Commonwealth Scientific and Industrial Research Organisation, Agriculture and Food, Canberra, ACT 2601, Australia.
National Research Institute for Agriculture, Food and Environment, Unit of Genetics and Breeding of Fruit and Vegetables, Domaine St Maurice, CS 60094, F-84143 Montfavet, France.
Curr Opin Plant Biol. 2021 Aug;62:102054. doi: 10.1016/j.pbi.2021.102054. Epub 2021 May 13.
Fungal pathogens can secrete hundreds of effectors, some of which are known to promote host susceptibility. This biological complexity, together with the lack of genetic tools in some fungi, presents a substantial challenge to develop a broad picture of the mechanisms these pathogens use for host manipulation. Nevertheless, recent advances in understanding individual effector functions are beginning to flesh out our view of fungal pathogenesis. This review discusses some of the latest findings that illustrate how effectors from diverse species use similar strategies to modulate plant physiology to their advantage. We also summarize recent breakthroughs in the identification of effectors from challenging systems, like obligate biotrophs, and emerging concepts such as the 'iceberg model' to explain how the activation of plant immunity can be turned off by effectors with suppressive activity.
真菌病原体可以分泌数百种效应物,其中一些已知可促进宿主易感性。这种生物复杂性,再加上一些真菌缺乏遗传工具,给我们开发这些病原体用于宿主操纵的机制的全貌带来了巨大挑战。然而,近年来对单个效应物功能的理解的进展,开始使我们对真菌发病机制有了更全面的认识。这篇综述讨论了一些最新的发现,这些发现说明了来自不同物种的效应物如何利用相似的策略来调节植物生理学以适应自身的优势。我们还总结了最近在鉴定来自具有挑战性的系统(如专性生物寄生菌)的效应物方面的突破,以及新兴的概念,如“冰山模型”,以解释具有抑制活性的效应物如何关闭植物免疫的激活。