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ARPC4 基因座的表达多态性将肌动蛋白细胞骨架与拟南芥对核盘菌的定量疾病抗性联系起来。

Expression polymorphism at the ARPC4 locus links the actin cytoskeleton with quantitative disease resistance to Sclerotinia sclerotiorum in Arabidopsis thaliana.

机构信息

LIPM, Université de Toulouse, INRA, CNRS, 31326, Castanet-Tolosan, France.

Plateforme Imagerie, Pôle de Biotechnologie Végétale, Fédération de Recherche 3450, 31326, Castanet-Tolosan, France.

出版信息

New Phytol. 2019 Apr;222(1):480-496. doi: 10.1111/nph.15580. Epub 2018 Dec 3.

Abstract

Quantitative disease resistance (QDR) is a form of plant immunity widespread in nature, and the only one active against broad host range fungal pathogens. The genetic determinants of QDR are complex and largely unknown, and are thought to rely partly on genes controlling plant morphology and development. We used genome-wide association mapping in Arabidopsis thaliana to identify ARPC4 as associated with QDR against the necrotrophic fungal pathogen Sclerotinia sclerotiorum. Mutants impaired in ARPC4 showed enhanced susceptibility to S. sclerotiorum, defects in the structure of the actin filaments and in their responsiveness to S. sclerotiorum. Disruption of ARPC4 also alters callose deposition and the expression of defense-related genes upon S. sclerotiorum infection. Analysis of ARPC4 diversity in A. thaliana identified one haplotype (ARPC4 ) showing a c. 1 kbp insertion in ARPC4 regulatory region and associated with higher level of QDR. Accessions from the ARPC4 haplotype showed enhanced ARPC4 expression upon S. sclerotiorum challenge, indicating that polymorphisms in ARPC4 regulatory region are associated with enhanced QDR. This work identifies a novel actor of plant QDR against a fungal pathogen and provides a prime example of genetic mechanisms leading to the recruitment of cell morphology processes in plant immunity.

摘要

定量疾病抗性 (QDR) 是一种广泛存在于自然界中的植物免疫形式,也是唯一针对广泛宿主范围真菌病原体的免疫形式。QDR 的遗传决定因素复杂且很大程度上未知,据认为部分依赖于控制植物形态和发育的基因。我们使用拟南芥的全基因组关联图谱绘制来鉴定 ARPC4 与对坏死性真菌病原体核盘菌的 QDR 相关。ARPC4 缺陷型突变体对 S. sclerotiorum 的敏感性增强,肌动蛋白丝的结构和对 S. sclerotiorum 的反应性存在缺陷。ARPC4 的破坏还改变了在 S. sclerotiorum 感染时的胼胝质沉积和防御相关基因的表达。在拟南芥中对 ARPC4 多样性的分析确定了一个单倍型 (ARPC4),其在 ARPC4 调控区域显示出约 1kbp 的插入,与更高水平的 QDR 相关。来自 ARPC4 单倍型的品系在受到 S. sclerotiorum 挑战时显示出增强的 ARPC4 表达,表明 ARPC4 调控区域的多态性与增强的 QDR 相关。这项工作鉴定了一种针对真菌病原体的植物 QDR 的新型作用因子,并提供了遗传机制导致植物免疫中细胞形态过程招募的一个主要例子。

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