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有益和植物病原菌产生的抗生素的多样性和自然功能。

Diversity and natural functions of antibiotics produced by beneficial and plant pathogenic bacteria.

机构信息

Laboratory of Phytopathology, Wageningen University, 6708 PB Wageningen, The Netherlands.

出版信息

Annu Rev Phytopathol. 2012;50:403-24. doi: 10.1146/annurev-phyto-081211-172908. Epub 2012 Jun 6.

Abstract

Soil- and plant-associated environments harbor numerous bacteria that produce antibiotic metabolites with specific or broad-spectrum activities against coexisting microorganisms. The function and ecological importance of antibiotics have long been assumed to yield a survival advantage to the producing bacteria in the highly competitive but resource-limited soil environments through direct suppression. Although specific antibiotics may enhance producer persistence when challenged by competitors or predators in soil habitats, at subinhibitory concentrations antibiotics exhibit a diversity of other roles in the life history of the producing bacteria. Many processes modulated by antibiotics may be inherently critical to the producing bacterium, such as the acquisition of substrates or initiation of developmental changes that will ensure survival under stressful conditions. Antibiotics may also have roles in more complex interactions, including in virulence on host plants or in shaping the outcomes of multitrophic interactions. The innate functions of antibiotics to producing bacteria in their native ecosystem are just beginning to emerge, but current knowledge already reveals a breadth of activities well beyond the historical perspective of antibiotics as weaponry in microbial conflicts.

摘要

土壤和植物相关环境中存在大量产生抗生素代谢物的细菌,这些代谢物对共存微生物具有特定或广谱的活性。长期以来,人们一直认为抗生素的功能和生态重要性通过直接抑制为产生细菌在竞争激烈但资源有限的土壤环境中提供了生存优势。尽管在土壤栖息地中受到竞争者或捕食者的挑战时,特定的抗生素可能会增强产生者的持久性,但在亚抑制浓度下,抗生素在产生细菌的生活史中表现出多种其他作用。许多被抗生素调节的过程可能对产生细菌本身至关重要,例如获取底物或启动发育变化,以确保在压力条件下的生存。抗生素也可能在更复杂的相互作用中发挥作用,包括在宿主植物上的毒力或塑造多营养层相互作用的结果。抗生素对其天然生态系统中产生细菌的固有功能才刚刚开始显现,但现有知识已经揭示了广泛的活动,远远超出了抗生素作为微生物冲突中武器的历史观点。

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