Cao Yinglong, Ding Xinhua, Cai Meng, Zhao Jing, Lin Yongjun, Li Xianghua, Xu Caiguo, Wang Shiping
National Key Laboratory of Crop Genetic Improvement, National Center of Plant Gene Research (Wuhan), Huazhong Agricultural University, Wuhan 430070, China.
Genetics. 2007 Sep;177(1):523-33. doi: 10.1534/genetics.107.075176. Epub 2007 Aug 24.
Genetic background and developmental stage influence the function of some disease resistance (R) genes. The molecular mechanisms of these modifications remain elusive. Our results show that the two factors are associated with the expression of the R gene in rice Xa3 (also known as Xa26)-mediated resistance to Xanthomonas oryzae pv. oryzae (Xoo), which in turn influences the expression of defense-responsive genes. The background of japonica rice, one of the two major subspecies of Asian cultivated rice, facilitates the function of Xa3 more than the background of indica rice, another rice subspecies. Xa3 expression gradually increases from early seedling stage to adult stage. Japonica plants carrying Xa3 regulated by the native promoter showed an enlarged resistance spectrum (i.e., resistance to more Xoo races), an increased resistance level (i.e., further reduced lesion length), and whole-growth-stage resistance compared to the indica rice; this enhanced resistance was associated with an increased expression of Xa3 throughout the growth stages in the japonica plants, which resulted in enhanced expression of defense-responsive genes. Overexpressing Xa3 with a constitutive strong promoter further enhanced rice resistance due to further increased Xa3 transcripts in both indica and japonica backgrounds, whereas regulating Xa3 with a pathogen-induced weak promoter impaired rice resistance.
遗传背景和发育阶段会影响一些抗病(R)基因的功能。这些修饰的分子机制仍不清楚。我们的结果表明,这两个因素与水稻Xa3(也称为Xa26)介导的对水稻白叶枯病菌(Xanthomonas oryzae pv. oryzae,Xoo)抗性中R基因的表达相关,进而影响防御反应基因的表达。亚洲栽培稻两个主要亚种之一的粳稻背景,比另一个亚种籼稻背景更有利于Xa3发挥功能。Xa3的表达从幼苗早期到成年期逐渐增加。与籼稻相比,携带由天然启动子调控的Xa3的粳稻植株表现出更宽的抗性谱(即对更多Xoo小种具有抗性)、更高的抗性水平(即病斑长度进一步缩短)以及全生育期抗性;这种增强的抗性与粳稻植株整个生长阶段Xa3表达增加有关,进而导致防御反应基因表达增强。在组成型强启动子作用下过表达Xa3,由于籼稻和粳稻背景下Xa3转录本进一步增加,进一步增强了水稻抗性,而用病原体诱导的弱启动子调控Xa3则损害了水稻抗性。