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小麦茎基腐病菌转录组比较分析揭示了菌株在侵染植物过程中基因表达的显著差异。

Comparative Transcriptome Analyses in Zymoseptoria tritici Reveal Significant Differences in Gene Expression Among Strains During Plant Infection.

机构信息

1 Plant Pathology, Institute of Integrative Biology, ETH Zurich, 8092 Zurich, Switzerland; and.

2 Syngenta Crop Protection AG, Schaffhauserstrasse, 4332 Stein, Switzerland.

出版信息

Mol Plant Microbe Interact. 2017 Mar;30(3):231-244. doi: 10.1094/MPMI-07-16-0146-R. Epub 2017 Mar 29.

Abstract

Zymoseptoria tritici is an ascomycete fungus that causes Septoria tritici blotch, a globally distributed foliar disease on wheat. Z. tritici populations are highly polymorphic and exhibit significant quantitative variation for virulence. Despite its importance, the genes responsible for quantitative virulence in this pathogen remain largely unknown. We investigated the expression profiles of four Z. tritici strains differing in virulence in an experiment conducted under uniform environmental conditions. Transcriptomes were compared at four different infection stages to characterize the regulation of gene families thought to be involved in virulence and to identify new virulence factors. The major components of the fungal infection transcriptome showed consistent expression profiles across strains. However, strain-specific regulation was observed for many genes, including some encoding putative virulence factors. We postulate that strain-specific regulation of virulence factors can determine the outcome of Z. tritici infections. We show that differences in gene expression may be major determinants of virulence variation among Z. tritici strains, adding to the already known contributions to virulence variation based on differences in gene sequence and gene presence/absence polymorphisms.

摘要

小麦叶斑病的致病菌禾核腔菌是一种子囊菌,具有高度多态性,其毒性存在显著的数量变异。尽管该病菌非常重要,但负责其毒性数量变异的基因在很大程度上仍是未知的。我们在环境条件均一的实验中,研究了在毒性方面存在差异的四个禾核腔菌菌株的表达谱。通过比较四个不同的感染阶段的转录组,来对与毒性相关的基因家族的调控进行特征描述,并鉴定新的毒性因子。真菌感染转录组的主要成分在各菌株中表现出一致的表达谱。然而,许多基因,包括一些编码假定毒性因子的基因,表现出菌株特异性调控。我们假设毒性因子的菌株特异性调控可以决定禾核腔菌感染的结果。我们表明,基因表达的差异可能是禾核腔菌菌株间毒性变异的主要决定因素,这增加了基于基因序列差异和基因存在/缺失多态性的已知毒性变异贡献。

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