The plant cell wall: a dynamic barrier against pathogen invasion.

The plant cell wall: a dynamic barrier against pathogen invasion.
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DOI:
10.3389/fpls.2012.00085
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发表时间:
2012
影响因子:
5.6
通讯作者:
Underwood W
Underwood W
中科院分区:
生物学2区
文献类型:
--
作者:
Underwood W

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未来的植物病原体必须克服植物细胞壁所呈现的物理屏障。除了作为一种预先形成的被动屏障,限制病原体进入植物细胞外,细胞壁在与潜在致病微生物相互作用的离散位点被主动重塑和加强。通过细胞壁附着物(称为乳头状体)的沉积对细胞壁进行主动强化,是对包括真菌和细菌在内的多种病原体感知的早期反应。乳突的快速沉积通常与抵抗真菌病原体有关,真菌病原体试图穿透植物细胞壁以建立摄食结构。尽管这种早期防御反应无处不在且明显重要,但相对而言,人们对涉及乳头靶向和组装的潜在分子机制和细胞过程知之甚少。这篇综述总结了我们对病原体感知诱导的细胞壁相关防御以及细胞壁聚合物变化对与病原体相互作用的影响的理解的最新进展,并强调了推动该领域未来研究的重大未解问题。
Prospective plant pathogens must overcome the physical barrier presented by the plant cell wall. In addition to being a preformed, passive barrier limiting access of pathogens to plant cells, the cell wall is actively remodeled and reinforced specifically at discrete sites of interaction with potentially pathogenic microbes. Active reinforcement of the cell wall through the deposition of cell wall appositions, referred to as papillae, is an early response to perception of numerous categories of pathogens including fungi and bacteria. Rapid deposition of papillae is generally correlated with resistance to fungal pathogens that attempt to penetrate plant cell walls for the establishment of feeding structures. Despite the ubiquity and apparent importance of this early defense response, relatively little is known about the underlying molecular mechanisms and cellular processes involved in the targeting and assembly of papillae. This review summarizes recent advances in our understanding of cell wall-associated defenses induced by pathogen perception as well as the impact of changes in cell wall polymers on interactions with pathogens and highlights significant unanswered questions driving future research in the area.
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