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ETS-ETI 循环:进化过程和复合种群动态驱动病原体效应物和宿主免疫因子的多样化。

The ETS-ETI cycle: evolutionary processes and metapopulation dynamics driving the diversification of pathogen effectors and host immune factors.

机构信息

Department of Cell & Systems Biology, University of Toronto, Toronto, Ontario M6S2Y1, Canada.

Department of Cell & Systems Biology, University of Toronto, Toronto, Ontario M6S2Y1, Canada; Centre for the Analysis of Genome Evolution & Function, University of Toronto, Toronto, Ontario M6S2Y1, Canada.

出版信息

Curr Opin Plant Biol. 2021 Aug;62:102011. doi: 10.1016/j.pbi.2021.102011. Epub 2021 Mar 4.

Abstract

The natural diversity of pathogen effectors and host immune components represents a snapshot of the underlying evolutionary processes driving the host-pathogen arms race. In plants, this arms race is manifested by an ongoing cycle of disease and resistance driven by pathogenic effectors that promote disease (effector-triggered susceptibility; ETS) and plant resistance proteins that recognize effector activity to trigger immunity (effector-triggered immunity; ETI). Here we discuss how this ongoing ETS-ETI cycle has shaped the natural diversity of both plant resistance proteins and pathogen effectors. We focus on the evolutionary forces that drive the diversification of the molecules that determine the outcome of plant-pathogen interactions and introduce the concept of metapopulation dynamics (i.e., the introduction of genetic variation from conspecific organisms in different populations) as an alternative mechanism that can introduce and maintain diversity in both host and pathogen populations.

摘要

病原体效应物和宿主免疫成分的自然多样性代表了驱动宿主-病原体军备竞赛的潜在进化过程的一个快照。在植物中,这种军备竞赛表现为一种由致病性效应物驱动的疾病和抗性的持续循环,这些效应物促进疾病(效应物触发的易感性;ETS),而植物抗性蛋白则识别效应物活性以触发免疫(效应物触发的免疫;ETI)。在这里,我们讨论了这种持续的 ETS-ETI 循环如何塑造植物抗性蛋白和病原体效应物的自然多样性。我们专注于驱动决定植物-病原体相互作用结果的分子多样化的进化力量,并引入了种群间动态(即,从不同种群的同种生物中引入遗传变异)的概念,作为一种可以引入和维持宿主和病原体种群多样性的替代机制。

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