Gene Details:

Functional Descriptions:

  • MdGH3.6 is targeted by MdMYB94 and plays a negative role in apple water-deficit stress tolerance.
  • Identified GRETCHEN HAGEN3.6 (GH3.6), an indole-3-acetic acid (IAA) conjugating enzyme, to be a negative regulator of water-deficit stress tolerance in apple.
  • Overexpressing MdGH3.6 reduced IAA content, adventitious root number, root length and water-deficit stress tolerance, whereas knocking down MdGH3.6 and its close paralogs increased IAA content, adventitious root number, root length and water-deficit stress tolerance.
  • MdGH3.6 negatively regulated reactive oxygen species scavengers, including antioxidant enzymes and metabolites involved in the phenylpropanoid and flavonoid pathway in response to water-deficit stress.

Literature:

Gene Resources:

  • NCBI ID:
  • UniProt accessions:

Orthologs:

Sequences:

cDNA Sequence
CDS Sequence
  • >MDP0000402444
    ATGCCTGAAGCACCAAAGAAATTTCTGAATTCCACGGAGGACTATAACCTCCAAGACAAGAACAACAAGATCCTTCACTTCATTGAAGAAGTCACAAAAAACCCCGACGAGGTTCAAAAACGAGTCCTCGCTGAAATCCTCACCCGCAATGCTCACGTCGAGTACTTGCAGCGTCACGGCCTCAACGGTCACACTGACCGTGATACTTTCAAAAAAATGATGCCCGTTATCAAATACGAAGATATCCAGTCCGATATCAACCGTATCGCCAATGGTGACACCTCCCAAATCCTCTGTTCCAAGCCCATTTCTGAGTTTTTGACCAGTTCTGGGACATCTGGAGGGGAAAGAAAACTGATGCCAACAATTGAAGAGGAGCTTGATAGGAGGTCACTGCTTTACAGCCTGCTGATGCCTGTGATGAGCCAGTATGTCCCCGGACTCGACAAAGGCAAAGGAATGTACTTTTTGTTCATAAAATCCGAGGCCAAAACTCCCGGCGGACTAGTTGCTAGGCCAGTCCTTACCAGCTACTACAAAAGCTCACATTTCAAACAAAGACCCTATGACCCTTACACTAACTACACCAGCCCCARTGAGACCATCCTCTGCCCGGACTCGTACCAAAGCATGTACTCCCAACTCCTCTGCAGCCTCTGCCAAAACAAGGAAGTTCTCCGAGTCGGTGCAGTTTTCGCCTCTGGCTTCATCCGGGCCATCAGGTTTCTCGAGAAGCACTGGACTCTTTTGTGCAAGGACATAGCCTCTGGGACTCTAAACCCCCAGATTACAGACCCGTCGGTCCGCCAGGCGGTGATGAAGATCCTCAAGCCTGACCCGAAGCTTGCAAGCTTCATTGAGGCTGAGTGCGGGAAGGCCTCCTGGCATGGGATTATTACCAGGCTTTGGCCAAACACAAAGTACGTGGATGTGATTGTGACCGGGACTATGTCGCAGTACATTCCCACGTTGGAATATTACAGCAACGGACTGCCTCAGGTTTGCACYATGTATGCCTCTTCGGAGTGCTACTTTGGTGTAAATCTAAACCCTCTGTGCAAACCCAGTGAAGTGTCCTACACTCTTATTCCCACCATGGGATACTTYGAGTTCCTCCCAGTCCAGAGGAACAATGGGATTAATTCTAATCCCCTATCTGTCCCCAAATCCCTCAATGAGAAGGAGCAGCAACAACTGGTTGATCTTGCAGATGTGAAGCTTGGACAAGAATATGAGCTTGTTGTCACAACATATGCTGGACTGTACCGCTATAGAGTGGGGGATGTGCTGAGAGTGGCCTCCTTCAAGAACAATGCACCACAGTTCAACTTCATCTGTAGGAAAAATGTTGTCCTGAGCATTGACTCGGACAAGACGGACGAGGTGGAGCTCCAAAACGCAGTGAAAAATGCCGTGAACCATTTAGTACCGTTCGATGCCACTGTGACGGAATACACTAGCTTTGCGGACACAACAACAATCCCGGGACACTATGTGCTCTTTTGGGAACTTAGCCTCAATGGGACAACGCCAATCCCACCCTCGGTCTTTGAGGACTGTTGCTTCACCGCCGAAGAGTCCCTGAACAGCGTCTACCGGCAAGGCCGGGCCTCCGACAAGTCCATCGGACCACTCGAGATCAAGATTGTGGAGGCAGGGACGTTTGACAAGCTCATGGACTATGCCATTAGCTTGGGAGCTTCCATTAACCAATACAAGACACCTAGGTGTGTGAAATTTGCACCCATTGTGGAGCTCTTGAGCACAAGGGTAGTCTCAAGCTACTTTAGTCCCAAGTGCCCCAAGTGGGTCCCAGGCCACAAGCAATGGTGCAACATTGATTAG
Protein Sequence
  • >MDP0000402444
    MPEAPKKFLNSTEDYNLQDKNNKILHFIEEVTKNPDEVQKRVLAEILTRNAHVEYLQRHGLNGHTDRDTFKKMMPVIKYEDIQSDINRIANGDTSQILCSKPISEFLTSSGTSGGERKLMPTIEEELDRRSLLYSLLMPVMSQYVPGLDKGKGMYFLFIKSEAKTPGGLVARPVLTSYYKSSHFKQRPYDPYTNYTSPXETILCPDSYQSMYSQLLCSLCQNKEVLRVGAVFASGFIRAIRFLEKHWTLLCKDIASGTLNPQITDPSVRQAVMKILKPDPKLASFIEAECGKASWHGIITRLWPNTKYVDVIVTGTMSQYIPTLEYYSNGLPQVCTMYASSECYFGVNLNPLCKPSEVSYTLIPTMGYFEFLPVQRNNGINSNPLSVPKSLNEKEQQQLVDLADVKLGQEYELVVTTYAGLYRYRVGDVLRVASFKNNAPQFNFICRKNVVLSIDSDKTDEVELQNAVKNAVNHLVPFDATVTEYTSFADTTTIPGHYVLFWELSLNGTTPIPPSVFEDCCFTAEESLNSVYRQGRASDKSIGPLEIKIVEAGTFDKLMDYAISLGASINQYKTPRCVKFAPIVELLSTRVVSSYFSPKCPKWVPGHKQWCNID*