Li Chenchen, Chen Ziqiang, Deng Yun, Jiang Shuyu, Su Yan, Yang Shaohua, Lin Yan, Tian Dagang
Biotechnology Research Institute, Fujian Academy of Agricultural Sciences, Fuzhou, 350003, Fujian, China.
College of Agriculture, College of Life Science, Fujian Agricultural and Forestry University, Fuzhou, 350002, China.
Stress Biol. 2023 Sep 12;3(1):39. doi: 10.1007/s44154-023-00118-w.
Rice blast, caused by Magnaporthe oryzae, is one of the most destructive rice diseases. Developing blast-resistant rice cultivars represents the most economical and environmentally friend strategy for managing the disease. In our previous study, an isobaric tags for relative and absolute quantitation (iTRAQ)-based comparative protein quantification was carried out to investigate the resistance gene Piz-t gene-mediated resistance response to infection in two contrasting rice genotypes of the Piz-t transgenic Nipponbare line (NPB-Piz-t) and its wild-type Nipponbare (NPB). Here, from the comparisons of differentially expressed proteins (DEPs) of NPB-Piz-t to the avirulent isolate KJ201 (KJ201-Piz-t)and the virulent isolate RB22 (RB22-Piz-t) with mock-treated NPB-Piz-t (Mock-Piz-t), NPB to the virulent isolate KJ201(KJ201-NPB) and RB22 (RB22-NPB) with mock-treated NPB (Mock-NPB), 1, 1, and 6 common DEPs were, respectively, identified at 24, 48 and 72 h post-inoculation (hpi) in the susceptible comparisons of RB22-Pizt/Mock-Piz-t, KJ201-NPB/Mock-NPB, and RB22-NPB/Mock-NPB, involving in gi|54,290,836 and gi|59,800,021 were identified in the resistance comparison KJ201-Piz-t/Mock-Piz-t at 48 and 72 hpi respectively. Moreover, four genes of Os01g0138900 (gi|54,290,836), Os04g0659300 (gi|59,800,021), Os09g0315700 (gi|125,563,186) or Os04g0394200 (gi|21,740,743) were knocked out or overexpressed in NPB using gene over-expression and CRISPR/Cas9 technology, and results verified that the Os01g0138900 obviously affected the rice blast resistance. Further, expression and targeted metabolomics analysis illuminated the resistance response of cysteine-containing substances as gi|59,800,021 under blast infection. These results provide new targets for basal resistance gene identification and open avenues for developing novel rice blast resistant materials.
由稻瘟病菌引起的稻瘟病是最具破坏性的水稻病害之一。培育抗稻瘟病水稻品种是防治该病最经济且环保的策略。在我们之前的研究中,进行了基于相对和绝对定量的等压标签(iTRAQ)的比较蛋白质定量分析,以研究抗性基因Piz - t基因介导的对感染的抗性反应,该反应存在于Piz - t转基因日本晴品系(NPB - Piz - t)及其野生型日本晴(NPB)这两种形成对比的水稻基因型中。在此,通过比较NPB - Piz - t与无毒分离株KJ201(KJ201 - Piz - t)和有毒分离株RB22(RB22 - Piz - t)以及模拟处理的NPB - Piz - t(Mock - Piz - t)之间的差异表达蛋白(DEP),NPB与有毒分离株KJ201(KJ201 - NPB)和RB22(RB22 - NPB)以及模拟处理的NPB(Mock - NPB)之间的差异表达蛋白,在接种后24、48和72小时(hpi),分别在RB22 - Pizt/Mock - Piz - t、KJ201 - NPB/Mock - NPB和RB22 - NPB/Mock - NPB的感病比较中鉴定出1个、1个和6个共同的差异表达蛋白,在抗性比较KJ201 - Piz - t/Mock - Piz - t中,分别在48和72 hpi鉴定出涉及gi|54,290,836和gi|59,800,021的差异表达蛋白。此外,利用基因过表达和CRISPR/Cas9技术在NPB中敲除或过表达了Os01g0138900(gi|54,290,836)、Os04g0659300(gi|59,800,021)、Os09g0315700(gi|125,563,186)或Os04g0394200(gi|21,740,743)这四个基因,结果证实Os01g0138900明显影响水稻对稻瘟病的抗性。此外,表达和靶向代谢组学分析揭示了在稻瘟病感染下,作为gi|59,800,021的含半胱氨酸物质的抗性反应。这些结果为基础抗性基因鉴定提供了新的靶点,并为开发新型抗稻瘟病水稻材料开辟了道路。