Verticillium dahliae Elicitor VdSP8 Enhances Disease Resistance Through Increasing Lignin Biosynthesis in Cotton.

IF 6 1区 生物学 Q1 PLANT SCIENCES
Yajuan Wang, Jun Qin, Mengmeng Wei, Xiwen Liao, Wenjing Shang, Jieyin Chen, Krishna V Subbarao, Xiaoping Hu
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Abstract

Verticillium wilt caused by the soil-borne fungus Verticillium dahliae Kleb., is a destructive plant disease that instigates severe losses in many crops. Improving plant resistance to Verticillium wilt has been a challenge in most crops. In this study, a V. dahliae secreted protein VdSP8 was identified and shown to activate hyper-sensitive response (HR) and systemic acquired resistance (SAR) to Pseudomonas syringae pv. tomato DC3000 (Pst DC3000) and Botrytis cinerea in tobacco plants. We identified a β-glucosidase named GhBGLU46 as a cotton plant target of VdSP8. VdSP8 interacts with GhBGLU46 both in vivo and in vitro and promotes the β-glucosidase activity of GhBGLU46. Silencing of GhBGLU46 reduced the expression of genes involved in lignin biosynthesis, such as GhCCR4, GhCCoAOMT2, GhCAD3 and GhCAD6, thus decreasing lignin deposition and increasing Verticillium wilt susceptibility. We have shown that GhBGLU46 is indispensable for the function of VdSP8 in plant resistance. These results suggest that plants have also evolved a strategy to exploit the invading effector protein VdSP8 to enhance plant resistance.

大丽轮枝菌诱导剂 VdSP8 通过增加棉花的木质素合成增强抗病性
由土生真菌大丽轮枝菌(Verticillium dahliae Kleb.)引起的枯萎病是一种破坏性植物病害,会给许多作物造成严重损失。提高植物对枯萎病的抗性一直是大多数作物面临的挑战。本研究发现了一种大丽轮枝菌分泌蛋白 VdSP8,并证明它能激活烟草植物对 Pseudomonas syringae pv. tomato DC3000(Pst DC3000)和 Botrytis cinerea 的超敏反应(HR)和系统获得性抗性(SAR)。我们发现一种名为 GhBGLU46 的 β-葡萄糖苷酶是 VdSP8 的棉花植物靶标。VdSP8 在体内和体外均与 GhBGLU46 相互作用,并促进 GhBGLU46 的 β-葡萄糖苷酶活性。沉默 GhBGLU46 会降低参与木质素生物合成的基因(如 GhCCR4、GhCCoAOMT2、GhCAD3 和 GhCAD6)的表达,从而减少木质素沉积,增加对轮纹病枯萎病的敏感性。我们已经证明,GhBGLU46 对于 VdSP8 在植物抗性中的功能是不可或缺的。这些结果表明,植物也进化出了一种利用入侵效应蛋白 VdSP8 来增强植物抗性的策略。
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来源期刊
Plant, Cell & Environment
Plant, Cell & Environment 生物-植物科学
CiteScore
13.30
自引率
4.10%
发文量
253
审稿时长
1.8 months
期刊介绍: Plant, Cell & Environment is a premier plant science journal, offering valuable insights into plant responses to their environment. Committed to publishing high-quality theoretical and experimental research, the journal covers a broad spectrum of factors, spanning from molecular to community levels. Researchers exploring various aspects of plant biology, physiology, and ecology contribute to the journal's comprehensive understanding of plant-environment interactions.
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