生物
昼夜节律
生物钟
拟南芥
基因
植物免疫
遗传学
免疫系统
细胞生物学
植物抗病性
调节器
突变体
表型
霜霉病
神经科学
植物
作者
Wei Wang,Jinyoung Y. Barnaby,Yasuomi Tada,Hairi Li,Mahmut Tör,Daniela Caldelari,Dae-un Lee,Xiang‐Dong Fu,Xinnian Dong
出处
期刊:Nature
[Springer Nature]
日期:2011-02-01
卷期号:470 (7332): 110-114
被引量:411
摘要
The principal immune mechanism against biotrophic pathogens in plants is the resistance (R)-gene-mediated defence. It was proposed to share components with the broad-spectrum basal defence machinery. However, the underlying molecular mechanism is largely unknown. Here we report the identification of novel genes involved in R-gene-mediated resistance against downy mildew in Arabidopsis and their regulatory control by the circadian regulator, CIRCADIAN CLOCK-ASSOCIATED 1 (CCA1). Numerical clustering based on phenotypes of these gene mutants revealed that programmed cell death (PCD) is the major contributor to resistance. Mutants compromised in the R-gene-mediated PCD were also defective in basal resistance, establishing an interconnection between these two distinct defence mechanisms. Surprisingly, we found that these new defence genes are under circadian control by CCA1, allowing plants to 'anticipate' infection at dawn when the pathogen normally disperses the spores and time immune responses according to the perception of different pathogenic signals upon infection. Temporal control of the defence genes by CCA1 differentiates their involvement in basal and R-gene-mediated defence. Our study has revealed a key functional link between the circadian clock and plant immunity.
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