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《战斗时间:与年龄相关的抗性的分子机制》

Time to Fight: Molecular Mechanisms of Age-Related Resistance.

机构信息

Department of Plant Pathology, University of Georgia, Athens, GA 30602.

出版信息

Phytopathology. 2019 Sep;109(9):1500-1508. doi: 10.1094/PHYTO-11-18-0443-RVW. Epub 2019 Jul 22.

Abstract

Plant age is a crucial factor in determining the outcome of a host-pathogen interaction. In successive developmental stages throughout their life cycles, plants face dynamic changes in biotic and abiotic conditions that create distinct ecological niches for host-pathogen interactions. As an adaptive strategy, plants have evolved intrinsic regulatory networks that integrate developmental signals with those from pathogen perception and defense activation. As a result, amplitude and timing of defense responses are optimized, so as to balance the cost and benefit of immunity activation. A general term "age-related resistance" refers to a gain of disease resistance against a certain pathogen when plants reach a relatively mature stage. Age-related resistance is a common observation on fruits, vegetables, and row crops for their resistance against viruses, bacteria, fungi, oomycetes pathogens, and insects. This review focuses on the recent advances in understanding the molecular mechanisms of how plants coordinate developmental timing and immune response.

摘要

植物年龄是决定宿主-病原体相互作用结果的关键因素。在其生命周期的连续发育阶段,植物面临生物和非生物条件的动态变化,为宿主-病原体相互作用创造了独特的生态位。作为一种适应策略,植物已经进化出内在的调节网络,将发育信号与病原体感知和防御激活的信号整合在一起。因此,防御反应的幅度和时间得到了优化,从而平衡了免疫激活的成本和收益。一个通用术语“与年龄相关的抗性”是指当植物达到相对成熟阶段时,对某种病原体的抗病性增加。与年龄相关的抗性是水果、蔬菜和大田作物对病毒、细菌、真菌、卵菌病原体和昆虫抗性的常见观察结果。本综述重点介绍了植物如何协调发育时间和免疫反应的分子机制的最新进展。

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