潮湿
多细胞生物
生物
免疫系统
细胞生物学
细胞外
免疫
模式识别受体
受体
植物免疫
细胞信号
先天免疫系统
信号转导
细胞
免疫学
拟南芥
生物化学
基因
物理
突变体
气象学
作者
Shuguo Hou,Zunyong Liu,Hexi Shen,Daoji Wu
标识
DOI:10.3389/fpls.2019.00646
摘要
As a universal process in multicellular organisms, including animals and plants, cells usually emit danger signals when suffering from attacks of microbes and herbivores, or physical damage. These signals, termed as damage-associated molecular patterns (DAMPs), mainly include cell wall or extracellular protein fragments, peptides, nucleotides, and amino acids. Once exposed on cell surfaces, DAMPs are detected by plasma membrane-localized receptors of surrounding cells to regulate immune responses against the invading organisms and promote damage repair. DAMPs may also act as long-distance mobile signals to mediate systemic wounding responses. Generation, release, and perception of DAMPs, and signaling events downstream of DAMP perception are all rigorously modulated by plants. These processes integrate together to determine intricate mechanisms of DAMP-triggered immunity in plants. In this review, we present an extensive overview on our current understanding of DAMPs in plant immune system.
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