To prevent the invasion of pathogenic microbes, plants have evolved two major defense systems in addition to pre-formed barriers such as cell walls and leaf hairs ( Jones and Dangl, 2006). Taken together, these results indicate that XCT positively regulates RPW8.1-mediated cell death and disease resistance, and provide new insight into the regulatory mechanism of RPW8.1-mediated immunity. Consistently, the expression of RPW8.1 was down- and up-regulated in xct mutant and XCT overexpression lines, respectively. On the contrary, overexpression of XCT in R1Y4 background enhanced RPW8.1-mediated cell death, H 2O 2 production and resistance against powdery mildew. Here we further showed that mutation or down-regulation of XCT by artificial microRNA reduced RPW8.1-mediated immunity in R1Y4, a transgenic line expressing RPW8.1-YFP from the RPW8.1 native promoter. XCT has previously been identified as a circadian clock gene required for small RNA biogenesis and acting down-stream of ETHYLENE-INSENSITIVE3 ( EIN3) in the ethylene-signaling pathway. Map-based cloning identified a G-to-A point mutation at the 3′ splice site of the 8th intron, which resulted in splice shift to 8-bp down-stream of the original splice site of XCT in b3-17, and introduced into a stop codon after two codons leading to a truncated XCT. Forward genetic screen identified the b3-17 mutant that exhibited less cell death and susceptibility to powdery mildew and bacterial pathogens. Here, we report that XAP5 CIRCADIAN TIMEKEEPER ( XCT, At2g21150) positively regulates RPW8.1-mediated cell death and disease resistance. However, the underlying regulatory mechanism remains largely elusive. Ectopic expression of the Arabidopsis RESISTANCE TO POWDERY MILDEW8.1 ( RPW8.1) boosts pattern-triggered immunity leading to enhanced resistance to different pathogens in Arabidopsis and rice.
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