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挥发性有机化合物介导的植物-微生物界面相互作用。

Volatile organic compound mediated interactions at the plant-microbe interface.

机构信息

Department of Organismic Biology, University Salzburg, Hellbrunnerstrasse 34, 5020, Salzburg, Austria.

出版信息

J Chem Ecol. 2013 Jul;39(7):810-25. doi: 10.1007/s10886-013-0325-9. Epub 2013 Jul 24.

Abstract

Microorganisms colonize the surfaces of plant roots, leaves, and flowers known as the rhizosphere, phyllosphere, and anthosphere. These spheres differ largely in a number of factors that may determine the ability of microbes to establish themselves and to grow in these habitats. In this article, we focus on volatile organic compounds (VOCs) emitted by plants, and we discuss their effects on microbial colonizers, with an emphasis on bacteria. We present examples of how growth-inhibiting properties and mechanisms of VOCs such as terpenoids, benzenoid compounds, aliphatics, and sulfur containing compounds prevent bacterial colonization at different spheres, in antagonism with their role as carbon-sources that support the growth of different bacterial taxa. The notion that VOCs represent important factors that define bacterial niches is further supported by results for representatives of two bacterial genera that occupy strongly diverging niches based on scent emissions of different plant species and organs. Bacteria are known to either positively or negatively affect plant fitness and to interfere with plant-animal interactions. Thus, bacteria and other microbes may select for VOCs, enabling plants to control microbial colonizers on their surfaces, thereby promoting the growth of mutualists and preventing the establishment of detrimental microbes.

摘要

微生物定植于植物的根、叶和花表面,这些区域分别被称为根际、叶际和花际。这些区域在许多因素上存在显著差异,这些因素可能决定了微生物在这些生境中定殖和生长的能力。在本文中,我们重点关注植物挥发的有机化合物(VOCs),并讨论它们对微生物定殖者的影响,重点是细菌。我们展示了萜类化合物、苯类化合物、脂肪族化合物和含硫化合物等 VOC 如何通过抑制生长特性和机制,在不同的生境中阻止细菌的定殖,同时它们也作为碳源支持不同细菌类群的生长。VOCs 是定义细菌小生境的重要因素,这一观点得到了两个细菌属的代表的支持,它们基于不同植物物种和器官的气味排放,占据了截然不同的小生境。细菌已知会对植物的适应性产生积极或消极的影响,并干扰植物与动物的相互作用。因此,细菌和其他微生物可能会选择 VOCs,使植物能够控制其表面的微生物定殖者,从而促进共生体的生长并防止有害微生物的定殖。

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