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棉 4-香豆酸辅酶 A 连接酶 3 通过促进茉莉酸信号转导介导的维管束木质化和代谢通量增强植物对黄萎病菌的抗性。

Cotton 4-coumarate-CoA ligase 3 enhanced plant resistance to Verticillium dahliae by promoting jasmonic acid signaling-mediated vascular lignification and metabolic flux.

机构信息

Hubei Hongshan Laboratory, National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan, 430070, China.

Department of Agronomy and Pastures, Faculty of Agriculture, Sana'a University, Sana'a, Yemen.

出版信息

Plant J. 2023 Jul;115(1):190-204. doi: 10.1111/tpj.16223. Epub 2023 Apr 26.

Abstract

Lignins and their antimicrobial-related polymers cooperatively enhance plant resistance to pathogens. Several isoforms of 4-coumarate-coenzyme A ligases (4CLs) have been identified as indispensable enzymes involved in lignin and flavonoid biosynthetic pathways. However, their roles in plant-pathogen interaction are still poorly understood. This study uncovers the role of Gh4CL3 in cotton resistance to the vascular pathogen Verticillium dahliae. The cotton 4CL3-CRISPR/Cas9 mutant (CR4cl) exhibited high susceptibility to V. dahliae. This susceptibility was most probably due to the reduction in the total lignin content and the biosynthesis of several phenolic metabolites, e.g., rutin, catechin, scopoletin glucoside, and chlorogenic acid, along with jasmonic acid (JA) attenuation. These changes were coupled with a significant reduction in 4CL activity toward p-coumaric acid substrate, and it is likely that recombinant Gh4CL3 could specifically catalyze p-coumaric acid to form p-coumaroyl-coenzyme A. Thus, overexpression of Gh4CL3 (OE4CL) showed increasing 4CL activity that augmented phenolic precursors, cinnamic, p-coumaric, and sinapic acids, channeling into lignin and flavonoid biosyntheses and enhanced resistance to V. dahliae. Besides, Gh4CL3 overexpression activated JA signaling that instantly stimulated lignin deposition and metabolic flux in response to pathogen, which all established an efficient plant defense response system, and inhibited V. dahliae mycelium growth. Our results propose that Gh4CL3 acts as a positive regulator for cotton resistance against V. dahliae by promoting JA signaling-mediated enhanced cell wall rigidity and metabolic flux.

摘要

木质素及其与抗微生物相关的聚合物协同增强植物对病原体的抗性。几种 4-香豆酸辅酶 A 连接酶(4CL)同工酶已被鉴定为参与木质素和类黄酮生物合成途径的不可或缺的酶。然而,它们在植物-病原体相互作用中的作用仍知之甚少。本研究揭示了 Gh4CL3 在棉花对维管束病原体黄萎病菌(Verticillium dahliae)抗性中的作用。棉花 4CL3-CRISPR/Cas9 突变体(CR4cl)对 V. dahliae 表现出高度的易感性。这种易感性很可能是由于总木质素含量和几种酚类代谢物(如芦丁、儿茶素、山柰酚葡萄糖苷和绿原酸)以及茉莉酸(JA)衰减的生物合成减少所致。这些变化伴随着对 p-香豆酸底物的 4CL 活性的显著降低,并且重组 Gh4CL3 很可能特异性催化 p-香豆酸形成 p-香豆酰辅酶 A。因此,Gh4CL3 的过表达(OE4CL)显示出增加的 4CL 活性,增加了酚类前体肉桂酸、对香豆酸和芥子酸,这些前体进入木质素和类黄酮的生物合成,并增强了对 V. dahliae 的抗性。此外,Gh4CL3 的过表达激活了 JA 信号通路,该信号通路立即刺激木质素沉积和代谢通量对病原体的反应,从而建立了一个有效的植物防御反应系统,并抑制了 V. dahliae 菌丝体的生长。我们的结果表明,Gh4CL3 通过促进 JA 信号通路介导的增强细胞壁刚性和代谢通量,作为棉花对 V. dahliae 抗性的正调控因子发挥作用。

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