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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_01616 LG1 18920075 18925992 PREDICTED: homeotic protein knotted-1
Map

Annotations  
category   relationship type   keyword
Biological Process   involved in   regulation of transcription by RNA polymerase II, cell fate commitment, cell fate commitment, xylem development, regulation of transcription by RNA polymerase II, regulation of transcription by RNA polymerase II, cell fate specification, regulation of transcription by RNA polymerase II, xylem and phloem pattern formation, cell fate specification
Cellular Component   located in   nucleus, nucleus
Molecular Function   enables   protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, DNA-binding transcription factor activity, RNA polymerase II-specific, identical protein binding, protein binding, protein binding, protein binding, DNA-binding transcription factor activity, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, protein binding, RNA polymerase II cis-regulatory region sequence-specific DNA binding, protein binding, protein binding, DNA-binding transcription factor activity, protein binding, protein binding, protein binding, protein binding, RNA polymerase II cis-regulatory region sequence-specific DNA binding, protein binding, protein binding, protein binding, protein binding, protein binding, transcription cis-regulatory region binding, transcription cis-regulatory region binding
SNP Position Effect Amino acid change
A/G 18920572 synonymous_variant p.Ala340Ala
A/G 18920608 intron_variant
G/T 18920654 intron_variant
A/G 18920663 intron_variant
C/G,T 18920783 intron_variant
G/T 18920860 intron_variant
T/G 18920865 intron_variant
G/A 18920906 intron_variant
T/C 18920931 intron_variant
T/C 18920950 intron_variant
A/G 18921132 intron_variant
T/G,* 18921151 intron_variant
A/G 18921180 intron_variant
T/C,* 18921196 intron_variant
T/C 18921197 intron_variant
T/G 18921202 intron_variant
G/A 18921241 intron_variant
T/A 18921244 intron_variant
T/G 18921298 intron_variant
G/C 18921417 intron_variant
C/G 18921530 intron_variant
G/T 18921577 stop_gained&splice_region_variant p.Ser332*
G/A 18921640 missense_variant p.Pro311Leu
A/G 18921687 synonymous_variant p.Ser295Ser
C/T 18921705 synonymous_variant p.Lys289Lys
C/T 18921758 missense_variant p.Glu272Lys
C/T 18921767 missense_variant p.Glu269Lys
T/C 18921869 intron_variant
T/A 18921902 intron_variant
T/G 18921919 intron_variant
A/C 18921930 intron_variant
A/T 18921933 intron_variant
G/A 18922035 intron_variant
C/A 18922047 intron_variant
G/T 18922069 intron_variant
A/G 18922072 intron_variant
A/G 18922149 intron_variant
G/C 18922183 intron_variant
T/A 18922255 intron_variant
T/A 18922285 intron_variant
T/C 18922295 intron_variant
A/G 18922297 intron_variant
C/A 18922356 intron_variant
T/C 18922379 intron_variant
A/C 18922398 intron_variant
T/A 18922399 intron_variant
T/A 18922404 intron_variant
T/C,* 18922498 intron_variant
G/A,* 18922590 intron_variant
T/C 18922732 intron_variant
T/C 18922772 intron_variant
G/C 18922815 intron_variant
G/A 18922991 intron_variant
T/G 18923073 intron_variant
T/C 18923126 intron_variant
T/C 18923129 intron_variant
G/T 18923152 intron_variant
C/A 18923158 intron_variant
G/T 18923166 intron_variant
G/A 18923169 intron_variant
A/T 18923171 intron_variant
A/T 18923185 intron_variant
G/C 18923209 intron_variant
A/C 18923242 intron_variant
C/T 18923333 intron_variant
A/G 18923459 intron_variant
G/A 18923471 intron_variant
C/G 18923592 intron_variant
T/A 18923937 intron_variant
A/T 18923943 intron_variant
T/A 18924025 intron_variant
A/T 18924050 intron_variant
G/T 18924113 intron_variant
A/G 18924156 intron_variant
T/C 18924511 intron_variant
A/G 18924700 intron_variant
G/A 18924782 synonymous_variant p.Thr193Thr
C/G 18924836 synonymous_variant p.Ala175Ala
A/T 18924840 missense_variant p.Val174Asp
G/A 18924908 intron_variant
T/C 18924922 intron_variant
G/C 18925009 intron_variant
G/A 18925231 missense_variant p.Ala92Val
A/G 18925347 synonymous_variant p.Ser53Ser
G/A 18925371 synonymous_variant p.His45His
G/A 18925419 synonymous_variant p.Pro29Pro
G/A 18925428 synonymous_variant p.Tyr26Tyr
A/T 18925449 missense_variant p.Ser19Arg
C/A 18925463 missense_variant p.Ala15Ser
A/T 18925530 5_prime_UTR_variant
G/C 18925542 5_prime_UTR_variant
T/C 18925697 5_prime_UTR_variant
C/A 18925704 5_prime_UTR_variant
G/T 18925713 5_prime_UTR_variant
T/A 18925722 5_prime_UTR_variant
G/T 18925731 5_prime_UTR_variant

View accession wise SNPs


Sequence Details:

Protein Sequence:
>Vu_01616.1
MEEYTNNNHLSENTAPSPSSRPNFLYSPPSGGSHSHSHSHSHNHHQHQHQHHSHHHQHHQFPINTFHLQSGGSDHCFQSDQVAPHPSVKTEASTSQLHAPIFHYPLMRGTLHNNTTTTMHHHPHQQGGSPTSSTTEVEAIKAKIIAHPQYSNLLEAYMDCQKIGAPPEVVARMVAAKQEFEARQRSSGGSRDTSKDPELDQFMEAYYDMLVKYREELTRPIQEAMDFMRRIETQLNMLCNGPVRIFSEDKCEGVGSSDEDQENSGGETELPEIDPRAEDRELKNHLLRKYSGYLSSLKQELSKKKKKGKLPKDARQKLLNWWELHYKWPYPSESEKVALAESTGLDQKQINNWFINQRKRHWKPSEDMQFMVMDGLHPQSATLYMDGHYMADGHYRLGP*


CDS Sequence:
>Vu_01616.1
ATGGAGGAATACACTAATAACAATCACTTGAGTGAAAACACTGCTCCAAGTCCAAGTTCAAGGCCTAATTTCTTGTACTCTCCCCCCAGTGGTGGAAGCCATAGCCATAGCCATAGCCATAGCCATAACCATCACCAGCATCAGCATCAGCATCATAGTCATCACCACCAGCATCATCAGTTTCCAATCAACACCTTCCATCTTCAATCGGGTGGATCAGATCATTGCTTTCAGTCTGATCAAGTGGCACCACACCCTTCTGTGAAAACCGAAGCCAGCACTTCTCAGCTTCACGCTCCTATTTTCCACTACCCTTTAATGAGAGGTACCCTTCACAACAACACCACCACCACTATGCATCACCATCCCCATCAACAAGGAGGGAGTCCTACAAGCTCCACCACCGAAGTTGAAGCCATAAAAGCTAAAATCATTGCTCACCCTCAGTACTCCAATCTTTTGGAAGCTTATATGGATTGCCAAAAGATAGGAGCTCCACCTGAAGTGGTGGCGCGTATGGTTGCGGCAAAGCAAGAGTTTGAGGCACGGCAAAGATCCTCAGGTGGTTCCAGGGATACCTCGAAAGACCCTGAACTCGATCAATTCATGGAAGCATACTATGACATGCTTGTGAAGTATAGAGAGGAATTAACAAGGCCTATTCAAGAGGCCATGGATTTCATGCGAAGGATAGAAACTCAGCTAAATATGCTATGCAATGGACCCGTCAGGATCTTCTCTGAAGATAAATGTGAAGGGGTTGGTTCATCAGATGAGGATCAAGAGAACAGTGGAGGAGAAACAGAACTTCCGGAGATTGATCCTCGAGCAGAAGATCGTGAGCTTAAAAACCACTTACTGAGGAAGTACAGTGGTTACTTGAGTAGCCTTAAGCAAGAACTTTCCAAGAAGAAAAAGAAAGGGAAACTCCCCAAAGATGCAAGGCAAAAGCTACTTAACTGGTGGGAATTACATTACAAATGGCCATATCCTTCGGAATCAGAGAAGGTGGCATTGGCTGAATCAACTGGTTTGGACCAAAAGCAAATAAATAACTGGTTCATAAACCAAAGAAAGAGGCACTGGAAACCATCTGAAGACATGCAATTTATGGTGATGGATGGTCTGCATCCCCAAAGTGCAACTCTCTACATGGATGGTCATTACATGGCAGATGGTCACTACCGTCTAGGGCCATGA


Promoter Sequence:
>Vu_01616::LG1:18925992-18927992(-)
GGTTATGGACGAGCGTTCGCTTCGTTGGACGAGCGTCCTCTTCTGCCTGACTGGGCGTTCGCTTCGCTGGACGAGCGTCCTCTTCTGCCTGACTGGGCGTTCGCTTCGCTGGACGAGCGTCCTCTTCTGCCTGACTGGGCGTTCGCTTCGCTGGACGAGCGTCCTCTTCTGCCTCGCTGGACGAGCGTCCTCTTCGCTGGACGAGCGTCCTCGTCGCTCGTCCACAAACGCTCGTTCACAAATCACATACACAGTCAGAAAAACGTTAGATTTATAACGGCGTTAAGTGGGTAGGATTCAATTGATACAAATTTCAAAACATAGGTATCAAATGCCTACATTTTTAAAACCGGGTACTAAACAGCAAATTACCTCCGAACATGGGGACTAAGTAGGTAATTAAGCCTAATTACTTTTAATGAATATTTGTCGATGATTAACTTTTATTGAAAAGTTTCTCTAACATTTTTAGTAAGGTTGACAAAAATGGGACAATATAGTTTACAAAAGTTGATTTATAAGGAATGAATTAAAAATAAGTTAACTTAACTGTGAATCAAAAATTATTCAGCTCAATTCATTATAAGTTGATGTGTTATATAGATTGATTTAATAATTTATTTTATATATTTATTACAATATAATAAAAGTATATTATAATTGTGCAATAAAAATATTTACATATTTTATTAAACATTATTATAAATATAATAATTAAAAATTAAAGTGTTTATTTATATAATTTGACAAAAATGTAAATAAAATATTTAAACTACAAAAATATTTTTGAACAACACTCTATTCTTTAAAAAAAATTCATATTGTCAATTTACATAATTAAAAATAGTAAATAATTTAAATAAAAAACTTTCAAAAAAATATAAAAAAAAATAATAAAACATTGTTGTTACGGATTATAGGTCAAGTCATCTTAACTCGATTTGAACATATGATTAAGTAAGTTGAATCCAATTTTATAAAAAGAAAAATTAAAACTTTTCCAACTAAACTTAACTCAAACCTGTAGTAAATTTGGTTGATTAACGTGTTTAAACTCGTTTTTATCTTTAATAATATTTCTATTTTTTTTCTACTAGAGTTATGTTGGAATTTGACTATTAAAATTATCTAACCTAGTTATAGCCAAATCAAAACTTAAGTGTAATATATCCAAAATCTAATGTTAAGATACAAACTTAAATACATGTCGACCAAATCTTGATGGATTAATAATAGTCATATGTCTTGCCTTCACTATGTAGATTTTTTTTTCTATCAATCAACCAGACTTAAACCTGTGAAGAATTTAAATCCATTTTATGACATCTCTATCTTTAATTATATTTTTTTAACTACATTTTTGTTCAAATTGAAACTTAAATGATCCAATATAGTTGCACCCAAATCACCAACTCAATGGTAATGTTAAGATACAAACTTAAACCTTCAATATGTGTAGAAAAATTGTTTTAAATTTCAATATTTAAAAACTATTTAAACTAACAGCAATTGTAGTGCGATGAACAACAAGGGGGTAAAATAAATAATTAGAGAACAAAAATCTCTCCTTCAGTCTCCTAACTTAAACCAGCTGTGTACTTTTTTTTTTTACCTGTTACTAGCTATACTAAGGATAGACCGACCAAACAAAAACCTAGAAATTTATATAAGAATAAAAGAAGAGAATGTAACGGGTCGATTCCACTCAAGTGGAAGTATAATTTTGTTTAATGAGAATGATAACACATGCATATAGAAACACAGCTGTTTGGTTTGAAGTCTGCAATAAATGGTAGTTGTGAGTAACACAAAAAGGAAAACAAATGAAGGGACAGAGTACAGAGAGGACTACTAAAGCAAAGTAAACAAACACACACTAATCATTTAACCAAAACCCTCCAAAAAAACCAAACAAAAATTCAACTATGCACCTTAGGCTTATCTCCTAAGCTACAATCCCTTTTCCATTTTTTAAATATTTCTTTTTTCTCCTCATAACC


Gene Sequence:
>Vu_01616(-)
AAAGAAAGTCTTGTCAACAACCCCCAACACGGAGCCATTACCGGTTTCTACCACTCTTTCTTTCTCTCTTTTTATTTTTTCCCTTTCTTTCTTTCTTCTCTTCTCCTCTCACTCACCCTCCGTACAAAACATCATGTGAGAGTTTCGCTGGTTTCTATCCTCTCCTCGCTGTCCATACCCCAAATTTGCAAGTGCAACCATCTTTGTCACAGTTTCTTCACTTCACCACCTTAAACTTTTTCCTACCTCCTTGGACCCCAACAAAAAAAAAAAAAACATCACACAAGTGCTGATGATAGCTATGTGTGGCCCTCAGACCTTACAACCATTCATTACCAATCCCTTTGCTATTTTAGGGTTGTGCAGCCCTTAGGGTTTTCTTGTTCCTCACACCCAAAATTGAGCACCACTTCCTGTTGAAGCTCTTGTTCAGCTTGGTTAATTAGCTGACTGGGAGGTGTTTCTGTTTCCCTGATTTCAGAGATTAATGGAGGAATACACTAATAACAATCACTTGAGTGAAAACACTGCTCCAAGTCCAAGTTCAAGGCCTAATTTCTTGTACTCTCCCCCCAGTGGTGGAAGCCATAGCCATAGCCATAGCCATAGCCATAACCATCACCAGCATCAGCATCAGCATCATAGTCATCACCACCAGCATCATCAGTTTCCAATCAACACCTTCCATCTTCAATCGGGTGGATCAGATCATTGCTTTCAGTCTGATCAAGTGGCACCACACCCTTCTGTGAAAACCGAAGCCAGCACTTCTCAGCTTCACGCTCCTATTTTCCACTACCCTTTAATGAGAGGTACCCTTCACAACAACACCACCACCACTATGCATCACCATCCCCATCAACAAGGAGGGAGTCCTACAAGCTCCACCACCGAAGTTGAAGCCATAAAAGCTAAAATCATTGCTCACCCTCAGTACTCCAATCTTTTGGAAGCTTATATGGATTGCCAAAAGGTCACCTATTCATTAATCAATTATTATTCATTAATTTACCACATTAATTACAGTAATCAGTATGCCCCCATTTCACATAAATAATCATGTGTATATAACTCTTATCTTTCACCCTCTATCTCTCTATCTTTCTCCCTATTTTCAGATAGGAGCTCCACCTGAAGTGGTGGCGCGTATGGTTGCGGCAAAGCAAGAGTTTGAGGCACGGCAAAGATCCTCAGGTGGTTCCAGGGATACCTCGAAAGACCCTGAACTCGATCAATTCATGGTGTGTAAAGGTTTTAAATTGCTGCTACAGTATCATTGTTTTTTTTTTCTTTATCAGGATTTCTTGATATTGTAAAAAATTATTGATTAATTTTGACTGATGCGAACGTAATTATGGTGGGATATGATTGTGATCACTGTATACTATTTTTTAATGCCTTGAATGTGTGGTTTTAAGTTATTTTATTCCGTTACTATTTTTGGGGTTTACCCTTATACTTAATTGGAATGGTTGTTGGTGATGATTTATAACTATAACTGCAGGAAGCATACTATGACATGCTTGTGAAGTATAGAGAGGAATTAACAAGGCCTATTCAAGAGGCCATGGATTTCATGCGAAGGATAGAAACTCAGCTAAATATGCTATGCAATGGACCCGTCAGGATCTTCTCTGGTACTTTTTCATTCTCTTTATGGAGCACAAGAAGAGGGAGGATCCTATTCCCCTAATTCTCTCTCTCTTTTATTTTATTTATTTATTTATTTTATTCTTCTCCATCATCCCTTTCTTCTCCTCACAAACCATAAATGTTAATTATTCATAAAATTAATTAATTATCTAATTATGGATTACGCAAACATTCAACTATATATGAGTATTATGTGCTGGGGCTCAAAATTTTGGACCAGGTTCTGCAGTTCTTGGAAGTCGTAAACTCGAGTGTGTTCTGTAGTGAGCCAGGAAAGTTTGACCAAAAATTTTTACCTACTTACACATCGTAGGAGAAAAGGGTCCCAGACAGTGGAGATGATATTTCATCAAGCACAGAACCCTAACCTAATCAGTACCCTATATTATATAATATTAATGAATGCAAATATTATAATAAAAGAGAAATAAGCAACATCTTTTTGTTTGGTTTCTTTTCAGAGATTTGACAAGTTTTATTTTATATTATATATTTTATATATTCTGTTACAGAGTTGTCCATTCTTCACGACTCCAGATGAACTTTATAGTTTTGTTCATTAGTGTTAATTTTCTATTTCTTCTTTTCATTTGAGACCCAAATTCACACGTTCGCGTCTTCTCGCTCCTATTTCCCAAGTTTCTGAGTTCTGACAATTTGATTCTTCTAGGGTTTCCTAGTTAATTCATTTTTTATGGTCTGTTATGTCTTCTAAAACCTATTTTGGTGTATGCATTTCGTGGATTCGTGGAGTTTTTGTAGGATGACATTCTCACACTGTCAACACACACACACTCTCATCATTGTTGTGCTCAGATTTCGGTCTTGTTACAGAAAATTCCGTTTTAATCTCGTCTTTTATTCTTCTCTTTTCTCCTTTTGGTGTTTGAGTCCAATTAATAACTCAGAAAGACAACATTGGATGCTGATACATTCCAATCTCCCACATCACAGTACGAATGAAATATACATTTTTCAGATGTTTAAAAATTATATATAACTATATGTGTCTGTGCCTCCATATAATGTACAATAATAATACGAAACGTCGTAGTTTCTGGAAGTTCCTTGATTGTTACTTAAATACATATAGCTACTGAAAATGCTTTTTTTTTTTTGTTTTTGTTGCTCATAGTACCCTATATATTTATGCTTCTGCATAATATATTTCTTCATATTTTGTGATACGTAAAATATTCGACACTGATAAAGAAAGACACCCTGTGGTGATGTTTAGTTCTTATTTTGCTTGAAATTTCATCATCAAATCATTTCTTTCTGATGTGAATCACAAGCTGCATGTTAATTTCATGGTGGTGACCTAACATCTGATATATGTACAATATGGCGAAGGTTTTTGCAGCCAACCATGTGATTTTTCTTTTAGAAGACAAAAGTTATATATTATTGACAGTGAGAATAAGGGTACCCAGTCCATGAACAACCTTAGAATGAATCTCAAATGCAGAAAACCAGATGTTTCTTGCTTCTATTTAATTTACCTTTATGATCTCTTTAAATAAACAAAGTATGATTTACCATTATGTGTGCCTAAATTAAAATAGCAACTTTAAGGTATTTCTCATATGCACCTGTGTGTTGTATTCAATGAACTGCTTTTATGATTGGAGGTAATTTATACATAAACACGAAAAAGATTTTCATTTTTCATTAGTCTTTCAGTTCAGGTTACTGTCACCTACCAAATCAAAGAGAAATGATAGGACAAGGTCATTCATTAAAAAATAGCTTTTAAGTCTGTCTATGCACACTGTATTCTTGTATATCTTCAAACTGAATGCAGAAGTACTCATATTTTTATTATATTTTCAAGATAGTAAATATATTTTTCTATTTAAGATTTATTTATTTATTTTTTAAAAAAAGTCAGCAAAGAGAAGGATGTAAAAATACAAGAGGCACCATCAGAAGTACAAAAAATAGTACAATAAAACAGTTCATTATACAGTATGTGAGTCTGCAGAAGGATTTAAAGAAATGGATTGGATTTACAGTCCAATATTTACTTGATATAATTTGAATGATTAATAAGAAAATGTTAGAAAACCATGAACTTAGATTTAAATATATGAGACAGGAAAATGAAATGGACAAATCAGCATGATTATATGTAGTATTTATACATATAAAAACTACCAAAATACCACAGAAATGTCAGTTTTTTGACAATTTTTTAGACAGTAAAATGGCTCCCTCTCTCCCTCTGTCTTCCCACGCAAAAAGAATTAGCCTTCCAAAACTATTAATTTCTGTTTTAGACCCTATTTAACTGGTTGAATTCCTCGTTAAATTTGTTCAAAAGGGTTTTATGATTATGATGCGATGAAGCCCTCTGAACTGAATTACTAGTTCCAAGGAAACACTTATTTTCTATGCATTTTCTCATTTTTTTTTTCATCAGCAATAATTTATAGCAATATTGAAGCATACATGAATATTCCAAGATTATAAGGACTAAGATTTTTGCTGGTATTAAAATTGTTAAGCAGAAGATAAATGTGAAGGGGTTGGTTCATCAGATGAGGATCAAGAGAACAGTGGAGGAGAAACAGAACTTCCGGAGATTGATCCTCGAGCAGAAGATCGTGAGCTTAAAAACCACTTACTGAGGAAGTACAGTGGTTACTTGAGTAGCCTTAAGCAAGAACTTTCCAAGAAGAAAAAGAAAGGGAAACTCCCCAAAGATGCAAGGCAAAAGCTACTTAACTGGTGGGAATTACATTACAAATGGCCATATCCTTCGGTATGTTATTACATCTCACTTTCTTTTTCTCAAAAATGGTTAAAAGAACAAAATTATTAGGGTAAATACTGCTTAAACATAAGTATTAATATATTTTTAGTATAAAAAATTCAATTTCCTTAATTTTTTTTTAACTTTCATGAAGCAACTAAACACGTCTGTTTGATATTTAATAATTGTCACTAATGATTGTTAAAAAAAAGTTAACGTTAATCATTATAAACGTTAAACATATTAATGTTATTTTTCTTCTTAAGAAACAATTTGACAATTGATGAAACAAATGCTCACTTGTACTAACTATTAACTATTAATTGATTCAAACATAATTAAACGTGTTAAAAAAATGTATAGGTTTTCTTTTTCTTTTTCTATAAAAACAAAATACTGTATTATATTGAACCGAGTATTTACTGAGTATTTAATAAAATATAATAAATTGCTCGTTACTTTTAGGTTTTTCAAAAAATTATATAAAGTTCTCTTTTAACATCTACAATACAAATTCATTATAAAATACACATTAATGTATAAGAAATGTTGGCATGATATTTTTTTTAAACAATTAAAACAGGGTGAAATTTTACCAAATTTAAAAAAATGCTTCATTAATGTACTCAAAATCATTTGCGGACTTAAGACTAAACATGATTATAGCCCCAGTTAATCCATCTGTATAATACATAACCGAGAGTTAATATAGTTAATAAAACTCCATTACCTCATTAATCTATATATGATACGAAACCTAGATATTTCAATGTATAAAATAAAGTTAACAAAATCTGATAAGTTATTACATAGATATTGACAGAGATAATCATAAATCTATATCCTGTAATTACTTCTTTACAGTTTTGAATGAATTTTAACAACGAATAATAGGTAATATATAACATGATTTGTTTTGTGTGATGGCATCAGAATACATTGATTTTGTACAATGATGTTTTTTTGTTGGAAAAAATGAATTACTACAGGAATCAGAGAAGGTGGCATTGGCTGAATCAACTGGTTTGGACCAAAAGCAAATAAATAACTGGTTCATAAACCAAAGAAAGAGGCACTGGAAACCATCTGAAGACATGCAATTTATGGTGATGGATGGTCTGCATCCCCAAAGTGCAACTCTCTACATGGATGGTCATTACATGGCAGATGGTCACTACCGTCTAGGGCCATGACATCACATGGCCATGCTATATATTTATATATTATTTTATATTTTAAGTATTATTATTATTATTATTATTATTTAAATGCAAGGTATGAGTTTCTCATTAACAAAGAGACTGTGACCAAACTGGGTAGCAGTCAGCACTGTAGCTACTAGTTTCAGTGTCAAGCATACCATGAACATTAATGGTTTCTGCTTGTGATTGTGCAGTGTGAGTACTTTCAGTAGTTTGCCATAGTCATGTTCTACGTTCTATTAAACAGTGAGACATTTGCTTATTATATATTTTCAGTATAATTAATATTGGCAGAGATCATTCATGAG

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