Homology
BLAST of mRNA_P-fluviatile_contig1.211.1 vs. uniprot
Match:
D7G072_ECTSI (HpcH_HpaI domain-containing protein n=2 Tax=Ectocarpus TaxID=2879 RepID=D7G072_ECTSI)
HSP 1 Score: 546 bits (1408), Expect = 1.020e-188
Identity = 272/285 (95.44%), Postives = 279/285 (97.89%), Query Frame = 1
Query: 313 LRSVLYTPGSSRHLYKIREIACDASLVDLEDGVAPEAKDKARERVCSEIGKGGYGRKAVVVRINSLDSPWGEDDIREVAKLTLDAVVIPKVESAADVKRVADLLRQHGAYDTDLWCMIETPLGVTRANEIASAHETVSCLVLGTSDLTRDLQANHTPDRTPLLYSLSRVILAARTYGLRCLDGVHLDMTDAEGFERACRQGRDMGMDGKTLIHPSTVAVANWFFGPNASEVEQAYRVVQAHEEAAARGEGCAVLDGSLVERLHAENARRVIELHESIAALEAGQD 1167
+RSVLYTPGSSRHLYKIREIACDASL+DLEDGVAPEAKD ARERVCSE+ KGGYGRKAVVVRINSLDSPWGEDDIREVAKLT+DAVVIPKVESAADVKRVADLLR HGA DTDLWCMIETPLGVTRANEIASAHETVSCLVLGTSDLTRDLQANHTPDRTPLLYSLSR ILAARTYGLRCLDGVHLDMTDAEGFERACRQGRDMGMDGKTLIHPSTVAVANWFFGPNASEVEQAYRVV+AHEEAAARGEGCAVLDGSLVERLHAENARR+IELHESIAALEAG +
Sbjct: 1 MRSVLYTPGSSRHLYKIREIACDASLIDLEDGVAPEAKDNARERVCSEVAKGGYGRKAVVVRINSLDSPWGEDDIREVAKLTVDAVVIPKVESAADVKRVADLLRHHGAKDTDLWCMIETPLGVTRANEIASAHETVSCLVLGTSDLTRDLQANHTPDRTPLLYSLSRCILAARTYGLRCLDGVHLDMTDAEGFERACRQGRDMGMDGKTLIHPSTVAVANWFFGPNASEVEQAYRVVEAHEEAAARGEGCAVLDGSLVERLHAENARRIIELHESIAALEAGHE 285
BLAST of mRNA_P-fluviatile_contig1.211.1 vs. uniprot
Match:
A0A835ZHS4_9STRA (Pyruvate/Phosphoenolpyruvate kinase-like domain-containing protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835ZHS4_9STRA)
HSP 1 Score: 327 bits (838), Expect = 9.680e-103
Identity = 166/298 (55.70%), Postives = 215/298 (72.15%), Query Frame = 1
Query: 274 SSTGGSGKPLL--KPLRSVLYTPGSSRHLYKIREIACDASLVDLEDGVAPEAKDKARERVCSEIGKGGYGRKAVVVRINSLDSPWGEDDIREVAKLT-LDAVVIPKVESAADVKRVADLLRQHGAYD-TDLWCMIETPLGVTRANEIASAHETVSCLVLGTSDLTRDLQANHTPDRTPLLYSLSRVILAARTYGLRCLDGVHLDMTDAEGFERACRQGRDMGMDGKTLIHPSTVAVANWFFGPNASEVEQAYRVVQAHEEAAARGEGCAVLDGSLVERLHAENARRVIELHESIAALE 1155
S+ GS L +PLRSVLYTPG +HL K++ D +L+DLEDGVAP +K AR+ V GG + + VR+N LD+ WG DD++ VAKL +DA+ +PKVES A+V+ VA L + GA T +W +IETP GV + IA+AH S LV+GTSDL R+L HT DR PLLYSLS+ ++AAR L LDGVHLD+ D+ GFE+AC+QG+++GMDGKTLIHPSTVAVANWFFGP+A +VEQ+YR+V+A +EA ARG+G +LDG L+E LHA+NA R+I LHE+I A E
Sbjct: 6 STVAGSAAQKLQGRPLRSVLYTPGFGKHLAKVKTSVADCALIDLEDGVAPSSKVAARKAVAELFQAGGLSNRMLTVRVNGLDTEWGWDDLKAVAKLERVDAIALPKVESPAEVQEVAAYLEKEGASQHTTIWSLIETPKGVQNVDAIAAAHPRQSALVMGTSDLCRELHCLHTKDREPLLYSLSKCVVAARANDLLILDGVHLDLEDSTGFEQACKQGKELGMDGKTLIHPSTVAVANWFFGPSAEDVEQSYRIVEAMQEAMARGQGACLLDGKLIENLHADNALRIIALHEAIQAFE 303
BLAST of mRNA_P-fluviatile_contig1.211.1 vs. uniprot
Match:
A0A3S0HXF6_9PROT (CoA ester lyase n=2 Tax=Azospirillum TaxID=191 RepID=A0A3S0HXF6_9PROT)
HSP 1 Score: 314 bits (805), Expect = 4.430e-98
Identity = 160/286 (55.94%), Postives = 206/286 (72.03%), Query Frame = 1
Query: 304 LKPLRSVLYTPGSS-RHLYKIREIACDASLVDLEDGVAPEAKDKARERVCSEIGKGGYGRKAVVVRINSLDSPWGEDDIREVAKLTLDAVVIPKVESAADVKRVADLLRQHGAYDT-DLWCMIETPLGVTRANEIASAHETVSCLVLGTSDLTRDLQANHTPDRTPLLYSLSRVILAARTYGLRCLDGVHLDMTDAEGFERACRQGRDMGMDGKTLIHPSTVAVANWFFGPNASEVEQAYRVVQAHEEAAARGEGCAVLDGSLVERLHAENARRVIELHESIAALE 1155
++P RSVLY PGS+ R L K R + D ++DLED VAP+AK +AR+ + I GGYG + +V+R N L++PWG DD+R A DAV++PKVESA V++ LLR GA D+ LWCM+ETPLG+ A EIA A T+ LVLGTSDL +DL A HT DR P+L SL +LAAR YGL LDGVHLD+ D EGF ++CRQGR++G DGKTLIHP T+A N FGP+A E+ QA+R++ AH EAAA+G+G ++DG LVE LH ENARR++ L ++IAALE
Sbjct: 5 VRPRRSVLYMPGSNARALDKGRSLPADGLILDLEDAVAPDAKAQARDTIAQAIAAGGYGGRELVIRTNGLNTPWGYDDLRMAATSGADAVLLPKVESADAVRQAESLLRAAGAPDSLRLWCMMETPLGMLNAKEIAGASPTLGALVLGTSDLAKDLHAAHTRDRLPMLTSLGLCLLAARAYGLAVLDGVHLDLNDEEGFAQSCRQGRELGFDGKTLIHPKTIAACNAVFGPDAEEIAQAHRLIAAHAEAAAQGKGVVLVDGKLVENLHVENARRLVALSDAIAALE 290
BLAST of mRNA_P-fluviatile_contig1.211.1 vs. uniprot
Match:
A0A2E6QIK9_9PROT (CoA ester lyase n=1 Tax=Rhodospirillaceae bacterium TaxID=1898112 RepID=A0A2E6QIK9_9PROT)
HSP 1 Score: 308 bits (790), Expect = 7.140e-96
Identity = 151/285 (52.98%), Postives = 204/285 (71.58%), Query Frame = 1
Query: 307 KPLRSVLYTPGSS-RHLYKIREIACDASLVDLEDGVAPEAKDKARERVCSEIGKGGYGRKAVVVRINSLDSPWGEDDIREVAKLTLDAVVIPKVESAADVKRVADLLRQHGA-YDTDLWCMIETPLGVTRANEIASAHETVSCLVLGTSDLTRDLQANHTPDRTPLLYSLSRVILAARTYGLRCLDGVHLDMTDAEGFERACRQGRDMGMDGKTLIHPSTVAVANWFFGPNASEVEQAYRVVQAHEEAAARGEGCAVLDGSLVERLHAENARRVIELHESIAALE 1155
+P RSVLY PGS+ R L K R + DA ++DLED V P+AK +AR+R+ +G GGYG++ +VVR+N+L +PWG DD+ +A DAV++PKVESA +V++ +L ++GA D +WCM+ETP G+ EIA+AH V+CLV+GTSDLT+DL ANHTP R PL+ S+ +LAAR +GL LDGVHLD+ D GF ACRQGRD G DGKTLIHP T+A AN FGP+ E+ + R++ AHEEAA G+G ++DG L+E LH A+R++ + E IAA+E
Sbjct: 5 RPRRSVLYMPGSNQRALEKGRTLPADALILDLEDAVTPDAKAEARDRIAEAVGTGGYGKREIVVRVNALSTPWGYDDLAGLAGCGADAVLLPKVESAGEVRQAVAVLEENGAPEDLAVWCMMETPRGILAVAEIAAAHPRVACLVMGTSDLTKDLHANHTPGREPLMTSIGLCLLAARAHGLAILDGVHLDLDDEAGFAAACRQGRDWGFDGKTLIHPKTIAAANAAFGPSDDEIAWSRRIIAAHEEAAREGKGVVLVDGKLIENLHVAEAQRLVVMAEMIAAME 289
BLAST of mRNA_P-fluviatile_contig1.211.1 vs. uniprot
Match:
UPI000E5D605A (CoA ester lyase n=1 Tax=Algihabitans albus TaxID=2164067 RepID=UPI000E5D605A)
HSP 1 Score: 308 bits (790), Expect = 7.380e-96
Identity = 158/286 (55.24%), Postives = 201/286 (70.28%), Query Frame = 1
Query: 307 KPLRSVLYTPGSS-RHLYKIREIACDASLVDLEDGVAPEAKDKARERVCSEIGKGGYGRKAVVVRINSLDSPWGEDDIREVAKLTLDAVVIPKVESAADVKRVADLLRQHGAYDT-DLWCMIETPLGVTRANEIASAHETVSCLVLGTSDLTRDLQANHTPDRTPLLYSLSRVILAARTYGLRCLDGVHLDMTDAEGFERACRQGRDMGMDGKTLIHPSTVAVANWFFGPNASEVEQAYRVVQAHEEAAARGEGCAVLDGSLVERLHAENARRVIELHESIAALEA 1158
+P RSVLY PGS+ R L K R I DA ++DLED VAP+AK +AR V + + +GGYGR+ ++VR+N LDSPWG DDI +A DA++IPKVESA V+ V L+ GA + CM+ETP G+ A EIA A ++CLV+GTSDL +DL A HTP+R P+L SLS +LAAR YGL +DGVHLD+ DAEGF+ C QGR++GMDGKTLIHP TVA AN F P+ +V QA R+++AH EA G+G VLDG L+E LH E+A+R + L ESI LEA
Sbjct: 7 RPRRSVLYMPGSNTRALEKGRGIPADALILDLEDAVAPDAKAEARANVVAALAEGGYGRREIIVRVNGLDSPWGRDDIAAIAPTGADAILIPKVESAEMVQEVERLMVSAGAAGAMGIMCMMETPRGILHAGEIAGASARLTCLVMGTSDLVKDLNAKHTPERLPVLTSLSLCVLAARAYGLAVVDGVHLDLNDAEGFDAQCNQGRELGMDGKTLIHPKTVAAANTAFAPSEDDVAQAKRIIEAHSEATRAGKGVVVLDGKLIENLHVEDAQRTVALAESITDLEA 292
BLAST of mRNA_P-fluviatile_contig1.211.1 vs. uniprot
Match:
A0A3B8ZVP8_9DELT (CoA ester lyase n=3 Tax=Desulfuromonadales TaxID=69541 RepID=A0A3B8ZVP8_9DELT)
HSP 1 Score: 307 bits (786), Expect = 3.520e-95
Identity = 154/287 (53.66%), Postives = 202/287 (70.38%), Query Frame = 1
Query: 304 LKPLRSVLYTPG-SSRHLYKIREIACDASLVDLEDGVAPEAKDKARERVCSEIGKGGYGRKAVVVRINSLDSPWGEDDIREVAKLTLDAVVIPKVESAADVKRVADLLRQHGAYDT-DLWCMIETPLGVTRANEIASAHETVSCLVLGTSDLTRDLQANHTPDRTPLLYSLSRVILAARTYGLRCLDGVHLDMTDAEGFERACRQGRDMGMDGKTLIHPSTVAVANWFFGPNASEVEQAYRVVQAHEEAAARGEGCAVLDGSLVERLHAENARRVIELHESIAALEA 1158
++P RS+L+ PG ++R L K RE+ D + DLED VAP AK +AR V + + GGYGR+ +VVR+N LD+PWG DD+ A+ DAV++PKVES A V+R DLL + A D ++WCM+ETP G+ RA EIA+A V+ LV+GTSDLT++L+A HTPDR PLL SL +L AR YGL LDGVHLD+ D GF ACRQG D+G DGKTLIHP T+AVAN F P+A+ + A +V+ H A RGEG V+DG L+E LH ++ARR++ L +I+ALEA
Sbjct: 5 MRPRRSLLFMPGVNARALAKARELPADGLIFDLEDAVAPAAKGEARAAVGTALAAGGYGRRELVVRVNGLDTPWGRDDLAAAARCGCDAVLLPKVESGASVRRTLDLLEEFAAPDNLEIWCMLETPRGILRAEEIATASTRVAALVMGTSDLTKELRARHTPDRRPLLASLGHCLLVARAYGLTALDGVHLDLHDDTGFAAACRQGVDLGFDGKTLIHPKTIAVANSLFAPDAAALAWARKVITVHSAAMERGEGIVVVDGQLIENLHVDDARRLVALAAAISALEA 291
BLAST of mRNA_P-fluviatile_contig1.211.1 vs. uniprot
Match:
A0A2S2CSW4_9PROT (CoA ester lyase n=1 Tax=Azospirillum thermophilum TaxID=2202148 RepID=A0A2S2CSW4_9PROT)
HSP 1 Score: 301 bits (771), Expect = 4.460e-93
Identity = 157/288 (54.51%), Postives = 199/288 (69.10%), Query Frame = 1
Query: 304 LKPLRSVLYTPGSS-RHLYKIREIACDASLVDLEDGVAPEAKDKARERVCSEIGKGGYGRKAVVVRINSLDSPWGEDDIREVAKLTLDAVVIPKVESAADVKRVADLLRQHGAYDTD-LWCMIETPLGVTRANEIASAHETVSCLVLGTSDLTRDLQANHTPDRTPLLYSLSRVILAARTYGLRCLDGVHLDMTDAEGFERACRQGRDMGMDGKTLIHPSTVAVANWFFGPNASEVEQAYRVVQAHEEAAARGEGCAVLDGSLVERLHAENARRVIELHESIAALEAG 1161
++P RSVLY PGS+ R L K R + D ++DLED VAP+AK AR + I GGYG + +V+R N L++PWG DD+ A DAV++PKVESA V++ +LR GA D LWCM+ETPLG+ A EIA+A + LVLGTSDL +DL A HTPDR P++ SL +LAAR YGL LDGVHLD+ D EGF +CRQGR++G DGKTLIHP T+A N + P A EV+ A R++ AH EA AR +G ++DG LVE LH ENARR++ L E+IAALEAG
Sbjct: 5 VRPRRSVLYMPGSNARALEKGRSLPADGLILDLEDAVAPDAKAAARTTIREAIAAGGYGGRELVIRSNGLNTPWGYDDLVMAAASGADAVLLPKVESADMVRQAEAVLRAAGAPDGQRLWCMMETPLGILNAREIAAASPRLGALVLGTSDLAKDLHAAHTPDRLPMITSLGLCLLAARAYGLAVLDGVHLDLNDDEGFAASCRQGRELGFDGKTLIHPKTIAACNAAYAPAAEEVDHARRIIAAHAEAVARDQGVVLVDGRLVENLHVENARRLVALAEAIAALEAG 292
BLAST of mRNA_P-fluviatile_contig1.211.1 vs. uniprot
Match:
G7Z9B5_AZOL4 (Citryl-CoA lyase n=7 Tax=Azospirillum TaxID=191 RepID=G7Z9B5_AZOL4)
HSP 1 Score: 301 bits (770), Expect = 5.480e-93
Identity = 152/285 (53.33%), Postives = 198/285 (69.47%), Query Frame = 1
Query: 304 LKPLRSVLYTPGSS-RHLYKIREIACDASLVDLEDGVAPEAKDKARERVCSEIGKGGYGRKAVVVRINSLDSPWGEDDIREVAKLTLDAVVIPKVESAADVKRVADLLRQHGAYDTD-LWCMIETPLGVTRANEIASAHETVSCLVLGTSDLTRDLQANHTPDRTPLLYSLSRVILAARTYGLRCLDGVHLDMTDAEGFERACRQGRDMGMDGKTLIHPSTVAVANWFFGPNASEVEQAYRVVQAHEEAAARGEGCAVLDGSLVERLHAENARRVIELHESIAAL 1152
++P RSVLY PGS+ R L K R + D ++DLED VAP+AK AR+ + + GGYG + +++R+N L++PWG DD+R A DAV++PKVESA V++ +LR GA + +WCM+ETPLGV A EIA A V LVLGTSDL +DL A HT R P++ SL +LAAR YGL LDGVHLD+ D EGF +CRQGR++G DGKTLIHP T+A N F P+A E+ A+R++ AH EAAA G+G ++DG LVE LH ENARR++ L E+IAAL
Sbjct: 5 VRPRRSVLYMPGSNARALEKGRSLPADGLILDLEDAVAPDAKAAARDTIAQALAAGGYGGRELIIRVNGLNTPWGYDDLRMAAASGADAVLLPKVESADSVRQAEAVLRTAGAPASQTIWCMMETPLGVLNAKEIAGASPAVGALVLGTSDLAKDLHAAHTAQRLPMITSLGLCLLAARAYGLAVLDGVHLDLNDDEGFAASCRQGRELGFDGKTLIHPKTIAACNAAFAPDADEIAHAHRIIAAHAEAAASGKGVVLVDGKLVENLHVENARRLVALAEAIAAL 289
BLAST of mRNA_P-fluviatile_contig1.211.1 vs. uniprot
Match:
UPI0018723A97 (CoA ester lyase n=1 Tax=Pelagibius sp. NBU2595 TaxID=2762760 RepID=UPI0018723A97)
HSP 1 Score: 300 bits (769), Expect = 8.520e-93
Identity = 144/286 (50.35%), Postives = 208/286 (72.73%), Query Frame = 1
Query: 307 KPLRSVLYTPGSS-RHLYKIREIACDASLVDLEDGVAPEAKDKARERVCSEIGKGGYGRKAVVVRINSLDSPWGEDDIREVAKLTLDAVVIPKVESAADVKRVADLLRQHGAYDT-DLWCMIETPLGVTRANEIASAHETVSCLVLGTSDLTRDLQANHTPDRTPLLYSLSRVILAARTYGLRCLDGVHLDMTDAEGFERACRQGRDMGMDGKTLIHPSTVAVANWFFGPNASEVEQAYRVVQAHEEAAARGEGCAVLDGSLVERLHAENARRVIELHESIAALEA 1158
+P RSVLY PGS+ R L K R + D ++DLED VAP+AK+ ARE++ + + +GGYG++ + VR+N LDSPWG+DD++ +A DA+++PKVE+AA + + L+ GA + + CM+ETPLG+ A E+A A + ++CLV+GTSDL +DLQA HTP+R P+L SL ILAAR YG+ DGVHLD++D EGF +CRQG+++G DGKTLIHP T+A AN F P+ +E++ +++++ AH EA A G+G V+DG L+E LH E+A+R++ L E+I LEA
Sbjct: 5 RPRRSVLYMPGSNARALEKGRSLPADGLILDLEDAVAPDAKETAREQIVAALKEGGYGKREIAVRVNPLDSPWGKDDVKAMATSGADAILLPKVETAAMIHELEKLMDAAGAPQSMGIQCMMETPLGMLNAQEVAGASKRITCLVMGTSDLVKDLQAAHTPERLPVLTSLGLCILAARAYGIAITDGVHLDLSDEEGFAASCRQGKELGFDGKTLIHPKTIAAANEVFAPSQAEIDWSHKIIAAHAEATAEGKGVVVVDGKLIENLHVESAQRLVALSEAIKELEA 290
BLAST of mRNA_P-fluviatile_contig1.211.1 vs. uniprot
Match:
D3NT03_AZOS1 (Citrate lyase beta chain n=17 Tax=Alphaproteobacteria TaxID=28211 RepID=D3NT03_AZOS1)
HSP 1 Score: 300 bits (767), Expect = 1.520e-92
Identity = 153/285 (53.68%), Postives = 198/285 (69.47%), Query Frame = 1
Query: 304 LKPLRSVLYTPGSS-RHLYKIREIACDASLVDLEDGVAPEAKDKARERVCSEIGKGGYGRKAVVVRINSLDSPWGEDDIREVAKLTLDAVVIPKVESAADVKRVADLLRQHGA-YDTDLWCMIETPLGVTRANEIASAHETVSCLVLGTSDLTRDLQANHTPDRTPLLYSLSRVILAARTYGLRCLDGVHLDMTDAEGFERACRQGRDMGMDGKTLIHPSTVAVANWFFGPNASEVEQAYRVVQAHEEAAARGEGCAVLDGSLVERLHAENARRVIELHESIAAL 1152
++P RSVLY PGS+ R L K R + D ++DLED V PEAK AR+ + + GGYGR+ ++VR+N L++PWG +D+R A DAV++PKVESA V++ +LR GA +WCM+ETPLG+ A EIA A + V LVLGTSDL +DLQA HT R PL+ SL +LAAR Y L LDGVHLD+ D EGF +CRQGR++G DGKTLIHP T+ N F P+A E+ QA+R++ AH EAAA G+G ++DG LVE LH ENARR++ L E+IAAL
Sbjct: 5 VRPRRSVLYMPGSNPRALEKGRGLPADGLILDLEDAVTPEAKTAARDGIAQALAAGGYGRRELIVRVNGLNTPWGYEDLRMAAASGADAVLLPKVESADAVRQAEAVLRAAGAPAGQAIWCMMETPLGILNAKEIAGATQAVGALVLGTSDLAKDLQAAHTAGRLPLITSLGLCLLAARAYRLAVLDGVHLDLNDDEGFAASCRQGRELGFDGKTLIHPKTIGACNAAFAPDAGEIAQAHRIIAAHAEAAAAGKGVVLVDGKLVENLHVENARRLVTLAEAIAAL 289
The following BLAST results are available for this feature:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig1.211.1
>prot_P-fluviatile_contig1.211.1 ID=prot_P-fluviatile_contig1.211.1|Name=mRNA_P-fluviatile_contig1.211.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=388bp
MKVLTAVARRTRAVRNVPPSGRSTNVAYGGVSREMSSMWSCAAGSPTHAP
SLNPQQGVPGNSRLPAASKELYARRLCGSRWRYSSSSTGGSGKPLLKPLR
SVLYTPGSSRHLYKIREIACDASLVDLEDGVAPEAKDKARERVCSEIGKG
GYGRKAVVVRINSLDSPWGEDDIREVAKLTLDAVVIPKVESAADVKRVAD
LLRQHGAYDTDLWCMIETPLGVTRANEIASAHETVSCLVLGTSDLTRDLQ
ANHTPDRTPLLYSLSRVILAARTYGLRCLDGVHLDMTDAEGFERACRQGR
DMGMDGKTLIHPSTVAVANWFFGPNASEVEQAYRVVQAHEEAAARGEGCA
VLDGSLVERLHAENARRVIELHESIAALEAGQDTNES*
back to topmRNA from alignment at P-fluviatile_contig1:2679817..2693974+
Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig1.211.1 ID=mRNA_P-fluviatile_contig1.211.1|Name=mRNA_P-fluviatile_contig1.211.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=14158bp|location=Sequence derived from alignment at P-fluviatile_contig1:2679817..2693974+ (Porterinema fluviatile SAG_2381)
TTTCTCGCAACAAGACAGATGAAGGTCCTGACTGCTGTTGCTCGTCGGAC
AAGAGCAGTACGGAACGTACCACCAAGTGGTCGCAGCACAAACGTTGCTT
ATGGCGGCGTTTCTAGAGAGATGTCATCTATGTGGTCATGTGCTGCGGGC
TCTCCTACTCACGCTCCTTCACTTAATCCCCAACAAGGAGTGCCCGGCAA
CAGCCGCTTGCCGGCTGCTTCAAAGGAATTATATGCCCGACGCTTATGCG
GATCCCGATGGAGATACAGCAGCAGCAGCACCGGGGGTTCAGGGAAGCCG
CTGCTGAAACCCCTTAGGTCTGTCCTCTATACGCCGGGATCATCGAGACA
TCTCTACAAGATCAGAGAGATTGCTTGCGATGCTTCTCTAGTTGATCTCG
AGGTAAGATACATGTCCAGCCCTAAACAGCAGCTGTTGCTGGGTTGCAGC
AATCCCCAAGAATACAAAAGAGAGCGAGGAAATATTCGTTTTCGCGCCCT
TTTTCAGCTTGGGCGCTCCTCACTGCCTCGACCAAACATCAGCTCGTACA
TTAGTGCATACAAGTAGATGCACAACACATCTGACGCTGTCGTCAATCCC
AACCGTAGACTAGTTCGCCGGTCTCGCCTGTTGCAGTCCCCTCCTTTAAT
TAGTTTCCAAGTGCTGTGCACACCTGAACTGTATTGATAGGGCTCTCCCT
TCTGGGTGCCGGACATGATATTTATGTCCAGCTATCTCGTCGAGCAGTGC
GAGCCTCTCCCAACGCCAACACGAACTACCGTTAGAAGCGGGTCTTGTTG
GATCCGCGGCCCTGGCAATTGGACTGTCCTCGGGTGACTGAACGTTCCAG
AGCTCCGATGTGTTTTGCTCTGCGCGTCATTCACGCCGGGGTGTGTACGA
CGTGCAGCAATTGCCTCGTGAACGGGGATCGGATTATAGGTGCAAGTCTG
GAGTCTGCACGCCATGTTACCACGTTGTTGTGTTGAACGCACGACTTCGC
GCGGCATGGCGCGTGTACGAAGCAGATAGCAGATAAGTTATCCTCCTTCG
AACGAGGCAGCGGGCCGGTATTGATATTGAAACGGAGGAGCGGAACCATC
CGACACTTGCGGTAGGTATTATGTACCACACCCACCGCCGGCACGGGCCT
ACCTCGTCTGGTAGAATGCGGGCAAGTGTGGACCTACGGGAGAGAGCTCG
AGTAGCTCCCAGGAAGAGACAAGGATTTCGGACGAAAGGGGCGAGAGCCG
AAATACTCATCTTCCCGTTCGCTTGTGCGCCATCACGTGGCGCTTAGAAG
CATTGCAGTAGCCTACGCAGGTTTCGATGAGCAGACGGGATAAAGTTTGG
GGTTAGTGTTTTTTTGGGGTCCCAGTAGCCTCCGCAAGGTTTCATCAAGC
AAACTTGTTGGATAGAGTGTAGGATTCGTGTTCTTTGGGGTCGTGTTCTT
TGGGGTTCGGGTGTAGGGTTAGCGTTAGATCCCACTTGCCCTTTTCATAT
GCACCAAACTCGAATTTCTTTGCTTGGCCGGTCCAAGCATTGGGTTTGCG
GAAGGAGTTTCTTTGTATGACTTCCTGCGGTGCGGAGCGGAGTAACAACA
TACCCAAGCCGGATACATGAAGCAACCCTTTGCCAGCGCTTTCATGTGCT
TGCCCCATGTCTGACACCTATCATCGGCATAGCAACCCTCTGTGTAAATT
CTGTCCAAATGCATCTCGCTGGACACATGCCTGAGGGGACATGATTCGAT
GGGTCTGAGTCGTCTCTGACATCTGTCACTATCTGATACAGGAGTGGTTT
GAGGCGATAGCCCTGCGCTTGACATGCGCGCGGTAGCATGACGTCCCGTC
CTCGATCGATCACACTATACTTTGATTCTAGCCACAAAACTAGCTTGTTT
AGGTATTCCGCCACGAATTTTTATAGAAATGTACGTGCTCGCACGAGAGG
GAAGTGCAAAAAATCGCACACATTTTACGGGCCAGGCGAATGTTCGACGC
GTGCACTTCACTTTGAAACGGTCACATGGAAAGAAATCTCCGCCGGCTAC
GAATTCCATTAACGTCACCACCGGTGCTTTCACTTCTATTGTTTGCTCAC
CCAGCTCTCCAGATGCGCGTGATTTTTCTTTGAGCACCAGCTTTTGACAC
ACCACTTTTGCGTGCCCTTTTTTGTTTTACTGCTACCAGTACGTCGGCGT
TATGAACGGCGTGTCTTCCCTTCCTCGAGGGGAAAGTCCTCACAACACTA
GGTTTTCGGAGATGATTCGTGATTGACGTTGAGTGGGGGAACATTCTTGC
CTTCCATCTCCCCAGAGAAATCACCGACTGTCTTCCTTCCGCATCGACCC
CATCGAATCCCCCCCGCCCCCCCAAACAGTGGCAATACCGTACAGCTTCT
GCGTCGCCTTGAAATCAGCACCGTGGATGCATTGCAGTGGTCAAAACAAC
TGAAGCAAGAAATGACCTATACCGTCCCCCCCCCCTCTCCTAGACGTTCA
GAAAGCGTATGATACAGTATGGAGAAATGGGCTTTGGAAAAAGTTGGCGA
AGTATGGGGTAAACGGGAAGATGTGGAGAATGATTAAGTTGACAGAGAGC
ACGAAAAGCGCCGTGATGTTAGATGGAGAACTCTCGAGGTTCTTCGACAT
TGAGCAGGGGGTCCCACAGGGGTGCACAATGTCACCAACGTTGTTCCAGG
TATTCATCAACGACTTACTGAAAGAGGTAGAGGCGGTAGGGAAGGGAGTA
GAAGTAGGGGAAACCTCGGTATCGGGACTGCTGTTTGGAATGCAGACAGC
GTAGAACAAGTAAGGGAACTGATGGGGAAAGCGGGAGAGGAAGAAGACAT
CCAAGTAAAAGGGGACAGAGTAATCGCAGGATGGGAAAACATAGTGAACA
CAACCGCAGAGGAAGTGGTAGGAAAAAAGATGGTCCGGTGTGGTCAGGCG
GTTAAGTGGTGGGACGAAGAATTAAGGGAAGAAATAGGGGAACGAAGAGA
ACTGTTTAAGCGGCACATGGATGAGAAGACAGAGGAGAGTTGAGAAACCT
ACAGAGCCAAGAGGAAACATGTGAATAGAGTAGTGAAAAAGACGAAGAAA
GGCATCTGGGACGAAGTGGTGCAGGAAGCGAACGGGGGTTGGAGGGTAGC
GTAAAACAGATGTGGCAGGGAATTAATGGATTGGTaAAAAAGAATGAACA
TGGGGGGGAAACAGGAGTAGCAACATTGCGAAGCGTAGACGGTAAACTAG
TCAGCAGTGGCAAGGGTAAGAGACAGGTACTAGCAGGACACTATAGGAGA
CTCGGGGTGCCGTCGGAAAAGGCAGACTTCGACCAAGTATTCAAGGAAGA
GGTAGACGCGTGGGCCCAAGCAGAAGAGAGAGCTTCGATGGAGGACGTCG
GGAATGCAGAGCTCCAAAAGAAGTTCACCGAGGAAGAGGTTGAGAATTGT
GTGAAAAAACTACAGTGTCACAAGGCCGCAGGGGTAGACGGGATAGTGAA
CGAAATCATGATGTTCGGGGGGGAGGGGATGATTCAGATGATGGTGCTGT
TGTTCAACTGGGTATGGGAAAGCGAATACGCACCGAGTAGATGGAGGGAA
GGGGTGGTGGTGAACCTATTTAAGAAAGGAGATAAGACTGACCCAGGAAA
CTATAGGGAAATCACCCTGTTGAGCACAGTGGGGAAAGTGTTCTTCAAGA
TCCTCAACAACAGAATAGTACGAGTACTGGAGATGGAAAAGAGAATTAGT
GAGGGTCAAGCAGGTTTCAGGGAGGCTAGGGGGTGTGGAGATCACCTATA
CACGGTAGGGAGAATCATACAAGGTCGGAAGAGGGTGGGAAAGCCGACAT
ATTGTTTTTTCCTAGACGTTCAGAAAGCGTATGATACAGTATGGAGAAAT
GGGCTCTGGAAAAAGTTGGCGAAGTATGGGATAAACGGGAAGATGTGGAG
AATGATTAAGAAGATGACAGAGAGCACGAAAAGCGCCGTGATGTTAGATG
GAGAACTCTCGAGGTTCTTCGACATTGAGCAGGGGGTCCCACAGGGGTGC
ACAATGTCCCCAACGTTGTTCCAGGTATTCATCAACGACTTACTGAAAGA
GGTAGAGGCGGTAGGGAAGGGAGTAGAAGTAGGGGAAACCTCGGTATCGG
GACTGCTATTTGCTGACGACTTTGTTGGGATGTCGGACACGCCTGAGGGG
CTCCAACTACAGATTAACGCAGCGAAGACCTGCGCTGATAAGTGGAGCTT
CTCGGCCAACGTCCCAAAGTGTGCCGTAATGGTATGCAATGAAGATGGTG
ACGAGGAAGTAGGTACCGAGTGGACGTGGGGGGACAAGGAGCTGCCAAGA
GCGGAAAAATACACATACCTTGGAGTAGAGATAGCAAAAGACTGTAAATG
GGATGCACACATGCACAAAATAGCGGACAAGGGCAAAGCAAGGGCAGGGA
AGTTGCACCCAATCCTAGCAGACCGGCACCTTGATACACGCGTCAAAATG
ACCATTCTGAAAAGTGTTATCATCCCGCCACTAGAGTACGCGGGAGAAGT
TTGGGAAGGGAACAAGAAAGTAGTAGCAGAGTTGGAGGCAGCGCAGATGA
AAGCAGCGAAGATCATTCTAGGATGCTCCCAGCGCACAAGTAACGCAGCA
GTAAGAGCAGAGTTGGGGATCTACTCCTGAAGAACGGGAAGAGACAGGAG
GAAGTTGACATGGCAATACCGTATGGAAAACATGGGAAAGGAGAGGTTAC
CGAGAATAGCTTGGGAGGCGAGATGGGTAAACAAGGCCAAGGGTAGACAA
CCCATTGAGTGGGCGAAGGTTGTACAGGGAGTGTGGAGTGGGTTAGATAT
TGACGAACGGGAGACGACGGGAGCGGAAAGCTTAGAAGGGTACAAGAAGA
GCATCTCAGAAGCCTTTGAAAATAGAGAAGACCAAAGCTTGCGGAAAGAG
ACCAAGGAAAAGGAGGTTCTAGAAGTGTACGGAAGGCTGAACGAAGGAAT
AGGGTTCAAGGAGTACCTGAACGGACCATTGGATGAAGGGACAAAGATGA
AGGTCAAATTTAGAACGGGCGACATTGACCTACGGGAACGTAGAAGGAGG
TTTAGGAAGGTAGACGACGAAGACAAGTTCAAATGTGACTGCGGCGCCGA
ATGCGAAGACCGGGTACATGTAGTTGCGGAATGCCCGTTGTACGATCAGG
AGAGAGAAGGGTACATGGTTGAGCTGGAAATAGTAGACAGTCGGTATAGA
GAGAAGTTTGAGGCATGGAACAAAGAGGAGAAGACGGTAGCGGTACTCGG
GTGTAAGATGTGGCCCAGGACGGACATGTATAAAGTAGACAGCTTAGGGA
AAACATTTTTGAGCCACCTTTGGCAAAGTAGGAAGGAACGATTGGCCATC
GGTGGTCGATCCTGCGGGAACAATGCTCCGTCCTCTCGAGGACGCGTGGT
CAATGGTCTAACAACTAAGGCATGCAAAACATGAGTACGCCCCCCCTCTC
CGTTTTTTTGCACCTCGTCTACACGTGTCTCTCTTGATATTTGTGCGACT
GTCGCTCGACAGGACGGCGTTGCCCCGGAGGCGAAGGACAAGGCGCGCGA
GAGGGTGAGCGCTTTTTGTGGCCTTTCTGTGATAAAAAGGCGCGTCGTTC
GAGATCACTCGTGATTGTGCGGCGTGTGGTACGTGGGGTGTGCGTGGTAT
GTGTGAAACCGAACTGGTGTCGACCGCGTGAATCGGCTGGCCCCATGGAT
TGACGCCCTAGTCTTAGCGGGGGAAGAAAAACTACGACGATGATATTCCT
AAGAGTGACGCCAAGTCTCAGCGGAAAAAAAACACAATGGCGATTATTGC
TAAATATTGTACCTCGCCCGCGTGGGGCTTGCTCGCGAACGGACACTCGA
CGGGTTCGTCTGGGCAACCTGAGAGGAGCGTTGTTTTACCCTTGCGTGCG
CTCGTTGTGCGTGTGTTTCTATGGTTGCTGCTGTCCATGCCATTCATCCG
CGCAGAGCATCCAAACGATTCAAGGAGAGCGACTAAGACATGCACACACG
TGGAACAGACGGCGGTCTTACACACCTGCACACCGCGTATTTTCCTAGCG
GATTTTGAGTGTCGAAAACGCACTCGGCTGAATTGTGTGTGCGCGCGTCG
AGGATGCTTCGAATCTCGTCCACCCTTGATTTCTGCCATTTATCTTGTTC
AAGCTACCGCCCTGAGTCACAATCCTCCAATTCATCGAATTCACTGCGCC
GTCGCTCCTCATTTTCCTTGCCAATACTTTTTCTTCATGTATTGTTGCTC
TCCGGACGCCCGGTTCGGACAAAAAAATATGGTGTAATGGGAGAAGGTGT
GCTCGGAAATTGGCAAAGGGGGCTACGGTCGAAAAGCCGTGGTGGTGAGA
ATCAACTCTCTTGACTCGCCCTGGGGGGAAGACGACATCAGGGAGGTGGC
CAAGCTCACGCTGGACGCCGTCGTCATCCCCAAGGCAAGAGAGTGAGCAC
CTTGATATGAGTAACACGCTTGCTTTGCGTTTGTTTTCACCAGTGATTTT
TTTTTGCTACGGGTCGTGCTGCTTGCTTGATTGCTTGCTTACACCCCCGC
CCCGGGCCCTGTTCATCTCGTTCTCGCGAAGGGAACAAGCTTATCTCACG
CGTTGCTCGCTTTCCAAAGCCTTTGCGCGTTGTAACCCTCTCTGCCCTCC
CTGTGTGGCACCCTCGATGCCGCCGCTGCATCACGAAAAAAGGTGGAGAG
TGCGGCGGACGTGAAGCGGGTGGCAGATCTCCTCCGCCAACACGGGGCCT
ACGACACCGATTTGTGGTGAGTCAAGGGACTGGAAGGACGAACATGAGAC
GGGCAGGACGAACAACCCTTTCCTGTCCTGGCGGGACTTACCCAGAAAGG
GGTGCAGGCGTGTCTTTCGCACTTGTAGGTTCATCCTCACATCTGCCGCC
CGCACGAAACGGGATACTTGAGCGTTGCTCGCGTTGCTCGCTTCACGATC
ATCGGAGTGCCGTATCCGACATGCTTGTGTACGGTCTACACGCGCATTGT
CGCTGAGGGCTGTCCGCTCCGCGGTGTGTCGGATCTTGGATACCCGTGGA
ATTTCAACAGGTAATTCGTATAATACTCAAGACAGCTTTTGCTGGGGAGG
AGTTGATGCACAAACATGCACATCGTGCATGTAGGATATTGCAAATGCGT
TAGTAAAAATATCAAGGAGATCAGGAACCTGGCTTGCATTTTCGTTCAAT
ACAACAACGGCGGCTTTCGATGACGACTTATCACACCTCGCGCCAAGTCG
TGCCCTGGTGTAATGATCGCCCAAGTCGTCCATCTTGATGACCCCATGCC
CTCGTAGGCCAGCCCTGCTGTGCTCACCGGCTGCGAATTTCTTTGTCGCG
AAAAGACTATTAATAGCAGCTATTTCGAGCACCCAGGCGAGGGCATCAAG
CAGCGAAGCTACCCAAGCTGATTACTCTCGATGCCAGCGCCGCGTCCCAT
GCTCGTTGTTCAAAGATTTCGAACAAAAATGGAAAAAACACTTTCGCGCA
AATTACGCCTCGTACTACTGAGGCGTCTCGTGCTGAAAGGAGCCGAGAGG
AGACCGACTTCGCGAAGGCATCCTGTTAATTCATCGCATTGCTTCGAACA
TGCCCGCTCGCTGCTTCTGCCGAGGTGCCCTGCGGGCGACCTTCCTGCTG
TATCCTCCCTAACGAACGAAGCGTAGCCCCGTATCTCCGTTGGCTCGGTA
CTCCCCCCCGTAGCCTCCGTTTTCCAGTACCCTCCTCCCCCCCTCGCCTA
CCACTCTACTGATTTTGACGCCGAACGTCGACTACGGCGGAATTTCGGGT
TGCTCGTGTGCGCTGACTGACGTAACAATAATCCAATCAGGTGCATGATT
GAAACGCCCCTAGGCGTCACTAGAGCCAACGAAATCGCCTCCGCGCACGA
GACGGTGTCGTGCCTGGTGCTGGGGACGTCGGACCTGACGCGAGACCTAC
AGGCGAACCACACCCCCGACCGCACCCCGCTCCTCTACAGGTGTGCCGGG
TGCCGGGGGGAGGGGGGCGGCGGGGAGAGGGGCAACGGGGGTGGGGCAGG
GGGCGACGAGAAATGAGGCGTCTTCGTTTTTTTCTGTTTCATCTCGTCAC
AGCCGTCGCCCAGGCAGCAAAGCAAGCTGCTTATTTCCAGAGAAAAGCAT
TTAATGCTTTAGAGTCGTTCGCCGGTGTGTGTGGCTGTGGCACATGATTT
CTTCTCAGGGTTCAGAGGGAGCCGAGCTCTCTTTTTTGAGGGGGTGCGGT
CGGTATTCGTGAACGTAAAAGGCAATCCCGATGACAGTGAGCGATCGTTT
CAACGACGAAGGGAAACCGATAAAGCCGTCGTTCGCAATGGTATTGGGGG
TATCCGTTGGAGGTTAAGTTAGGTTAGGACGTGTGACAGACCCTACAAAC
AACATGCAACTTGTGAACAAGATTTCTTACCGGTGTACACCACGCGTTTG
GTTGCAAGTAGCAGCACACTCGTACTGTTTAGGCCTCGAGTCATTTTTTG
GGTTTGCCCTCTTCGAGCACCTGCGGGGTGTGTTTGAGGACACATCGCGA
CTTTGCTTATGCGTACAATCGCCCCCTCACCACCACCATTGTCAACGGCA
ATCCTTACGAGACACCGTGGCGGCGTTGTGATGAACCTTACGCCCCCGTC
CCTCCTGTCCCCCCTTCATGGTCCGTGCCCGCCGCCGCTTCCCTGCTCCT
TCCGTCGTTCGTCCCTCTTGCGTTTTGCCACCGCCGCCGCGCGGGGTCGC
AGCCTGTCTCGCGTGATCTTGGCGGCGCGCACTTACGGCCTTCGCTGCCT
TGATGGCGTCCACCTGGACATGACCGACGCCGAGGGCTTCGAGCGCGCTT
GCCGCCAGGGGAGGGACATGGGCATGGACGGGAAGACGCTCATCCACCCC
AGCACGGTGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGACAGACAGACA
GACAGACAGACAGAGAGAGAGAGAGAGAGAGAGACACACAGAGACATAGA
GAGACAGAGGAAGGGTGTGAAAGGAGAAGTAATTTGTGAGCGAAGGAGAT
AGGAGAGACGTAGAGTACGATTGAGGGAGAGAGTGCGTCCCGATCCCCTC
GTTCTCCCTCTTTGTTATCATCATCCCTGCGGTGCTCCTCCGCCTCCCCT
TGCCTTTCCCGTCCCTGGTGGGCTTAAATTTTTTTTCTTTTTTTTTCTTT
CTCATATCGGGCTAGCGTAAAGTTGATAAGCTTTTTGAGTTTCGAAGTCC
TGAAGTAGGATTTGGGACGTGTTTTTTCTCAGCCGTGCGTGTCATCGGGG
TGTGTATCGACTCATGGGTTTTCTCTCTGAATCGACCTTCCCGAGTTTCC
CTCGCTCTCTCTCTTTCCCGTCCATCCCACATGTGCATGGTGACCCCACT
GCTGCCGTTTGTGTCATCGTTTGTCGTGTCTGTCTGGTCCCCTGTCTGTC
TAATTGCCTCCCTCCCCTCTCTTTCTCCCTCTGCTTTCGAACTCTCTCTC
TCTTTCTCCCTCTGCTTTCGAACTCTCTCTCCCTCTCTCTCTCTCTCTCT
CTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCGCTCTCGCGCTCTCTCGCG
CTCGCTCTCGCTCTCGCTCTCGCTCTCGCTCTCGCTCTTGCTCTCTCTGT
CCCTGTCTCTCTCATCCTTGTCGTAATTCAGGTCGCCGTGGCGAACTGGT
TTTTCGGCCCCAACGCCAGCGAAGTGGAGCAGGCTTACAGGGTAGTCCAG
GTGAGAACGGCGAGCGTGGTATTATTATTGCTGCTGCTGCGCTGCCCTTC
CCGCCCCCCCGATCTTCACATGAGGGCTCGTTGGGATCCGGACAGCAGCT
GCCTTCGCCACTGACACCAACATTGTCGTTTTGTCAGCTCCTTCCTGCTA
CGTCCAAGGCGAGCACTTTCGATTTGTGGGCACGTCTGGTGACCACAATC
CCGTCGGACCCCGTCCCTCGAGTCTAGCGACCCTGATCCTAGAGATACTT
TCACGGTGGCACACAAGTACCAGGAGCAAATTCTCCCTTGTCTTGGCGCC
TGTTTTTTTTTATGGAGGCGTCAACAACTTCTTTTTCTCCAAAGCAGAAA
AAAAGCTTTTGCTTTGAAGAGGCGTACTTCAATATATATGCACCGCAAAC
CAATGACCAGTATACCCAATGAAAGAAGAGTGTAGCGTTCGAACACACCT
AGTATTGATTTCGTCAGATGACCACAACGTACACCAGCCGCTGGCGAATA
CAGGGTACTTTTTCGTTTTATTGAACGGGCATGGTAGTGTGGGTTCGGGA
GGACCAAATAATTGTGGCGCGTGGAACCAGATATTTTCTCTGTGGTCCCG
CGGCCCGGAGCAGCATCTCAAGCCTTTTGAACAACCCAGCCGTTCTCGAG
GAACACGCGATCAAAGAGGGGCTTGTCAGCTATCAGCCTATGACACCCCA
AAGGGTAGGCGGAAGCCAACCGGCGGTCCCATTGGAAACCTGGATAAGGG
GAAGAAGAGGGCCAAAACAGCGGCGGCGAGAAGGGCGGCGGACGTTGATA
TGATCCAGACAGCGAGAATGTAGCGCTCGCGGCAGCCGCAGCAAAGATGG
CTGCAAGGGAGAGAGAGAGCTCCTAAAGCGAACGAGTCTGCCCTCGCCAA
GGAGAAGGAAGAGCTGGAGCGCTCTGCTGCCAAGCGGAAAGCGACGGAAC
AGCGGCAGCAGCAGCGTGTCGAAGAAGCTGCTGATGCCGCGGCGTGGAAA
ATATCGCAGCGAACATTGGAATTCATACTCAAATCTCATCTCAGCAGGAG
GTGAAGCCCAAGGTTGGCGAAGTCCTGTCCAAAGTGCAGTCCAGGGCGGT
CCTCATGTCACTCTTCGATCTTCGGAAGCAAGGTCACTCTGAGAACTCGG
CGGCGTTGAAGGTCAGTACAGCAGGGACAGTCGGATGCTTTTTTTGTTGA
AGTGAGCATAAAACAAGTACAGCAGTATAGTTTACAGCAGTTTATGTTGC
GGCTGCACTTCGTGGTGGAAAATACTCTCAGGATGTGTCGTTCAACAACT
GCGGCCGAAATGACATCGCACAAGACTGACGTTGTCATTTTTCTTCTCTG
GAAGTATCTATGCTGGAAGGTGGCACAAATCTTCCAGATCGGACATGCGA
AGATCAGAGTCGTGAACAACCACTAGTGGGAGCTCCGACAGTTGTGCGAG
ACCACCACCGCTGGGAGAGGGAAGACGACGAAGAAGGACGACGGGCGACG
CCGTCTCAGCGACGAGCAAGAGGATCGACTTCGAGAGTTCATCGACAGCA
AGCACAAGGCCATGCGTCAAATCTTCTGACGCACGGTGGCGGAGTGGATG
CGCAGGACGTGAGATGGAGAAGCAGCCGTCGAATCGTTTGGCAGAAGGGC
TGCTGTGTAGGCTCGGCTACCGCCGTTGTTGAGGCAGGATCAAAACTCCA
CCATTGGATGCCAAGAGGCTTGCTCGTATTCGCCTGTTTCTTGTTGAAAT
GGACATCGCAAAGAGGGCCGAGGATGCTGGACTGGCAGTCGTTGTGGTCG
AATCCATGGTTGTTGACCACTCCGACCTTCGCATGTCCGATCTGGAAGAT
TTGTGCCACCTTCCAGCATAGATACGTCCAGAGAAAAGAATGGCAACCTC
AGTCTTGTGCGATGTCATTTCGGCCGCAGTTGTTGAACGACACATCCTGA
GAGTATTTTCGTCCGCGAAGTGCGGCTGCAACATAAACTGCTGTAAACTA
TACTGCTGTACTTGTTTTATGCACACTTCAACAAAAAAAGCATCCGACTG
TCCCTGCTGTACTGAGCTTCAACACCGCCGAGTTTACAGAGTGACCTTGC
TTCCGAAGTTCGAAGAGTGACATGAGGACCGCCCTGGACTGCACTTTGGT
CAGGACTTCGCCAACCTTGGGCTTCACCTCCTGCTGAGATGAGATTTGAG
TATGAATTCCAATGTTCGCTGCGATATTTTCCACGCCGCGGCATCAGCAG
CTTCTTCGACACGCTGCTGCTGCCGCTGTTCCGTCGCTTTCCGCTTGGCA
GCAGAGCGCTCCAGCTCTTCCTTCTCCTTGGCGAGGGCAGACTCGTTCGC
TTTAGGAGCTCTCTCTCTCCCTTGCAGCCATCTTTGCTGCGGCTGCCGCG
AGCGCTACATTCTCGCTGTCTGGATCATATCAACGTCCGCCGCCCTTCTC
GCCGCCGCTGTTTTGGCCCTCTTCTTCCCCTTATCCAGGTTTCCAATGGG
ACCGCCGGTTGGCTTCCGCCTACCCTTTGGGGTGTCATAGGCTGATAGCT
GACAAGCCCCTCTTTGATCGCGTGTTCCTCGAGAACGGCTGGGTTGTTCA
AAAGGCTTGAGATGCTGCTCCGGGCCGCGGGACCACAGAGAAAATATCTG
GTTCCACGCGCCACAATTATTTGGTCCTCCCGAACCCACACTACCATGCC
CGTTCAATAAAACGAAAAAGTACCCTGTATTCGCCAGCGGCTGGTGTACG
TTGTGGTCATCTGACGAAATCAATACTAGGTGTGTTCGAACGCTACACTC
TTCTTTCATTGGGTATACTGGTCATTGGTTTGCGGTGCATATATATTGAA
GTACGCCTCTTCAAAGCAAAAGCTTTTTTTCTGCTTTGGAGAAAAAGAAG
TTGTTGACGCCTCCATAAAAAAAAACAGGCGCCAAGACAAGGGAGAATTT
GCTCCTGTTACTTGTGTGCCAACGTGATAGCAATCATTCCAAAAGGAAGC
CGTTGTTGAGGACGGGTGACTTGCAGCGTGTGGTGGCAAAGTCGAGCCCC
CACCCCCTCCCCTTCCCCGCCCCGTCACACCCGTGCTGCGCGCACTCCCC
TTGGCCCTCTTGCTTCTTCTGGGGCTAGGCACACGAGGAGGCAGCAGCGA
GAGGCGAAGGGTGCGCCGTCTTGGACGGAAGCCTGGTGGAAAGATTGCAC
GCCGAAAATGCCCGGAGAGTGATCGAGCTGCACGAGTCCATCGCCGCGCT
CGAGGCTGGCCAGGACACCAACGAGTCGTAGCCGTTTCCTGCCTCTCCTT
CCGCAGCGGCTACGATTGTAGAGAGAGTTCGACTTGCCATGCCGGGCATT
CATCAGTGGGGCTTTCTCGCCAATCGAACGGAGGAGCTGTTTTTACTTTT
TACGGGTTCGTGACAAGCCGTTCTTACCCACCTCAGCCGGCGATGTTCCT
TTTCCTAAGGAATGTTTAATCGTGGCCACTACCGACAAGTCGTAGCCCTT
TCCAGCATCTCCCGATCCTCGACCGGGAGTCCAATCAACTGCTGTAATTC
GACTTTGTCCCTTATCATGGTGTGATTGTTGAGCTGCGTTGCGGATGGGT
AAGCTTAAGGGTAGGGGGTATGGGTGGCGTTCGCAACCAACAGCAATGTT
TTTGATCGTTGGTTTTGTTTCACGTGTTAATGCACAAGTCGGTCATCGGC
CGCGTACGTGCTGCCGCAGTGGAGAGGATTCGAGCGCCTTGTCATTTGGA
CGACACTTTGTCGCAGTTTTGCGGAGCTTACGCGCACGGCGGGCGTGGGG
CTTGATCGACCTCTTTGTTTTTTTGGACGAAATGATGTCGAAGTTTGGGA
AGAGCGGGAAGTCAGGTTTGTCGTGATTGATGGGGAGGGAGGGAATCGAA
GCGCTTCCTTTTCGGTCACACTGCTTGGGATCGGCAAAGCCAGCAGCTAG
CCGTCGCAAACAAGGTGCCCACAGCAGAGGGGTCGCGCTGAGGGCTGAGA
AAAGGGCTCCGGGATTGAGAGAGCAAGGGGGTAGCGGAACCCCAGAGCTG
GAGGGAGCAGACTATCGTACTTTCATCGGGGAACACATGACAAGGCGGCC
ACAGGGTTGTAGGCGGTATACGGGAAGTGTGTCTTGACAGCATTTTCTTT
TGTAATTTTGCAGTGGTTCCGTTGTTGAGCTGCTTCAACCAGTGACGCAA
AGCCAAGTTGTTAACATTAATTGTCGTCTTTTTCTGGGCTGAGAGAGGCA
CGGATGATGCAAGTACCAAGGTCGCCCATGTTGGGCTGAGGATGGTGGAA
GCTGCACATGGCGGCCGGCCGACTGAGACAGCGCGTTACATCCAGCACGC
AGCGTGGG
back to topCoding sequence (CDS) from alignment at P-fluviatile_contig1:2679817..2693974+
>mRNA_P-fluviatile_contig1.211.1 ID=mRNA_P-fluviatile_contig1.211.1|Name=mRNA_P-fluviatile_contig1.211.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=2328bp|location=Sequence derived from alignment at P-fluviatile_contig1:2679817..2693974+ (Porterinema fluviatile SAG_2381)
ATGAAGGTCCTGACTGCTGTTGCTCGTCGGACAAGAGCAGTACGGAACGT
ACCACCAAGTGGTCGCAGCACAAACGTTGCTTATGGCGGCGTTTCTAGAG
AGATGTCATCTATGTGGTCATGTGCTGCGGGCTCTCCTACTCACGCTCCT
TCACTTAATCCCCAACAAGGAGTGCCCGGCAACAGCCGCTTGCCGGCTGC
TTCAAAGGAATTATATGCCCGACGCTTATGCGGATCCCGATGGAGATACA
GCAGCAGCAGCACCGGGGGTTCAGGGAAGCCGCTGCTGAAACCCCTTAGG
TCTGTCCTCTATACGCCGGGATCATCGAGACATCTCTACAAGATCAGAGA
GATTGCTTGCGATGCTTCTCTAGTTGATCTCGAGATGAAGGTCCTGACTG
CTGTTGCTCGTCGGACAAGAGCAGTACGGAACGTACCACCAAGTGGTCGC
AGCACAAACGTTGCTTATGGCGGCGTTTCTAGAGAGATGTCATCTATGTG
GTCATGTGCTGCGGGCTCTCCTACTCACGCTCCTTCACTTAATCCCCAAC
AAGGAGTGCCCGGCAACAGCCGCTTGCCGGCTGCTTCAAAGGAATTATAT
GCCCGACGCTTATGCGGATCCCGATGGAGATACAGCAGCAGCAGCACCGG
GGGTTCAGGGAAGCCGCTGCTGAAACCCCTTAGGTCTGTCCTCTATACGC
CGGGATCATCGAGACATCTCTACAAGATCAGAGAGATTGCTTGCGATGCT
TCTCTAGTTGATCTCGAGGACGGCGTTGCCCCGGAGGCGAAGGACAAGGC
GCGCGAGAGGGACGGCGTTGCCCCGGAGGCGAAGGACAAGGCGCGCGAGA
GGGTGTGCTCGGAAATTGGCAAAGGGGGCTACGGTCGAAAAGCCGTGGTG
GTGAGAATCAACTCTCTTGACTCGCCCTGGGGGGAAGACGACATCAGGGA
GGTGGCCAAGCTCACGCTGGACGCCGTCGTCATCCCCAAGGTGTGCTCGG
AAATTGGCAAAGGGGGCTACGGTCGAAAAGCCGTGGTGGTGAGAATCAAC
TCTCTTGACTCGCCCTGGGGGGAAGACGACATCAGGGAGGTGGCCAAGCT
CACGCTGGACGCCGTCGTCATCCCCAAGGTGGAGAGTGCGGCGGACGTGA
AGCGGGTGGCAGATCTCCTCCGCCAACACGGGGCCTACGACACCGATTTG
TGGTGGAGAGTGCGGCGGACGTGAAGCGGGTGGCAGATCTCCTCCGCCAA
CACGGGGCCTACGACACCGATTTGTGGTGCATGATTGAAACGCCCCTAGG
CGTCACTAGAGCCAACGAAATCGCCTCCGCGCACGAGACGGTGTCGTGCC
TGGTGCTGGGGACGTCGGACCTGACGCGAGACCTACAGGCGAACCACACC
CCCGACCGCACCCCGCTCCTCTACAGGTGCATGATTGAAACGCCCCTAGG
CGTCACTAGAGCCAACGAAATCGCCTCCGCGCACGAGACGGTGTCGTGCC
TGGTGCTGGGGACGTCGGACCTGACGCGAGACCTACAGGCGAACCACACC
CCCGACCGCACCCCGCTCCTCTACAGCCTGTCTCGCGTGATCTTGGCGGC
GCGCACTTACGGCCTTCGCTGCCTTGATGGCGTCCACCTGGACATGACCG
ACGCCGAGGGCTTCGAGCGCGCTTGCCGCCAGGGGAGGGACATGGGCATG
GACGGGAAGACGCTCATCCACCCCAGCACGCCTGTCTCGCGTGATCTTGG
CGGCGCGCACTTACGGCCTTCGCTGCCTTGATGGCGTCCACCTGGACATG
ACCGACGCCGAGGGCTTCGAGCGCGCTTGCCGCCAGGGGAGGGACATGGG
CATGGACGGGAAGACGCTCATCCACCCCAGCACGGTCGCCGTGGCGAACT
GGTTTTTCGGCCCCAACGCCAGCGAAGTGGAGCAGGCTTACAGGGTAGTC
CAGGTCGCCGTGGCGAACTGGTTTTTCGGCCCCAACGCCAGCGAAGTGGA
GCAGGCTTACAGGGTAGTCCAGGCACACGAGGAGGCAGCAGCGAGAGGCG
AAGGGTGCGCCGTCTTGGACGGAAGCCTGGTGGAAAGATTGCACGCCGAA
AATGCCCGGAGAGTGATCGAGCTGCACGAGTCCATCGCCGCGCTCGAGGC
TGGCCAGGACACCAACGAGTCGTAGGCACACGAGGAGGCAGCAGCGAGAG
GCGAAGGGTGCGCCGTCTTGGACGGAAGCCTGGTGGAAAGATTGCACGCC
GAAAATGCCCGGAGAGTGATCGAGCTGCACGAGTCCATCGCCGCGCTCGA
GGCTGGCCAGGACACCAACGAGTCGTAG
back to top