Gene Details:

Functional Descriptions:

  • A HST1-like gene controls tiller angle through regulating endogenous auxin in common wheat.
  • TaHST1L involved in the auxin signalling pathway showed the big potential to improve wheat yield by controlling plant architecture.
  • Mutation of TaHST1L altered the tiller angle of tetraploid wheat.
  • TaHST1L-A1 altered the tiller angle in transgenic wheat plants.
  • TaHST1L affected endogenous auxin level by interacting with TaIAA17.
  • Yield potential and evolutionary analysis of TaHST1L-A1b in wheat.

Literature:

Gene Resources:

Sequences:

cDNA Sequence
  • >TraesCS5A02G316400.2
    AGCTACTGTCTGGCTTTCACCTCTGACTAAAGATTGGCTATAGAGAATGGCCCTCAAGGTGTTCAGTTGGCTGAATCGGAAGATGCATTCCAATGCGGAGTACTGCACCATTGATGATAATAAGGCCATGGAGAAGGAAGACTCTGTGCGCGCGCGCGCGAGTGTGGCTGAGCAAGACACTGAAGCCCTGCTGCTCCGTGATGTGCTTCTTAATGGCATACTTGCGATTGGCACGCTTGGCCACAACATGAACTCCCCTGAGGCCCGCCATGAACAAGATGAGTTCATCGTCATGGATGAAGAAAAGGTGGACCAAGAGAAGTACGAAGAGGAAAAGTGTGAGGACAAAGAAGAGGCATTCGCTACAGCACCAAGTGCACCAGAACCTGCTATTGAACCTGCCAGGATGCATTCATCGTCGATGAAAGAATACAACTTCACGTGTTCTGTAAAGGAAGAAATCCTGATGTGTGAAGTTGAAGTGGAGGATATCTCTAAAATCCAGGAACAACCACTTCTGATGGCAGAGAAGGTTGAGAAAGTGAGAACTACACTTGCTGATCTATTTGCAGCCGAAACATTCTCACCAAGTGATACAGGGGAGAAGAGTCACCAGAAGACTGTTATTATTGCTGGGGCATCCACTTCAAAACCTACATTGTGCATGGAAAAGACACATAAAAAGAAGCCAATAAAGCCAATGCCAGATCCTCTGAAGGCTACGAGAAAATTAAGTCGAGTCGTGAAGAAGATGCTGGGGAAGAAGATCCACCCAGAGCAGCTCAATGGACGTAGTAATGCAGAGGAACCTCCGCTGCTTGGTGCCTAGGCTCGCGGACAAGTTTGTTTTCTCTATCTGGATCATGTTACGTTCCATTGGATCCCTACAGTGCCCCGGAGGTCCGGATTCCTTTGCTGGAGAGAAGCATCCAACCACAACGTACTACGTTGGCCGACAATGTTTCCGTGCCTCATCAGCTGCCTGTTCGCCCGCCAGTGACGAAGAATAGCCTGCTGCCTAAATATATCTATCTATCTATCTATCTTGTCTATTGTTTATTACATGTTGATTCCCGTGTGTAAAGCTAGCCACAGTTGCGGTGTCCTGTCCTGTCCTGTAAGATGGATCGATGTTCTCGTGGTACTGCATGTCCCCGTGCGTCGGTATCAATAAACCCTCCGCTTTCT
  • >TraesCS5A02G316400.1
    AGCTACTGTCTGGCTTTCACCTCTGACTAAAGATTGGCTATAGAGAATGGCCCTCAAGGTGTTCAGTTGGCTGAATCGGAAGATGCATTCCAATGCGGAGTACTGCACCATTGATGATAATAAGGCCATGGAGAAGGAAGACTCTGTGCGCGCGCGCGCGAGTGTGGCTGAGCAAGACACTGAAGCCCTGCTGCTCCGTGATGTGCTTCTTAATGGCATACTTGCGATTGGCACGCTTGGCCACAACATGAACTCCCCTGAGGCCCGCCATGAACAAGATGAGTTCATCGTCATGGATGAAGAAAAGGTGGACCAAGAGAAGTACGAAGAGGAAAAGTGTGAGGACAAAGAAGAGGCATTCGCTACAGCACCAAGTGCACCAGAACCTGCTATTGAACCTGCCAGGATGCATTCATCGTCGATGAAAGAATACAACTTCACGTGTTCTGTAAAGGAAGAAATCCTGATGTGTGAAGTTGAAGTGGAGGATATCTCTAAAATCCAGGAACAACCACTTCTGATGGCAGAGAAGGTTGAGAAAGTGAGAACTACACTTGCTGATCTATTTGCAGCCGAAACATTCTCACCAAGTGATACAGGGGAGAAGAGTCACCAGAAGACTGTTATTATTGCTGGGGCATCCACTTCAAAACCTACATTGTGCATGGAAAAGACACATAAAAAGAAGCCAATAAAGCCAATGCCAGATCCTCTGAAGGCTACGAGAAAATTAAGTCGAGTCGTGAAGAAGATGCTGGGGAAGAAGATCCACCCAGAGCAGCTCAATGGACGTAGTAATGCAGAGGAACCTCCGCTGCTTGGTGCCTAGGCTCGCGGACAAGTTTGTTTTCTCTATCTGGATCATGTTACGTTCCATTGGATCCCTACAGTGCCCCGGAGGTCCGGATTCCTTTGCTGGAGAGAAGCATCCAACCACAACGTACTACGTTGGCCGACAATGTTTCCGTGCCTCATCAGCTGCCTGTTCGCCCGCCAGTGACGAAGAATAGCCTGCTGCCTAAATATATCTATCTATCTATCTATCTTGTCTATTGTTTATTACATGTTGATTCCCGTGTGTAAAGCTAGCCACAGTTGCGGTGTCCTGTCCTGTCCTGTAAGATGGATCGATGTTCTCGTGGTACTGCATGTCCCCGTGCGTCGGTATCAATAAACCCTCCGCTTTCT
CDS Sequence
  • >TraesCS5A02G316400.2
    ATGGCCCTCAAGGTGTTCAGTTGGCTGAATCGGAAGATGCATTCCAATGCGGAGTACTGCACCATTGATGATAATAAGGCCATGGAGAAGGAAGACTCTGTGCGCGCGCGCGCGAGTGTGGCTGAGCAAGACACTGAAGCCCTGCTGCTCCGTGATGTGCTTCTTAATGGCATACTTGCGATTGGCACGCTTGGCCACAACATGAACTCCCCTGAGGCCCGCCATGAACAAGATGAGTTCATCGTCATGGATGAAGAAAAGGTGGACCAAGAGAAGTACGAAGAGGAAAAGTGTGAGGACAAAGAAGAGGCATTCGCTACAGCACCAAGTGCACCAGAACCTGCTATTGAACCTGCCAGGATGCATTCATCGTCGATGAAAGAATACAACTTCACGTGTTCTGTAAAGGAAGAAATCCTGATGTGTGAAGTTGAAGTGGAGGATATCTCTAAAATCCAGGAACAACCACTTCTGATGGCAGAGAAGGTTGAGAAAGTGAGAACTACACTTGCTGATCTATTTGCAGCCGAAACATTCTCACCAAGTGATACAGGGGAGAAGAGTCACCAGAAGACTGTTATTATTGCTGGGGCATCCACTTCAAAACCTACATTGTGCATGGAAAAGACACATAAAAAGAAGCCAATAAAGCCAATGCCAGATCCTCTGAAGGCTACGAGAAAATTAAGTCGAGTCGTGAAGAAGATGCTGGGGAAGAAGATCCACCCAGAGCAGCTCAATGGACGTAGTAATGCAGAGGAACCTCCGCTGCTTGGTGCCTAG
  • >TraesCS5A02G316400.1
    ATGGCCCTCAAGGTGTTCAGTTGGCTGAATCGGAAGATGCATTCCAATGCGGAGTACTGCACCATTGATGATAATAAGGCCATGGAGAAGGAAGACTCTGTGCGCGCGCGCGCGAGTGTGGCTGAGCAAGACACTGAAGCCCTGCTGCTCCGTGATGTGCTTCTTAATGGCATACTTGCGATTGGCACGCTTGGCCACAACATGAACTCCCCTGAGGCCCGCCATGAACAAGATGAGTTCATCGTCATGGATGAAGAAAAGGTGGACCAAGAGAAGTACGAAGAGGAAAAGTGTGAGGACAAAGAAGAGGCATTCGCTACAGCACCAAGTGCACCAGAACCTGCTATTGAACCTGCCAGGATGCATTCATCGTCGATGAAAGAATACAACTTCACGTGTTCTGTAAAGGAAGAAATCCTGATGTGTGAAGTTGAAGTGGAGGATATCTCTAAAATCCAGGAACAACCACTTCTGATGGCAGAGAAGGTTGAGAAAGTGAGAACTACACTTGCTGATCTATTTGCAGCCGAAACATTCTCACCAAGTGATACAGGGGAGAAGAGTCACCAGAAGACTGTTATTATTGCTGGGGCATCCACTTCAAAACCTACATTGTGCATGGAAAAGACACATAAAAAGAAGCCAATAAAGCCAATGCCAGATCCTCTGAAGGCTACGAGAAAATTAAGTCGAGTCGTGAAGAAGATGCTGGGGAAGAAGATCCACCCAGAGCAGCTCAATGGACGTAGTAATGCAGAGGAACCTCCGCTGCTTGGTGCCTAG
Protein Sequence
  • >TraesCS5A02G316400.2
    MALKVFSWLNRKMHSNAEYCTIDDNKAMEKEDSVRARASVAEQDTEALLLRDVLLNGILAIGTLGHNMNSPEARHEQDEFIVMDEEKVDQEKYEEEKCEDKEEAFATAPSAPEPAIEPARMHSSSMKEYNFTCSVKEEILMCEVEVEDISKIQEQPLLMAEKVEKVRTTLADLFAAETFSPSDTGEKSHQKTVIIAGASTSKPTLCMEKTHKKKPIKPMPDPLKATRKLSRVVKKMLGKKIHPEQLNGRSNAEEPPLLGA
  • >TraesCS5A02G316400.1
    MALKVFSWLNRKMHSNAEYCTIDDNKAMEKEDSVRARASVAEQDTEALLLRDVLLNGILAIGTLGHNMNSPEARHEQDEFIVMDEEKVDQEKYEEEKCEDKEEAFATAPSAPEPAIEPARMHSSSMKEYNFTCSVKEEILMCEVEVEDISKIQEQPLLMAEKVEKVRTTLADLFAAETFSPSDTGEKSHQKTVIIAGASTSKPTLCMEKTHKKKPIKPMPDPLKATRKLSRVVKKMLGKKIHPEQLNGRSNAEEPPLLGA