...
首页> 外文期刊>BMC Plant Biology >Proteomic identification of OsCYP2, a rice cyclophilin that confers salt tolerance in rice (Oryza sativa L.) seedlings when overexpressed
【24h】

Proteomic identification of OsCYP2, a rice cyclophilin that confers salt tolerance in rice (Oryza sativa L.) seedlings when overexpressed

机译:水稻亲环蛋白OsCYP2的蛋白质组学鉴定,在过表达时赋予水稻(Oryza sativa L.)幼苗耐盐性

获取原文
           

摘要

Background High Salinity is a major environmental stress influencing growth and development of rice. Comparative proteomic analysis of hybrid rice shoot proteins from Shanyou 10 seedlings, a salt-tolerant hybrid variety, and Liangyoupeijiu seedlings, a salt-sensitive hybrid variety, was performed to identify new components involved in salt-stress signaling. Results Phenotypic analysis of one protein that was upregulated during salt-induced stress, cyclophilin 2 (OsCYP2), indicated that OsCYP2 transgenic rice seedlings had better tolerance to salt stress than did wild-type seedlings. Interestingly, wild-type seedlings exhibited a marked reduction in maximal photochemical efficiency under salt stress, whereas no such change was observed for OsCYP2-transgenic seedlings. OsCYP2-transgenic seedlings had lower levels of lipid peroxidation products and higher activities of antioxidant enzymes than wild-type seedlings. Spatiotemporal expression analysis of OsCYP2 showed that it could be induced by salt stress in both Shanyou 10 and Liangyoupeijiu seedlings, but Shanyou 10 seedlings showed higher OsCYP2 expression levels. Moreover, circadian rhythm expression of OsCYP2 in Shanyou 10 seedlings occurred earlier than in Liangyoupeijiu seedlings. Treatment with PEG, heat, or ABA induced OsCYP2 expression in Shanyou 10 seedlings but inhibited its expression in Liangyoupeijiu seedlings. Cold stress inhibited OsCYP2 expression in Shanyou 10 and Liangyoupeijiu seedlings. In addition, OsCYP2 was strongly expressed in shoots but rarely in roots in two rice hybrid varieties. Conclusions Together, these data suggest that OsCYP2 may act as a key regulator that controls ROS level by modulating activities of antioxidant enzymes at translation level. OsCYP2 expression is not only induced by salt stress, but also regulated by circadian rhythm. Moreover, OsCYP2 is also likely to act as a key component that is involved in signal pathways of other types of stresses-PEG, heat, cold, or ABA.
机译:背景高盐度是影响水稻生长发育的主要环境胁迫。进行了蛋白质组学分析,比较了耐盐杂种汕优10号幼苗和耐盐杂种良pe培九幼苗的杂交水稻芽蛋白,以鉴定参与盐胁迫信号传导的新成分。结果对盐诱导的胁迫期间上调的一种蛋白质的表型分析,亲环蛋白2(OsCYP2)表明,OsCYP2转基因水稻幼苗对盐胁迫的耐受性比野生型幼苗高。有趣的是,野生型幼苗在盐胁迫下显示出最大光化学效率的显着降低,而OsCYP2转基因幼苗未观察到这种变化。与野生型幼苗相比,OsCYP2转基因幼苗的脂质过氧化产物水平较低,抗氧化酶活性较高。 OsCYP2的时空表达分析表明,盐胁迫可以在汕优10和两优培九幼苗中诱导其表达,但汕优10幼苗中OsCYP2的表达水平较高。此外,汕优10幼苗的OsCYP2昼夜节律表达早于两优培九幼苗。 PEG,高温或ABA处理均能在汕优10幼苗中诱导OsCYP2表达,但会在两优培九幼苗中抑制其表达。冷胁迫抑制了汕优10号和两优培九幼苗中OsCYP2的表达。此外,OsCYP2在两个水稻杂交品种的芽中强烈表达,但很少在根中表达。结论综上所述,这些数据表明OsCYP2可能是通过在翻译水平上调节抗氧化酶的活性来控制ROS水平的关键调节剂。 OsCYP2表达不仅受盐胁迫诱导,而且受昼夜节律调节。此外,OsCYP2也可能是参与其他类型压力(PEG,热,冷或ABA)信号通路的关键成分。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号