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植物-丝状病原体相互作用中的结构特异性。

Structural specificity in plant-filamentous pathogen interactions.

机构信息

Department of Biology, Université de Moncton, Moncton, Canada.

出版信息

Mol Plant Pathol. 2020 Nov;21(11):1513-1525. doi: 10.1111/mpp.12983. Epub 2020 Sep 5.

Abstract

Plant diseases bear names such as leaf blights, root rots, sheath blights, tuber scabs, and stem cankers, indicating that symptoms occur preferentially on specific parts of host plants. Accordingly, many plant pathogens are specialized to infect and cause disease in specific tissues and organs. Conversely, others are able to infect a range of tissues, albeit often disease symptoms fluctuate in different organs infected by the same pathogen. The structural specificity of a pathogen defines the degree to which it is reliant on a given tissue, organ, or host developmental stage. It is influenced by both the microbe and the host but the processes shaping it are not well established. Here we review the current status on structural specificity of plant-filamentous pathogen interactions and highlight important research questions. Notably, this review addresses how constitutive defence and induced immunity as well as virulence processes vary across plant organs, tissues, and even cells. A better understanding of the mechanisms underlying structural specificity will aid targeted approaches for plant health, for instance by considering the variation in the nature and the amplitude of defence responses across distinct plant organs and tissues when performing selective breeding.

摘要

植物病害有叶枯病、根腐病、鞘枯病、块茎痂病和茎溃疡病等名称,表明症状优先出现在宿主植物的特定部位。因此,许多植物病原体专门感染和引起特定组织和器官的疾病。相反,其他病原体能够感染一系列组织,尽管同一病原体感染的不同器官通常会出现疾病症状波动。病原体的结构特异性决定了其对特定组织、器官或宿主发育阶段的依赖程度。它受到微生物和宿主的影响,但形成它的过程尚未得到很好的确立。在这里,我们回顾了植物丝状病原体相互作用的结构特异性的现状,并强调了重要的研究问题。值得注意的是,本综述探讨了组成型防御和诱导免疫以及毒力过程如何在不同的植物器官、组织,甚至细胞中变化。更好地理解结构特异性的机制将有助于针对植物健康的方法,例如,在进行选择性繁殖时,考虑到不同植物器官和组织中防御反应的性质和幅度的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ffc/7548998/4cd90e2c4e0e/MPP-21-1513-g001.jpg

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