Apoplastic Proteases: Powerful Weapons against Pathogen Infection in Plants

质外体 蛋白酵素 生物 蛋白酶 病菌 微生物学 寄主(生物学) 细胞生物学 细胞壁 生物化学 生态学
作者
Yan Wang,Yan Wang,Yuanchao Wang,Yuanchao Wang,Yiming Wang,Yiming Wang
出处
期刊:Plant communications [Elsevier BV]
卷期号:1 (4): 100085-100085 被引量:113
标识
DOI:10.1016/j.xplc.2020.100085
摘要

Plants associate with diverse microbes that exert beneficial, neutral, or pathogenic effects inside the host. During the initial stages of invasion, the plant apoplast constitutes a hospitable environment for invading microbes, providing both water and nutrients. In response to microbial infection, a number of secreted proteins from host cells accumulate in the apoplastic space, which is related to microbial association or colonization processes. However, the molecular mechanisms underlying plant modulation of the apoplast environment and how plant-secreted proteases are involved in pathogen resistance are still poorly understood. Recently, several studies have reported the roles of apoplastic proteases in plant resistance against bacteria, fungi, and oomycetes. On the other hand, microbe-secreted proteins directly and/or indirectly inhibit host-derived apoplastic proteases to promote infection. These findings illustrate the importance of apoplastic proteases in plant-microbe interactions. Therefore, understanding the protease-mediated apoplastic battle between hosts and pathogens is of fundamental importance for understanding plant-pathogen interactions. Here, we provide an overview of plant-microbe interactions in the apoplastic space. We define the apoplast, summarize the physical and chemical properties of these structures, and discuss the roles of plant apoplastic proteases and pathogen protease inhibitors in host-microbe interactions. Challenges and future perspectives for research into protease-mediated apoplastic interactions are discussed, which may facilitate the engineering of resistant crops.
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