGTGGTGGTCCTCGTTGTTCTTTGATGAAAAGTCGCCCT
TCGTCACCTTTCTGCAGCTCGTCGGTTCTTCGGCTTACCTCGGGGCCGGC
GAAACTCGCCCCTCACGTTCGCCTTCCTTTCCCCCACCCCCTCGGCCTTT
TTTTTTTAATCGGAATATAGGTTGGCGTCGGGTGGCACCGCGCTGTAAAA
TAGCCACCGAACCCTAGACATGAAAGAACTGTGGCTACCGACTTTTATTG
CCCGTACCGTAACACAAACCTGATATAGACATGAAATAGCGGAACTAACT
GACCTTTTGTTTACCATACCATAACGCGAAGCTCACAATCGACATGAAAC
TACGAAGGTAATCCATACCGTAACACAAACCTGATAAAGACGTGAAATAT
CGGAACTTACCAAATTTTGTTTACCATACCATAACACGAAGCAAACAATA
GACATGAAACTACGAAACTAATCCATACCGCCACAAACCTGATGTAGACG
TGAAATAGCGGAACTACCAACTTTTGTTTACCATACCATAACACGAAGCT
CACAATAGACATGAAAATACTAAACTAATCAGTTTTATTTCCCATACCTT
AAACAATAACCCGGAGGAATATAAAACTAGACATGGAATTACGAATCTAA
CCAATTTTCTTTACATCACCATAACAAACAGTAAAGAATATCACCCCCCC
CTCAATAGTCCAAACCCAAACAAAAAATGTAGATACGGGTCGAATTGGGC
CGACCCCCCTCCTCCCCCTCCCCCAGATGGGAGGAGGGTACAGTCCAAAG
TAAGCACAAGCTTACCCAAGGTCAATGTCTATTGGTACGACATTGGAAAA
ATACTAGTCCCCATTGGGCGGTGGAAGACTGGAGCTACGACATCCCTAAA
TTCTCCGACGTGCGACCCATAACGGGTCGGGCGGAGGAGAGGGGTGGGAT
GATCATTATCTGATGTGGGTCTAGTTTAGATGGACCCATAGAGGAAAGCT
TATTACTCAACGTCGAGATATGACCCATAAGTATTTGACCAACCACGCAA
GACCATGCGGAGCTAAATGTACGGCACATTCGGCATGTTGTTTTCTGGAG
TGACAGAGGCGAGTACAAAGCGTAAAGGGAATGTTGGCTTAACTTTCGGC
AGATAGGTCTACTCGGGAGCGTAAGTGGGTTAGCAACCCATGGTGGAATG
CATAGGAGAAGCAGGACGTTGTTATGCGTTTCATCCCAGCGTGTGAGTAG
GATCTTAGGTTATGCAAGTCGGCCCTGAACTTTTGTGGTGAAAATGACCT
CCCTGGAGGAAAGTAACCTGTATAGCGAGATAAAAGGAAAAACATATCGG
GTGGTCGGGGGGCGTCTGGGCAGTAACCAATCAGCATCCGGTACAAGACT
AGGGTACTTGTATCACCAGGTGTGGAATTGGTCTAGACTACGAGCCTATG
TTGGAGGCGCTATTTAGCGTTGGTGAGCCGGCAAAAGAATCGAAAGGAAC
CATAACCCTCACCGGACGCTCGGATTGGGAAGACCGTGCATTCCGTAATT
TTTCCTACAAACCAAAACGAACAAAGAGGCTACGGTCCACTACTGTGTGT
AGATATCATGAGAAGGGTGCGGTACAAAGACGGATGGGAGACGAAGTTGT
ACAAGGGAGACAAGATGGAGTTGCTAGGTTTTGGAGTCGATAGAGACATG
ACCAGGATAGAGTTCAAGAAAGCCTGCGTGACGGAAGGACTGCATTGCTT
AGCTAAGGGGGAAGTAGGTAGAGAACATGATCACTTCAGGGTAACAATGA
CCAGAGGTGATAGTAAAACGGGCCAGCAGGTTGACATTGAGAAGCTGTCG
AAATACGTACGGAAGGTGGGATGGAGGGTTTGCATAGCCAACATGATGGA
ATCAGAGAAGGTAAGAAGACAGTGACGAATAAAGGATGAGGTGATCAGGG
GGGGGGGGAAGGTTAGTTAAGCAAGTAAGAAGATCGCGAAGGGGCGACAG
GCGGGCGTAAGGGTGCGGAAAGAGTCCAATAGGGACAAACACCAGCTACG
AGTAGGGTCGTGGAACGTGTGCGGGTTTGCGAGAGACAAGCGCAAGAGGT
TGGAAATAGTTGAGCAAGTAGAACAGGCTGAGCTAGATGTGGTAGGGATC
CAAGAGTCATGGGAGTTGAAAGATGGGGATATCGAAAGCAGGATAGGAGA
ATACCGGTGGATAGGAAAGGCACGGAAAGGTTTAGACCCGAAAAAAAGGG
GAGAGGGGCGAGTCGGATTTCTCATCAAGGAACACTTGTTTGAGTTGGTA
AAAATGGTCATAAAGACGACGTTCGAGGAAAGCTTATGGATAAGGGTACC
AGGAGAAAGGGGTGAGCTAGACCTATTTATAGGGAATGTATACATTCCAC
CGTCGTCGAAGAAAGTCGCATGTAAGGCGCAAGCGAGCAAGTGGGGGAAG
ATGTTCAGAAGTTCAAGAGGAAGGGAGAAGTTGTCATAGTAGGCGATTTC
AACTCTCGAGTTGGGAAAGCTAGTCGGGGGGGGCAGGTGATAGGGCAATC
CGGAGAAAACCGAGTAAATGCCAACGGGGAAAAAATGCTTGACTTCCTAG
GCAGTAACGAGCTGATGGCAACAAACAATAGGAGTAGGGAGGACACCCCG
CAGTATACCAGACAGCGGGCAAGTTGCGGAGGATTCTCGATTCTTGACTA
CATCCTGGTAGACAGAGAAACAAAGCGGATCCCAAGATTGCACGTAAACA
AGGTAGACATGAGCACGACTGACCACTTCCTTATTTGGGCTAAAACAACA
CGTAACAAGAGGGTCAAGAGTACGAAGACGAGGAAGGTATTCAGAGGGAA
AGTAGAACGACTGGGAAACGAGAGAGTACGTGCTGAATTCCAACAAAGGA
ATGCAGACAGCGTAGAACAAGTAAGGGAACTGATGGGGAAAGCGGGAGAG
GAAGAGGACGTTCAAGTACAAGGGGACAGAGTAATCGCAGGATGGGATAA
CATAGTGAACACAGCCGCAGAGGAAGTGATGGGGAAAAAGATGGTCCGGT
GTGGTCAGGCGGTTAAGTGGTGGGACGAATAATTGAGGGAAGAAATAGGG
GAACGAAGAGAACTGTTTAAGCGGCACATGGATGAGAAGACAGTGGAGAG
TTGGGAAACCTACAGAGCCAAGAGGACACATGTGAATAGAGTAGTGAAAA
AGAAGAAGAAAGGCATCTGGGACGAAGTGGTGCAGGAAGCGAACGGGGGG
TTGGAGGGTAGCGTAAAACAGATGTGGCAGGGAATTAATGGATTGGTAAA
AAAGAATGAGGATGGGGGGACACAGGAGTAGCAACATTGCGAAGCGTAGA
CGGTAAACTAGTCAGCAGTGGCAAGGGTAAGAGACAGGTACTAGCAGGAC
ATTATAGGAGACTCGGGGTGCCGTCGGAAAGGCAGACTTCGACCAAGTAT
TCAAGGAAGAGGTAGACGCGTGGGCCCAAGCAGAAGAGAGAGCTTCGATG
GAGGAAGTTGGGAATGCAGAGCTCCAAAAGAAGTTCATCGAGGAAGAGGT
TGAGCGTTGTGTGAAAAAACTGCAGTGTCACAAGGGCGCAGGGGGTAGAC
GGGATAGTGAACGAAATCATGAAGTTCGGGGGGGAGGGGATGATTCAGAT
GATGGTGCTGTTGTTCAACTGGGCATGGGAAAACAAATACGCACCGAGTA
GATGGAGGGAAGGGGTGGTGGTGAACCTATTTAAGAAAGGAGATAAGACT
GACCCAGGAAACTATAGGGGAATTACCCTGTTGAGCACAGTAGGGAAAGT
GTTCTTCAAGATCCTCAACAACAGAATAGTACGAGTACTGGAGATGGAAA
AGAGAATTAGTGGGGTCAAGCAGGTTTCAGGGAGGCTAGGGGGTGTGGAG
ATCACCTATACACGGTAGGGAGGATCATACAAGGTCGGACGAGGGTGGGA
AAGCCGACATATTGTTTTTTCCTAGACGTTCAGAAAGCGTATGATACAGT
ATGGAGAAATGGGCTCTGGAAAAAGTTGGCGAAGTATGGGATAAACGGGA
AGATGTGGAGAATGGTTAAGAAGATGACAGAGAGCACTAAAAGCGCCGTG
ATGTTAGATGGAGAACTCTCGAGGTTCTTCGACATTGAGCAGGGGGTCCC
ACAGGGGTACACAATGTCACCAACGTTGTTCCAGGTATTCATCAACTACT
TACTGAAAGAGGTAGAGGCGGTAGGGAAGGGAGTAGAAGTAGGGGAAACC
TCGGTATCGGGACTGCTATTTGCTGACGACTTTGTTGGGATGCCGGACAC
GCCTGAGGGGCTCCAACTACAGATTAACGAAGCGAAGACCTACGCTGATG
AGTGGAGATTCTCGGCCAACGTCCCAAAGTGTGCGTAATGGTATGCAATG
AAGATGGTGACGAGGAAGTAGGTACCGAGTGGACATGAGGGGACAAGGAG
CTGCCAAGAGTGGAAAAATACACATACCTTGGAGTAGAGATAGCAAAAGA
CTGTAAATGGGATGCACACATGCACAAAATAGCAGACAAGGGCAAAGCAA
GGGCAGGGAAGTTGCACCCAATCCTAGCAGACCGGCACCTTGATACACGC
GTCAAAATGACCATTCTGAAAAGTGTTATCATCCCGCCACTAGAGTACGC
GGGAGAAGTTTGGGAAGGGAACAAGAAAATAGTAGCAGAGTTGGAGGCAG
CGCAGATGAAAGCAGCGAAGATCATTCTAGGATGCTCCCAGCGCACAAGT
AACGCAGCAGTAAGATCAGAGTTGGGGAGTTACTCCTTAAGAACGGGAAG
AGACAGGAGGAAGTTGACATGGCAATACCGTAAGGAAAACATGGGAAAGG
AGAGGTTACCGAGAATAGTTTGGGAGGCGAGATGGGTAAACAAGGCCAAG
GGTAGACAACCCATTGAGTGGGCTAAGGTTGTACAGGGAGTGTTGAGTGG
ATTAGATATTGACGAACGGGAGACGACGGGAGCGGAAAGCTTAGAAGGGT
ACAAGAAGAGTATCTCAGAAGCCTTCAAAAATAGAGAAGACCAGAGCTTG
CGGAAAGAAACCAAGGAAAAGGAGGTTCTAGAAGTGTACGGAAGGCTGAA
CGAAGGAGGGTTCAAGGAGTACCTGAACGGACCATTGGATGAATGGACAA
AGATGAAGGTCAAATTTAGAACGGGCGACATTGACCTACGGGAACGTAGA
AGGAGGTTTAGGAAGGTAGACGACGACGAAGACAAGTTCAAATGTGACTG
CGGCGCCGAATGCGAAGACCGGGTACCTGTAGTTGCGGAATGCCCGTTGT
ACGACCAGGAGAGAGAAGGGTACATGGTTGAGCTGGAAAAAGTGGACAGT
CGGTATAGAGAGAAGTTTGAGGCATGGAACAAAGAGGAGAAGACGGTAGC
GGTACTCGGGTGTAAGATGTAGCCCAGGAAGGACAGGTATAAAGTAGACA
GGTTAGGGAAAACATTTTTGAGCCACCTTTGGCAAAGTAGGAAGGAACGA
TTGGCCATCGGTGGTCGATCCTGCGGGAACAATGCTCCGTCCTCTCGAGG
ACGCGTGGTCAATGGTCTAACAACTAAGGCATGCAAAACATGAGTACGCC
TCCCTCTCCCCCGCCCCCCTCGGCCTTTGTGCTTGACACTATCGAATGTT
GTTCTCCACATCACTCGCCCATTCCCTGCCTGACGTGCAACCCACCCCCG
GACTCAGGGCACACGAGCTAAAGACATGAACGTTGAGATTCACCCGGACC
GCATGCTCGTCGAGGTGAATGGGACGGGGATCGTGACGCAAGGCTACTTC
CAAGGAAAGGTGGCCCTTGACGGCTGCCACTGGTTTATGTCGGACCTATC
CCTCGACCCCCCAGGCTCGGCTGCGCTGGGAACGCAGGACGACGAAGTGC
GCCAGGGCCCCGTCGACCGCGGGGAGACGTGCGTACAGGTGTATCTCGAG
AAGAGGAAGCCGCACGACACGCTGTGGGAGAACGTCTACCGATCATCGAA
GGAAGTATCCGCGGGGGGAGGTGTCGAAAGCGCGCCGCCAGAAAGGGCGG
TGGCGGCGGCGGCGAACGAGGCAGGAGCGGGCGGTGGGAGCTGACGGCGC
AGTTTCCGCTGTTATGGTGTAGCACGGCGTTGACGGTTATGCAAGCAATC
AAGGAGAGGCTAGAGAAGCTGGTTCGCGATTGTTTTGCCTTCGCAGCATC
TCGTTACGGTCGGGGTATCGTGAGAGGGCTATGTAACGCAGGCAATTCTG
TGAAAATTCCAGCTTGGGGCATCTGTAATTATTGGTTTTTGATAGTGACA
CCAGTCGTGGTGCGGGTGCCTGCCTACTGTTTTCCCTTACTCTGTGCATT
AGTTGTGGATCAAGGATGCATACGAAAGTTCTTCTCGTACACAAACGCCC
CCCGCCCCCACCGTCCCCTACGAAGGGTCGCAAAAAGGCAATCAAATGTT
GCTTTGCTTTCTATGGGTTTCGATTCTCAGCAAGAGGCTGCTTGCCTATT
TTACTGATTAAACAATACATC
back to topCoding sequence (CDS) from alignment at P-fluviatile_contig9:28603..38773-
>mRNA_P-fluviatile_contig9.14999.1 ID=mRNA_P-fluviatile_contig9.14999.1|Name=mRNA_P-fluviatile_contig9.14999.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=3468bp|location=Sequence derived from alignment at P-fluviatile_contig9:28603..38773- (Porterinema fluviatile SAG_2381)
ATGAGCACACCATCCTTGCTTGCTCGAGGAAGCTTACTGCTACTGTTTTG
TCCTCACTTAAGGCTCTCCTGCACTGCTTTCCTGGTCGTCTGTCCTCGGG
ATAGATCCCCACATCGAGTTTCAGCCAGGGGAGGGCCATGGGAGGCAACA
ACCTCAGCAACAGTTGGCGCCTTTGCCACCCCACCATGAGCACACCATCC
TTGCTTGCTCGAGGAAGCTTACTGCTACTGTTTTGTCCTCACTTAAGGCT
CTCCTGCACTGCTTTCCTGGTCGTCTGTCCTCGGGATAGATCCCCACATC
GAGTTTCAGCCAGGGGAGGGCCATGGGAGGCAACAACCTCAGCAACAGTT
GGCGCCTTTGCCACCCCACCGCTTGGGTCCTGTCGAAGATGCCACTCACT
CCCATGTGAAGAAACTCGACAGCGAGCAGGATCAGAGGAGCTGGCCCCTA
ACTGTCTCCGTGGTGGCACCGCGTCCGGCGGTAGCCGCCGAAATACGGCG
AAGGATTGGGGGGTGAACAGGAGAAGACGGATTCGCCTGCGGCTGCAGGC
AAAGTCAAACAAGGGAGACGTTCCGGGGAGTGAGGTGATGGACGCAGAAT
TCTCGGAAATAATCGGCGAGATCGAGCGGGCTGATCTGGAGAGCCAGGGG
AAGAAGCGGGAGGAGCAGGAAGAAACAGAAGCTCCTCCCACGGCGGTCGA
GAATGATATCGGAAAGCAGGCCCCGGCTCCGGCCCCGGCCTCGGCTCCGG
CTCCGGCTCCGGCTCCGGCTCCGGCCCCAAACCCCTCGGCTCCTTTCGCC
TTTGCGGGCTCTGGTTTCACGTCCTTGGAGGATGCGTCGGCCTCGGGCGA
GTTCGTCGATCTGTCAGGCGGGCGGAAATCGTGTCTGAAGCGCGTCGATC
AAGCCGGGTTCAAGAGCGACGGCAACCCAGCGAAAGGCTCGAAGGCTTGG
GTCCTGTCGAAGATGCCACTCACTCCCATGTGAAGAAACTCGACAGCGAG
CAGGATCAGAGGAGCTGGCCCCTAACTGTCTCCGTGGTGGCACCGCGTCC
GGCGGTAGCCGCCGAAATACGGCGAAGGATTGGGGGGTGAACAGGAGAAG
ACGGATTCGCCTGCGGCTGCAGGCAAAGTCAAACAAGGGAGACGTTCCGG
GGAGTGAGGTGATGGACGCAGAATTCTCGGAAATAATCGGCGAGATCGAG
CGGGCTGATCTGGAGAGCCAGGGGAAGAAGCGGGAGGAGCAGGAAGAAAC
AGAAGCTCCTCCCACGGCGGTCGAGAATGATATCGGAAAGCAGGCCCCGG
CTCCGGCCCCGGCCTCGGCTCCGGCTCCGGCTCCGGCTCCGGCTCCGGCC
CCAAACCCCTCGGCTCCTTTCGCCTTTGCGGGCTCTGGTTTCACGTCCTT
GGAGGATGCGTCGGCCTCGGGCGAGTTCGTCGATCTGTCAGGCGGGCGGA
AATCGTGTCTGAAGCGCGTCGATCAAGCCGGGTTCAAGAGCGACGGCAAC
CCAGCGAAAGGCTCGAAGATCAAGGTGCACTACAAGATGAAGGTTGTCGG
CGGCAAGAACATCGCCTCCAGTGGAGAGGACAGGAGCAAGCCCTTCGAGT
TCAGATTGATCAAGGTGCACTACAAGATGAAGGTTGTCGGCGGCAAGAAC
ATCGCCTCCAGTGGAGAGGACAGGAGCAAGCCCTTCGAGTTCAGATTGGG
TCGCTGGCCGAGCGAGGCCACGCATGGCTGGGACAAGGCCGTTTCGGCGA
TGCACAAGGGAGAGGTCGCCACTCTGATCTGCGGGCCGCAGTACGCGTTC
GGCGAGGCCGGGGCGCCGCCCAGGATCCCCCCCAACGCGACTGTGGAGAC
GCGGCTGGAGCTGGTGGACTGGCTTGACCTCGCAGCGGCGTACAACGCGG
TCCCAGGCAAGGTGGAGACGGACGAGGAGCTCAGGGACAGGTGGAGCTCG
GAAATCGCGGACGGAACTAGCCCTATGAAGGATGAAGCAGGGTCGCTGGC
CGAGCGAGGCCACGCATGGCTGGGACAAGGCCGTTTCGGCGATGCACAAG
GGAGAGGTCGCCACTCTGATCTGCGGGCCGCAGTACGCGTTCGGCGAGGC
CGGGGCGCCGCCCAGGATCCCCCCCAACGCGACTGTGGAGACGCGGCTGG
AGCTGGTGGACTGGCTTGACCTCGCAGCGGCGTACAACGCGGTCCCAGGC
AAGGTGGAGACGGACGAGGAGCTCAGGGACAGGTGGAGCTCGGAAATCGC
GGACGGAACTAGCCCTATGAAGGATGAAGCAGGGTTGAAAAAAAGAATGC
AGGCTGAGATGGCGACCAAGGCGGCCACAACCCCGCCAAATACCGACCAT
CGCGGCAAGAAGATTTACGACCTCAACAGTAAGGAGGCGCGCGAGATCAT
GGCGAAGCAGAAGGTGCAGGGGTACACGCCTGAGTTCGCGTACGTGGAGA
GGGGCGGCTACCTCGACCTCTACATACCTGTCCCAGAGGGTTGAAAAAAA
GAATGCAGGCTGAGATGGCGACCAAGGCGGCCACAACCCCGCCAAATACC
GACCATCGCGGCAAGAAGATTTACGACCTCAACAGTAAGGAGGCGCGCGA
GATCATGGCGAAGCAGAAGGTGCAGGGGTACACGCCTGAGTTCGCGTACG
TGGAGAGGGGCGGCTACCTCGACCTCTACATACCTGTCCCAGAGGGCACA
CGAGCTAAAGACATGAACGTTGAGATTCACCCGGACCGCATGCTCGTCGA
GGTGAATGGGACGGGGATCGTGACGCAAGGCTACTTCCAAGGAAAGGTGG
CCCTTGACGGCTGCCACTGGTTTATGTCGGACCTATCCCTCGACCCCCCA
GGCTCGGCTGCGCTGGGAACGCAGGACGACGAAGTGCGCCAGGGCCCCGT
CGACCGCGGGGAGACGTGCGTACAGGTGTATCTCGAGAAGAGGAAGCCGC
ACGACACGCTGTGGGAGAACGTCTACCGATCATCGAAGGAAGTATCCGCG
GGGGGAGGTGTCGAAAGCGCGCCGCCAGAAAGGGCGGTGGCGGCGGCGGC
GAACGAGGCAGGAGCGGGCGGTGGGAGCTGAGGCACACGAGCTAAAGACA
TGAACGTTGAGATTCACCCGGACCGCATGCTCGTCGAGGTGAATGGGACG
GGGATCGTGACGCAAGGCTACTTCCAAGGAAAGGTGGCCCTTGACGGCTG
CCACTGGTTTATGTCGGACCTATCCCTCGACCCCCCAGGCTCGGCTGCGC
TGGGAACGCAGGACGACGAAGTGCGCCAGGGCCCCGTCGACCGCGGGGAG
ACGTGCGTACAGGTGTATCTCGAGAAGAGGAAGCCGCACGACACGCTGTG
GGAGAACGTCTACCGATCATCGAAGGAAGTATCCGCGGGGGGAGGTGTCG
AAAGCGCGCCGCCAGAAAGGGCGGTGGCGGCGGCGGCGAACGAGGCAGGA
GCGGGCGGTGGGAGCTGA
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