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不同土壤类型中细菌群落结构的小规模变异性

Small-Scale Variability in Bacterial Community Structure in Different Soil Types.

作者信息

Hugoni Mylène, Nunan Naoise, Thioulouse Jean, Dubost Audrey, Abrouk Danis, Martins Jean M F, Goffner Deborah, Prigent-Combaret Claire, Grundmann Geneviève

机构信息

Univ Lyon, Université Claude Bernard Lyon 1, CNRS, INRAE, VetAgro Sup, UMR Ecologie Microbienne, INRA, UMR1418, 69220, F-69622, Villeurbanne Cedex, France.

Institute of Ecology and Environmental Sciences - Paris, CNRS - Sorbonne Université, 4 place Jussieu, 75005, Paris, France.

出版信息

Microb Ecol. 2021 Aug;82(2):470-483. doi: 10.1007/s00248-020-01660-0. Epub 2021 Jan 14.

Abstract

Microbial spatial distribution has mostly been studied at field to global scales (i.e., ecosystem scales). However, the spatial organization at small scales (i.e., centimeter to millimeter scales), which can help improve our understanding of the impacts of spatial communities structure on microbial functioning, has received comparatively little attention. Previous work has shown that small-scale spatial structure exists in soil microbial communities, but these studies have not compared soils from geographically distant locations, nor have they utilized community ecology approaches, such as the core and satellite hypothesis and/or abundance-occupancy relationships, often used in macro-ecology, to improve the description of the spatial organization of communities. In the present work, we focused on bacterial diversity (i.e., 16S rRNA gene sequencing) occurring in micro-samples from a variety of locations with different pedo-climatic histories (i.e., from semi-arid, alpine, and temperate climates) and physicochemical properties. The forms of ecological spatial relationships in bacterial communities (i.e., occupancy-frequency and abundance-occupancy) and taxa distributions (i.e., habitat generalists and specialists) were investigated. The results showed that bacterial composition differed in the four soils at the small scale. Moreover, one soil presented a satellite mode distribution, whereas the three others presented bimodal distributions. Interestingly, numerous core taxa were present in the four soils among which 8 OTUs were common to the four sites. These results confirm that analyses of the small-scale spatial distribution are necessary to understand consequent functional processes taking place in soils, affecting thus ecosystem functioning.

摘要

微生物的空间分布大多是在田间到全球尺度(即生态系统尺度)上进行研究的。然而,小尺度(即厘米到毫米尺度)的空间组织有助于我们更好地理解空间群落结构对微生物功能的影响,但受到的关注相对较少。先前的研究表明土壤微生物群落中存在小尺度空间结构,但这些研究没有比较来自地理上遥远地区的土壤,也没有采用宏观生态学中常用的群落生态学方法,如核心与卫星假说和/或丰度-占有率关系,来改进对群落空间组织的描述。在本研究中,我们聚焦于来自具有不同土壤气候历史(即半干旱、高山和温带气候)和理化性质的不同地点的微样本中的细菌多样性(即16S rRNA基因测序)。研究了细菌群落中生态空间关系的形式(即占有率-频率和丰度-占有率)以及分类群分布(即生境泛化种和特化种)。结果表明,在小尺度上,四种土壤中的细菌组成存在差异。此外,一种土壤呈现卫星模式分布,而其他三种呈现双峰分布。有趣的是,四种土壤中存在大量核心分类群,其中8个操作分类单元在四个地点都有。这些结果证实,分析小尺度空间分布对于理解土壤中随之发生的功能过程是必要的,从而影响生态系统功能。

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