National Education Ministry, Key Laboratory of Plant Genetic Improvement and Comprehensive Utilization, Fujian Agriculture and Forestry University, Fuzhou, Fujian 350002, China.
Key Laboratory of Applied Genetics of Universities in Fujian Province, Fujian Agriculture and Forestry University, Fuzhou, Fujian 350002, China.
Mol Plant Pathol. 2018 Oct;19(10):2221-2235. doi: 10.1111/mpp.12694. Epub 2018 Jul 17.
Tandem CCCH zinc finger (TZnF) proteins have been implicated in plant defence, but their role in pepper (Capsicum annuum) is unclear. In the present study, the role of CaC3H14, a pepper TZnF protein, in the immune response of pepper plants to Ralstonia solanacearum infection was characterized. When fused to the green fluorescent protein, CaC3H14 was localized exclusively to the nuclei in leaf cells of Nicotiana benthamiana plants transiently overexpressing CaC3H14. Transcript abundance of CaC3H14 was up-regulated by inoculation with R. solanacearum. Virus-induced silencing of CaC3H14 increased the susceptibility of the plants to R. solanacearum and down-regulated the genes associated with the hypersensitive response (HR), specifically HIR1 and salicylic acid (SA)-dependent PR1a. By contrast, silencing resulted in the up-regulation of jasmonic acid (JA)-dependent DEF1 and ethylene (ET) biosynthesis-associated ACO1. Transient overexpression of CaC3H14 in pepper triggered an intensive HR, indicated by cell death and hydrogen peroxide (H O ) accumulation, up-regulated PR1a and down-regulated DEF1 and ACO1. Ectopic overexpression of CaC3H14 in tobacco plants significantly decreased the susceptibility of tobacco plants to R. solanacearum. It also up-regulated HR-associated HSR515, immunity-associated GST1 and the SA-dependent marker genes NPR1 and PR2, but down-regulated JA-dependent PR1b and ET-dependent EFE26. The CaC3H14 promoter and was bound and its transcription was up-regulated by CaWRKY40. Collectively, these results indicate that CaC3H14 is transcriptionally targeted by CaWRKY40, is a modulator of the antagonistic interaction between SA and JA/ET signalling, and enhances the defence response of pepper plants to infection by R. solanacearum.
串联 CCCH 锌指 (TZnF) 蛋白已被牵涉到植物防御中,但它们在辣椒 (Capsicum annuum) 中的作用尚不清楚。在本研究中,鉴定了辣椒 TZnF 蛋白 CaC3H14 在辣椒植株对青枯病菌感染的免疫反应中的作用。当与绿色荧光蛋白融合时,CaC3H14 仅在瞬时过表达 CaC3H14 的烟草原生质体叶片细胞的核中定位。CaC3H14 的转录丰度因接种青枯病菌而上调。CaC3H14 的病毒诱导沉默增加了植物对青枯病菌的易感性,并下调了与过敏反应 (HR) 相关的基因,特别是 HIR1 和水杨酸 (SA) 依赖的 PR1a。相比之下,沉默导致茉莉酸 (JA) 依赖的 DEF1 和乙烯 (ET) 生物合成相关的 ACO1 上调。CaC3H14 在辣椒中的瞬时过表达引发了强烈的 HR,表现为细胞死亡和过氧化氢 (H O ) 积累,PR1a 上调,DEF1 和 ACO1 下调。CaC3H14 在烟草中的异位过表达显著降低了烟草对青枯病菌的易感性。它还上调了与 HR 相关的 HSR515、与免疫相关的 GST1 和与 SA 相关的标记基因 NPR1 和 PR2,但下调了与 JA 相关的 PR1b 和与 ET 相关的 EFE26。CaC3H14 启动子被 CaWRKY40 结合并上调其转录。总的来说,这些结果表明 CaC3H14 是 CaWRKY40 的转录靶标,是 SA 和 JA/ET 信号通路拮抗相互作用的调节剂,并增强了辣椒植株对青枯病菌感染的防御反应。