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小麦黄斑叶枯病菌二态性和致病性相关因子的鉴定

Identification of factors involved in dimorphism and pathogenicity of Zymoseptoria tritici.

作者信息

Yemelin Alexander, Brauchler Annamaria, Jacob Stefan, Laufer Julian, Heck Larissa, Foster Andrew J, Antelo Luis, Andresen Karsten, Thines Eckhard

机构信息

Institute for Biotechnology and Drug Research (IBWF gGmbH), Kaiserslautern, Germany.

Institute of Molecular Physiology, Microbiology and Wine Research, Johannes Gutenberg University Mainz, Mainz, Germany.

出版信息

PLoS One. 2017 Aug 22;12(8):e0183065. doi: 10.1371/journal.pone.0183065. eCollection 2017.

Abstract

A forward genetics approach was applied in order to investigate the molecular basis of morphological transition in the wheat pathogenic fungus Zymoseptoria tritici. Z. tritici is a dimorphic plant pathogen displaying environmentally regulated morphogenetic transition between yeast-like and hyphal growth. Considering the infection mode of Z. tritici, the switching to hyphal growth is essential for pathogenicity allowing the fungus the host invasion through natural openings like stomata. We exploited a previously developed Agrobacterium tumefaciens-mediated transformation (ATMT) to generate a mutant library by insertional mutagenesis including more than 10,000 random mutants. To identify genes involved in dimorphic switch, a plate-based screening system was established. With this approach eleven dimorphic switch deficient random mutants were recovered, ten of which exhibited a yeast-like mode of growth and one mutant predominantly growing filamentously, producing high amount of mycelium under different incubation conditions. Using genome walking approach previously established, the T-DNA integration sites were recovered and the disrupted genomic loci of corresponding mutants were identified and validated within reverse genetics approach. As prove of concept, two of the random mutants obtained were selected for further investigation using targeted gene inactivation. Both genes deduced were found to encode known factors, previously characterized in other fungi: Ssk1p being constituent of HOG pathway and Ade5,7p involved in de novo purine biosynthesis. The targeted mutant strains defective in these genes exhibit a drastically impaired virulence within infection assays on whole wheat plants. Moreover exploiting further physiological assays the predicted function for both gene products could be confirmed in concordance with conserved biological role of homologous proteins previously described in other fungal organisms.

摘要

为了研究小麦致病真菌小麦壳针孢形态转变的分子基础,采用了正向遗传学方法。小麦壳针孢是一种双态植物病原体,在酵母样生长和菌丝生长之间表现出受环境调节的形态发生转变。考虑到小麦壳针孢的感染模式,向菌丝生长的转变对于致病性至关重要,使真菌能够通过气孔等自然开口侵入宿主。我们利用先前开发的根癌农杆菌介导的转化(ATMT),通过插入诱变产生了一个突变体文库,其中包括10000多个随机突变体。为了鉴定参与双态转变的基因,建立了一个基于平板的筛选系统。通过这种方法,获得了11个双态转变缺陷的随机突变体,其中10个表现出酵母样生长模式,1个突变体主要呈丝状生长,在不同培养条件下产生大量菌丝体。利用先前建立的基因组步移方法,回收了T-DNA整合位点,并在反向遗传学方法中鉴定和验证了相应突变体的基因组位点被破坏。作为概念验证,选择了获得的两个随机突变体进行进一步研究,采用靶向基因失活方法。推导的两个基因都被发现编码已知因子,先前在其他真菌中已被表征:Ssk1p是高渗甘油(HOG)途径的组成部分,Ade5,7p参与嘌呤从头生物合成。在对全株小麦的感染试验中,这些基因有缺陷的靶向突变菌株表现出毒力严重受损。此外,通过进一步的生理试验,可以证实这两种基因产物的预测功能,这与先前在其他真菌生物体中描述的同源蛋白的保守生物学作用一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/90c9/5568738/429c5c52b7d8/pone.0183065.g001.jpg

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