Choi Naeyeoung, Im Jong Hee, Lee Eunhye, Lee Jinjeong, Choi Changhyun, Park Sang Ryeol, Hwang Duk-Ju
National Institute of Agricultural Science, Rural Development Administration, Jeonju, Korea.
J Exp Bot. 2020 Jun 22;71(12):3735-3748. doi: 10.1093/jxb/eraa135.
WRKY proteins play essential roles as negative or positive regulators of pathogen defense. This study explored the roles of different OsWRKY proteins in basal defense and Xa1-mediated resistance to Xanthomonas oryzae pv. oryzae (Xoo) infection in rice. Assays of disease in OsWRKY10KD and OsWRKY88KD lines following infection with an incompatible Xoo race, which induced Xa1-mediated resistance in wild-type plants, showed that OsWRKY10 and OsWRKY88 were positive regulators of Xa1-mediated resistance. OsWRKY10 also acted as a positive regulator in basal defense by directly or indirectly activating transcription of defense-related genes. OsWRKY10 activated the OsPR1a promoter by binding to specific WRKY binding sites. Two transcriptional regulatory cascades of OsWRKY10 were identified in basal defense and Xa1-mediated resistance. In the first transcriptional regulatory cascade, OsWRKY47 acted downstream of OsWRKY10 whereas OsWRKY51 acted upstream. OsWRKY10 activated OsPR1a in two distinct ways: by binding to its promoter and, at the same time, by indirect activation through OsWRKY47. In the second transcriptional regulatory cascade, OsWRKY47 acted downstream of OsWRKY10, and OsWRKY88 acted upstream. These OsWRKY10 transcriptional regulatory cascades played important roles in basal defense and Xa1-mediated resistance to enable the mounting of a rapid immune response against pathogens.
WRKY蛋白作为病原体防御的负调控因子或正调控因子发挥着重要作用。本研究探讨了不同水稻WRKY蛋白在水稻基础防御以及Xa1介导的对水稻白叶枯病菌(Xoo)感染的抗性中的作用。用不相容的Xoo小种感染后,对OsWRKY10KD和OsWRKY88KD株系进行病害检测,该小种在野生型植物中诱导Xa1介导的抗性,结果表明OsWRKY10和OsWRKY88是Xa1介导抗性的正调控因子。OsWRKY10还通过直接或间接激活防御相关基因的转录,在基础防御中充当正调控因子。OsWRKY10通过与特定的WRKY结合位点结合来激活OsPR1a启动子。在基础防御和Xa1介导的抗性中鉴定出了OsWRKY10的两个转录调控级联。在第一个转录调控级联中,OsWRKY47在OsWRKY10的下游起作用,而OsWRKY51在其上游起作用。OsWRKY10以两种不同方式激活OsPR1a:通过与它的启动子结合,同时通过OsWRKY47进行间接激活。在第二个转录调控级联中,OsWRKY47在OsWRKY10的下游起作用,而OsWRKY88在其上游起作用。这些OsWRKY10转录调控级联在基础防御和Xa1介导的抗性中发挥重要作用,从而能够针对病原体发起快速免疫反应。