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植物的非寄主抗性:对一个古老现象的新认识。

Non-host resistance in plants: new insights into an old phenomenon.

机构信息

Eberhard-Karls-Universität Tübingen, Zentrum für Molekularbiologie der Pflanzen (ZMBP), Auf der Morgenstelle 5, D-72076 Tübingen, Germany.

出版信息

Mol Plant Pathol. 2005 May 1;6(3):335-45. doi: 10.1111/j.1364-3703.2005.00279.x.

Abstract

SUMMARY Resistance of an entire plant species to all isolates of a microbial species is referred to as non-host or species resistance. An interplay of both constitutive barriers and inducible reactions comprises the basis for this most durable form of plant disease resistance. Activation of inducible plant defence responses is probably brought about by the recognition of invariant pathogen-associated molecular patterns (PAMP) that are characteristic of whole classes of microbial organisms. PAMP perception systems and PAMP-induced signalling cascades partially resemble those known to mediate activation of innate immune responses in animals, suggesting an evolutionarily ancient molecular concept of non-self recognition and immunity in eukaryotes. Genetic dissection has recently provided clues for SNARE-complex-mediated exocytosis and directed vesicle trafficking in executing plant non-host resistance. Recent functional analysis of bacterial effector proteins indicates that establishment of infection in susceptible plants is associated with suppression of plant species resistance.

摘要

总结

整个植物物种对微生物物种所有分离株的抗性被称为非寄主抗性或物种抗性。这种最持久的植物抗病性基础是组成型屏障和诱导反应的相互作用。诱导植物防御反应的激活可能是由识别不变的病原体相关分子模式(PAMP)引起的,这些模式是整个微生物类群的特征。PAMP 感知系统和 PAMP 诱导的信号级联部分类似于已知的在动物中介导先天免疫反应激活的系统,这表明真核生物中存在一种古老的非自我识别和免疫的分子概念。遗传剖析最近为 SNARE 复合物介导的胞吐作用和执行植物非寄主抗性的定向囊泡运输提供了线索。最近对细菌效应蛋白的功能分析表明,在易感植物中建立感染与抑制植物物种抗性有关。

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