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大麦感染 f. 时疾病增强剂在易感互作中的作用。

Potentiators of Disease During Barley Infection by f. in a Susceptible Interaction.

机构信息

Centre for Crop and Disease Management, School of Molecular and Life Sciences, Curtin University, Bentley, WA 6102, Australia.

出版信息

Mol Plant Microbe Interact. 2021 Jul;34(7):779-792. doi: 10.1094/MPMI-10-20-0297-R. Epub 2021 Aug 25.

DOI:10.1094/MPMI-10-20-0297-R
PMID:33787315
Abstract

f. is a necrotrophic fungal pathogen and causal agent of net form net blotch (NFNB), a significant disease of barley. RNA-seq data encompassing asymptomatic and subsequent necrotrophic phases of the pathogen was obtained for f. isolate W1-1 in NFNB-sensitive cultivar Baudin. Host genes notably regulated during infection included concerted induction of over half the repertoire of disease resistance genes, together with genes involved in oxidation-reduction processes, characteristic of a hypersensitive response. Several systemic acquired resistance response genes were suppressed and there was a complete absence of defense-related thionin gene expression. In f. , genes involved in hydrolase activities and cell-wall catabolic processes were induced during infection, while nitrate assimilation and response to oxidative stress processes were suppressed. Timecourse data allowed a number of predicted f. effector genes with differing expression profiles to be identified that may underlie barley sensitivity to NFNB. Candidate genes involved in the host-pathogen interaction provide a basis for functional characterization and control strategies based on fungicide or mutation targets, which will facilitate further research aimed at controlling NFNB disease.[Formula: see text] Copyright © 2021 The Author(s). This is an open access article distributed under the CC BY 4.0 International license.

摘要

f. 是一种坏死型真菌病原体,也是大麦网斑病(NFNB)的致病菌。为研究 NFNB 敏感品种 Baudin 中 f. isolate W1-1 无症状和随后坏死阶段的病原体,我们获得了涵盖其的 RNA-seq 数据。感染过程中显著调控的宿主基因包括超过一半的抗病基因库的协同诱导,以及与氧化还原过程相关的基因,这是过敏反应的特征。几个系统获得性抗性反应基因被抑制,防御相关硫素基因表达完全缺失。在 f. 中,感染过程中诱导了与水解酶活性和细胞壁分解代谢过程相关的基因,而硝酸盐同化和对氧化应激过程的反应则受到抑制。时程数据允许识别出一些具有不同表达谱的预测 f. 效应基因,这些基因可能是大麦对 NFNB 敏感的基础。参与宿主-病原体相互作用的候选基因为基于杀菌剂或突变靶标的功能特征和控制策略提供了基础,这将有助于进一步研究控制 NFNB 疾病的方法。[公式:见正文]版权所有 © 2021 作者。这是一个在 CC BY 4.0 国际许可下分发的开放获取文章。

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