Gene Details:

Functional Descriptions:

  • Comprehensive analysis of multiprotein bridging factor 1 family genes and SlMBF1c negatively regulate the resistance to Botrytis cinerea in tomato.
  • The overexpression of SlMBF1c decreased the resistance of tomato to B. cinerea through enhancing the gene expression of the SA-mediated signaling pathway and depressing JA/ET-mediated signaling pathways. These results will facilitate future functional studies of the transcriptional co-activator family.
  • The overexpression of SlMBF1c reduced the resistance of tomato to B. cinerea, suggesting SlMBF1c functions as a negative regulator in the tomato resistance to B. cinerea. Overall, the present study laid the foundation for the further study of MBF1 genes, and their potentially use for trait improvement in the tomato.
  • The biological function of SlMBF1c was further identified through its overexpression in tomato, and the transgenic tomato lines showed increased susceptibility to Botrytis cinerea (B. cinerea).
  • Identified the biological function of SlMBF1c which negatively regulate the tomato resistance to B. cinerea.

Literature:

Gene Resources:

Orthologs:

Sequences:

cDNA Sequence
  • >Solyc07g062400.3.1
    GATTTGAGTAAGTTATTAGTATCTGTCTATATATAAAGGGTTGCACAGAAATGGAATATAATTTCGAAGCGTAATAACAAAGCGAAGAGAAGCAAGAGAGAGATTTTTCGAGCAAAGAAAAAAAAAATATGAGTGGAGGATTATCACAAGACTGGGAGCCGGTGGTGATCCGGAAGAAGGCACCGACCGCCGCCGCACGCAAGGATGAGAAAGCTGTCAACGCTGCCCGTCGCTCCGGTGCTGAGATCGAAACTATCAGAAAATCAACTGCTGGCTCAAACAGGGCTGCCTCTAGTAGTACGACCTTGAACACCAGGAAACTTGATGAAGATACTGAGAATCTGGCTCATCAAAAAGTACCGACTGAGCTGAAGAAAGCCATCATGCAAGCTCGACAAGATAAGAAGCTGACTCAGTCTCAACTTGCTCAGCTGATAAATGAGAAGCCTCAAATCATCCAGGAGTACGAGTCAGGAAAGGCAATTCCAAATCAACAAATCATCTCTAAACTGGAGAGAGCTCTTGGTGCCAAACTTAGAGGAAAGAAATGAAGAGCCTCTTGGCTTCTCAAATCTCTATTCCAGTTCTAACTGTAGTTATGTACATGGACAACTTTTTCTGTTAGCCCTCTTTCTATAGCCACTATGGGTGCTTGTGCCTTTGTATGGATCGATGGTTCTGGATTTCTTGGCTACATGGGTGTTATTTCTGTGGAAAAATAAGACGTTTATGCTTGTGCAAGGGATGTTATCTTGTGCTTCCCGTTTTCTTGAGAAAAAAGTTCTCAGTCTCTTGAAGCATGACATCCCCGTCATTCTTCAGATCAGCACTTGAGATATAATGGAAGACATAATTGGCATATGGGAATATGTCAAGTATATCCATTTGCTTTGTGGAATATAATTTGATGCTACAATTCTATACTAATGGAGATGTTACCTCTTCTATATAAAAATAATAATAATTGCCCTATGTGAATGATTTTGTATGTTCATTGTTACTGCATGTTATGCATTTTTAGCACTTATCTAGAATTAAGTTATTTATGAAGAGTTTCTACAGATTAGAGAAACTACTAAATATGAGCAGGAATATGTTTCTAGGAAATTACCCCGAGTAGTACAGAAAACTCCGCTATTTGTTACATTGATGTTGAAATTCTCATAAAGGTTAAATTACACTTGGTCCCAACATCTGCTACATTTACTAAATAGCACGAGTAGAGAATACTAGATTAAACAAGTGTCACTGTGCACCCGAAGAAAACGAAAAAACGAAAAGCAAACTAGGAAGTATATTACAAGTTCTAAAGAATCTATTCACAGGCCAATTTAGTGCCAAAACTGGTCAGGCAAATTGCAAACGCTTGGAAAGCAGACAAAGGCTTCCTGTAGTCCATTGTAAAAACATCATCTCCTACTTTTCCAAACTGGAGGATAACTGTATCCTCGTCACCTTTTCCATCAGGTTGGCTTTGGTCCATCGTTGCCACTAGCTGAAAGTTTTTCACAGATGCAACGGTGACCCTTCCATGGAAATTTAAACACCAACATTGCAAATGCTCATGCCATCTTGGAGCTTTGTTTTTCAGAACTGTAGAGTTGGCTTCTGCGGAACCAACCAGCTTCTTCTTCAGAGCATCCTGAGATTTGTCCGAGGCAGCTTCTCCAGGACAGGGGCAATTGAGCGAACAAATCATCCTCCTTGGTCCTCTTGACTTCAGCAGGTTTAACTTGTAGGAAACACTTCCCACTTCAAAATTACCAGCTGGTAATTGGGGACTAATTTGCTTACTTGCAAAACGTCGACAAGACCGGCTGCTTGATGGCCTTGCCCCATTGTGTGGGGCTTGACTATCATATATGGTAAAATTGGTTCCAAGAAAGTCCGATCTGTCAAGTTGGATTCAGTGGGAAGGTTAGAACATGAAGG
CDS Sequence
  • >Solyc07g062400.3.1
    ATGAGTGGAGGATTATCACAAGACTGGGAGCCGGTGGTGATCCGGAAGAAGGCACCGACCGCCGCCGCACGCAAGGATGAGAAAGCTGTCAACGCTGCCCGTCGCTCCGGTGCTGAGATCGAAACTATCAGAAAATCAACTGCTGGCTCAAACAGGGCTGCCTCTAGTAGTACGACCTTGAACACCAGGAAACTTGATGAAGATACTGAGAATCTGGCTCATCAAAAAGTACCGACTGAGCTGAAGAAAGCCATCATGCAAGCTCGACAAGATAAGAAGCTGACTCAGTCTCAACTTGCTCAGCTGATAAATGAGAAGCCTCAAATCATCCAGGAGTACGAGTCAGGAAAGGCAATTCCAAATCAACAAATCATCTCTAAACTGGAGAGAGCTCTTGGTGCCAAACTTAGAGGAAAGAAATGA
Protein Sequence
  • >Solyc07g062400.3.1
    MSGGLSQDWEPVVIRKKAPTAAARKDEKAVNAARRSGAEIETIRKSTAGSNRAASSSTTLNTRKLDEDTENLAHQKVPTELKKAIMQARQDKKLTQSQLAQLINEKPQIIQEYESGKAIPNQQIISKLERALGAKLRGKK*