内生真菌:定义、多样性、分布及其在植物生命中的意义。

A. Schouten
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引用次数: 7

摘要

内生菌与病原体相反,因此应该无症状地定殖植物。然而,正如将要说明的那样,内生真菌可能在各种生物和非生物环境下表现不同,其中寄主植物也可以发挥决定性作用。内生真菌和系统发育相关的致病真菌之间的遗传差异可能有显著差异。然而,多年来,内生真菌经常被分离出来,从未在各种寄主植物中引起疾病症状。这种真正的内生菌被认为是互惠互利的;寄主植物稳定、保护和资源丰富的环境中嵌入内生菌,支持寄主植物维持生物和非生物胁迫条件。内生真菌保护寄主植物免受生物胁迫因素的机制通常是多种多样的,因为它们可以直接拮抗害虫或病原体,触发植物防御机制或同时起作用。
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Endophytic fungi: definitions, diversity, distribution and their significance in plant life.
Abstract Endophytes are set opposite to pathogens and therefore should colonize plants asymptomatically. However, as will be illustrated, endophytic fungi may behave differently under various biotic and abiotic circumstances, in which the host plant can play a defining role as well. The genetic differences between an endophytic fungus and a phylogenetically related pathogenic fungus may vary significantly. Nevertheless, over the years endophytic fungi have frequently been isolated and never elicit disease symptoms in various host plants. Such true endophytes are considered mutually beneficial; the endophyte, embedded in the stable, protective and resource-rich environment of the host plant, supports the host plant to sustain biotic and abiotic stress conditions. The mechanisms by which endophytic fungi protect the host plant against biotic stress factors are generally diverse because they can directly antagonize pests or pathogens, trigger plant defence mechanisms or do both simultaneously.
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Bioprospecting of endophytes. Endophytic fungi: definitions, diversity, distribution and their significance in plant life. Introduction. Sources, niches and routes of colonization by beneficial bacterial endophytes. Saving resources: the exploitation of endophytes by plants for the biosynthesis of multi-functional defence compounds.
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