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Pythium oligandrum: an example of opportunistic success

机译:Pythium oligandrum:机会成功的一个例子

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Pythium oligandrum, a non-pathogenic soil-inhabiting oomycete, colonizes the root ecosystem of many crop species. Whereas most members in the genus Pythium are plant pathogens, P. oligandrum distinguishes itself from the pathogenic species by its ability to protect plants from biotic stresses in addition to promoting plant growth. The success of P. oligandrum at controlling soilborne pathogens is partly associated with direct antagonism mediated by mycoparasitism and antimicrobial compounds. Interestingly, P. oligandrum has evolved with specific mechanisms to attack its prey even when these belong to closely related species. Of particular relevance is the question of how P. oligandrum distinguishes between self- and non-self cell wall degradation during the mycoparasitic process of pathogenic oomycete species. The ability of P. oligandrum to enter and colonize the root system before rapidly degenerating is one of the most striking features that differentiate it from all other known biocontrol fungal agents. In spite of this atypical behaviour, P. oligandrum sensitizes the plant to defend itself through the production of at least two types of microbe-associated molecular patterns, including oligandrin and cell wall protein fractions, which appear to be closely involved in the early events preceding activation of the jasmonic acid- and ethylene-dependent signalling pathways and subsequent localized and systemic induced resistance. The aim of this review is to highlight the expanding knowledge of the mechanisms by which P. oligandrum provides beneficial effects to plants and to explore the potential use of this oomycete or its metabolites as new disease management strategies.
机译:寡核苷酸,一种非致病性土壤oomycete,殖民解许多作物种类的根生态系统。而大多数衰弱的大多数成员是植物病原体,P. oligandrum除了促进植物生长外,植物的能力将通过保护植物免受生物应力的能力。 P. oligandrum在控制旱脱石病原体的成功部分与由霉菌碱和抗微生物化合物介导的直接拮抗作用部分相关。有趣的是,P. Oligandrum已经用特定机制演变,即使这些属于密切相关的物种,也可以攻击其猎物。特别相关性是P. oligandrum如何区分自我和非自我细胞壁降解在致病性oomycete种类的霉菌过程中的问题。 P. oligandrum进入和定植根系的能力在快速退化之前是最引人注目的特征之一,可以将其与所有其他已知的生物控制真菌剂区分区分。尽管存在这种非典型行为,P. oligandrum致敏植物通过生产至少两种类型的微生物相关分子模式来辩护,包括寡肽和细胞壁蛋白质级分,似乎密切参与前面的早期事件激活茉莉酸和乙烯依赖性信号通路和随后的局部和全身诱导的抗性。本综述的目的是突出P. Oligandrum为植物提供有益效果的机制的扩大知识,并探讨这种oomycete或其代谢物作为新的疾病管理策略的潜在使用。

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