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定义驱动细菌分解者群落生产力的功能性状。

Defining the functional traits that drive bacterial decomposer community productivity.

作者信息

Evans Rachael, Alessi Anna M, Bird Susannah, McQueen-Mason Simon J, Bruce Neil C, Brockhurst Michael A

机构信息

Department of Biology, University of York, York, UK.

Department of Animal and Plant Sciences, University of Sheffield, Sheffield, UK.

出版信息

ISME J. 2017 Jul;11(7):1680-1687. doi: 10.1038/ismej.2017.22. Epub 2017 Mar 21.

Abstract

Microbial communities are essential to a wide range of ecologically and industrially important processes. To control or predict how these communities function, we require a better understanding of the factors which influence microbial community productivity. Here, we combine functional resource use assays with a biodiversity-ecosystem functioning (BEF) experiment to determine whether the functional traits of constituent species can be used to predict community productivity. We quantified the abilities of 12 bacterial species to metabolise components of lignocellulose and then assembled these species into communities of varying diversity and composition to measure their productivity growing on lignocellulose, a complex natural substrate. A positive relationship between diversity and community productivity was caused by a selection effect whereby more diverse communities were more likely to contain two species that significantly improved community productivity. Analysis of functional traits revealed that the observed selection effect was primarily driven by the abilities of these species to degrade β-glucan. Our results indicate that by identifying the key functional traits underlying microbial community productivity we could improve industrial bioprocessing of complex natural substrates.

摘要

微生物群落对于广泛的生态和工业重要过程至关重要。为了控制或预测这些群落的功能,我们需要更好地理解影响微生物群落生产力的因素。在此,我们将功能资源利用测定与生物多样性-生态系统功能(BEF)实验相结合,以确定组成物种的功能性状是否可用于预测群落生产力。我们量化了12种细菌代谢木质纤维素成分的能力,然后将这些物种组装成不同多样性和组成的群落,以测量它们在木质纤维素(一种复杂的天然底物)上生长时的生产力。多样性与群落生产力之间的正相关关系是由一种选择效应导致的,即更多样化的群落更有可能包含两个能显著提高群落生产力的物种。对功能性状的分析表明,观察到的选择效应主要由这些物种降解β-葡聚糖的能力驱动。我们的结果表明,通过识别微生物群落生产力背后的关键功能性状,我们可以改进复杂天然底物的工业生物加工。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22e6/5520143/919e366c602b/ismej201722f1.jpg

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