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正向遗传学方法揭示了辅助染色体在真菌小麦病原体中的宿主基因型依赖性重要性。

Forward Genetics Approach Reveals Host Genotype-Dependent Importance of Accessory Chromosomes in the Fungal Wheat Pathogen .

机构信息

Department of Environmental Genomics, Christian-Albrechts-University of Kiel and Max Planck Institute for Evolutionary Biology, Plön, Germany.

Department of Environmental Genomics, Christian-Albrechts-University of Kiel and Max Planck Institute for Evolutionary Biology, Plön, Germany

出版信息

mBio. 2017 Nov 28;8(6):e01919-17. doi: 10.1128/mBio.01919-17.

Abstract

The fungal wheat pathogen possesses a large complement of accessory chromosomes showing presence/absence polymorphism among isolates. These chromosomes encode hundreds of genes; however, their functional role and why the chromosomes have been maintained over long evolutionary times are so far not known. In this study, we addressed the functional relevance of eight accessory chromosomes in reference isolate IPO323. We induced chromosome losses by inhibiting the β-tubulin assembly during mitosis using carbendazim and generated several independent isogenic strains, each lacking one of the accessory chromosomes. We confirmed chromosome losses by electrophoretic karyotyping and whole-genome sequencing. To assess the importance of the individual chromosomes during host infection, we performed assays comparing disease development results in wild-type and chromosome mutant strains. Loss of the accessory chromosomes 14, 16, 18, 19, and 21 resulted in increased virulence on wheat cultivar Runal but not on cultivars Obelisk, Titlis, and Riband. Moreover, some accessory chromosomes affected the switch from biotrophy to necrotrophy as strains lacking accessory chromosomes 14, 18, 19, and 21 showed a significantly earlier onset of necrosis than the wild type on the Runal cultivar. In general, we observed that the timing of the lifestyle switch affects the fitness of Taking the results together, this study was the first to use a forward-genetics approach to demonstrate a cultivar-dependent functional relevance of the accessory chromosomes of during host infection. is a prominent fungal pathogen of wheat of worldwide distribution. This fungus shows a remarkable genome organization, with a large number of chromosomes that are present in only some isolates and therefore considered to be "accessory" chromosomes. To date, the function of these accessory chromosomes in has been unknown, although their maintenance in the species over evolutionary times suggests a functional relevance. Here we deleted whole accessory chromosomes to test the effect of these chromosomes on host specificity and virulence of the fungus. We show for the first time that some accessory chromosomes of affect the fitness of the fungus during host infection in a cultivar-dependent manner. These results show that the accessory chromosomes encode host-specific virulence determinants having a negative effect on fitness. Understanding the population dynamic of the accessory chromosomes and the molecular interaction of pathogen and plant traits is crucial to improve wheat-breeding strategies.

摘要

真菌小麦病原体 拥有大量的辅助染色体,这些染色体在分离株中表现出存在/缺失多态性。这些染色体编码数百个基因;然而,它们的功能作用以及为什么这些染色体在漫长的进化过程中得以保留,目前还不得而知。在这项研究中,我们研究了参考菌株 IPO323 中 8 条辅助染色体的功能相关性。我们通过在有丝分裂期间使用多菌灵抑制β-微管蛋白组装来诱导染色体丢失,并生成了多个独立的同基因株系,每个株系都缺失一条辅助染色体。我们通过电泳核型分析和全基因组测序来确认染色体丢失。为了评估在宿主感染过程中单个染色体的重要性,我们进行了比较野生型和染色体突变菌株疾病发展结果的 实验。辅助染色体 14、16、18、19 和 21 的缺失导致在小麦品种 Runal 上的毒力增加,但在 Obelisk、Titlis 和 Riband 品种上则没有。此外,一些辅助染色体影响从生物寄生到坏死的转变,因为缺失辅助染色体 14、18、19 和 21 的菌株在 Runal 品种上的坏死起始时间明显早于野生型。总的来说,我们观察到生活方式转变的时间会影响 的适应性。总的来说,本研究首次使用正向遗传学方法证明了辅助染色体在宿主感染过程中的功能相关性在 中是依赖于品种的。 是一种分布广泛的小麦真菌病原体。该真菌具有显著的基因组组织,有大量的染色体仅存在于某些分离株中,因此被认为是“辅助”染色体。迄今为止,这些辅助染色体在 中的功能仍然未知,尽管它们在物种中的进化过程中得以保留,表明它们具有功能相关性。在这里,我们删除了整个辅助染色体,以测试这些染色体对真菌宿主特异性和毒力的影响。我们首次表明, 中的一些辅助染色体以品种依赖的方式影响真菌在宿主感染过程中的适应性。这些结果表明,辅助染色体编码对适应性有负面影响的宿主特异性毒力决定因素。了解辅助染色体的群体动态和病原体与植物性状的分子相互作用对于改进小麦育种策略至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d3e/5705923/8f98e8e1c604/mbo0061736110001.jpg

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