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植物性状决定丛枝菌根真菌群落的系统发育结构。

Plant traits determine the phylogenetic structure of arbuscular mycorrhizal fungal communities.

机构信息

Department of Soil Microbiology and Symbiotic Systems, Estación Experimental del Zaidín, CSIC, Granada, Spain.

Department of Botany, University of Tartu, Tartu, Estonia.

出版信息

Mol Ecol. 2017 Dec;26(24):6948-6959. doi: 10.1111/mec.14403. Epub 2017 Nov 23.

Abstract

Functional diversity in ecosystems has traditionally been studied using aboveground plant traits. Despite the known effect of plant traits on the microbial community composition, their effects on the microbial functional diversity are only starting to be assessed. In this study, the phylogenetic structure of arbuscular mycorrhizal (AM) fungal communities associated with plant species differing in life cycle and growth form, that is, plant life forms, was determined to unravel the effect of plant traits on the functional diversity of this fungal group. The results of the 454 pyrosequencing showed that the AM fungal community composition differed across plant life forms and this effect was dependent on the soil collection date. Plants with ruderal characteristics tended to associate with phylogenetically clustered AM fungal communities. By contrast, plants with resource-conservative traits associated with phylogenetically overdispersed AM fungal communities. Additionally, the soil collected in different seasons yielded AM fungal communities with different phylogenetic dispersion. In summary, we found that the phylogenetic structure, and hence the functional diversity, of AM fungal communities is dependent on plant traits. This finding adds value to the use of plant traits for the evaluation of belowground ecosystem diversity, functions and processes.

摘要

生态系统的功能多样性传统上是使用地上植物特性来研究的。尽管已知植物特性对微生物群落组成有影响,但它们对微生物功能多样性的影响才刚刚开始评估。在这项研究中,确定了与生命周期和生长形式不同的植物物种(即植物生活型)相关的丛枝菌根(AM)真菌群落的系统发育结构,以揭示植物特性对该真菌群功能多样性的影响。454 焦磷酸测序的结果表明,AM 真菌群落组成因植物生活型而异,这种影响取决于土壤采集日期。具有强韧特性的植物倾向于与系统发育聚类的 AM 真菌群落相关联。相比之下,具有资源保守特性的植物与系统发育过度分散的 AM 真菌群落相关联。此外,在不同季节采集的土壤产生了具有不同系统发育离散度的 AM 真菌群落。总之,我们发现 AM 真菌群落的系统发育结构,从而功能多样性,取决于植物特性。这一发现为利用植物特性评估地下生态系统多样性、功能和过程提供了更多价值。

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