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细菌-植物相互作用:揭示根际细菌挥发物生物学功能的方法

Bacterial-Plant-Interactions: Approaches to Unravel the Biological Function of Bacterial Volatiles in the Rhizosphere.

作者信息

Kai Marco, Effmert Uta, Piechulla Birgit

机构信息

Department of Biochemistry, Institute of Biological Science, University of Rostock Rostock, Germany.

出版信息

Front Microbiol. 2016 Feb 9;7:108. doi: 10.3389/fmicb.2016.00108. eCollection 2016.

Abstract

Rhizobacteria produce an enormous amount of volatile compounds, however, the function of these metabolites is scarcely understood. Investigations evaluating influences on plants performed in various laboratories using individually developed experimental setups revealed different and often contradictory results, e.g., ranging from a significant plant growth promotion to a dramatic suppression of plant development. In addition to these discrepancies, these test systems neglected properties and complexity of the rhizosphere. Therefore, to pursue further investigations of the role of bacterial volatiles in this underground habitat, the applied methods have to simulate its natural characteristics as much as possible. In this review, we will describe and discuss pros and cons of currently used bioassays, give insights into rhizosphere characteristics, and suggest improvements for test systems that would consider in natura conditions and would allow gaining further knowledge of the potential function and significance of rhizobacterial volatiles in plant life.

摘要

根际细菌会产生大量挥发性化合物,然而,这些代谢产物的功能却鲜为人知。在各个实验室使用各自开发的实验装置对植物所受影响进行的研究显示出不同且往往相互矛盾的结果,例如,从显著促进植物生长到严重抑制植物发育。除了这些差异之外,这些测试系统忽视了根际的特性和复杂性。因此,为了进一步研究细菌挥发物在这个地下生境中的作用,所应用的方法必须尽可能模拟其自然特征。在这篇综述中,我们将描述和讨论当前使用的生物测定法的优缺点,深入了解根际特征,并针对测试系统提出改进建议,这些测试系统应考虑自然条件,并有助于进一步了解根际细菌挥发物在植物生命中的潜在功能和重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a0f/4746483/36573c047442/fmicb-07-00108-g0001.jpg

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