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Integrated genomic strategy for accelerating domestication of
ricebean (Vigna umbellata) under genetic enhancement of minor pulse

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Gene Details:

Gene ID Chr. No. Start Position End Position Function View on
Vu_11458 LG3 1148265 1165898 PREDICTED: E3 ubiquitin-protein ligase KEG
Map

Annotations  
category   relationship type   keyword
Biological Process   involved in   abscisic acid-activated signaling pathway, positive regulation of histone ubiquitination, secretion by cell, endosomal transport, abscisic acid-activated signaling pathway, positive regulation of histone ubiquitination, positive regulation of histone ubiquitination, negative regulation of abscisic acid-activated signaling pathway, late endosome to vacuole transport, defense response, abscisic acid-activated signaling pathway, response to abscisic acid, abscisic acid-activated signaling pathway, negative regulation of abscisic acid-activated signaling pathway, negative regulation of abscisic acid-activated signaling pathway, protein ubiquitination, endosomal transport, negative regulation of abscisic acid-activated signaling pathway, protein phosphorylation, protein phosphorylation, protein phosphorylation, late endosome to vacuole transport, abscisic acid-activated signaling pathway, abscisic acid-activated signaling pathway, abscisic acid-activated signaling pathway, negative regulation of abscisic acid-activated signaling pathway, abscisic acid-activated signaling pathway, abscisic acid-activated signaling pathway, negative regulation of abscisic acid-activated signaling pathway, developmental growth, protein ubiquitination, abscisic acid-activated signaling pathway, negative regulation of abscisic acid-activated signaling pathway, protein ubiquitination, abscisic acid-activated signaling pathway, negative regulation of abscisic acid-activated signaling pathway, response to abscisic acid, defense response, late endosome to vacuole transport, abscisic acid-activated signaling pathway, positive regulation of histone ubiquitination, negative regulation of abscisic acid-activated signaling pathway, abscisic acid-activated signaling pathway, abscisic acid-activated signaling pathway, secretion by cell, abscisic acid-activated signaling pathway, late endosome to vacuole transport, negative regulation of abscisic acid-activated signaling pathway, positive regulation of histone ubiquitination, abscisic acid-activated signaling pathway
Cellular Component   is active in   early endosome, trans-Golgi network, trans-Golgi network
Cellular Component   located in   intracellular anatomical structure, early endosome, trans-Golgi network, early endosome, trans-Golgi network, trans-Golgi network, cytoplasm, trans-Golgi network, cytoplasm
Molecular Function   enables   ubiquitin-protein transferase activity, protein self-association, ATP binding, protein binding, protein kinase activity, protein binding, protein serine/threonine kinase activity, ubiquitin-protein transferase activity, ubiquitin-protein transferase activity, protein binding, protein serine/threonine kinase activity, ubiquitin-protein transferase activity, protein kinase activity, protein serine/threonine kinase activity, protein kinase activity, protein binding, protein binding, protein kinase activity, ubiquitin-protein transferase activity, protein kinase activity, protein binding, protein binding, protein binding, protein kinase activity, ATP binding, ubiquitin-protein transferase activity
Pathway   B 09181 Protein families: metabolism   C 01001 Protein kinases [BR:ko01001]
SNP Position Effect Amino acid change
C/T 1148310 3_prime_UTR_variant
T/A 1148615 3_prime_UTR_variant
T/A 1148741 missense_variant p.Glu1618Asp
T/A 1148813 synonymous_variant p.Thr1594Thr
C/A 1149352 stop_gained p.Glu1415*
C/T 1149520 missense_variant p.Ala1359Thr
T/A 1149987 downstream_gene_variant
T/A 1149988 downstream_gene_variant
T/A 1149989 downstream_gene_variant
T/G 1149991 downstream_gene_variant
T/C 1150025 downstream_gene_variant
G/T 1150081 downstream_gene_variant
G/C,* 1150084 downstream_gene_variant
C/A 1150167 downstream_gene_variant
C/A 1150367 downstream_gene_variant
C/A 1150400 downstream_gene_variant
G/A 1150422 downstream_gene_variant
G/A 1150515 downstream_gene_variant
T/A 1150851 missense_variant p.Ile1154Phe
C/T 1150858 synonymous_variant p.Arg1151Arg
C/A 1150963 downstream_gene_variant
C/A 1151084 missense_variant p.Trp1114Cys
A/G 1151120 synonymous_variant p.Leu1102Leu
G/A 1151252 downstream_gene_variant
C/T 1151345 synonymous_variant p.Glu1056Glu
C/T 1151351 synonymous_variant p.Glu1054Glu
A/C 1151372 synonymous_variant p.Leu1047Leu
A/G 1151378 synonymous_variant p.Ser1045Ser
T/A 1151387 synonymous_variant p.Ile1042Ile
T/A 1151393 synonymous_variant p.Leu1040Leu
C/T 1151408 synonymous_variant p.Arg1035Arg
G/T 1151410 synonymous_variant p.Arg1035Arg
T/G 1151411 synonymous_variant p.Ile1034Ile
A/T 1151423 synonymous_variant p.Ile1030Ile
G/A 1151426 synonymous_variant p.Gly1029Gly
G/A 1151728 downstream_gene_variant
T/A 1151729 downstream_gene_variant
G/A 1151862 downstream_gene_variant
C/A 1151879 downstream_gene_variant
T/A 1151889 downstream_gene_variant
C/A 1151914 downstream_gene_variant
T/C 1152060 downstream_gene_variant
A/T 1152070 downstream_gene_variant
G/A 1152276 downstream_gene_variant
A/C 1152297 downstream_gene_variant
T/C 1152298 downstream_gene_variant
A/G 1152310 downstream_gene_variant
T/C 1152340 downstream_gene_variant
T/C 1152418 intron_variant
G/A 1152442 intron_variant
A/G 1152591 intron_variant
T/G 1152624 intron_variant
C/A 1152625 intron_variant
C/G 1152757 intron_variant
G/A 1152819 intron_variant
A/T 1152836 intron_variant
A/T 1152857 intron_variant
C/T 1152863 intron_variant
G/T 1152916 intron_variant
A/T 1152921 intron_variant
G/C 1152938 intron_variant
G/A 1152959 intron_variant
T/C 1153023 intron_variant
A/T 1153038 intron_variant
T/A 1153107 intron_variant
A/G 1153197 intron_variant
G/A 1153364 intron_variant
T/C 1153396 intron_variant
G/T 1153399 intron_variant
G/A 1153457 intron_variant
C/T 1153504 intron_variant
G/A 1153512 intron_variant
G/A 1153538 intron_variant
C/T 1153569 intron_variant
G/A 1153579 intron_variant
C/A 1153584 intron_variant
G/A 1153629 intron_variant
G/T 1153688 intron_variant
G/A 1153707 intron_variant
G/T 1153843 intron_variant
G/A 1153856 intron_variant
C/T 1153910 intron_variant
C/T 1153915 intron_variant
A/T 1153971 intron_variant
C/T,A 1153974 intron_variant
A/T 1153979 intron_variant
G/A 1153984 intron_variant
G/C 1153985 intron_variant
G/A 1153987 intron_variant
T/C 1153989 intron_variant
C/A 1153990 intron_variant
A/G 1153999 intron_variant
A/T 1154002 intron_variant
G/T 1154006 intron_variant
T/A 1154052 intron_variant
C/T 1154361 intron_variant
A/T 1154601 intron_variant
C/T 1154747 intron_variant
G/A 1154899 intron_variant
G/T 1154927 intron_variant
T/C 1155018 intron_variant
C/G 1155045 intron_variant
T/C 1155116 intron_variant
G/T 1155124 intron_variant
C/T 1155432 intron_variant
A/G 1155501 intron_variant
T/A 1155502 intron_variant
A/T 1155506 intron_variant
G/A 1155507 intron_variant
G/A 1155676 intron_variant
G/C 1155742 intron_variant
G/T 1155748 intron_variant
G/T 1155752 intron_variant
A/G 1155773 intron_variant
C/T 1155787 intron_variant
A/G 1155836 intron_variant
T/C 1156220 intron_variant
C/G 1156276 intron_variant
A/T 1156318 intron_variant
G/A 1156551 missense_variant p.Pro901Ser
T/A 1157068 stop_gained p.Lys815*
A/T 1157078 synonymous_variant p.Ala811Ala
T/G 1157222 intron_variant
C/T 1157247 intron_variant
A/T 1157322 intron_variant
T/G 1157361 intron_variant
T/A 1157417 intron_variant
C/T 1157577 intron_variant
C/T 1157633 intron_variant
A/T 1157817 intron_variant
C/G 1157823 intron_variant
A/T 1157826 intron_variant
G/C 1158060 intron_variant
G/T 1158541 intron_variant
A/T 1158562 intron_variant
C/G 1158706 intron_variant
T/C 1158902 intron_variant
A/T 1159060 intron_variant
A/G 1159063 intron_variant
A/G 1159113 intron_variant
C/A 1159190 intron_variant
A/G 1159235 intron_variant
G/A 1159646 intron_variant
C/G 1159711 intron_variant
A/G 1159953 intron_variant
T/A 1160045 intron_variant
T/A 1160110 intron_variant
T/G 1160133 intron_variant
A/G 1160153 intron_variant
A/G 1160282 intron_variant
G/A 1160362 intron_variant
A/G 1160606 synonymous_variant p.Asp685Asp
G/A 1161328 intron_variant
G/A 1161344 intron_variant
T/A 1161591 intron_variant
A/G 1161596 intron_variant
A/T 1161729 intron_variant
A/C 1161752 intron_variant
G/A 1161908 intron_variant
G/A 1161916 intron_variant
T/C 1162037 intron_variant
C/T 1162042 intron_variant
A/T 1162322 intron_variant
A/C 1162352 intron_variant
G/T 1162355 intron_variant
A/T 1162526 intron_variant
A/G 1162730 intron_variant
T/C 1162744 intron_variant
G/A 1162946 missense_variant p.Ala619Val
T/C 1162972 synonymous_variant p.Leu610Leu
T/G 1163020 intron_variant
G/A 1163038 intron_variant
T/A 1163050 intron_variant
A/G 1163054 splice_region_variant&intron_variant
G/T 1163300 missense_variant p.Ala529Asp
A/G 1163381 missense_variant p.Val502Ala
G/A 1163468 upstream_gene_variant
A/T 1163873 missense_variant p.Ile435Lys
A/T 1164388 synonymous_variant p.Ser293Ser
C/T 1164393 missense_variant p.Val292Ile
C/T 1164396 missense_variant p.Val291Met
G/T 1164397 synonymous_variant p.Ala290Ala
A/T 1164400 missense_variant p.His289Gln
T/C 1164401 missense_variant p.His289Arg
G/C 1164539 upstream_gene_variant
G/A 1164732 upstream_gene_variant
A/T 1164735 upstream_gene_variant
C/G 1164738 upstream_gene_variant
G/A 1164778 upstream_gene_variant
C/A 1164784 upstream_gene_variant
T/C 1164946 upstream_gene_variant
A/C 1164948 upstream_gene_variant
A/T 1165034 upstream_gene_variant
A/G 1165053 upstream_gene_variant
A/T 1165082 upstream_gene_variant
A/T 1165123 upstream_gene_variant
T/A 1165376 missense_variant p.Arg175Trp
G/A 1165460 missense_variant p.Arg147Trp
C/G 1165596 missense_variant p.Glu101Asp
G/A 1165669 missense_variant p.Ala77Val
C/G 1165728 synonymous_variant p.Val57Val
C/T 1165782 synonymous_variant p.Gly39Gly
G/C 1165867 missense_variant p.Thr11Arg

View accession wise SNPs


Sequence Details:

Protein Sequence:
>Vu_11458.1
MRIPCCSVCQTRYNEEERVPLLLQCGHGYCRECLSRMFGPSSDATLTCPKCRHVSTVGNSVQALRKNYAVLALVHSAITTANGGGGGGENFDWDYTDEEEEDGGGEEDEDDEKQRRNSRESQASSSGGCEPVIEVGGGAHQDLKLVRRIGEGRRAGVEMWMAVISGGGGVEGGRRCRHSVAVKKVTVVEGMDLDWVQGKLEDLRRASMWCRNVCTFHGTMRVEDSLCLVMDKCYGSVQSEMQRNEGRLTLEQVLRYGADIARGVVELHAAGVVCMNLKPSNLLLDANGHAVVSDYGLATILKKPSCWKARPECDSVKIHSCMECIMLSPHYTAPEAWEPVKKSLNLFWDDGIGISSESDAWSFGCTLVEMCTGSIPWAGLSAEEIYRAVVKAKKLPPQYASVVGGGIPRELWKMIGECLQFKPSKRPTFSAMLAIFLRHLQEIPRSPPASPDNGLDNKGSVSTVIEPSPVPELEVPQENPNHLHRLVSEGDTAGVRDLLAKVVLENGSNYLTSLLEAQNAHGQTALHLACRRGSAELVETILEYREANVDVLDKDGDPPLVFALAAGSLECVCSLIKRNANVQSRLRDGVGPSVAHVCAYHGQPDCMRELLLAGADPNAVDDEGESVLHRAISKKYTDCALVILENGGCKSMSIVNSKNLTPLHLCVATWNVAVVKRWVEVATSDEIAEAIDIRSPIGTALCMAAASKKDHEKEGRELVQILLAAGADPSAQDSQNGRTALHTAAMTNDVDLVQVILAAGVDVNIRNVHNSIPLHLALARGAKACVGLLLAAGADYNLQDDDGDNAFHIAAETAKMIRENMNWLIIMLMNPDADIEVRNHSGKTLRDILEALPREWLSEDLIEALSNRGVHLSPTSFEVGEWVKFKKSVTTPTHGWQGANPQSVGFVQSVPDKDNLVVSFCSGEVHLLANEVIKVIPLDRGQHVQLKEDVKEPRFGWRGQSRDSIGTVLCVDDDGILRVGFPGASRGWKADPAEMERVEEFKVGDWVRIRPTLTSAKHGLGSVTPGSIGIVYCIRPDSSLLIELSYLPNPWHCEPEEVEHVAPFRIGDRVCVKRSVAEPRYAWGGETHHSVGRISEIENDGLLIIEIPNRPIPWQADPSDMEKVEDFKVGDWVRVKASVSSPKYGWDDITRNSIGVIHGLEEDGDMVVAFCFRSKPFSCSVTDVEKVPPFEVGQEIHVIASVTQPRLGWSNESPATVGKVVRIDMDGALNVRVTGRQSLWKVSPGDAERLPGFEVGDWVRSKPSLGTRPSYDWNSVGRESLAVVHSVQDSGYLELACCFRKGKWITHYTDVERVPSFKVGQYVRFRTGLVEPRWGWRGARPESQGVITSIHADGEVRVAFFGLPELWRGDPSDLEIEQIFEVGEWVRLTENANNWKSIGPGSVGVVQGIGYEGDELDRSIFVGFCGEQEKWVGPTSHLERFDKLFVGQKVRVKQYVKQPRFGWSGHTHASLGTIQAIDADGKLRIYTPAGSRTWMLDPSEVEVVEEKELCIGDWVRVKASVSTPTHHWGEVSHSSIGVVHRMEDEDLWVAFCFMERLWLCKAWEMERIRPFKVGDKVRIRDGLVNPRWGWGMETHASKGEVLGVDANGKLRIKFRWREGRPWIGDPADLALEED*


CDS Sequence:
>Vu_11458.1
ATGAGAATCCCGTGTTGTTCGGTTTGCCAAACGCGTTACAACGAGGAGGAGAGAGTTCCTCTGCTGCTCCAATGCGGCCACGGCTACTGCAGAGAGTGTCTCTCTAGAATGTTCGGGCCCTCTTCGGACGCCACGCTGACGTGTCCCAAGTGCCGACACGTGTCCACCGTGGGGAACTCCGTGCAGGCGCTGCGGAAGAACTACGCGGTGCTCGCGCTGGTCCACTCCGCCATCACCACCGCCAACGGGGGTGGAGGGGGAGGGGAGAATTTCGACTGGGACTACACCGACGAGGAGGAGGAGGACGGGGGAGGGGAGGAGGATGAGGACGACGAGAAGCAGCGACGGAACAGCCGTGAGTCGCAGGCGTCGAGCTCTGGCGGGTGCGAGCCGGTGATCGAGGTCGGTGGCGGCGCGCACCAGGACCTGAAGTTGGTGCGGCGGATTGGAGAGGGGAGGAGGGCGGGAGTGGAGATGTGGATGGCGGTGATCAGCGGTGGCGGTGGTGTGGAAGGGGGACGGAGGTGCCGGCACAGCGTGGCGGTGAAGAAGGTGACTGTGGTGGAGGGGATGGATTTGGATTGGGTTCAGGGAAAGTTGGAGGATTTGCGTAGGGCTTCGATGTGGTGTAGGAATGTGTGCACTTTCCATGGGACAATGAGGGTGGAGGACAGTTTGTGCCTCGTGATGGATAAGTGCTATGGATCGGTTCAGTCCGAGATGCAGCGCAATGAGGGAAGGCTCACTTTGGAACAAGTCCTAAGATACGGGGCTGACATTGCCCGAGGGGTCGTTGAACTTCATGCTGCAGGTGTTGTTTGCATGAATTTAAAACCATCCAATCTTCTTCTTGACGCAAATGGTCATGCCGTGGTTTCTGATTATGGACTTGCTACAATTCTGAAGAAGCCTTCATGTTGGAAGGCACGACCAGAGTGTGACTCTGTGAAGATCCATTCCTGTATGGAATGTATAATGCTCAGCCCACATTATACAGCACCGGAGGCTTGGGAACCTGTGAAGAAGTCGTTAAATTTGTTTTGGGATGATGGAATAGGTATATCTTCCGAATCAGATGCCTGGAGTTTTGGTTGTACATTGGTGGAGATGTGCACGGGTTCCATTCCTTGGGCAGGTTTAAGTGCAGAGGAAATCTATCGAGCGGTTGTTAAAGCTAAGAAACTGCCTCCACAGTATGCTAGTGTGGTTGGAGGTGGAATTCCGAGGGAATTGTGGAAGATGATTGGAGAGTGCTTGCAATTCAAGCCATCTAAGAGGCCTACTTTTAGCGCTATGCTGGCAATATTTCTCCGTCATTTGCAGGAAATACCACGTAGCCCTCCTGCAAGCCCTGATAATGGCTTAGATAATAAGGGCTCTGTATCAACTGTGATCGAGCCTTCACCTGTACCTGAATTGGAAGTTCCTCAGGAAAACCCTAACCATCTTCATCGACTTGTGTCTGAAGGAGATACTGCAGGTGTTAGGGATCTTCTTGCAAAGGTTGTATTAGAAAATGGCAGCAACTACCTAACTTCGTTATTGGAAGCACAAAATGCTCATGGACAAACAGCTCTCCATTTAGCTTGTAGACGGGGCAGTGCAGAACTTGTCGAGACAATTTTGGAGTATAGAGAAGCAAATGTTGATGTATTGGACAAAGATGGAGATCCTCCTCTTGTTTTTGCATTAGCAGCTGGGTCCCTAGAATGTGTTTGTAGCCTTATCAAAAGAAATGCTAATGTGCAGTCAAGATTGAGAGATGGTGTTGGTCCATCTGTAGCTCACGTTTGTGCCTATCATGGCCAGCCAGATTGTATGCGAGAATTACTATTAGCCGGAGCTGATCCTAATGCGGTGGATGATGAAGGTGAATCTGTTCTGCATAGAGCAATTTCCAAGAAATACACAGACTGTGCACTTGTAATATTGGAGAATGGAGGATGTAAATCAATGTCCATCGTGAATTCAAAGAACCTGACACCACTGCACTTGTGTGTGGCAACATGGAATGTTGCTGTTGTGAAGAGATGGGTTGAAGTTGCAACTTCTGATGAGATTGCTGAAGCAATTGACATACGAAGCCCTATTGGCACTGCATTGTGCATGGCAGCTGCTTCTAAGAAAGACCATGAGAAAGAGGGCAGAGAACTGGTGCAGATACTGCTTGCAGCTGGAGCTGATCCCTCTGCTCAAGATTCACAAAATGGGAGGACAGCATTGCATACAGCTGCTATGACTAATGATGTCGACTTGGTTCAGGTTATTCTGGCTGCTGGGGTTGATGTGAACATTCGCAATGTGCACAACAGTATTCCTCTTCACTTGGCCTTAGCTAGGGGTGCTAAGGCATGTGTTGGACTGCTTCTAGCTGCTGGAGCAGATTATAATTTGCAGGATGACGATGGTGACAATGCTTTCCATATAGCAGCTGAGACAGCAAAAATGATTCGTGAAAATATGAACTGGCTTATTATTATGCTAATGAATCCTGATGCTGATATTGAAGTCAGAAACCACAGTGGCAAGACGCTACGTGACATTTTGGAGGCTCTCCCCCGAGAATGGTTATCCGAAGATCTGATAGAAGCACTCTCAAATAGGGGAGTTCATTTGTCTCCTACATCATTTGAAGTGGGAGAGTGGGTGAAGTTTAAAAAATCTGTCACAACTCCAACACATGGATGGCAAGGTGCTAATCCACAAAGTGTTGGTTTTGTGCAAAGTGTTCCAGACAAAGATAATCTCGTTGTTTCATTTTGTTCTGGAGAGGTTCATCTTCTGGCAAATGAAGTTATAAAAGTCATTCCATTGGACAGGGGACAACATGTACAACTGAAAGAAGATGTAAAAGAGCCTAGATTTGGTTGGCGTGGGCAGTCACGTGACAGCATTGGGACAGTATTATGTGTTGACGATGATGGAATTCTCCGTGTTGGGTTTCCCGGAGCATCTAGAGGATGGAAAGCTGACCCAGCAGAGATGGAACGTGTTGAAGAATTCAAGGTTGGAGACTGGGTTCGCATTCGTCCAACTCTTACATCTGCAAAGCATGGACTAGGATCTGTGACTCCAGGAAGCATTGGCATTGTATATTGTATACGGCCAGACAGCAGTCTATTAATAGAACTGAGTTATCTTCCAAATCCATGGCATTGTGAGCCAGAGGAGGTTGAGCATGTTGCTCCTTTTAGGATTGGTGATCGGGTATGCGTGAAACGGTCTGTTGCAGAACCTAGATATGCTTGGGGTGGTGAGACACATCATAGTGTTGGAAGAATAAGCGAGATTGAGAATGATGGTCTTTTAATTATAGAAATACCAAATCGACCCATACCATGGCAAGCTGATCCCTCGGATATGGAGAAGGTGGAAGATTTCAAGGTTGGAGATTGGGTAAGAGTGAAAGCTTCAGTGTCTTCTCCAAAATATGGATGGGACGATATTACAAGGAATAGCATTGGTGTAATTCATGGCCTGGAAGAGGATGGCGATATGGTTGTTGCTTTTTGCTTCAGAAGTAAGCCTTTTTCTTGCTCAGTCACTGATGTGGAGAAAGTTCCTCCATTTGAGGTGGGACAAGAAATTCATGTGATTGCATCAGTTACTCAGCCTCGTCTTGGGTGGTCAAATGAATCACCAGCTACCGTTGGAAAAGTAGTGAGAATAGATATGGATGGTGCTCTCAATGTGAGGGTCACTGGTAGGCAGAGCTTGTGGAAAGTTTCTCCTGGAGATGCAGAGCGGCTTCCAGGATTTGAAGTTGGGGATTGGGTTCGCTCAAAACCAAGCCTGGGAACCAGACCAAGCTATGACTGGAATAGTGTTGGGAGAGAAAGTTTAGCTGTTGTGCATAGCGTACAGGATTCTGGATACTTGGAGTTGGCTTGCTGTTTTCGGAAAGGGAAGTGGATCACTCATTATACAGATGTTGAAAGGGTTCCTAGCTTTAAAGTTGGGCAGTATGTTAGGTTCCGAACTGGTTTGGTTGAACCAAGGTGGGGCTGGAGAGGAGCTCGGCCTGAATCTCAAGGGGTTATAACCAGTATTCATGCTGATGGAGAAGTCAGGGTCGCATTTTTTGGTCTTCCAGAACTGTGGAGAGGAGATCCTTCAGACCTTGAGATCGAACAAATATTTGAAGTGGGAGAGTGGGTGAGGTTGACAGAAAATGCAAATAATTGGAAATCAATTGGACCAGGTAGTGTTGGTGTGGTTCAAGGAATAGGGTATGAAGGAGATGAATTGGACAGAAGCATTTTTGTTGGATTTTGTGGGGAGCAAGAAAAGTGGGTAGGACCTACTTCACATCTTGAAAGATTTGACAAACTCTTCGTTGGACAGAAGGTTAGAGTGAAACAATATGTGAAGCAACCAAGATTTGGATGGTCAGGGCATACCCATGCTAGTCTCGGGACCATACAGGCTATTGATGCCGATGGAAAGCTTCGAATATACACTCCAGCAGGATCCAGAACATGGATGTTGGACCCATCAGAAGTGGAGGTGGTAGAAGAGAAGGAGCTCTGTATTGGTGACTGGGTGAGGGTTAAAGCTTCGGTTTCAACCCCAACACACCATTGGGGGGAAGTGAGTCATTCAAGCATTGGAGTTGTGCACAGAATGGAAGATGAAGATCTTTGGGTGGCTTTCTGTTTCATGGAGAGGCTATGGCTTTGCAAGGCTTGGGAAATGGAACGGATTAGGCCATTTAAAGTGGGTGACAAGGTAAGGATCAGAGATGGACTGGTGAACCCACGTTGGGGATGGGGAATGGAGACACATGCTAGCAAGGGAGAGGTTTTAGGGGTAGATGCAAATGGAAAACTAAGAATAAAATTCCGGTGGAGGGAAGGGAGGCCCTGGATAGGAGATCCTGCTGATCTTGCCCTTGAGGAAGACTGA


Promoter Sequence:
>Vu_11458::LG3:1165898-1167898(-)
GATGCTTGCATTTCTTCAACTGTTGTCCTTCGTATTCACCAAAGGAGGGGGAGGTACCTGCAAAGATACTCCGACGCTCAAGTCAGATGTGAGTTATGGAGCTGAAGCTCTCAAGAGAGTAATTGGATACTGCTCTGAAATATTATTCAGGATCTCTAGAGCATAAAGAGAACGTACCTGGACTTGGGTCCTGTCACTGTATTTATAAGCAAAATAATAATAACCACCTTACCTAAAAGTGTGGTTAGTGGCTTTGACTGATATTTTAACTGTCTAAAATATCTAAGATATTTATGTTATTACATAAATATCCTTACTACATAACAGTTAGTATTGTTGATTTTTTAATGTGCTTAATGTTAAATACCAATATACAAATTATCTCACCCTATAAACTTTAACTTGAATGTGACCTTGTAAACCCTGTTAAGATTTACAACTCCTTATTTTATTTTTTTAATGTTGTCCACTATTATGCACTTCTCTTTTATATATTATGAGTGGTATATAACTTACATCATTTTTCTTATCATTTCTTTCATCTATGTCAATGCACTTTTTGTTTACATGATTGACAATATTGAGTCATCACTTAAAGCAGTATATTTACATATTTTCTTTATTCTTTCCCTCTTTGAGGACTTTCATTAGTTTTAATAAGGATAAAAAAAAAACTTTGAGCTTTACCATGATAAGGAAAATATACTTTTATCTTTTTATTTTATATGTTAAATTTTAGTTTCTCATTCAACTCAGACAAATATTCTTCCAATAAATAATGTTTTTTTAACCTTATTTTTATAATTATTAAAAAATAGATTTTAACTCTATATTAATTAATAAAAATTAGTTTGTAAATAAAGTTTGCACAAGAGTGAACTTTACATAAGAAATTGTCACTTATTTTTCAAAATAGCTAAAATTTAAATGAATTTAATATTATCTCTTAGGATCATTGATTTTATTTCTTTAATATTTGTTTTAATAGTAAATATTAAACCAAATATATTCTTTCCTCTTACAATTAGAACTATATATTTTTTCTACCAGATCAATTTTATAATAAAATTATATTTATAAATAAGTTACTAACATTTAATCTTGTGAATAGTGGAGAACAAATATCGAAAATAATAGAAAATTAAAAAAAATGTTATAATTGAATGAAAAACAGTTCCTGGATGGGTAGAATGATAACATCATCTGAGTATTTCCTTTTTCCATTATGTGGATGGAATAAAGGAGAATTATTTTTCCAAAAGGAGTCAATTTTAGGAAGAGTTTGAGAGGTTGCAAAAGCATAAAGAAAAAAAAGTGAGCAATGCATCTGTATTGATATAGGTGGAACTCTAAATTTAGCAAGCACAGAACTCCAAGAACCTCTCTTGCCAATCACAACCCAAACAAAACCTAGTTTAAAAGAAAAATTCAGAGATGAAAAGCACACACACATTATAAAATAGAATATAAAACCAAAAGTAGGCCTAAAAAAAACTGAAAATTATGCCACTTATGTGAACCAAAGTGTGTTGAGTTTGAAGTCCAAAGCCACCTACATCATCTAACTCTCTTTCTCTTTCTTTCCTTGTTTCCTTCCTACCCACCTAGGCCAAACCCATTTCTCACAAATGGAAAAACAATAAAGGGAAGAAAAAAAAAGAAAAAAAAGAAAAAAAAAAAGAAAACATCTAAATACAAAAATCCCTTGTTATAATTTTTCTTTACCTTTTCTTGAGCAACCACTTTCCCTGTTTTTCTCTCTCTAAAACCCTTTCTATCTCTCTAGATTTGGTTTTTGATTAGCTTAATTGATGAGCTTAAGTGGTTTCTCTGAGTTCGGCTAATGGATCTACCAATCACAGCGCTTGCCACCATTAATTCCGCGTAAAGAAGATCGTAAGCGGTTCAATTTCGGATCAAAGCGGCGCCGTTCCGTCAGTGGCGCGTGCGTATAAATAAGTGGAGAAAAGACAGAGAAAGGGATACAGAGAGAGAGAGAA


Gene Sequence:
>Vu_11458(-)
ATGAGAATCCCGTGTTGTTCGGTTTGCCAAACGCGTTACAACGAGGAGGAGAGAGTTCCTCTGCTGCTCCAATGCGGCCACGGCTACTGCAGAGAGTGTCTCTCTAGAATGTTCGGGCCCTCTTCGGACGCCACGCTGACGTGTCCCAAGTGCCGACACGTGTCCACCGTGGGGAACTCCGTGCAGGCGCTGCGGAAGAACTACGCGGTGCTCGCGCTGGTCCACTCCGCCATCACCACCGCCAACGGGGGTGGAGGGGGAGGGGAGAATTTCGACTGGGACTACACCGACGAGGAGGAGGAGGACGGGGGAGGGGAGGAGGATGAGGACGACGAGAAGCAGCGACGGAACAGCCGTGAGTCGCAGGCGTCGAGCTCTGGCGGGTGCGAGCCGGTGATCGAGGTCGGTGGCGGCGCGCACCAGGACCTGAAGTTGGTGCGGCGGATTGGAGAGGGGAGGAGGGCGGGAGTGGAGATGTGGATGGCGGTGATCAGCGGTGGCGGTGGTGTGGAAGGGGGACGGAGGTGCCGGCACAGCGTGGCGGTGAAGAAGGTGACTGTGGTGGAGGGGATGGATTTGGATTGGGTTCAGGGAAAGTTGGAGGATTTGCGTAGGGCTTCGATGTGGTGTAGGAATGTGTGCACTTTCCATGGGACAATGAGGGTGGAGGACAGTTTGTGCCTCGTGATGGATAAGTGCTATGGATCGGTTCAGTCCGAGATGCAGCGCAATGAGGGAAGGCTCACTTTGGAACAAGTCCTAAGGTTTTGTTTTTTTTTCTTTGTTTATTCTTCTGGTTAATCTTGTTGCCAGAAGTTTGGTTAGTTTGGTTTCTCTTGGTTTGTTTGGTGAGTTTCTTGGTTTTAAATTGCGGTTGTTTGATTATTGTTGTTTTAAGTTGAGGTTGCAGCTTCAAGTGACATGGTCTACGTTTTGAAACACTATCAGTATTATCGCAGTTTGATAACATTGATATGCAGGAAGGGCATCATTTTGGTTAAATTTTGGGGATAATGTATCAATGTCTAAGTAGGCTGTGCTAAATTATATGCATTGTAGTTGTGATAATCTTTCTGGTTAAAATTTGGTGAAAATGTGATGTTAATATGTCCCTGCCAGTCATTGGCTAACCAGTGTTTGGAGGGAGACGCTATCTATGTGTTTTTCTTGGCTGCCTATGTATTTTTCTTTTGGTTAGGCAACCAGAGAAATAGTTGAATAATATGTTTATGAAATTGTTTCAGAAAGAATGGGTCAGGATGATTTAGACCTTTGATTTTTTTGCTTAATATGGACTGGTATTGTTAAAGTCATTTTAGTGGAATGAATAATACCATATTACATTTCAATTTCCCTTGGCACTACGGATAATGACATTACAATTTTCCTAATGTAGATACGGGGCTGACATTGCCCGAGGGGTCGTTGAACTTCATGCTGCAGGTGTTGTTTGCATGAATTTAAAACCATCCAATCTTCTTCTTGACGCAAATGGTCATGCCGTGGTTTCTGATTATGGACTTGCTACAATTCTGAAGAAGCCTTCATGTTGGAAGGCACGACCAGAGTGTGACTCTGTGAAGATCCATTCCTGTATGGAATGTATAATGCTCAGCCCACATTATACAGCACCGGAGGCTTGGGAACCTGTGAAGAAGTCGTTAAATTTGTTTTGGGATGATGGAATAGGTATATCTTCCGAATCAGATGCCTGGAGTTTTGGTTGTACATTGGTGGAGATGTGCACGGGTTCCATTCCGTACGTGGAGCAACTCATTCTTTACTCAACTTTTAATTCTTATGTTCTTCCCTCTTTTTCCAAGTTTCTTAGTGCAAATTCTACATGCAGTTGGGCAGGTTTAAGTGCAGAGGAAATCTATCGAGCGGTTGTTAAAGCTAAGAAACTGCCTCCACAGTATGCTAGTGTGGTTGGAGGTGGAATTCCGAGGGAATTGTGGAAGATGATTGGAGAGTGCTTGCAATTCAAGCCATCTAAGAGGCCTACTTTTAGCGCTATGCTGGCAATATTTCTCCGTCATTTGCAGGAAATACCACGTAGCCCTCCTGCAAGCCCTGATAAGTAAGTCCGTTAAGCTATTATAACCATTATTGCATCTTTCTGTGCTGGTTCTGACAGATTGTGATAGATTGGGAAGTTAAGACTACTTATGATTTTTAGTATGGAAATGTGAGCTTCATTGGAATGAGCCAGATGGACAGTTGTCGTTGATGTTAAACTAGCAGCATTGTCTTATACACTGTTTATACATTTGTGTGAATACAGTGGCTTAGATAATAAGGGCTCTGTATCAACTGTGATCGAGCCTTCACCTGTACCTGAATTGGAAGTTCCTCAGGAAAACCCTAACCATCTTCATCGACTTGTGTCTGAAGGAGATACTGCAGGTGTTAGGTTAGTTGGTGTCACATCACTTCTTGTCTGAGCTAATTTATTCTTAAACTTTATAGTTTAATTCATTTGCATGCATTTCTTGAACAGGGATCTTCTTGCAAAGGTTGTATTAGAAAATGGCAGCAACTACCTAACTTCGTTATTGGAAGCACAAAATGCTCATGGACAAACAGCTCTCCATTTAGCTTGTAGACGGGGCAGTGCAGAACTTGTCGAGACAATTTTGGAGTATAGAGAAGCAAATGTTGATGTATTGGACAAAGATGGAGATCCTCCTCTTGTTTTTGCATTAGCAGCTGGGTCCCTAGAATGTGTTTGTAGCCTTATCAAAAGAAATGCTAATGTGCAGTCAAGATTGAGAGATGGTGTTGGTCCATCTGTAGCTCACGTTTGTGCCTATCATGGCCAGCCAGATTGTATGCGAGTATGTTTTTAACATAAATTATACTTAGAAGTTTCTTCTTCACTAGAACTATACTCATCTAGAATTTTTGTGGAGCAATAACAGGAATTACTATTAGCCGGAGCTGATCCTAATGCGGTGGATGATGAAGGTGAATCTGTTCTGCATAGAGCAATTTCCAAGAAATACACAGACTGTGCACTTGTAATATTGGAGAATGGAGGATGTAAATCAATGTCCATCGTGAATTCAAAGAACCTGACGTGAGTATTGACAGATGTTTCTTTATAATTAGATTTTTTTTTCCATGTGTGTCAATCAGTATATATAAGTATGATATTCTGATCTTAATTAACTATTGTGAAATGCAGCCACAGCTTATTTATTATTATTTATTACACAGGAAAGAAACAGTTTTGCCGAAGCTGTCATTTTTGTCATCTTTTTAATTTCACATTTATTGTTGTCTTCATGTCCTGTTCACACCTTAACTTGGGGTGTCACTTTCTTGTTTAAAGATGCAGCTCAGCCTGTTGAGTTGCTATGAAGTATGAACTACTGTATTATTACTTTTTCTTGTTCTTAGACACATCTATAGTTGTAAACATTTAAGGATGGGAATAGGAGAGTGACATTTTTTGTATGTCTATTCTATGTCTAAGCTGCATCTTTAGTTCAATTTGTAATTTGAAGTTGATTGAAGGAAGTGTGCTTGTTTCCTTAAATGCTGTTGGATTTTGTGCATGTTTTTGGCTTTTACTTGGGATTTTATGCGGAAATAGTTGGATTTGATTTTACATCTTTGGATGATACTTTTTCTTTTTACTTTACGGTAAACTTCATTAATTGCCAATGGACCATTATTAAAAAACCAAAAAGGAGAGAAAGTGAGTTATTCCTGTTTTGAGTTTTGAATCTGACAGTGTAAATACTTCGTAGCAACTCAGCCTGTTGAGTTGCAATGAAGTATGAATTACTGTATCATTATTTTTTCTTATTCCTAGACACATCTATAGTTGTAGACATTTAAGGAGCGGAACGGGGAAATTTTTACGTCTAATCTGCATCTTTAGTTCAATTATTGATTTGAAGTTGACGGAGCAAAACTTGCTTGTTACGGAAAATGCTGTTGGATTCTATGCATGTGTTTTTGGATTTTACTTGGGCTTTTATGCATGCAGTGTTGGATTTTAAGTTGTATCTTTGGATGATAGCTTTTTCCTTTCACTTTACAGTACAATATTTCTATACTGTCATTAATTGCCCATGGACCATTATGGGAAAACCAAAAATGAGTGAAAGTGAGCCATTCCTGTTCTGAGCTTGAACCTGGCAGTATAAATACTTCATATCTACTTTCCACGAAGTATGAATTACTGTATTAATTTTTTTTTCTTATTCTTATACACTTCTATAGTTGTAAACATTTAAGGAGGGGAACAGGATAATGGCTTTTATTTTATGTCTATTCTACGCCTAATCTGCATCTTTAGTTCAAGTAATGATTTGAAGCTGACTGAGTGAAGCTTGCTTGTTGTTGGATTTTGTGCATGTGTTTTTGGTTTTTGCTTGGGCTTTTATGCATGCATTGTTGGATTTTATATTTCATCTTTGGATGATAGCTCTTTGCCTTTCACTTTACAGTACAATATTTCTAAACTACCATTAATTTCCAATGAACCGTTATAGGAAAACCAAAAATGAGAGAAAGTGAGTCATTCTTGTTTGGAATTTGAACCTGATAGTATAGATACCTTTTTTATTGGTTCATTATGTAAAAAGGCTTTATACTCTGGGTAACTTGCCAGCTCAGCATAGTTAGTTACTGCAAGCTGCTGTTTTGGTTAAGATTTGGACAGATATTTGTACAATAAATCCTGATCCCTTTAGAGATATAGACATTTAACAGCAAACTTTTCCGTTTCTCTAAAGTCATCCTAATCTCAGAATTCTCCAGAACCAATTCTTGATCCTGATTTGAGTTGTAAAGGAAGTTCCTGAAAAGTTTTCATTTTTAAGTGATAGTTTCTATTCTTCCTTAATCCTTACGATGGTTACTGAGAAATTCATTGCAAATTCTGCTAAAAAATAAATTATATTTAATCAAGTAAAATATCACTGGATTCAGTCTGTTGTTTTTGCAAAGGACCATTTTAACTTTATCTGATGATAACAATATCGCATTGCTTAATTGCTCATCATATTTCTTGGAATTTCAGATTTAAAATTTAGGTTGCTTCTGTTTTGAAGTTATAGTATTAGAAAAGAAAATTCTTTTAACATGTCATCTTCTAGATAATTGAACCCCCCATATTGTGAACTGTATCATGTGTTAAATTGATATTTTGTCTCACATGCATATATAATAATCCGTTAATAGTACAGTTTTACTCTGGTGTTGCAGACCACTGCACTTGTGTGTGGCAACATGGAATGTTGCTGTTGTGAAGAGATGGGTTGAAGTTGCAACTTCTGATGAGATTGCTGAAGCAATTGACATACGAAGCCCTATTGGCACTGCATTGTGCATGGCAGCTGCTTCTAAGAAAGACCATGAGAAAGGTATCCAAAACTTCATTGTTTGATAATGATTTGAAAATTTGACTATTTTTTCAACGTATTTATTTTACTTGGTGCATCTAGAAATTCTTCAATAATGGATATTATCAATTTCAAATAATGGATAAAAAAGGAAGGAGTGTTGAAATTATGGGTTTAGGCATAGAGGAAGAGAGGAATGAAGGAAAAAAAGAATGGAACACGGAGCTGATATTCACCAGTGTCTGACAATGTATTGATATTTTTAAAACCTAGAGCACTAACCCTTATTATCGCTTATTGTGATCCTAACTAATTAAGGAAACAAATCATGATGGTAATTTAAAATATGATAAAATATTTTCATATGTTCTAACCAATAGAATCTCAATTGTAGGAAGATAAGGCCTAACAGATCTGTGAAAACTTTAAGTAGATATTGGCCTGTTTTAGATTAGCTGTGGAAGACCTAAAAGTTCTGAAATAACAGAAAAAAAAAATCAAAAAAAGTTTGTAAAAATTTAGCAAACCTGGCCCCATCTTCAGTGACAACCTTAAAGTAGCCACTGGCTAAGCCTCAAAGGGACTTGATGAAGATATTCTATCCCACAAGAAGTACAGAAGGTGCGAGACTGAATCGTGCATTCTACTCCCATGATTAATACACCAAAGAACTTCAAAACTGCTAATGCCACAAAATTTATACTTGCTATTTATTGACAAAGCCTTGATCAAACTAAATTATTTCAGAGGAAAGGTCTGGACCAATGCTCTCCAATAAACCGTAGTATATTATTCCATGCAATGTTGTTGAATAACTGTTATAGTTCTACGATAATGCTATTATGTGGTGTCTTTTGTCCCCTCTGCAATGTGTGTTTATATTGTGGAATTTTGGCCATTTGCCATTCATCACCTTGATTCCATGCGAAAATTGACGCCTTATAGTGCAATTGTTTTATTGAACCTGAACTACAACTTTGCACATGACACATGCAGCTGAGGCCCAATTAATACAAAAAACCATTTCTATACCATTGTCCAATAGAAATTAAGCTTGTTTTGACCCATATTGCTACCCAAAATCATAACTTCTTATTTTTAGAACTGCCTACATACATTGTTCTGCTAAATTCCATGATTTTCCCAAGATTGAATAGTTTTTAACGGCCTCGTTGATCGGATGTAGGAGTCATTATTTAACAAGCTATCTTGAGTAGATATCCGAATCTGATCTTCCGCACACTTATTTTACTTGAAGAGTTCGAACAGACATAATTTGTTTATTTAGAGTATTATAATAATACGCTGTGAAGTCTATCAATTTGCTAATCGATGATCACCAAAAGGATTTGTTTCCTAATTTCATTTGCTATCCTTATTAATTAGGGGATAGGTAGGAGTCTTATTGTATTTGTGAGATTTGGTCTTTAGTTGTAGTACAACTTATGTGCTTGTTCTAACTCTGCATAAACCAATTTTAATTCTTTGTATGTCCACATCATATCAAATTATTATCATTGCATATAAAAATATAAAAAATAGAGAAAAACTACAAAAGTTCATTTTTTTTTTCTAATTTAAAAGCTGTAGTAGCCATGGCAGTAATGGTGAAGACAATGATGAAAAAGGAGACGAGTAAATGTAAAATATAAGATCAGAATACCCTAGAGTCTAACTCATGCCCCAGCCCAAACATTAAAATATGACAGCCCACCCTAAATATCCAAAATGGTTGTCTTTTCTCAAACAACTAGCAAAAGCCGCTAGCAGTGACTTGTCCTGTCACCTCCAGTGTGTTCTTCCTGCGACCAGCCAGCAATGTGACTCAAGATGGTGATCTTTGGTGTCTATCCTTCTCCTTCACCCGCAGTCTTGCTATTTTGCATGGTTTCTCTGACTCATCCTTGTGCTTGTCGTGTTGCCTCTCTTTCTGACTAAACCAGTCAATGTCCTATTCTGTTTTGCTATGCTCTGACTTTTATGAAAATTCCTCTGCACTGCAATTCTATCTCTGCAATTAAATACAAAAATGCATGTTCTCTGTATTTCTCCCATTATCTGTATTGCCATCTGCCGTATTTACATTGTGGATCTATGGCTGGTCATCATAGCCTGTTATCTGCCATTGATAACACCTCGTCAAATTAATTCTTCAAATTTGGGAGTTAATACACGGGTATTTTTAATATCATTTATGCTATTTATTCTCTTCATTGACTTAATCGAATTCTCTGATCTTGTTTGTCCGTGCCAAATGTAGAGGGCAGAGAACTGGTGCAGATACTGCTTGCAGCTGGAGCTGATCCCTCTGCTCAAGATTCACAAAATGGGAGGACAGCATTGCATACAGCTGCTATGACTAATGATGTCGACTTGGTTCAGGTAAGTGAATGAGCTTCTTGATGACAATGATTGAGCCTCTTGGTTATGATTTAGTGTCTGTAAATATATTTTTTGGTGCTAAAATATGCAACTTTTGTACTTCATGTTATTATGTGTTGGGTGTTTTGAGTAGGTTATTCTGGCTGCTGGGGTTGATGTGAACATTCGCAATGTGCACAACAGTATTCCTCTTCACTTGGCCTTAGCTAGGGGTGCTAAGGCATGTGTTGGACTGCTTCTAGCTGCTGGAGCAGATTATAATTTGCAGGTTTTCATTCAAGTTCTCAATTTCCTGTTTGATCATTTACAATTATAACTAGGTACTGTTGTACTTGTGTGGTTTTTTTTTTTTTTTTTTTTTTTGTAAGATGAGGAGAATGGGAGCATACCATTTTAACGTAGCACTTGTCCATAAAGAAATGTCTACGTCAAAAGTTGGTATCACCTTCGTACATTGTTATGGATGATGTAGAAATTTCAATCTCTGGCAGCATATTGAATATGTTGTTAAGTCTTGTTTCACCCCGATTTCTCATATAGTTCATAAAACTTTCTATTTTCTACCTTAAATCTTTATCGAATGATATATAGTTTGCTGAGTTCAGTGTCTGATGTAGTCATTCTTTATTATTGAGTAATCCAAGCTTAATGGTGTTGATACCTGTAAAGGTGGTTGAGGGGCTAACAAATCTAAGGAATGTGATTCCTATTACAAATCAACAGATTAAATAAACTGGAGAAGACAGAATATAATTGACTTTTATTCTTGGGCGTGTGATTGTTTCCATTACATTAAATATGTCTTTGTGAATCTTTTTAATTTGTTGTGCTCTTTATTTTTATATATATTTGAACGGTTTGCACTGGATTTTATGGTGAACCCTAAAAGTGTGCGACTAGTGTTTAACTTATGACAAAAGCACGTATTTTTGGCTTCAATTTTGATTACTTAGCAGAAAGAATTGGAAGTTGACATGTTCCCTGTAGTTTGGAAGGAATCTTTTCCGTTTTGTCCTTGCCATTTAATGTTCTAATATAACTGTCAGGATGACGATGGTGACAATGCTTTCCATATAGCAGCTGAGACAGCAAAAATGATTCGTGAAAATATGAACTGGCTTATTATTATGCTAATGAATCCTGATGCTGATATTGAAGTCAGAAACCACAGGTAAAGGCACTTCATTAAGTTGTGATTGTTATTTTTTGGACATCATACTTATTTGTAAAATTATTGTCATTACTTTGAAACTGCAACTAACTGTTTCATGTTAGTCCTATTTAACTGATTATCGCGTGACTGATGGGGTTATGTTTTTGTGATAGTGGCAAGACGCTACGTGACATTTTGGAGGCTCTCCCCCGAGAATGGTTATCCGAAGATCTGATAGAAGCACTCTCAAATAGGGGAGTTCATTTGTCTCCTACATCGTGAGTGGAAGACATTATTATATGCTAGCTTTTAGTTTTGAGATTTATTGTGTTCCCATATTTGAGTAATATGTTTAAAATTTTGTTTATTGATGACTATATAGATTTGAAGTGGGAGAGTGGGTGAAGTTTAAAAAATCTGTCACAACTCCAACACATGGATGGCAAGGTGCTAATCCACAAAGTGTTGGTTTTGTGCAAAGTGTTCCAGACAAAGATAATCTCGTTGTTTCATTTTGTTCTGGAGAGGTTCATCTTCTGGCAAATGAAGTTATAAAAGTCATTCCATTGGACAGGGGACAACATGTACAACTGAAAGAAGATGTAAAAGAGCCTAGGTATAATTTTACATGACTGTGACACTTTCTTTTCTTAATTTTTTGTATGCAAGGGCTTCTTTATATTTGATGTCTATTAGATACATTTGGTATATGGTTTTGGGCCATTCCTGTGTAATGCTTTATACTTAAGATTAAAAAAGTGAGAAATATATATTTTAGAGGGCTTGAAAGACCTCTCTCATGATCTTCTATTTATAATGATAGAAATATGATACAATGAGAAGATGAAAGATCGAAGAGTGCACTAGAATCCTAGGTACAACTCATTGGTATAACAGGAAATAGTTCCCAACATAACTACTTTCTACCCAAATATTAATACTTATGCTAGCCATATGTATATATTGTCCTAAGCTGTGCTAATTGGAAAATCAAGAGGAGGGTTATATCTCATAAATGTATACTATTTTTCCCTTCGTAGTATCTGAAGCCTATTCCTCTGAGTGGTGTCTTCTTTGTGAACCATTGTTTATCAATGTCAAAATTTGCCTTGCACACCTTCTGTGTCGCCCCTGCCATCACCATTTTGACCAGCGACTACACCTCGCCATTGTGCTGCTAACATGGTCACAATGTCGCGGTCTCGTCCCAGTTGTGGATGTGTTTTTCTCTCTTCAAGTCTAGTGCTTCTCTCTCCTCCACTTGCCCTTAGTGACTTTGAGCATTGGTCGGTGTGAATATGCTATTTTTACTATGTCAATGTCCCACTCTCCATTAACTACTTAGATAGCAACAATTATGACACTTGGACATCTGATATCAAACTTTTGCTTAAGGGATAAGGTTATATTGACTATCTTACCTAAACAACGGACTCCATTGATTAAAAGATCGCTCTCATTGGTCCAAAGTTGATTTTGGAGTTTGTAGTGTTCTAAAGCTGACATTTCATCCTTCCCTGAGGCAAATATTTTGTGCCCATGAGACATGTGGTGGGGTTTGGGAATAGGTTTGAGTGTTTTACACCAATGATACTCAATGCCTTTATGGCATTTGTCGAAATCTCGAGTACCATCGCTCCTAGATGCTTTGATGGCTGAGTACTTAGGCAAAGTTCATGGTCTCCTACATGACTGCAACGAACTGTTGCCCCTTGCTGCCACTCTTGTCTAGGAACTTGAGTAACGCCAAAACTTCTTTATGTTAATGGCCTTGTATGGGCTTCTTGATTAGCATTCGTCAATTCGTGATCAATTTTTGAGTTCTACTATACCCACATGGAACTTGCTTGGTCCATTTTATTGCATGTGTTGGGTTGGATACCCCTTGACATACCTTTAGCTATCCCTCCTAGCGATTCCTTGGCTTTAGTATTTCAATGTGATGATCGTAATTGCTCTCAGTTGGTAATTGCTCTCACTTGTGTTACACAATTGATCAGTTTTATTCATTGTATGGTTGCTCCCTTAGTCTATTGTTGGTGGGCATACAACATTTGTGCCCACTGCTTTTGGCGACACCCCTTTTGATGCTTCTCGACCTTTGGCTCGTTTCCATGACTTCCTCAAAACAGTATGAGGAAGATCAAACCTCTAGTTCTACTACTTTTGTTCCCCACATAGGCATTTCATTTGCTGTCTCACTCACTCCACCTCCCTTGGTCCTTGGGTTTGGGCTTTGGTGCCGTTGGTCATATCTCTGGTATTAAGTCTTTCCTCTTCTGGTTAATGATGGCTTTTGAGCCTTGTCTTATGTTGATACTATTCACCTCCCTTCTCTATCCATTTACAATATACTTTATATTCCTATGTCTATTTAAATTATCATCCCGTAGTTGTCTCACATGTTCCCTTGATTATATTATCTCTTTTACTAGACTACACCCTTGCAGATTGGAGTTCAGCTCGGATGATTAGCATCAACAGCGAGTATTATGCTCTCTATCAACTTAGGACTTCTACTCATGCAAGCTTTGTGGTGGATTTCCCTTCTTTCATCCATGGTCAATTAGGTCATCCTAGCTTTGCTAAGCTACAACATCTTGTACAGTGTTTGTTGAATTTGTCCACCTTTTCATGTGAGTCTTGTCGATTATGCAAACATAGTTAGTTGTAGTTCTTTTACTAGTAGTGTCCCCACTAGAACTTTGTCTCCTTTTCCTTTTTAGTCCACTCAAATATGTGGGACTCGAGTTGTGTTACATTCATTTTAGGATTTCCATATTTTGTAACATCTATTGATGATTATTCTCAAAGTCTTGGTTGTTCTTAATGAAAATCATTGAGTTGTTTTCCATATTTCAATCTTTTTATAACGAAGTTATAAATTAGTTTAGTATTTCTATTTGTAACTTTTTGTATTGATAACACTCTTGAGTACCTCTCCCATTCTTTCTAGACATTCATGGCTTCCCATAGTGTTTTTCATCAGACCTTATGTGCCTATTCCTACAAAATGGAGCGCCAAAGTGCAAGAATAACCCTTTTCTTTTTCATGGTTGTGTTCCTCAATAATTTTAGGGTGATGTTTAACGGTGTGCTATCTTATCATTCACATGCCACCTTGTGTTCTTATTAACCAAATACCTTACTCTATTTTTGTTTTCTCATCAATCTCTCCACCCTTTAACTCCTCGTGTTTTTGGGCCCACCTTTTTGTTCATAATCCCAATTTTGATCTTAATAAACTATTGGCTAGGTCTCATAAGTATGCCTTCTTAGGCTACCCTTGGTATCATAAACGATATAAGTGTTTCTCACCCCCTTTTATTGTTATTTGATTTCAAGTGATGTCACCTTTGAGTCTTCTTCCCACTTTGCGATGATTCCCTTATGAGAGTTTCCAAGCCCCTTTTACGAACCCCGTTGTCTTTGATCCCGTAGACATATTTAGTGTAATGTCAAATCCACCAACTTAGCCTCCTCTCAAAGTTTATCATTGCAGGCAACACACACTTTCCTATTGCGGCACCTATTGATATACTTCGATGCCAACTCTTTTTCTCCTCTGGTTATGCCTATTGAGCATGATCTACTCATAATCCTTCCCCTCATTATCCCGCCTCTAATTAACATTGGTTATCTCCATCCCATTACATTCGTCTCTCTTTCATTTCTTACGTGTCTAATCCTAAAAGTGTAGGTGATGCCTTCACCCACTCTTGTTGGAGACAAGCTATGCTGGATGATATGTGCTCTTTAGAATAGTGATATATGGAATCTTGCTCTTTTGTTTCTTGGGAAGTCAACTGTGGGTTTTAGGCAAGTTTTTGCAATCAAAGATGACTTTGCCTCTGTTATATTTTTCTTAGCCATGGATGCACTTTGATGTTGGCCACTCTATTAGTTGAATGTTAAAAATGCCTTCCTATGTGATGATTTATGAGAGGAAATATATATGAACCAACTACTTCGGTTTGTTGCTCATGGGAAGTCATTTGGTTAAGTATGTGGAGTCCGCAAATCTTTGTATGATCTTAAACAATCTCCCAGGGCATGGTGTGGTAGATTCAATCTCCCAAGGCATCTCTTGCTCTCTTTCAAGATCTATGGCCACCTTCCACGATTTATCTGGCTCTACCACCGGCCGCTTGCCAAGGTTTCACCTTACCATAGAGGGACGTACTCGTCTGAGCCCAGTCACCAGACTTGAACCACTGGCTTTGATACCAATTGTTAGGGAGGGACAACAGATACATAGGTCTCCACAATGGTAAGATATTGTCCGCTTTGGGCCAAGCCCTCATGGATTTGCTTTTGGTACCAATCCAAAAGGCCTCTTACCAATGGAGGTATCTTACGTGTATATAAACCCATGTCCATCGATTATTTTATCCAATGTGGGACTTTGTTTGTATTCTAACAATCCTCCCCTCAAACAAAAGACTATGGTTCTCCGCCTTCCCTACAGCAAAAGTCTTTATTTATATACGAGTACACCATGGTCTACATGAAGCATCTCTTGCTCTCTTAAACAATCCATGGCCACCTCCCATGATTTATCTGGCTGTCTGCCATCGGCCGCTTGCCAAGGCTTCACCTTACCATGGAGGAACGTACTTGTCTGAGCCCAGTCACCAAACCTGAACCATCGGCTCTGATACCAATTATTAGGGAGGGCAACACATACATAGGTCTCTACAATGGTAAGATATTGTTAGCTTTGGGCCAAGCCCTCATGAATTTGTTTTTAGTACCACTCCAAAAGACCTCTTACTAATAATGGTATCTTACGTGTATATAAATCCATGTCCATCTCTTGTTTTATCTAATGTGGGACTTTGTTTTGTTTGTATCCTAATATTGGTTACCCCGTTAGTAGTTGGTTATGTTAGTTTAAGAAATACAAGGGGTTATGCTAATAGGGCTGCAATTGATTTGGCCCATTGAGGGTGGGTTTATCTTATAGACCTGTAGTTGTATTTAAATAGGAGGAGGGGTTGAGAGGGATTTCATCTTGTCATTTGAGAGGATTGGTGCCTTTGGGCACTAGAATATGCAGACCCTCGAAGTTCTGCAATTATACTGTAATCAAGGGAATTTTCCCATTTTCTCTATAAATCTGATTCAGTTCATATCATTTGATTCGAGTGCCTAATTAGTTTGGGGTCATCATGCTACTATTTAAATCTTACTGTTAGGTGGATTTATCATACTGTTTTATTTATTCTCTATTCAAGGCTTTTATTTACAAGAAAGGAAATGATTGTGTGGAAGACAACCTTGTGCATGACATGCTTGCAATCCTTGATGATTTTGCGTTAGTGTTTAATATTTATTACTTTTTGTCTATTTTAGATTTGGTTGGCGTGGGCAGTCACGTGACAGCATTGGGACAGTATTATGTGTTGACGATGATGGAATTCTCCGTGTTGGGTTTCCCGGAGCATCTAGAGGATGGAAAGCTGACCCAGCAGAGATGGAACGTGTTGAAGAATTCAAGGTTGGAGACTGGGTTCGCATTCGTCCAACTCTTACATCTGCAAAGCATGGACTAGGATCTGTGACTCCAGGAAGCATTGGCATTGTATATTGTATACGGCCAGACAGCAGTCTATTAATAGAACTGAGTTATCTTCCAAATCCATGGCATTGTGAGCCAGAGGAGGTTGAGCATGTTGCTCCTTTTAGGGTAAGAGAAAACGCAGATAACTTTCATTCTATTGCGTTTATTTGTCTCCTGTCTCCATTATATGACTTTAACAAATTTGTCTTACAGATTGGTGATCGGGTATGCGTGAAACGGTCTGTTGCAGAACCTAGATATGCTTGGGGTGGTGAGACACATCATAGTGTTGGAAGAATAAGCGAGATTGAGAATGATGGTCTTTTAATTATAGAAATACCAAATCGACCCATACCATGGCAAGCTGATCCCTCGGATATGGAGAAGGTGGAAGATTTCAAGGTAATCCTTTCCGTTGAAGTTAAATTATTCAATACTTTTGTTTGTTCTTTCTGTACATTTAATGTCAGATGTCTTATTGGGTAGCCCTATTTAATTATTCATTTGGCCAAAGCAGGTTGGAGATTGGGTAAGAGTGAAAGCTTCAGTGTCTTCTCCAAAATATGGATGGGACGATATTACAAGGAATAGCATTGGTGTAATTCATGGCCTGGAAGAGGATGGCGATATGGTTGTTGCTTTTTGCTTCAGAAGTAAGCCTTTTTCTTGCTCAGTCACTGATGTGGAGAAAGTTCCTCCATTTGAGGTGGGACAAGAAATTCATGTGATTGCATCAGTTACTCAGCCTCGTCTTGGGTGGTCAAATGAATCACCAGCTACCGTTGGAAAAGTAGTGAGAATAGATATGGATGGTGCTCTCAATGTAAGTTTAATCTGTATTTTATAGATATTATGCATGATTCTACGACTTGAATGACTTTAAGCTAACTATAACATCTGAAGTGTCTTCCATAACTACATTGCTACACCGGACCTAATACTGTTTTCTTTAACACTGTTATGTAGTGATACTGTGTTGTGTGAAGTTTATAACACTGTCTAAATATGCCTAGAAAATAGGCTTCATCTGGGGTGATTTTGCTGTCTTTGTGGCAGAAATTAAATTTTACATAAAAGCTTTGAACAAGCCCAGCTGTAACATGAAATTCTATCTTTTCTATCAGTATCTGTATGGCTGGTTTAAACTTAAGAAGTGATGCCAACAAATTTCAGTGACTGGTTGACTATTATTAAAATATTATAATATTAAATGAGTAAGCAACTATTAATTGTCCAAGTTTATCCGCCTAGTAGGGTGGACTGGGTATCAGAATTTGCTTGTCATGGCTGTAGTTTCTAAAATAATGGTGAGATGGTGCTTGACAAATAACAAGTGTGCAAATGTCATTTTAAGAAAACCACCTCCTTTTTAGCTATGCTGTAGTCCCTGCCGTATGAGAAAATTAGACTAAAGTATTAACCTCTGTGACTAAGGAATTAAACAAACTAAATATAAAATATTTAGTCAACAATTGTATTAGTGATTTCATCTCGATAATTAATATATGTAAGAATTGATTTTTGCTGGTTTCTTTGTAGGTGAGGGTCACTGGTAGGCAGAGCTTGTGGAAAGTTTCTCCTGGAGATGCAGAGCGGCTTCCAGGATTTGAAGTTGGGGATTGGGTTCGCTCAAAACCAAGCCTGGGAACCAGACCAAGCTATGACTGGAATAGTGTTGGGAGAGAAAGTTTAGCTGTTGTGCATAGCGTACAGGATTCTGGATACTTGGAGTTGGCTTGCTGTTTTCGGAAAGGGAAGTGGATCACTCATTATACAGATGTTGAAAGGGTTCCTAGCTTTAAAGTTGGGCAGTATGTTAGGTTCCGAACTGGTTTGGTTGAACCAAGGTGGGGCTGGAGAGGAGCTCGGCCTGAATCTCAAGGGGTTATAACCAGTATTCATGCTGATGGAGAAGTCAGGGTCGCATTTTTTGGTCTTCCAGAACTGTGGAGAGGAGATCCTTCAGACCTTGAGATCGAACAAATATTTGAAGTGGGAGAGTGGGTGAGGTTGACAGAAAATGCAAATAATTGGAAATCAATTGGACCAGGTAGTGTTGGTGTGGTTCAAGGAATAGGGTATGAAGGAGATGAATTGGACAGAAGCATTTTTGTTGGATTTTGTGGGGAGCAAGAAAAGTGGGTAGGACCTACTTCACATCTTGAAAGATTTGACAAACTCTTCGTTGGACAGAAGGTTAGAGTGAAACAATATGTGAAGCAACCAAGATTTGGATGGTCAGGGCATACCCATGCTAGTCTCGGGACCATACAGGCTATTGATGCCGATGGAAAGCTTCGAATATACACTCCAGCAGGATCCAGAACATGGATGTTGGACCCATCAGAAGTGGAGGTGGTAGAAGAGAAGGAGCTCTGTATTGGTGACTGGGTGAGGGTTAAAGCTTCGGTTTCAACCCCAACACACCATTGGGGGGAAGTGAGTCATTCAAGCATTGGAGTTGTGCACAGAATGGAAGATGAAGATCTTTGGGTGGCTTTCTGTTTCATGGAGAGGCTATGGCTTTGCAAGGCTTGGGAAATGGAACGGATTAGGCCATTTAAAGTGGGTGACAAGGTAAGGATCAGAGATGGACTGGTGAACCCACGTTGGGGATGGGGAATGGAGACACATGCTAGCAAGGGAGAGGTTTTAGGGGTAGATGCAAATGGAAAACTAAGAATAAAATTCCGGTGGAGGGAAGGGAGGCCCTGGATAGGAGATCCTGCTGATCTTGCCCTTGAGGAAGACTGATCTTGTACAATAACTAAATATTCTAAATTAGCTCTTTAGCCTATGTTTTTCTGGGCTGAGCTTGTGCAAAGTGGAAAGCTTTATGCTTTCTGCAACTAGATATTCTCTGAACCATATAACTCCTTTCTCAAGGTTGGAATGCCGTTTGGCCGCATATATTGATGTTAATAAATAGAGTGAAAGAATTGAAGCTGTGGAGATAGGAAAATTTGCTTGTTGACAGAAGGTGGTGCGGAGATATAAAGGCTCATTTGTTTCATTACTCACAAGTTTGTAGTCCCAGATTTTGAGGTGTATATCATCATCGTCATATGTATGTTTATTGCATATTGTACAAATTGTACTCAACAGTCAACTTAATGCATTTTTTTGACTCACCGGTATGCAGTTGCATAATTCTTATTAAATAGAATTTATTCCATTAT

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