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一种特殊小麦病原体中高度灵活的感染程序。

Highly flexible infection programs in a specialized wheat pathogen.

作者信息

Haueisen Janine, Möller Mareike, Eschenbrenner Christoph J, Grandaubert Jonathan, Seybold Heike, Adamiak Holger, Stukenbrock Eva H

机构信息

Environmental Genomics Group Max Planck Institute for Evolutionary Biology Plön Germany.

Environmental Genomics Group Christian-Albrechts University Kiel Kiel Germany.

出版信息

Ecol Evol. 2018 Dec 26;9(1):275-294. doi: 10.1002/ece3.4724. eCollection 2019 Jan.

Abstract

Many filamentous plant pathogens exhibit high levels of genomic variability, yet the impact of this variation on host-pathogen interactions is largely unknown. We have addressed host specialization in the wheat pathogen . Our study builds on comparative analyses of infection and gene expression phenotypes of three isolates and reveals the extent to which genomic variation translates into phenotypic variation. The isolates exhibit genetic and genomic variation but are similarly virulent. By combining confocal microscopy, disease monitoring, staining of ROS, and comparative transcriptome analyses, we conducted a detailed comparison of the infection processes of these isolates in a susceptible wheat cultivar. We characterized four core infection stages: establishment, biotrophic growth, lifestyle transition, and necrotrophic growth and asexual reproduction that are shared by the three isolates. However, we demonstrate differentiated temporal and spatial infection development and significant differences in the expression profiles of the three isolates during the infection stages. More than 20% of the genes were differentially expressed and these genes were located significantly closer to transposable elements, suggesting an impact of epigenetic regulation. Further, differentially expressed genes were enriched in effector candidates suggesting that isolate-specific strategies for manipulating host defenses are present in . We demonstrate that individuals of a host-specialized pathogen have highly differentiated infection programs characterized by flexible infection development and functional redundancy. This illustrates how high genetic diversity in pathogen populations results in highly differentiated infection phenotypes, which fact needs to be acknowledged to understand host-pathogen interactions and pathogen evolution.

摘要

许多丝状植物病原体表现出高水平的基因组变异性,然而这种变异对宿主 - 病原体相互作用的影响在很大程度上尚不清楚。我们研究了小麦病原体中的宿主专化现象。我们的研究基于对三个分离株的感染和基因表达表型的比较分析,并揭示了基因组变异转化为表型变异的程度。这些分离株表现出遗传和基因组变异,但毒力相似。通过结合共聚焦显微镜、病害监测、活性氧染色和比较转录组分析,我们对这些分离株在一个感病小麦品种中的感染过程进行了详细比较。我们确定了四个核心感染阶段:定殖、活体营养生长、生活方式转变以及坏死营养生长和无性繁殖,这三个分离株都具有这些阶段。然而,我们证明了三个分离株在感染阶段的感染发育在时间和空间上存在差异,并且表达谱也有显著差异。超过20%的基因存在差异表达,并且这些基因显著更靠近转座元件,这表明表观遗传调控产生了影响。此外,表示差异的基因在效应子候选基因中富集,这表明在……中存在分离株特异性的操纵宿主防御的策略。我们证明,宿主专化病原体的个体具有高度分化的感染程序,其特征是感染发育灵活且功能冗余。这说明了病原体群体中的高遗传多样性如何导致高度分化的感染表型,如果要理解宿主 - 病原体相互作用和病原体进化就需要认识到这一事实。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/605b/6342133/e1175c30d1c2/ECE3-9-275-g001.jpg

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