Gene Details:

Functional Descriptions:

  • Overexpression of OsMsr9 in Arabidopsis and rice showed enhanced salt stress tolerance displaying increased shoot and root elongation, higher survival rates in transgenic plants compared with wild type.
  • In a previous study, it has been shown that OsMsr9 was induced by cold, drought and heat stresses.
  • Here, we report that OsMsr9 plays roles in salt tolerance in plants.
  • Quantitative real-time PCR (qPCR) analysis revealed that OsMsr9 was also rapidly and strongly induced by salt stress.
  • OsMsr9 might act as a positive regulator of plant salt tolerance with reinforced expression of stress-related genes, such as RD29A, DREB2A and RAB18 in transgenic plants under salt conditions.
  • These results indicate that OsMsr9 could be a useful gene in developing transgenic crops with enhanced salt tolerance.
  • OsFBX257 expression level modulates root architecture and drought stress tolerance in rice.
  • OsFBX257 knockdown (OsFBX257(KD) ) lines show reduced total root length and depth, crown root number, panicle size and survival under stress.
  • Stress-induced F-Box protein-coding gene OsFBX257 modulates drought stress adaptations and ABA responses in rice.
  • OsFBX257 is a promising breeding target for alleviating drought stress-induced damage in rice.
  • OsFBX257 is co-expressed in a network involving protein kinases and phosphatases.
  • We show that OsFBX257 can bind the kinases OsCDPK1 and OsSAPK2, and that its phosphorylation can be reversed by phosphatase OsPP2C08.

Literature:

Gene Resources:

Sequences:

cDNA Sequence
  • >LOC_Os07g37400.1
    CTATTTTTACCACTTCATTCTCCATTCAGTTTGCTTAGCGAGTTAGGGGGGAAAAAAGCTACGAGGTTTTCTTGGATCATCCGACGAACTCGAGTGATTGATTGATTTACCCAAGTCTGTTATTGTAGTGATTTACCCGAGGTTTTTTGTTTTCGTTTTCGTTCTTGCGAGGGGTGGGTGAGAGATTACAGGGGGGATTTTCTCCGACTTGGAAGGAGCAGAGAAAGATTTGCGTTTAGAAGATCTGAGGTCAGGTTACTCCACTAATTTCTACCACGAAACAGAGTAGAGTAGGATTTGACATCGGAAGGGGAAACAAAAATGGCAATTGGACAGGCGAAGACGAAGAGCTCTCTCTCCACGAGCTTGAGCTTCTCTTGCAGCAGCACGAGGATCCTGGGGAGGAAGAGGGTCGCCGTCTCGCCGGCTCCGCCCCCCTCCGGCGGCCCGCACTCGCCGGTGCGGACTCTCCGCAAGCAGCGGAGCACCAGGCTCCACATGGACGACGCCGTCAGCCTGCTCGAATCACTGCCTCAAGATGTCTTGATTAAGGTCTTGTGCAAGGTGAACCACAGTGACCTGAGGCCGCTGCTCCTAGTGTCAAAACAAGTTAGCGAAGCAACGGTGGTTGCGAGAGAGCAGCATTTCGCGTTTGCGACGCCATCCTCGAAGGCCGCCTTGAGAGGCGGCGAGGAGGAAGAAGAAGCTCCCGGGGCGCCCAAGCTGCAACGCAGGGTTGCGAGGTCGTCGCCCGTCTGGGGCAAGAACCTTGCCAGCATCAGCGTCAACCTGTTCGAGGCGTTCGAATCGGAGGTTGTAGAGATGTAAATATTATTACAGGACACGCGCTTCAGTTTCAGCAATTCAGCTTATACTTTGCTCGTGTATATTTTCATCCTTTTAGTGTTCTTAGTGTTAGGTTATAAAATGTTAGGAGTGCATTTTGTAGCTCACGTCAAACAGAGGAGAAAAAAAACTTAGGTAGTGATACTGTTATTAATCTCATACTAGTAGCATGTGTTAGGAGTAGCTATAAATGGTCGTTCTTCAATGCTGTGATTGAAGAGAACACGACGCCTTGTGTAATAAGTTTCATATAAGCATCGAATGCATGAATTATCAGGAGATCTCTCTTCTTTTTTATGTGTAACATATGCTGTTTGTGT
CDS Sequence
  • >LOC_Os07g37400.1
    ATGGCAATTGGACAGGCGAAGACGAAGAGCTCTCTCTCCACGAGCTTGAGCTTCTCTTGCAGCAGCACGAGGATCCTGGGGAGGAAGAGGGTCGCCGTCTCGCCGGCTCCGCCCCCCTCCGGCGGCCCGCACTCGCCGGTGCGGACTCTCCGCAAGCAGCGGAGCACCAGGCTCCACATGGACGACGCCGTCAGCCTGCTCGAATCACTGCCTCAAGATGTCTTGATTAAGGTCTTGTGCAAGGTGAACCACAGTGACCTGAGGCCGCTGCTCCTAGTGTCAAAACAAGTTAGCGAAGCAACGGTGGTTGCGAGAGAGCAGCATTTCGCGTTTGCGACGCCATCCTCGAAGGCCGCCTTGAGAGGCGGCGAGGAGGAAGAAGAAGCTCCCGGGGCGCCCAAGCTGCAACGCAGGGTTGCGAGGTCGTCGCCCGTCTGGGGCAAGAACCTTGCCAGCATCAGCGTCAACCTGTTCGAGGCGTTCGAATCGGAGGTTGTAGAGATGTAA
Protein Sequence
  • >LOC_Os07g37400.1
    MAIGQAKTKSSLSTSLSFSCSSTRILGRKRVAVSPAPPPSGGPHSPVRTLRKQRSTRLHMDDAVSLLESLPQDVLIKVLCKVNHSDLRPLLLVSKQVSEATVVAREQHFAFATPSSKAALRGGEEEEEAPGAPKLQRRVARSSPVWGKNLASISVNLFEAFESEVVEM*