Gene Details:

Functional Descriptions:

  • BnGLIP1 could be used as a potential target to improve S. sclerotiorum resistance in rapeseed breeding.
  • BnGLIP1 is the functional equivalent of AtGDSL1 and has a broad application in rapeseed S. sclerotiorum-resistance breeding.
  • A candidate gene association study revealed that only one AtGDSL1 homolog from rapeseed, BnaC07g35650D (BnGLIP1), significantly contributed to resistance traits in a natural B. napus population, and the resistance function was also confirmed by a transient expression assay in tobacco leaves.

Literature:

Gene Resources:

  • NCBI ID:
  • UniProt accessions:

Sequences:

cDNA Sequence
  • >BnaC07g35650D
    ATGGCTAGAGTTTGTGTAATGATTATGATGATGGTAGCTATGATCTTGAACGTAGCTATAGGTGAACCAATAGCACCGTGTTACTTCATATTTGGTGATTCTTTGGTTGACAGTGGAAACAACAATCAGCTTCAATCCTTAGCAAGAGCTGACTACTTCCCTTACGGTATCGACTTCCAGTTTGGTCCAACAGGCAGATTCTGTAATGGAAAAACAACCGTCGATGCCATCACTGAGCTTCTTGGTTTCGATGACTACATTACACCATATTCTCAAGCAAGCGGAGAAGACATCCTACGAGGAGTAAACTACGCTTCTGCAGCTGCTGGAGTTCGAGAAGAAACCGGCCGTCAGCTGGGAGCTAGAATAACGTTTGCAGGGCAAGTAGCTAATCACGTGAACACTGTGTCGCAAGTGGTGAACATTCTCGGAGACGAGAACCAAGCTGCTAATTACCTAAGCAAATGCATCTACTCGATTGGTTTGGGAAGTAACGACTATCTCAATAACTACTTTATGCCTCTCTATTACTCCACCGGGAACCAGTACTCTCCAGATTCCTTTGCCAACGACCTTATCAACCGCTACACTGAGCAACTCAGGATATTGTATAACAATGGAGCGAGGAAGTTTGCGCTAATTGGTATCGGCGCAATAGGATGTAGCCCTAACGAGCTGGCGCAGAACAGCAGAGACGGGACGACTTGTGACGAAAGGATCAACTCAGCAAACAGGATCTTTAACAGCAAGCTGGTGTCTCTGGTGGACCATTTCAACCAAAACACTCCAGATGCTAAGTTCACTTACATCAATGCTTATGGTATCTTCCAAGACATGGTAGCTAACCCTTCTCGCTATGGGTTTAGGGTGACAAACGCGGGTTGTTGTGGAGTTGGGAGGAACAATGGACAGATAACTTGTCTTCCAGGTCAAGCTCCATGTCTGAACAGGGATGAGTTTGTGTTCTGGGATGCGTTTCATCCGGGAGAAGCAGCGAATATCGTGATCGGTAGTCGATCTTTTAGGAGAGAATCTCCATCTGATGCTCACCCTTATGATATCCAGCAGCTTGCTTTGCTCTAG
CDS Sequence
  • >BnaC07g35650D
    ATGGCTAGAGTTTGTGTAATGATTATGATGATGGTAGCTATGATCTTGAACGTAGCTATAGGTGAACCAATAGCACCGTGTTACTTCATATTTGGTGATTCTTTGGTTGACAGTGGAAACAACAATCAGCTTCAATCCTTAGCAAGAGCTGACTACTTCCCTTACGGTATCGACTTCCAGTTTGGTCCAACAGGCAGATTCTGTAATGGAAAAACAACCGTCGATGCCATCACTGAGCTTCTTGGTTTCGATGACTACATTACACCATATTCTCAAGCAAGCGGAGAAGACATCCTACGAGGAGTAAACTACGCTTCTGCAGCTGCTGGAGTTCGAGAAGAAACCGGCCGTCAGCTGGGAGCTAGAATAACGTTTGCAGGGCAAGTAGCTAATCACGTGAACACTGTGTCGCAAGTGGTGAACATTCTCGGAGACGAGAACCAAGCTGCTAATTACCTAAGCAAATGCATCTACTCGATTGGTTTGGGAAGTAACGACTATCTCAATAACTACTTTATGCCTCTCTATTACTCCACCGGGAACCAGTACTCTCCAGATTCCTTTGCCAACGACCTTATCAACCGCTACACTGAGCAACTCAGGATATTGTATAACAATGGAGCGAGGAAGTTTGCGCTAATTGGTATCGGCGCAATAGGATGTAGCCCTAACGAGCTGGCGCAGAACAGCAGAGACGGGACGACTTGTGACGAAAGGATCAACTCAGCAAACAGGATCTTTAACAGCAAGCTGGTGTCTCTGGTGGACCATTTCAACCAAAACACTCCAGATGCTAAGTTCACTTACATCAATGCTTATGGTATCTTCCAAGACATGGTAGCTAACCCTTCTCGCTATGGGTTTAGGGTGACAAACGCGGGTTGTTGTGGAGTTGGGAGGAACAATGGACAGATAACTTGTCTTCCAGGTCAAGCTCCATGTCTGAACAGGGATGAGTTTGTGTTCTGGGATGCGTTTCATCCGGGAGAAGCAGCGAATATCGTGATCGGTAGTCGATCTTTTAGGAGAGAATCTCCATCTGATGCTCACCCTTATGATATCCAGCAGCTTGCTTTGCTCTAG
Protein Sequence
  • >BnaC07g35650D
    MARVCVMIMMMVAMILNVAIGEPIAPCYFIFGDSLVDSGNNNQLQSLARADYFPYGIDFQFGPTGRFCNGKTTVDAITELLGFDDYITPYSQASGEDILRGVNYASAAAGVREETGRQLGARITFAGQVANHVNTVSQVVNILGDENQAANYLSKCIYSIGLGSNDYLNNYFMPLYYSTGNQYSPDSFANDLINRYTEQLRILYNNGARKFALIGIGAIGCSPNELAQNSRDGTTCDERINSANRIFNSKLVSLVDHFNQNTPDAKFTYINAYGIFQDMVANPSRYGFRVTNAGCCGVGRNNGQITCLPGQAPCLNRDEFVFWDAFHPGEAANIVIGSRSFRRESPSDAHPYDIQQLALL