Gene Details:

  • Gene ID: MD10G1058600
  • Gene Symbol: MdPAT16
  • Gene Name: Malus domestica Protein S-acyltransferase 16
  • Genome: Golden ASM211411v1
  • Species: Malus domestica

Functional Descriptions:

  • The apple palmitoyltransferase MdPAT16 influences sugar content and salt tolerance via an MdCBL1–MdCIPK13–MdSUT2.2 pathway.
  • An MdPAT family member, MdPAT16, was identified and shown to have palmitoyltransferase activity.
  • MdPAT16 promotes sugar accumulation and enhances salt tolerance.
  • In this study, an MdPAT family member, MdPAT16, was identified and shown to have palmitoyltransferase activity. We demonstrated that this gene responds to salt stress and that its expression improves plant salt stress resistance. In addition, its overexpression significantly promotes the accumulation of soluble sugars.

Literature:

Gene Resources:

  • NCBI ID:
  • UniProt accessions:

Sequences:

cDNA Sequence
mRNA Sequence
  • />MD10G1058600
    CCCTATCATCTGAAATTCTCAATCCCTCCTCCGTTACAGTGATTGAGTGCCCTCCCTTATGTTGTTAGCTCTGCAGCGATGGCTTCTTCAGAGATAGAGGTGGTGTCGTCGGAACCAAAAACCCAGAAAAACCCTGCGGAAATGCCCGTGCTTGACGTCTTCTCTGCTTCTGCTTATGGCGATTTTCAGAAACTCAGAAAGTTCGTCGAGCAAGATGGTGCCTCTCTCTCCAAGCCAGACGTCCATGGCTACTACGCCCTCCATTGGGCTGCTCTCAATAACTTCCCCGATATCGCTCACTACATAATTCAGTGGCATGGCGGCGATGTCAGTGCGACTGACAATGTACAGCAGACAGCATTGCATTGGGCAGCTGTGCAGGGTGCAATTTTGGCGGCGGATGTGCTCTTGCAGAATGGAGCTAGGGTTGAGGCAGCTGATGTACATGACTACCGGGCCGGTCCAAACCCCCATATCACCCAGTTCTTGCAAAAGGAATTAAAGAAGCTCAATTGGGGGGGGGGGGGAGATTATAGAGAATTTAGGAAGGAAGAAAATGCCATGGGAAGGATGCTCATCCTGTCATACCTATTTTGGTTCCCTGTGTATCATTCTTACACTTTTGACTTGGGACCCATTTCTTTAAAAGTAGTTCCCCATAGTCTTGCCCTGCTCTTGTATATCTGTATTGTGGGACATGCAGTTCACGTTGCTGCTCAATATGGGCAAACATCTTTTTTGAATCACATTGTTGCAATATATCACGCTGATTTTGATGCCCCTGATAATGAGGGGAGGAGTCCTCTTCATTGGGCCGCCTATAAAGGTTTTGCAGATACAGTTAGATTGCTTCTGTTTAGAGATGCATGCCAAGGGAGACAAGATAAAGAAGGTTGTACCCCTTTGCACTGGGCTGCTTTAAGGGGGAACATGGAGGCTTGCACTGTGCTTGTCTATGCTGGCTCTAAGAAGGAATTAATGGTGAAAGACAATACTGGTTTTACTCCTGTTCAGATTGCATCTGATAAAGGTCATCAGCGTGTCGCTCTCTTCCTTGCTAACCAGCAGCGGGCTCATAGAAAATGCTGGAGAGACAAATTTTGCATTGGGAAGATGGCGGATATTGGTTACGCACCTGTCTTGTTGTGTATAATAGTCTTTCAGACAGTTCTCTTTATGAACTCAGTCCTCGCAGCACCTAATCTGACAAAGGTTACTGCTGCTGTCGGTCTTTGGGGATGGGCTGCCATTTCATTAGCAGTGGGTTCCTTGATTATGTTCTACAGGTGCAGCAGTAAGGATCCAGGTTACATCAAAAGAGCAGGGGATTTCAGCAATCCTATAAATACAGAGATAATTAGACCTGTTCGCTCTAAACACTGCCCCACATGTAACCGATGTGTAGAACAGTTTGACCATCATTGTCCATGGATATCTAATTGTGTTGGAAAGAGAAACAAACGGGATTTCTTTATATTTATCTGCTTAGGAACTTTGACGTCACTCCTTTCTACTGCCGTTGCAGTTCAAAGGATTTGGAGTGCATTGCCGGGATTGCAAACAGAAGAAACATGGATTCGTCGTGTGGTAGTTCAATATCCTAGTATTGTTGCTTTTCTGTTTGTGGACATAATCATTTTGATAGCTGCTACAACCCTAACGAAGGCACAGGCAACTCAGATAGCTCGAAATATCACCACCAATGAATTGGCAAATGCTAATCGTTATGGGTATCTTCGCGGTCCAGATGGGCGGTTCCAAAACCCGTATAACCATGGGTGCAGAAAAATTGTTCTGATTTTCTGATTCAGGGCCACACTGATGATGATGAAATTGCCTGGTCTCCATTGCAGCAGGTTGCCAGTTAGTACTCAGAACGTTAATCGGTCCTCTCCATTGTCCCAGGCTACGGATGACGCTTGGCGTTCCACCTGTATTTGCTTGTATCTAGGTTACCCAATTCGTATACATAATTCCCGGTCATTTACTACTACTACAAAGTACAAACTCCATTTTCAGTTAGCCACCACATGTACAATTGAAACAACAAAATGCAAAAGAAATGAAAGCTTTTTATCGTGCGATTGTCTTCTGCACAGATCGTCTTTCTCCTCAGTTTCAGATTATTATTGGCATGGAAT
Protein Sequence
  • />MD10G1058600
    MASSEIEVVSSEPKTQKNPAEMPVLDVFSASAYGDFQKLRKFVEQDGASLSKPDVHGYYALHWAALNNFPDIAHYIIQWHGGDVSATDNVQQTALHWAAVQGAILAADVLLQNGARVEAADVHDYRAGPNPHITQFLQKELKKLNWGGGGDYREFRKEENAMGRMLILSYLFWFPVYHSYTFDLGPISLKVVPHSLALLLYICIVGHAVHVAAQYGQTSFLNHIVAIYHADFDAPDNEGRSPLHWAAYKGFADTVRLLLFRDACQGRQDKEGCTPLHWAALRGNMEACTVLVYAGSKKELMVKDNTGFTPVQIASDKGHQRVALFLANQQRAHRKCWRDKFCIGKMADIGYAPVLLCIIVFQTVLFMNSVLAAPNLTKVTAAVGLWGWAAISLAVGSLIMFYRCSSKDPGYIKRAGDFSNPINTEIIRPVRSKHCPTCNRCVEQFDHHCPWISNCVGKRNKRDFFIFICLGTLTSLLSTAVAVQRIWSALPGLQTEETWIRRVVVQYPSIVAFLFVDIIILIAATTLTKAQATQIARNITTNELANANRYGYLRGPDGRFQNPYNHGCRKIVLIF