Gene Details:

Functional Descriptions:

  • Functional analysis of OsPGIP1 in rice sheath blight resistance.
  • Furthermore, the levels of sheath blight resistance were in accordance with the expression levels of OsPGIP1 in the transgenic lines.
  • Our results reveal the functions of OsPGIP1 and its resistance mechanism to rice sheath blight, which will facilitate rice breeding for sheath blight resistance.
  • Our results also show that OsPGIP1 is most highly expressed at the late tillering stage in the sheath of YSBR1, coinciding with the critical stage of SB development in field.
  • Overexpression of OsPGIP1 Enhances Rice Resistance to Sheath Blight.
  • Overexpression of OsPGIP1 significantly increased rice resistance to SB and inhibited tissue degradation caused by R.
  • Together, our results not only demonstrate the important role of OsPGIP1 in combatting the rice SB disease but also provide a new avenue to the improvement of rice SB resistance by manipulating an endogenous gene.
  • Furthermore, OsPGIP1 overexpression did not affect rice agronomic traits or yield components.
  • Our real-time reverse-transcription polymerase chain reaction results indicated that resistant rice ‘YSBR1’ and ‘Jasmine 85’ express significantly higher levels of OsPGIP1 than susceptible ‘Lemont’.

Literature:

Gene Resources:

  • NCBI ID:
  • UniProt accessions:

Sequences:

cDNA Sequence
  • >LOC_Os05g01380.1
    AATGCCCAACTAAATTGGAGTGGAGGCTACTACCTAATTAATACGATATCCTACAAGAACAAGATGCGCGCCATGGTCGTCGTTCTTGTGCTCGCCGCGGCCGGCGCCGCCGCTGCCACCACGAAGAAGAAGGAGTGCAACGCCGGCGACAAGGCCGCACTGCTGGCCATCAAGAAGGCCCTCGGCGACCCCTACCACTTCGCCTCCTGGACGCCCGACAACCTCTGCTGCGAATGGTACGACGTCACCTGCGACGACACCACCGACCGCGTCGTCGGCCTCTCCGTCTTCCAGGACGCCAACCTCACCGGCACCATCCCCGACGCCGTCGCCGGCCTCACCCACCTCCGCACCCTCACGTGGCACCACCTCCCCCAGATCTCCGGCCCCATCCCGCCGGCGATCGCCAAGCTCAACCGCCTCTCCCTCCTCATCATCTCCTGGACCGCCGTCTCCGGCCCCGTCCCCTCCTTCCTCGGCGGGCTCAAGAGCCTCACCCTCCTCGATCTCTCCTTCAACTCCCTCACCGGCGCCATCCCGCCGTCGCTCGCCGCCCTCCCCTTCCTCAGCGGCATCGACATCAGCCGCAACCGCCTCACCGGCCCCCTGCCGCCGGCGCTCTTCAGCAAGCTCAACACCACGCAGCAGGGCGGCGCCTACCTGAGGCTGTCGCGGAACAACCTCACCGGCGGCATCCCGGCCGAGTACGGCGGCGTGGCGTTCGAGGTGATGGACCTGTCGCGCAACGCGCTGAGCTTCGACATGACCGGGCTGCGGCTGCAGGAAGGGGTGAGCTCGCTGGACCTCAGCCACAACATGCTGTACGGCGGCGTGCCGGCGCAGGTGGCCGGGCTGAGCAGCCTGCAGGACTTCAACGTCAGCTACAACCGCCTCTGCGGCGAGCTGCCCGCCGGCGCCGCGAGGTTCGATCAGTACTCCTTCTTCCACAACAAGTGCCTCTGCGGACCGCCGCTCCCTACTCCCTGCAATTAAGCTCCCATTACTTAATTACTAGCTATGTGGTGAAATTATACATCAGCAATGCAAGCAAAATAAATAAATAAATATATATATATATATATATATATATATATATATATATATATATATATATATATATATATTTGTATAATGATTTTAATAAGTCAAAAACAGATTGATGCATTTGGAAGGAATGATTAATAAAGCTGTGTTCAATTGTTTCTGGGACAATTAA
CDS Sequence
  • >LOC_Os05g01380.1
    ATGCGCGCCATGGTCGTCGTTCTTGTGCTCGCCGCGGCCGGCGCCGCCGCTGCCACCACGAAGAAGAAGGAGTGCAACGCCGGCGACAAGGCCGCACTGCTGGCCATCAAGAAGGCCCTCGGCGACCCCTACCACTTCGCCTCCTGGACGCCCGACAACCTCTGCTGCGAATGGTACGACGTCACCTGCGACGACACCACCGACCGCGTCGTCGGCCTCTCCGTCTTCCAGGACGCCAACCTCACCGGCACCATCCCCGACGCCGTCGCCGGCCTCACCCACCTCCGCACCCTCACGTGGCACCACCTCCCCCAGATCTCCGGCCCCATCCCGCCGGCGATCGCCAAGCTCAACCGCCTCTCCCTCCTCATCATCTCCTGGACCGCCGTCTCCGGCCCCGTCCCCTCCTTCCTCGGCGGGCTCAAGAGCCTCACCCTCCTCGATCTCTCCTTCAACTCCCTCACCGGCGCCATCCCGCCGTCGCTCGCCGCCCTCCCCTTCCTCAGCGGCATCGACATCAGCCGCAACCGCCTCACCGGCCCCCTGCCGCCGGCGCTCTTCAGCAAGCTCAACACCACGCAGCAGGGCGGCGCCTACCTGAGGCTGTCGCGGAACAACCTCACCGGCGGCATCCCGGCCGAGTACGGCGGCGTGGCGTTCGAGGTGATGGACCTGTCGCGCAACGCGCTGAGCTTCGACATGACCGGGCTGCGGCTGCAGGAAGGGGTGAGCTCGCTGGACCTCAGCCACAACATGCTGTACGGCGGCGTGCCGGCGCAGGTGGCCGGGCTGAGCAGCCTGCAGGACTTCAACGTCAGCTACAACCGCCTCTGCGGCGAGCTGCCCGCCGGCGCCGCGAGGTTCGATCAGTACTCCTTCTTCCACAACAAGTGCCTCTGCGGACCGCCGCTCCCTACTCCCTGCAATTAA
Protein Sequence
  • >LOC_Os05g01380.1
    MRAMVVVLVLAAAGAAAATTKKKECNAGDKAALLAIKKALGDPYHFASWTPDNLCCEWYDVTCDDTTDRVVGLSVFQDANLTGTIPDAVAGLTHLRTLTWHHLPQISGPIPPAIAKLNRLSLLIISWTAVSGPVPSFLGGLKSLTLLDLSFNSLTGAIPPSLAALPFLSGIDISRNRLTGPLPPALFSKLNTTQQGGAYLRLSRNNLTGGIPAEYGGVAFEVMDLSRNALSFDMTGLRLQEGVSSLDLSHNMLYGGVPAQVAGLSSLQDFNVSYNRLCGELPAGAARFDQYSFFHNKCLCGPPLPTPCN*