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在高钾条件下,足够的香豆素积累可提高苹果对苹果轮纹病菌的抗性。

Sufficient coumarin accumulation improves apple resistance to Cytospora mali under high-potassium status.

机构信息

State Key Laboratory of Crop Stress Biology for Arid Areas and College of Plant Protection, Northwest A&F University, Yangling, Shaanxi 712100, China.

Department of Plant Pathology and Microbiology, Iowa State University, Ames 50011, USA.

出版信息

Plant Physiol. 2023 May 31;192(2):1396-1419. doi: 10.1093/plphys/kiad184.

Abstract

Cytospora canker, caused by Cytospora mali, is the most destructive disease in production of apples (Malus domestica). Adding potassium (K) to apple trees can effectively control this disease. However, the underlying mechanisms of apple resistance to C. mali under high-K (HK) status remain unknown. Here, we found that HK (9.30 g/kg) apple tissues exhibited high disease resistance. The resistance was impeded when blocking K channels, leading to susceptibility even under HK conditions. We detected a suite of resistance events in HK apple tissues, including upregulation of resistance genes, callose deposition, and formation of ligno-suberized tissues. Further multiomics revealed that the phenylpropanoid pathway was reprogrammed by increasing K content from low-K (LK, 4.30 g/kg) status, leading to increases of 18 antifungal chemicals. Among them, the physiological concentration of coumarin (1,2-benzopyrone) became sufficient to inhibit C. mali growth in HK tissues, and exogenous application could improve the C. mali resistance of LK apple branches. Transgenic apple calli overexpressing beta-glucosidase 40 (MdBGLU40), which encodes the enzyme for coumarin synthesis, contained higher levels of coumarin and exhibited high resistance to C. mali even under LK conditions. Conversely, the suppression of MdBGLU40 through RNAi reduced coumarin content and resistance in HK apple calli, supporting the importance of coumarin accumulation in vivo for apple resistance. Moreover, we found that the upregulation of transcription factor MdMYB1r1 directly activated MdBGLU40 and the binding affinity of MdMYB1r1 to the MdBGLU40 promoter increased in HK apple tissue, leading to high levels of coumarin and resistance in HK apple. Overall, we found that the accumulation of defensive metabolites strengthened resistance in apple when raising K from insufficient to optimal status, and these results highlight the optimization of K content in fertilization practices as a disease management strategy.

摘要

苹果(Malus domestica)生产中由 Cytospora mali 引起的 Cytospora 溃疡病是最具破坏性的病害。向苹果树添加钾(K)可以有效控制这种病害。然而,在高 K(HK)状态下,苹果对 C. mali 的抗性的潜在机制尚不清楚。在这里,我们发现 HK(9.30 g/kg)苹果组织表现出高抗病性。当阻断钾通道时,这种抗性会受到阻碍,即使在 HK 条件下也会导致易感性。我们在 HK 苹果组织中检测到一系列抗性事件,包括抗性基因的上调、胼胝质沉积和木质素-栓质化组织的形成。进一步的多组学分析表明,HK 条件下,通过增加 K 含量,苯丙烷途径被重新编程,导致 18 种抗真菌化学物质的增加。其中,香豆素(1,2-苯并吡喃酮)的生理浓度足以抑制 HK 组织中的 C. mali 生长,外源施加可提高 LK 苹果枝条对 C. mali 的抗性。过表达编码香豆素合成酶的β-葡萄糖苷酶 40(MdBGLU40)的转基因苹果愈伤组织中含有更高水平的香豆素,即使在 LK 条件下也表现出对 C. mali 的高抗性。相反,通过 RNAi 抑制 MdBGLU40 会降低 HK 苹果愈伤组织中的香豆素含量和抗性,这支持了香豆素在体内积累对苹果抗性的重要性。此外,我们发现转录因子 MdMYB1r1 的上调直接激活了 MdBGLU40,并且在 HK 苹果组织中,MdMYB1r1 与 MdBGLU40 启动子的结合亲和力增加,导致香豆素水平升高和 HK 苹果抗性增强。总体而言,我们发现,当从不足到最佳状态提高 K 时,防御性代谢物的积累增强了苹果的抗性,这些结果强调了在施肥实践中优化 K 含量作为一种病害管理策略的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6332/10231470/87c6360edc44/kiad184f1.jpg

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