Homology
BLAST of mRNA_P-fluviatile_contig84.14884.1 vs. uniprot
Match:
D7G6K9_ECTSI (Chaperonin n=2 Tax=Ectocarpus TaxID=2879 RepID=D7G6K9_ECTSI)
HSP 1 Score: 404 bits (1037), Expect = 1.420e-136
Identity = 214/283 (75.62%), Postives = 241/283 (85.16%), Query Frame = 1
Query: 1 MRSSTVAFVASSAXXXXXXXXXXXPTPVHLGVNLPRPAARLAPAPATGRRHTAGRSVARRATSTSMMSSSSLAITLEEEVIDRPLQPVGNYILVKLFSAVSKTAGGIVLPDEAQDAPCEGMVVAHGPGRTHPLTGTLIPMCVAEGDTVLFSRWSGRKVKYCGEDHMFILDDDLVLVYRGRELTTDSLKMVRDQVLVETEKGESETDAGIVIAASAAEKEKGSQGRVIAIGEGRTGSEGKIVPCPFKPGDSVKFLEYAPVEIKIKGKYYAVVRMVDCLAKWQGQ 849
MRSS V+F AS A P+ ++ GV LPR A+ + ++ +GR+VARRATS SM SSL ITLE++VID+PLQPVGNYILVK+F+AVS+TAGGIVLPDEAQD PCEG+VVAHGPGRTHPLTGTLIPMCV+EGDTVLFSRWSGRKVKYCGEDHMFI+DDDLVLVYRG ELT DSLKMVRDQVLV TEKGESETDAGIVIAAS AEKEK SQGRV+AIGEGRTGS G+IVPCPFK GD+VKF+EYAPVEIKIKG YYAVVRMVDC+A+W+G+
Sbjct: 1 MRSSAVSFAASCAAMLASSGAFLAPS-LNFGV-LPRSASSRS---TNQQQQHSGRAVARRATSPSM---SSLVITLEDDVIDKPLQPVGNYILVKMFAAVSRTAGGIVLPDEAQDVPCEGLVVAHGPGRTHPLTGTLIPMCVSEGDTVLFSRWSGRKVKYCGEDHMFIMDDDLVLVYRGPELTEDSLKMVRDQVLVVTEKGESETDAGIVIAASTAEKEKASQGRVVAIGEGRTGSTGEIVPCPFKAGDNVKFMEYAPVEIKIKGSYYAVVRMVDCIARWEGE 275
BLAST of mRNA_P-fluviatile_contig84.14884.1 vs. uniprot
Match:
A0A835YHA6_9STRA (Chaperonin n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835YHA6_9STRA)
HSP 1 Score: 243 bits (620), Expect = 5.850e-74
Identity = 121/209 (57.89%), Postives = 155/209 (74.16%), Query Frame = 1
Query: 214 LAITLEEEVIDRPLQPVGNYILVKLFSAVSKTAGGIVLPDEAQDAPCEGMVVAHGPGRTHPLTGTLIPMCVAEGDTVLFSRWSGRKVKYCGEDHMFILDDDLVLVYRGRELTTDSLKMVRDQVLVETEKGESETDAGIVIAASAAEKEKGSQGRVIAIGEGRTGSEGKIVPCPFKPGDSVKFLEYAPVEIKIKGKYYAVVRMVDCLAKW 840
L TL+++VI PLQPV N+ILVK+ + S T GGIVLPD++ D P EG VVA GPGR+HP T LIPMCVA G V++S++SG+KVKY G DH I DDDL+LVY G + T +LKM+RDQVLV+ + E TD GIVI+A A KE S+G+V+A+G GRT S G++ PC +PG+ VKF EYA +EI ++ + YAVVRMVDCL+KW
Sbjct: 52 LVHTLDDKVIRGPLQPVSNFILVKIRDSASLTTGGIVLPDQSIDKPSEGEVVATGPGRSHPHTAELIPMCVAPGQRVMYSKYSGKKVKYDGLDHTLITDDDLLLVYEGEKPTAANLKMIRDQVLVKITRSEGRTDTGIVISAQTAGKELKSEGQVVAVGPGRTASNGQLTPCYVQPGEFVKFREYAGIEITLESESYAVVRMVDCLSKW 260
BLAST of mRNA_P-fluviatile_contig84.14884.1 vs. uniprot
Match:
A0A8J2WID0_9STRA (Hypothetical protein n=1 Tax=Pelagomonas calceolata TaxID=35677 RepID=A0A8J2WID0_9STRA)
HSP 1 Score: 196 bits (497), Expect = 5.530e-56
Identity = 97/207 (46.86%), Postives = 136/207 (65.70%), Query Frame = 1
Query: 223 TLEEEVIDRPLQPVGNYILVKLFSAVSKTAGGIVLPDEAQDAPCEGMVVAHGPGRTHPLTGTLIPMCVAEGDTVLFSRWSGRKVKYCGEDHMFILDDDLVLVYRG-RELTTDSLKMVRDQVLVETEKGESETDAGIVIAASAAEKEKGSQGRVIAIGEGRTGSEGKIVPCPFKPGDSVKFLEYAPVEIKIKGKYYAVVRMVDCLAKW 840
TL++ I PL+PV NYILVK+ + T GG+ LPD+A++ P G+VVA G G+ HP TG ++P V EGD VL+ ++ G VKYCGEDH I DDD++L + G +T +K V D VLV+ K E ET +GI +AA +E+ + + G V+ G GR ++G VP P + G+SVKF +YA +I++ G+ Y VVR+ DCLAKW
Sbjct: 32 TLDDAPIGGPLEPVANYILVKIDDGIDATKGGVFLPDQAKEKPSAGIVVAAGAGKAHPDTGVVVPNPVTEGDRVLYGKFDGTSVKYCGEDHQLIKDDDILLSWAGDASMTLGEVKCVADNVLVQVTKVEEETASGIALAAGVSEQTRTTSGVVVKTGTGRVAADGASVPVPVEVGESVKFKDYAGADIRLDGEDYIVVRVPDCLAKW 238
BLAST of mRNA_P-fluviatile_contig84.14884.1 vs. uniprot
Match:
A0A7S1UQU6_9STRA (Hypothetical protein n=1 Tax=Grammatophora oceanica TaxID=210454 RepID=A0A7S1UQU6_9STRA)
HSP 1 Score: 182 bits (462), Expect = 3.480e-50
Identity = 96/204 (47.06%), Postives = 135/204 (66.18%), Query Frame = 1
Query: 223 TLEEEVIDRPLQPVGNYILVKLFSAVSKTAGGIVLPDEAQDAPCEGMVVAHGPGRTHPLTGTLIPMCVAEGDTVLFSRWSGRKVKYCGEDHMFILDDDLVLVYRGRELTTDSLKMVRDQVLVETEKGESETDAGIVIAASAAEKEKGSQGRVIAIGEGRTGSEGKIVPCPFKPGDSVKFLEYAPVEIKIKGKYYAVVRMVDCLA 834
+L+ E I P P+GN++LVK A++ T GGI+LPDEA++ P EG+V+A GPG+ HP TG I V GD+VL+ + G +KY E+ I DDD++L Y G +T D+++ RD VLVE E+ + ET +GIVIAA+ ++ +QG V +GEGR S GK P +PGD VKF +YA E++I GK Y++V+MVD LA
Sbjct: 84 SLDGEDIRGPATPLGNFVLVKTKDALTATTGGILLPDEAKERPTEGVVIAAGPGKLHPHTGIRIHNPVKAGDSVLYGMFDGAPIKYNDEECQMIRDDDVLLFYEGAAMTLDNVQPCRDYVLVELEEEDLETASGIVIAATVTSEDIPNQGIVAKVGEGRLTSSGKFSESPVQPGDMVKFKDYAGNEVRIDGKPYSLVKMVDILA 287
BLAST of mRNA_P-fluviatile_contig84.14884.1 vs. uniprot
Match:
A0A7R9UAA2_9STRA (Hypothetical protein n=1 Tax=Pinguiococcus pyrenoidosus TaxID=172671 RepID=A0A7R9UAA2_9STRA)
HSP 1 Score: 178 bits (451), Expect = 2.890e-49
Identity = 90/205 (43.90%), Postives = 134/205 (65.37%), Query Frame = 1
Query: 226 LEEEVIDRPLQPVGNYILVKLFSAVSKTAGGIVLPDEAQDAPCEGMVVAHGPGRTHPLTGTLIPMCVAEGDTVLFSRWSGRKVKYCGEDHMFILDDDLVLVYRGRELTTDSLKMVRDQVLVETEKGESETDAGIVIAASAAEKEKGSQGRVIAIGEGRTGSEGKIVPCPFKPGDSVKFLEYAPVEIKIKGKYYAVVRMVDCLAKW 840
L+ I LQPV N++LVKL A+++TAGGI++P+ A+ P +G+ VA GPGR HP TG L+P+ V G+ V++ + G K+KY EDH+ + +D+++L Y G + D+++ V D+VLVE K E +T +GIV++ A+ K + +G ++ G GR SEG+ +P P KP D +KF EY E+ I+G Y VVR D LAKW
Sbjct: 33 LDGRPITSDLQPVSNFVLVKLRDAMAQTAGGIIMPETAKKRPNDGLAVAVGPGRYHPETGKLMPVSVKAGERVMYGEYMGTKIKYNEEDHVLVREDEVLLRYTGDIIKKDTVEPVGDKVLVEMTKEEKQTASGIVLSPEAS-KSRVCEGIILQCGPGRMSSEGETIPMPVKPDDKIKFREYGGEEVNIEGTEYMVVRANDILAKW 236
BLAST of mRNA_P-fluviatile_contig84.14884.1 vs. uniprot
Match:
W7TNB8_9STRA (20 kDa chaperonin n=2 Tax=Monodopsidaceae TaxID=425072 RepID=W7TNB8_9STRA)
HSP 1 Score: 176 bits (447), Expect = 1.840e-48
Identity = 91/208 (43.75%), Postives = 134/208 (64.42%), Query Frame = 1
Query: 217 AITLEEEVIDRPLQPVGNYILVKLFSAVSKTAGGIVLPDEAQDAPCEGMVVAHGPGRTHPLTGTLIPMCVAEGDTVLFSRWSGRKVKYCGEDHMFILDDDLVLVYRGRELTTDSLKMVRDQVLVETEKGESETDAGIVIAASAAEKEKGSQGRVIAIGEGRTGSEGKIVPCPFKPGDSVKFLEYAPVEIKIKGKYYAVVRMVDCLAKW 840
A L+ + I PL+P+ N +LVK+ A +AGGIVLPD+A++ P EG VVA GPGR HP T L+PM V G VL+ ++ G V Y G H+ I DDD++L + G +T D+++ VRD++LV+ +K + ++ GI++A S K + ++G VI +G GR S G++ KPGD VKF ++A EIKI+ + Y V+ VD LA+W
Sbjct: 47 AHNLDGQEIPGPLEPLANVLLVKVKDAEDMSAGGIVLPDQAKEKPTEGEVVAAGPGRQHPETAVLMPMPVKPGSKVLYGKFDGMSVIYDGAPHVLIRDDDILLTWTGSSMTLDAVETVRDRILVKVKKAQEKSAGGILLAPSMT-KARPTEGEVIKVGPGRIASTGEVADVKVKPGDGVKFKDFAGTEIKIQDENYLVMYSVDVLARW 253
BLAST of mRNA_P-fluviatile_contig84.14884.1 vs. uniprot
Match:
A0A7S2XTD7_9STRA (Hypothetical protein n=1 Tax=Attheya septentrionalis TaxID=420275 RepID=A0A7S2XTD7_9STRA)
HSP 1 Score: 168 bits (425), Expect = 4.590e-45
Identity = 90/203 (44.33%), Postives = 127/203 (62.56%), Query Frame = 1
Query: 223 TLEEEVIDRPLQPVGNYILVKLFSAVSKTAGGIVLPDEAQDAPCEGMVVAHGPGRTHPLTGTLIPMCVAEGDTVLFSRWSGRKVKYCGEDHMFILDDDLVLVYRGRELTTDSLKMVRDQVLVETEKGESETDAGIVIAASAAEKEKGSQGRVIAIGEGRTGSEGKIVPCPFKPGDSVKFLEYAPVEIKIKGKYYAVVRMVDCL 831
TL+ E I P+ P+GN++LV+ +S T GGI+LPD+AQ+ P EG V+A GPG HP TG LI V +G VL+ ++ G + Y ED I DDD++L Y G +T +++ RD VLVE K + E +G+VIA+S + + +G VI +GEGR S+G P P GD VKF +YA +KI+ K Y++VRM+D L
Sbjct: 57 TLDGETIRGPIAPLGNFVLVRTKDMLSSTEGGILLPDQAQERPTEGEVMAAGPGNIHPDTGILIDNPVIKGMNVLYGKYDGVGMVYNDEDVQMIRDDDVLLYYTGIRMTLENVTPCRDYVLVEIPKTKLEMSSGVVIASSVTKDDLPCEGAVILVGEGRMCSKGVFTPAPCAVGDRVKFRDYAGNPVKIQNKEYSLVRMIDLL 259
BLAST of mRNA_P-fluviatile_contig84.14884.1 vs. uniprot
Match:
A0A7S2LFS4_9STRA (Hypothetical protein n=1 Tax=Skeletonema marinoi TaxID=267567 RepID=A0A7S2LFS4_9STRA)
HSP 1 Score: 167 bits (422), Expect = 9.730e-45
Identity = 95/219 (43.38%), Postives = 136/219 (62.10%), Query Frame = 1
Query: 187 STSMMSSSSLAIT----LEEEVIDRPLQPVGNYILVKLFSAVSKTAGGIVLPDEAQDAPCEGMVVAHGPGRTHPLTGTLIPMCVAEGDTVLFSRWSGRKVKYCGEDHMFILDDDLVLVYRGRELTTDSLKMVRDQVLVETEKGESETDAGIVIAASAAEKEKGSQGRVIAIGEGRTGSEGKIVPCPFKPGDSVKFLEYAPVEIKIKGKYYAVVRMVDCL 831
ST++ SS+ +T L+ + I P+ P+GN++LV+ + T GGI+LPD+A+D P EG VVA GPG+ HP TG I V GD+VLF ++ G + Y E I DDD++L Y+G +T ++ RD VLV EK ++ET +GIV+A + + +G+V +GEGR S G+ P K GD VKF +YA E+KI+GK Y++VRMVD L
Sbjct: 35 STALFMSSTPELTKQCFLDGKKIRGPITPLGNFVLVRTKDTLDATDGGILLPDQAKDRPTEGEVVAAGPGKLHPHTGVRITNPVTTGDSVLFGKFDGHDMNYNEEPVTMIRDDDVLLYYKGVRMTLANVIPCRDYVLVAIEKQKTETSSGIVVAETVMKGYNPCEGKVAKVGEGRMTSTGEFSTPPCKEGDFVKFRDYAGNEVKIEGKEYSLVRMVDIL 253
BLAST of mRNA_P-fluviatile_contig84.14884.1 vs. uniprot
Match:
A0A7S0J0F3_9EUKA (Hypothetical protein n=1 Tax=Calcidiscus leptoporus TaxID=127549 RepID=A0A7S0J0F3_9EUKA)
HSP 1 Score: 157 bits (398), Expect = 1.740e-41
Identity = 83/197 (42.13%), Postives = 122/197 (61.93%), Query Frame = 1
Query: 250 PLQPVGNYILVKLFSAVSKTAGGIVLPDEAQDAPCEGMVVAHGPGRTHPLTGTLIPMCVAEGDTVLFSRWSGRKVKYCGEDHMFILDDDLVLVYRGRELTTDSLKMVRDQVLVETEKGESETDAGIVIAASAAEKEKGSQGRVIAIGEGRTGSEGKIVPCPFKPGDSVKFLEYAPVEIKIKGKYYAVVRMVDCLAKW 840
PL + N L+KL A +TAGG+ + E P EG+VVA GPGRTHP TG L+ CV EGD VL + ++G KV+YCGE HMFI D+++ V+ G ++ K +RD+ LVE + +ET +GI +A ++E+ + G+V+ IG+GR S G + P P GD V + +++ + ++GK Y +V DCL KW
Sbjct: 46 PLCALNNQALIKLSKADDRTAGGLFVASEESSKPREGVVVAAGPGRTHPETGKLMANCVQEGDYVLLADFTGEKVEYCGESHMFINADEILGVFDGGVPKAEAFKPMRDRALVEVAEIATETASGIALAVG--DEEQPTLGQVVKIGDGRLTSMGDLQPLPISIGDHVLYGKFSGTDTTLEGKKYKIVFASDCLGKW 240
BLAST of mRNA_P-fluviatile_contig84.14884.1 vs. uniprot
Match:
A0A7S2S5W6_9STRA (Hypothetical protein n=1 Tax=Eucampia antarctica TaxID=49252 RepID=A0A7S2S5W6_9STRA)
HSP 1 Score: 147 bits (372), Expect = 2.530e-38
Identity = 78/179 (43.58%), Postives = 115/179 (64.25%), Query Frame = 1
Query: 295 AVSKTAGGIVLPDEAQDAPCEGMVVAHGPGRTHPLTGTLIPMCVAEGDTVLFSRWSGRKVKYCGEDHMFILDDDLVLVYRGRELTTDSLKMVRDQVLVETEKGESETDAGIVIAASAAEKEKGSQGRVIAIGEGRTGSEGKIVPCPFKPGDSVKFLEYAPVEIKIKGKYYAVVRMVDCL 831
A+S TAGGI+LPD++++ P EG V+A GPG+ HP TG I + G +VL+ +++G + Y E I DDD++L Y G ++T D++ RD VLVE + ET +GIV+AAS + + +G V +GEGR S G+ P P + G+ VKF +YA ++KI GK Y++VRMV+ L
Sbjct: 2 ALSATAGGILLPDQSKERPTEGEVMAAGPGKLHPYTGVRIHNPLKTGFSVLYGKFTGTDIIYNEEPMTMIRDDDVMLYYEGVQMTRDNVVPCRDFVLVELSESAMETKSGIVVAASVTKDDLPCEGNVFKVGEGRMCSTGEFTPSPVQIGEKVKFKDYAGNDVKIDGKEYSLVRMVELL 180
The following BLAST results are available for this feature:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig84.14884.1
>prot_P-fluviatile_contig84.14884.1 ID=prot_P-fluviatile_contig84.14884.1|Name=mRNA_P-fluviatile_contig84.14884.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=286bp
MRSSTVAFVASSAAMLASSAAFLAPTPVHLGVNLPRPAARLAPAPATGRR
HTAGRSVARRATSTSMMSSSSLAITLEEEVIDRPLQPVGNYILVKLFSAV
SKTAGGIVLPDEAQDAPCEGMVVAHGPGRTHPLTGTLIPMCVAEGDTVLF
SRWSGRKVKYCGEDHMFILDDDLVLVYRGRELTTDSLKMVRDQVLVETEK
GESETDAGIVIAASAAEKEKGSQGRVIAIGEGRTGSEGKIVPCPFKPGDS
VKFLEYAPVEIKIKGKYYAVVRMVDCLAKWQGQLE*
back to topmRNA from alignment at P-fluviatile_contig84:351399..365840-
Legend: polypeptideCDSUTR
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig84.14884.1 ID=mRNA_P-fluviatile_contig84.14884.1|Name=mRNA_P-fluviatile_contig84.14884.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=14442bp|location=Sequence derived from alignment at P-fluviatile_contig84:351399..365840- (Porterinema fluviatile SAG_2381)
ATGAGGTCATCCACAGTGGCGTTTGTGGCGTCCTCCGCGGCTATGCTGGC
GTCCAGTGCAGCCTTCCTGGCGCCGACGCCCGTGCACCTTGGTGTTAACC
TTCCTCGACCAGCCGCACGATTAGCACCAGCACCCGCGACAGGGCGACGG
CACACCGCTGGCAGATCGGTCGCGCGCAGAGCTACCAGGTGCATGTTTAT
CTTCGCGACCACAGCCTACTTGCGGTAGCAGTGGGGCTTTGATCCGTCAT
CACAGAAACAGGAGCATCAGGAGTGCCACCGCGTTGACACATGTGTAAAC
GTTCCTTTGCGGACTCCTCCTTGTGCACGCACGCGGACCCTTTGCTGGAG
GGGGGTGGGGTTAGCGAGGGTCTAACTGCTATAATTGGTGAACAACGTCC
AGCGAGTTCTTCTGCTGGCGGCGTGGGCATGCTTCCTTGTGCTCGGTTCT
CGCGCAATCCTCTACGGTCATGTTGATACCGTGTATGATGGTGTATATCA
GACCCCCTCTCAACTCTAACATTCAAACCTCGATCGCGAGCAGCACAACC
ACCGAACCACACGTTTTCGGAGAGCTCTAGATGAAAGCTTTGCACAGCTG
CCCTTGTTAGACCCTAGCACTATTCCTTCCGAGGAGCTTTTGTGCTCTAA
AAGTCGCCGCTGGGGGTGTGGTATACACCTTCTTTAACGGCATGTTTCTG
TTCAAGGCCCTGTGTTGAGGTCGCACCGCAATGCGAGATCCCTTCGTTGG
TGTGGACTGACCTGTGCAAATTTGTGCACGGGGAGACACCATGATTATTG
GATTCATCAGGAACTTTTGTGCCTGGCCGGCGAATGTTTCCATCTCTGTG
ATACGCCTTCGAGGCGGCGACTCACAGGGGGTGCCTGTCCTGTTGATGCT
GTGATTTTCTAGTTCAGAGAAGCCCGGGTCGATAGCTAGAACGCAACACG
AAATCTGTGGACGCACAGATGCGGCAGGCAACAAGCTCGTTACTAGGAAA
CTATATTTGACGCCAGTTACCATTCGCACCGCCGAGGCGTGATGTTCGGT
CCCAAATGTGCGGTAGAATATTATTAGGTACAATGAGGGGTGGGGGGGGC
TCAACGGATGGATTGTGCCGCTATGTGCCCAAGGACTTGGCCAAAACTAC
ACCGGCGGCCACCGACACTATTCAGAATATGGCGTGCTATAAGGTTTTGG
TACAGGAGTGGACGCTTGTTCCCAGAGACTTGACCGGCACTACAACAGGC
GGCGGCACTACTAATCCGGCACTTGTGAGGCCCTGCTACTGTACTTGGAA
GATCCTGGTAGGGAGGTGTTCATGCACGTGCGTGTCGCGCGCTTTTGGGG
CACCCTCCGTTCTCCAACCACGAACGTGTGCCAAAAAGAGGTACCCGAGC
TCAGCCGCGCCAGCGGCCCGCCCATCGTATGAAACACCTCCACAGCAAAG
CTCAGCTCAAGGGCGTGCACAATTGTTGCCGTGGCGGCGCGTCGACCAAT
GTTACACCTTATCAAGCGAGCAAAGCAGCAGCAGATACGGTAAATTCGGT
AGAAAGATTCCAAGCGAAGGCACGCACGCGCCACGGGAATCAAATCCTCA
TCACAGGTGATGCTGGAGAAAATTTGAGGAGGCAGTAATCGAAAACTGAC
ACCCGGCACCCTCGACCTATTCACCAGATGGTATGTCGAACAAGTTCCAC
ATGAAAGACATCGAGGCTCATGCTTTCGAATTCCCCGCCTAACCGCCGCC
GTTCAAACAAAGATAGCCAAGAGCTCCGTGGCCGGCGCAACTCACTCTTA
ATCTGGATAGTAGTCTTTGCTCGAAGTGTCGTTACCGCGGGTGATATCCT
TCAGCAGTCTTGGCAGGCACACATAGCAACCTCACCCCTGTTTTTCAAAG
AAGGAAAAGGCAGGGCGGAATCGACGATTCTCCTTCACATTCTCGCAGCG
GAAAGGTGTACGGCATACAAAATTTCTGCTAAAAAGTTGAAACGAAGAAT
CATCAGATTGATCGATGTGTTTTTTATGTTGGAAATGTTACGTAAGAGCG
CTGTGTCTACGGTGACTGTGAGGGACACCTGGGTATGTCGCCGACCACCT
TGAACATGTCATCGACAGCCGGTGAGGGTAACTGGCCATAGCACGGGCGG
CACCCAAGTTTCTCCACACCACCGGGTGTCAATACATGCGTAGTCAAAGT
ATATATTCAGGATTATAAAGTATCGCACCCCTGAAACGATTCTCAAAGCC
CTGCTTCTGCCCATCATGGAGGTTGCCAAAAAATTCCAGTACATTCGGCG
CCAAAGCCGGTCAATGTCGTCCAGCATGCGTAGGTTCGAATTGGACGTGG
ATGCCCCCCCCCACAATGAAACACATCAATTTACGCGTACTTGTATTCTG
ATCCTGTGATGCTCCTCCTGCTCTCTCTTCCCTTCCGCCTTTCGGTTGAA
CGCAGCACCTCAATGATGTCCTCATCCTCCCTCGCTATCACCCTCGAGGA
GGAGGTGATCGACAGGCCCCTACAGCCCGTAGGCAACTACATCCTCGTCA
AGCTGTTCTCAGCCGTCTCGAAAACAGCCGGCGGCATCGTGCTCCCCGAT
GAGGTACGGTTCCCCCTCTCCCATCTCCGTCACCCTCTATCCCCCTCACC
CCCCGCCATCCCGCTTTGAAATTTTGTGCAGAGAAGGGCAAAAAAGTAAA
GACCGCCAAAATGTTGGCGGTGCATACCGCGCACGGCGGTGTATACCCGA
CACCCTTGATCCGATGTCGAAATCTCGTTGTTGCGTTATCGATGTTGAAA
TATCAATTGATGCGTTTTCGATGTTGACATCTCGATTGTTGCATCATCGT
GCAGGCACAGAAAGCTCAACGTCCCCTTTCGAGAATCCCTTGATGAGATT
CTTCCGAAGCCGCCCTTATGTGGCCCATTGCTCATCGTTCCGAGGAGCTT
TTACAGTCCGAAAGTCTCCTCTAGGGTGTGTGGTATACACCGTCGTTTAC
GGCGCCTCAATCAGGAGTAGGGACGTTACTTCCTCCGCCTGTAAATGGAC
GCGCGAGCAATGATCAACTGACTCAGGCAAGCAACAAATGAGTCTGCCCT
CCAACCCCCCGGCCGCCCGTGCCCCCCCCCCCCCTCCCACACCCCTAGCA
TGAACCCTCGTTGACCAACGACTGTACTTGTCCGCCTTGTCGAGAGCACC
GATCAGCATGATGCTCCCTGATGAGACAGTCTGCTGTGCTGTGTGCCATA
TCACAACTCCGGTGATTTTCGATATCCCCCCATCGCTCCCTCCCTCAAGG
TAAATGGTCTTCCGACTACGGCATGCATGACTATGAGGGTACCCCCCCCC
CCTTAGCTGAAATCGCGATTTCGAGTTGGAGATCTGGACTTGCCAGAGAC
ACGGAGAAGTTACACCAATAAAGTAACGGAAGAGGAAGAGGATAGACAGG
GATGCCCCTGCGGAGAGCCCGTGGCAAGTCGAACAAACAATTAGGTGCAG
GATGTGAGCTGTACTGGGAGGAAGGAGGGAACCGGGAGAGAGACATGAAA
ACAATCGGATGTACCATGGACGAGTTGCAAACTCGATGAAAGTGGAAAAA
AATATCGCTGTCACAGGGGATAGATGGTGGCCGGCCGAAGTTAAAACAAA
TGGCGGGTAAGATTGGCAAGCAATTCTTGGGTAGAGCATGGCAAAAACGT
TAAGAGGGCCCGAATGTTGGAGGTATCTCTATTCGGAGTAGGAATGGAGC
ACCGTCTCGCGAGGGATGCGTGGTCAACGATCAAAGGACTAAGGCAAGCA
GCAAATGGTGCTCCCCGATGAGAGGGGGGGCATGTGATGGCCATGTGTGG
CCCGAGGCCGCCGCATGCACCCTCTCTGGCGAGTATGTCCTCACGAAACT
GATTACCAAATGCCAGACGCTCGTGGGAAGGGATGGAGGTCTCTCACAGC
TGCCACATCCGCCCGACGCCCTCGATCATTGTCCACCCCTCCCTCTATAT
GGCCCAACGGCTGCGAAATGCGTAACTTGAGTACGCCCCGTCCCTCCCTC
CCCTTCACGGGCGTCTCAATTTATGGTGGACGCAAGATGTCCCCCTACAC
AGGTTTAGTGGTTGCCCCCGAGCCCTGTCGGATACGCGGAACCCCTCCTG
TTGTAGTGTATGCGCGGAGTTCAATTGCGGCGACCCTTCCGTCCTCCTCG
AACTACTTGTCCCCTGTGTGCTGATATTTAGGCGCAAGACGCGCCTTGCG
AAGGGATGGTGGTGGCTCACGGTCCAGGCCGGACGCACCCCCTAACCGGC
ACGCTGATCCCTATGTGCGTGGCGGAAGGGGATACGGTGCTTTTCTCTCG
ATGGAGCGGCCGCAAGGTGGGTGGGAAGGGGGAGGGGGCACGCGAAGCAA
ATTTAGGGTGAACGGGGGAGGGTTCGATTCCCGTCCTCTTTTCGTATGTG
GTACCAAGATTTTGAGTCGGAGCGAGGAGGAGAGGCAGCCGTGCTCTTCT
CGCGGTGGAGCGGTCGCGAGGTGGGGAGGAGGGACTGGGGGATCAAGGGA
GGGGAGCGCTCGCGGAGAAACAATAAACTGGAGGGAGGGCGTGTGTGTGC
TAGATCCGATGTACCTTTTCCGGGAAACATGGATAGCGTCGTTAGCCTTT
TTATGCTTTAGCGCATCTTGGTCCGCTGAGCTTATTCGCCCGAGCAGGTG
AAGAACTGTAGGGAGAACCGCGACTTCCCTGACAAACACGTATTGCAGTA
CCGCGTCGCATTTTGCCAAGAAACGCCCGATGTGTTGCGCCGCTCTATCC
ATCTCCTCGGTCGGAAAGACATTTTCTTCTTCTTTTCCGTCGCAAGACTT
TTGTTGTGCTGTTTGTTTCTATCCTGGCCTCTTGTTCGGTCTCGGAATGT
GAAGAACTGCAGGGAGGACACCACTCTTCCCCGCCACTAAACACCATACT
TGATGTCGTCCAGAAAGGGCGTGATGATTTTCGGGATTGTTTCGTCGCCG
CTTCTCCGGCTCCCCCAGTTGAAAAGCACAATTTTCTGTCCTTCGTTCCC
GTTTTTCCGTTGTTGTTCTCCGACATGTTCTCCGACATGATCTCCGACAA
GAAACATCACCCATTTTCATTTTGGTTTCGTGCCGCCTCTTGCTTTATGT
GTCGCGGCAGGTGAAGTACTGCGGGGAGGACCACATGTTTATCCTGGACG
ACGACCTTGTCTTGGTCTACCGAGGACGAGAGGTGAGAATTCGCAGATTG
TCCCCGGACCCCCCCCCCCTCCTTGGCCTTTGCCCCCTGTTCCCCCTCCT
CCCGTGGTCTGGCGAATGCCTTGCGTCCTCCGTTCCGTTTGTTTAGGGAT
GCCCACGACGCCATCCGTGGCTACGCATATCTTCTCCCTTCTTTCCTCCC
GCCCGTTCCTTTGACAGCCCCTTGCTGCAGGGGAGGCCAGGCATGTGGGC
CTCCGCACCCCATTCCGACAGCGTACCCCCTTGTGTGAGTGTTGCATATG
TGTGTGTGAGGTTTGTTGGGCTGCCTGTTCGCCTGCTCTCGGCCGTGCAC
GCTGTTCAAAATTGAGGCAGGCGCCTGTGGCAAAGCACACCGCTAGAGGC
GGAATATCGAAAGAAGCATGTAACCCACTGGCCCCCCAGCGATCCACCTT
TACAGCTGACGAAGCAGAGCAACAAACCGTTCCGCCGGCGAAGTCTTCGG
GCTATTTTTTTCTCATTGGGAGGATTTCTCTTGCTTTGACTGCGCGCTGT
TACGCCTCGAGTTGTCATTTGTTGTCGTGATAGCCGACCGATGGACTTCA
TGACTTCATGGCTGGAGCTCACTAGCTGCCTTTTGGATAGGGTTAGTGTG
GTGCCGACCTGAAATGACCGTCTGTCCCACCCATCATCTAATTTGTCCAT
ATGTGACGGACGATAACCTAAAGATGCTTTCCCTTTTTCTATTTTTTGCA
GTCTTGGTCCCGATTCAGCGGTTCGATGCGTAGCGGCAGTGCCCTGTTTA
GTGGTTCCCTGCTTAGCGGCAGTGCCCTGTTTAGGGGTTACCTGTATAGC
GGCAGTGCCCTGTTTAGCGGTTACCTGCATAGCGGCAGTGCCCTGTTTAG
GGGTTACCTGTATAGCGGCAGTGCCCTGTTTAGCGGTTATCTGCTTAGCG
GCAGTGCCCTGTTTAGGGGTTACCTGTATAGCGGCAGTGCCCTGTTTAGC
GGTTACCTGCATAGCGGGAGTGCCCTGTTTAGCGGTTACCTGCATAGCGA
CAGTGCCCTGTTTAGCGGTTACCAAATCCCGTGACACCACTAACTCCCGG
ATTGAAGGATTCCTAAATGGTGATGCCCAGAAAATCGTGTACCACTAATC
CGCGACGGCGGCTGGAATTGATTTACGGAGCGGCGGGTTGCGAACCCCGA
GACATTTGTCTTGTCTTCTTGCTCAAATTCCCGACCCGACTGGGGCTTAA
TCTTGGCTGGACTTTCGGCCTATCAACCCCTTTGCCGATCTCTCTCTCTC
TCGCCCTGTATGCCGACAGCTGACGACAGACAGCCTCAAGATGGTTCGCG
ACCAGGTTCTGGTGGAGACCGAGAAGGGGGAGTCGGAGACGGACGCCGGC
ATCGTTATCGCGGCCTCGGTGAGCAAAGAGAACCTGGGGCATCGGGGATC
GGGGGGTGGCATGGGGCATAGCGGGGGTAGGAGATTAGGGAGGGGAGCGG
GGGAGGGCAGGTGGACACCGTGAAGGATGATTGGAGGTAGATGCCGGCAT
CTTCATCGCTGTCGCGGTGAGTGAAGAGAGGGGGGCCCGGGGCGCGCGGG
GGAAGGGGGGGTGAGGCGTACCCATTTGTTGCTTGCCGTAGTCCTTTGAC
CATTGACCACGCATCCCTCGCGAGACGGAGCACCGCTCCTACTCCCAACA
GGTACCTCCAACATTCGGGCGCTCTTGGTTGCCACGCTCTACCCAAGAAT
TGCTTGCTTTTCTGACCCCCGTGCTTGGCTTCGCCCCTGTGACAGTGATT
GTTTTTTCGCTTTCATCGAGTTTGCCAAACTCGTCCATGTTAGATCCGAT
TCACCTCATCTCTTGCTCTCTGAGTCCCCTCTTTTCTCCCTGTACAGCTC
ATGTGGTTCAACTGTGTGTGTTCGACTTTCCTCGGGCTCGCCGCATGGGC
ATGGCTGTCTATCCTTCTCCTCTTCCGTTTTATTGCTGGTGTATCTTTTC
CGAATTTCTGGCGAGGCCAGATCTCCGACTCGAAATCGCAATTCCAGCGT
TTTCGCGTTGTCCATCTTGCCGTTCAAAAATATTTTTTTCCCGCTCTTCT
CTTTCAGTTCCCCATGTGTCTCTAAAGTGGTCCTTACTTATCACCTTGTC
TAAGCGCTCGTCTCTCCCTCCTCTGTATCATGTCCCATTGTTCGTCTTCG
TACCCCTCCAGCTCTTCTAATACCGCTATTTGGCCTCCCACAATCTCGTT
CCAAGTGTTCTCCACCTCCTTGTCCGACCTTTTTCCCGATCTCCCCTTCC
TGGTCTTCTTTCATGACCCCTAATCAAAAGTGGCTAGTAGCCTCTGTTCC
GACATTCTGTGTAAAAAGTACTGCCATTGCAACGTCCCCATGTCTCTTTC
TCATTTCGACGAGTCCATGCCTAGTTCTGCCGGTACTACGGTATTGCTCG
CCGTGCTTGAGCACCCCAAATATCTTCCTAGCAGCTGTCATCTGTGCTGT
TTCGAGCGCCTTTACCCATTATCCATTTTTGTTCCCTTCCCATACTCCTG
CGTACTCTACCTTGGGTGCGACAACGTTGCACCTTTATACCCTAGTGTCC
AGATGTGGGTCTGTAAGTGTCGCATCCAGCTTTCCTACTTTAGCTTTCCC
TCCCCGATGACTTGTTGGATGTGCACCTCCCAAGAACAATCTTCCGATAT
CTTTACTCCACGGTCGGATTATTGGTCTACAACCGGACGCTCCTTCTCGC
CCCATTCCCCTTTGCACCGTGCTGGGTTTGCCGAGCTTCCATTGCAAATC
AACAATGCGCACTACGGGACGTTCAGGGTGAACCTCCGTTTTCTTGTGTA
CACCAAAGCTACATCGATCCGTTGTTGGAGCCCTTCCGGTGTTTCTCTTA
ACCTACACTACCATCGGCAAACATCACCCCAACACCTTATTCCTCCCTGA
ATCCAATCTCAGTTTTACTCTTTCTATAGCTGCTACCAAGTCATTGATGA
AACATTGATTAAGTTCGGTGACAGCGTGCATCCCAGTGCAGCTCTCTGTA
AGATATGGATTGAATCCAATGTGTCCCCGTCCAACATCACCCGCGCTACC
GCGCGTCTCGTACACTCGGCCAACTTTTTTCATCATTCTCCACATCTTTC
CTGTGATCCCCATGTCCCACATCGTTTTCCAAAACCCATTACCACAGGCC
TTTTTGAACGTCTACGAAGAAGCAGTTTGTTGTCAACCCAGCATATTTCT
GCCTTGAACTACCTTGCCTTATGTGTACACACTGTATGCACAGCTCCGCT
TTGGCCTAAACCCAGCTTGCCCTTACCTGGTTTTGTTTGCTTCCTCTAGC
ATTACACCCAATCTATCATTCCCACATTCACAGCACGTTTTCCCCACCAC
ACTCGGTAGCGTGATCCCTCGGTAGCGACATGGGTTTGTCTTGTCTCATT
TTTGGAGAGGTTCACCATTACTCCTTCTCTCCATCTTCTCGGTGTATAGT
CGTTTTCCCAGGTCCAATTGAAAAGCATGACAAGCATAGTCTATCATCCC
TCCTCCTCCGTATTTCAAAAACTCGTTGACTATCCCATCAGCTCCTGCTG
CCTGCCTATGATTAACTAAGCATTCCTCGTCTTCGTCGCGCGTGAACTCT
CTCTCTCTCTCTGTTACGCTTTGGTCATTTATCTTCGCTTGTCGATTGCT
CTTCGCTCTACTTTTCTCTCTGCCCACCGACTGGCTTCCTCTTCAATTAA
CGCATCGAACTTCTCTCTTTCGGTGGTCATCGCCTACGGTAGTGCTCTAT
TAGCACTTTCCTCTTCCCCTTCGAGCTACTAGCCATCTTGTCGTCTGGTG
TTCAAAGTGAAGCTATCCCTGTGGGTGCTCCCCGTGGTTTTACCCATGAC
CCAATTTATCCCTTTCCACGTTATAACCCCCTGAAAGTCGTCGTTGGTTC
TCTCGTCGCTTCCCACCGCTTCTTTCTTCTTCTCCCATGTCCTTCACAAC
TTTCGAGCTTCGACGCGTTTCTCCCAGCTTTCACTGGATTTCTCGGACGC
GTGTTTCGCATGCGCCTCTCTCCTTGCTCCGATTGCTTGTTTGAGTTCTT
CATCCCACCACTTACCAGCTTTCTTGCAAGCAACCGTCTTCGTACCCAAG
ACCTTGCTTGCTATGTGTCTTTGGCGAATTCCTGCCATCCCTCGTTGATC
CTCGCCCTGCCCCGCCTTTCCCGCATCAGCGCTAGTTGTGCGGATTCTTC
CAGTCAACTCCGAGAGATGTCTTGTACCATCTCTGCTTGAAACCCCGGCC
TCGTCTCTTCTACTTCCAAGTTTATCGATTCTCCGTCTAGTCAACTGCCT
TTGTCGCCTATTGCGAATTGTTCTAGTATCTTTCAATTCTGTCGAAACCA
GGCTGTGGTCTGTAGACCCTGCATGCGTTGCACAGACCCTCACTTCCGTC
TCCTCGCTCCCGGTCTCCACTATGTAATCAAGGGCAAGGAGCGTTCTCCC
TTTTGGACACATTGTATTGTCTATTCCGGTTCCGCTTTCTGTGCTACGCC
GTTGATTATTTCCGTCTTTTTGTTCTTCGCAAAACCTTATTGTTTCCTCC
TCGTTTTGGTTTTTGGCTTCCTTTCCGTGATATCTAAGGTCTTCGTTGGG
AATGGTGGCATTCCTAGTTCGTGTGTTGAGATTCCCAACTGGTTTTAGCT
TCCCCCCTTTTCTTACATTTCTGTGAATCATTTGGCTACTCACCAAAACT
TCTCTCCATGTCCCTCACCACACTCGTCGATTCTGGTGGCATGTGAGTGT
TCCCATTGAAAGCATCCTTTGCTCCCCTCTCCCCTATTGTCCGGATCGAC
ATGACTTTTTTCCAAGGTAGTATCAGGAACCACCTCCATGACATGATATC
GCACGTATTTCCTTGACAGTGGTTCCTACTATTAATACCCCCCCTCCCCT
CTATTTTTGATTGTCTTTCCTTTCAGCTGTTTCCCTTCCACGTGTATTTG
CCGACATCGACTCTCGCACTCAGACGATGCCCAAGGCGTGTATTCGTGCT
GCACTCCGAAGGTGTTCAAGTCGTTTGTTTGCACTTGCACTCAGACGACG
CCCAAGTCGTGTATTCGTGCTTGTTCGGCTACTTCTATCCTCTTGCGTTC
CCCTGTAGCGAACCCGCGTCCGTTCCATGATCCTTTTCTCATCTTTTTGC
TCCCCCGAGCCTCGCTTCTTCCACCCGCTGTTTTCACACATTCCCTGTCA
CTACTCTCTCGCACCGTTACCTTGCCCGTTTCGCGCTTCCTGTGCCTGTT
CTGTCCTCAATGACTTCCCCCAGGGTTTGCCTGCCCTTCCTTCCCCACTT
TTCCCTCAAGCTACGCCTTACTTCCTCGATTTTTTTCTTGATGCGCACTC
TCCGTCCTATTCTCGTTACTCATGCCGAGACTATTGCAGTTTGTTATCTC
TCCCACTCTGCACTCGCCGCCCCTCCTAGTTTTACACATATGTGCCCCCC
CCCACCCCCCTTCCTACTCCCCCCGTGCGAAGCTGTGTAGTCCTCCTTGC
GCGCACTTTCTCGTGAGGTCTGATCTTGTCACGTTGATAGAGACTCCAAA
GGTCAACACAACAAGTAATCCTACCTTTCCAATCTTGCTGCCTCCACCCT
GACTGCCTCCTCGGCTCCCTCCTAATCTCTAGCGAGACTATTCCCATGTC
ATCGAATTATCTGGTGGGAAGTCGCCAAGGAAGTGGGACTTGTTAATCCC
AGCCCTCGTTCGGGCTTTGATGTCATTCAAGTGTTTTGCTAGCTCACCAA
GACAAAGAAATGCCTCCGGCACGGGCTCGTGGCCTGGAGCCAAGTTCAGC
GCCCTTGGCACAACTACCCCAAGTTTGTGCCAGGCAATCTGCACGGTAAC
CGACCCTGGCATCCCACTATCGCGTCCTCTATGTACTAGCCTCTCTGCTG
TGTTTGGCACTTGCCTCGAGTGAGGTCCAGGGAGCCTGCACATCAGAAGG
GCTATAACTCACACACCGGGGTAATCCATGGCTTCCTTTTACATACTTCG
ACGTAGTATATTCGCGTGAAATCTTCCTTCACAGAGGTCAGACAGGGCCA
CCCCTAATCCCGATCCAATGTTCACCCCGCACTCTACGGCGTTTACCCTA
TAAGGCTTCCTACGTACCGGTTGGTGCTTCTTCCCTAGTTGATCATGCGG
TCGGTCGGTTGGAAACCTGCAGTCTGAGTGTGTTCGGTCGGCATTTTGTT
TTGTACTATCCAGCCCTTTCTTTGGATGCTGACGATGGCATCGGACCAGA
TTTCCACCGCCCAGCGGATACTGGAACTTTTTAAAAGGTACCTCACCACG
AGACCTCCAACAATCATTTATTGTGTACATTCGACCCGAGAGGGCTGCTG
TATCTAGAGGCAGGTTTGTTTTCATCTTTGATGGTCTTGTGTGTGATCTA
TGTTTGTGTTTCTGTGATTTAGGATAAACATCAATGTTCGGATGTCCAGG
CTGCACATCTTGATCTCTCATGTGACAGTTTGGGGCCCGTAGGAGGGGGG
GATTGGGGGGCTAGCGGATGCAAGGGGGGGCGAGGTGGACACCGAGGAGG
GGAGGGGAGTTGAAGATAGATGCTGGTATCGTTATCGCAGTCGCGGTAAG
CAGGAAGGCGAGAGGGGCGCGGTGGAGGACGAGGGGGGCGCTCGAACTCG
TTGTTGCCTGTTTTCAGCATCCGGTCATTGGCCAACAACGTTCGGGCGCC
CTAGAGCCCTTTGCCGTACTTTCCGTGAGACCTCTCGCTAGTCTGGGCCC
CCTTCTGTGCGGGGGGTCTGCAGCAGCTGCAAGGGGGAAGGGTTCTGAGG
GGCTTGAGCTAGGATGAGGGTATTGGTTATGGTGTTGAGGCAGCCTGTGC
TTGGTCTGGCCGGCAAGAAGCACGGGGGTTGTTTGCGACTTGCAACGGTC
GGTAATGGTCGTGATGTCTTCGTTTTCTTGATACCTTTTTTTTCGTGATG
CCGTTTTTTGCCCCGTCACGTTTTCTTGGTTACCCTGTGAGGCTGCCGAG
GAGGGAAAGGGGACAAGAGTGAAAATATCGACTTCCGAACAGCGATCTTG
TTTTGATTGTACCGTTTTGGCCCATGTTCTTTTTTTGATTGGACCTTTTT
TTTTGGCAGGCTGCCGAGAAGGAGAAGGGGAGCCAGGGGCGGGTGATCGC
CATCGGCGAGGGCAGAACGGGCAGCGAGGGCAAGATTGTGCCGTGCCCCT
TCAAGCCGGGAGACAGCGTCAAGTTCTTGGAGTACGCGCCCGTGGAAATC
AAGGTGCGCTTGGTTGTGTTTGTTCACACGTCCTCTGCGGCGATGTGTTC
GGGTTATTTACTGCTTTCGAACGCAGTCAGCAAGGCGTGCATGTACCATT
TTGCCGCTCTCCTCGTTCCGAGTTCGAACGCGATCGAGATGTGCGTGCAT
TGTGCGGCTTCGCTTTAGTCCTCCTCTTTTTTTCTTTACCGAGAAACAAT
CTCGACGTTCCTCTGGCCGCGCAGCCTAGAGATGGAAGTGTGTTTGCACG
GCTACAAACTACGCCGCTCGACTGGCTTTGTGGGAAGCTGAATACTCTGT
TGAACAGGAATCGGTGGCCCAGCTGTGACTGCCGGATCAAATTCAAAATG
TTGTTTCGGGTCATTTTCTTTGCACAGTGTAGTCCCCTTGTCTATGAGAT
GCAATCGCCTTCTTGGATATCTGTCGTTGGTCTCCGCACCGTTCTGCGGA
ATCTGCCGAACGCTGAGAACAGGTCTGCATGCGTGCCTGAAATACTCCAC
CAGGCAGCATATTTTGTCTGCTGCCGCGACGTCAGCACAGCAGCTCCATG
TCTTTCTAGAAGCTCGCGCTTCAAGATCATCTTAGTATGTCCTCGTGGTG
CAGTCGCCGTGCCCCGCACAGCCCACGCCTCACTCTGTCCCTCTACACGT
CATCCCTCTCTTTCGAGAGCATGTGCCCGAGAAGTCGTCACTTCCACTGT
CAAAAGTCAGTCCGGCACTCCAGGAGAGCCCTTAACCACAGGTGCTGAGA
TTTTGCGGCAGCAGACAAATATCCTGTCTGGCGGAGTATTTCAGGCACGC
ATGCTGACATGTTCTCAGCATTCCGCAGGTTCTGCGGAACGGTGCGGAGA
ACAACGACATATATCCAAAAAGTAGGCGTTTGCATCTCAGTAACCAGGGA
CCCACAAGAGCTGTTGTAATTTTTTCGCGCAGACCAGTTTCTCTGACACC
CAAAAAGCTTCTCATGTGTAGCATCACTTGGTTATTTCCGAGGGAATACC
TCAGGAGGTCCCCGGTGTCCATGACTCTTGCCTCCCGTTTGCCACGTCGG
CACTTGGTCGTGCGAACAAAGCGAATCTCATCACAATGTCCTCGATACCT
GTCTCTGCATCGACACAGTTTTGGATACTACTTGTAATACTTGTTTCACT
ATTTTTTTCCCCTCAGAATTACCGGTATCGTCGCTCCTGCTTTTCATTTA
CTATGGATTAACGTCGTGCCATCACGGGTATGCCTCCTTCCCCTTCTCGT
CTCCCTGGCCCAGATCAAGGGCAAGTACTACGCGGTCGTGCGGATGGTCG
ACTGCCTCGCCAAGTGGCAAGGACAGCTTGAATGATAGGTCGAGAGTCGT
AGTGGGGGCGGGGGGAGGGGTATGGATCATGTGGTCACCATCGTGTGCCG
GGAGAGGTTGACCCTGGGTGGCGAAGGATGAAAAGGATTTCAGGAAGGGG
TCTGATGCAACAGAGTTTGCAGGCATCGAATGTGTAGGTGATGATACCAA
ATGGGAGGAGTAGTCGGTACAGTCATCCCCGCGTTGGGGACGCTTAAGCG
TTTTCTTTTTGTTTCGAGAGGTGTCGTTAAGTCGGGGCAATGTCCTCCAA
GAATAAGTTAAATCGGATTGATCACGACCCAAGAAAAAAGGAATGCCCAC
GTTGCGAATGTCCTTAAAGATTGTTTCCTTTATGCGGGGGCGAATGAAGC
CACAAACACACAATGGAGGCGTTCTGCTGCCTGCCTCCTTTCCGCCGAAT
ATCGTTCGTTCTTTACTCCAGAAAAACAATGAAACAAAAGTACTCCGCTC
TCGAAACGGCGGTGGTTGCTCCTGTGCTGTCATTGTGTTGCGCTTTTGGG
TACAAAATTGCCGGCTAGGGCTGTTGCTTCGAATGAAATTCGGCTCCACA
TGGACAACTTCATCCGGCAAGAAACGACGGTCAGTCAAAAAA
back to topCoding sequence (CDS) from alignment at P-fluviatile_contig84:351399..365840-
>mRNA_P-fluviatile_contig84.14884.1 ID=mRNA_P-fluviatile_contig84.14884.1|Name=mRNA_P-fluviatile_contig84.14884.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=1716bp|location=Sequence derived from alignment at P-fluviatile_contig84:351399..365840- (Porterinema fluviatile SAG_2381)
ATGAGGTCATCCACAGTGGCGTTTGTGGCGTCCTCCGCGGCTATGCTGGC
GTCCAGTGCAGCCTTCCTGGCGCCGACGCCCGTGCACCTTGGTGTTAACC
TTCCTCGACCAGCCGCACGATTAGCACCAGCACCCGCGACAGGGCGACGG
CACACCGCTGGCAGATCGGTCGCGCGCAGAGCTACCAGATGAGGTCATCC
ACAGTGGCGTTTGTGGCGTCCTCCGCGGCTATGCTGGCGTCCAGTGCAGC
CTTCCTGGCGCCGACGCCCGTGCACCTTGGTGTTAACCTTCCTCGACCAG
CCGCACGATTAGCACCAGCACCCGCGACAGGGCGACGGCACACCGCTGGC
AGATCGGTCGCGCGCAGAGCTACCAGCACCTCAATGATGTCCTCATCCTC
CCTCGCTATCACCCTCGAGGAGGAGGTGATCGACAGGCCCCTACAGCCCG
TAGGCAACTACATCCTCGTCAAGCTGTTCTCAGCCGTCTCGAAAACAGCC
GGCGGCATCGTGCTCCCCGATGAGCACCTCAATGATGTCCTCATCCTCCC
TCGCTATCACCCTCGAGGAGGAGGTGATCGACAGGCCCCTACAGCCCGTA
GGCAACTACATCCTCGTCAAGCTGTTCTCAGCCGTCTCGAAAACAGCCGG
CGGCATCGTGCTCCCCGATGAGGCGCAAGACGCGCCTTGCGAAGGGATGG
TGGTGGCTCACGGTCCAGGCCGGACGCACCCCCTAACCGGCACGCTGATC
CCTATGTGCGTGGCGGAAGGGGATACGGTGCTTTTCTCTCGATGGAGCGG
CCGCAAGGCGCAAGACGCGCCTTGCGAAGGGATGGTGGTGGCTCACGGTC
CAGGCCGGACGCACCCCCTAACCGGCACGCTGATCCCTATGTGCGTGGCG
GAAGGGGATACGGTGCTTTTCTCTCGATGGAGCGGCCGCAAGGTGAAGTA
CTGCGGGGAGGACCACATGTTTATCCTGGACGACGACCTTGTCTTGGTCT
ACCGAGGACGAGAGGTGAAGTACTGCGGGGAGGACCACATGTTTATCCTG
GACGACGACCTTGTCTTGGTCTACCGAGGACGAGAGCTGACGACAGACAG
CCTCAAGATGGTTCGCGACCAGGTTCTGGTGGAGACCGAGAAGGGGGAGT
CGGAGACGGACGCCGGCATCGTTATCGCGGCCTCGCTGACGACAGACAGC
CTCAAGATGGTTCGCGACCAGGTTCTGGTGGAGACCGAGAAGGGGGAGTC
GGAGACGGACGCCGGCATCGTTATCGCGGCCTCGGCTGCCGAGAAGGAGA
AGGGGAGCCAGGGGCGGGTGATCGCCATCGGCGAGGGCAGAACGGGCAGC
GAGGGCAAGATTGTGCCGTGCCCCTTCAAGCCGGGAGACAGCGTCAAGTT
CTTGGAGTACGCGCCCGTGGAAATCAAGGCTGCCGAGAAGGAGAAGGGGA
GCCAGGGGCGGGTGATCGCCATCGGCGAGGGCAGAACGGGCAGCGAGGGC
AAGATTGTGCCGTGCCCCTTCAAGCCGGGAGACAGCGTCAAGTTCTTGGA
GTACGCGCCCGTGGAAATCAAGATCAAGGGCAAGTACTACGCGGTCGTGC
GGATGGTCGACTGCCTCGCCAAGTGGCAAGGACAGCTTGAATGAATCAAG
GGCAAGTACTACGCGGTCGTGCGGATGGTCGACTGCCTCGCCAAGTGGCA
AGGACAGCTTGAATGA
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