Yu Chu L, Yan Shun P, Wang Chang C, Hu Hai T, Sun Wei N, Yan Cheng Q, Chen Jian P, Yang Ling
College of Chemistry and Life Sciences, Zhejiang Normal University, Jinhua, China.
Phytochemistry. 2008 Jul;69(10):1989-96. doi: 10.1016/j.phytochem.2008.04.006. Epub 2008 Jun 3.
Rice bacterial blight, caused by Xanthomonasoryzae pv. Oryzae (Xoo), is one of the most serious rice diseases worldwide. The bacterial blight resistance trait from Oryza meyeriana, a wild rice species, was introduced into an elite japonica rice cultivar using asymmetric somatic hybridization. This study was carried out with the intention of understanding the molecular mechanism of incompatible interaction between Xoo and the stable somatic hybrids by using proteomic analyses. Proteins were extracted from leaves at 24, 48, and 72 h after Xoo inoculation and separated by 2-DE. A total of 77 protein spots changed their intensities significantly (p<0.05) by more than 1.5-fold at least at one time point. Sixty-four protein spots were successfully identified by MS analysis. Among them, 51 were known to be involved in photosynthesis. Up-regulation of Rubisco large subunit (RcbL) small fragments and down-regulation of RcbL big fragments indicated that intact RcbL and RcbL big fragments degraded following Xoo attack, which was further confirmed by Western blot analysis. The differential expression of proteins related to signal transduction, antioxidant defense, photosynthesis, metabolism, and protein turnover during the Xoo infection, suggests the existence of a complex regulatory network in the somatic hybrid rice that increases resistance toward Xoo infection and damage.
由稻黄单胞菌水稻致病变种(Xoo)引起的水稻白叶枯病是全球最严重的水稻病害之一。利用不对称体细胞杂交技术,将野生稻种大粒野生稻的白叶枯病抗性性状导入一个优良粳稻品种中。本研究旨在通过蛋白质组学分析,了解Xoo与稳定体细胞杂种之间不相容相互作用的分子机制。在接种Xoo后24、48和72小时从叶片中提取蛋白质,并通过二维电泳进行分离。共有77个蛋白质斑点在至少一个时间点上强度显著变化(p<0.05),变化倍数超过1.5倍。通过质谱分析成功鉴定出64个蛋白质斑点。其中,51个已知参与光合作用。Rubisco大亚基(RcbL)小片段的上调和RcbL大片段的下调表明,完整的RcbL和RcbL大片段在Xoo攻击后降解,蛋白质免疫印迹分析进一步证实了这一点。Xoo感染期间与信号转导、抗氧化防御、光合作用、代谢和蛋白质周转相关的蛋白质的差异表达,表明体细胞杂交水稻中存在一个复杂调控网络,可增强对Xoo感染和损害的抗性。