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使用真菌高速公路柱对森林土壤中的真菌及其相关迁移细菌进行原位清查。

An in situ inventory of fungi and their associated migrating bacteria in forest soils using fungal highway columns.

作者信息

Simon Anaele, Hervé Vincent, Al-Dourobi Andrej, Verrecchia Eric, Junier Pilar

机构信息

Laboratory of Microbiology, Institute of Biology, University of Neuchâtel, Neuchâtel, Switzerland.

Biogeosciences laboratory, Institute of Earth Surface Dynamics, University of Lausanne, 1015 Lausanne, Switzerland.

出版信息

FEMS Microbiol Ecol. 2017 Jan;93(1). doi: 10.1093/femsec/fiw217. Epub 2016 Oct 18.

Abstract

Soils are complex ecosystems in which fungi and bacteria co-exist and interact. Fungal highways are a kind of interaction by which bacteria use fungal hyphae to disperse in soils. Despite the fact that fungal highways have been studied in laboratory models, the diversity of fungi and bacteria interacting in this way in soils is still unknown. Fungal highway columns containing two different culture media were used as a selective method to study the identity of fungi and bacteria able to migrate along the hyphae in three forest soils. Regardless of the soil type, fungi of the genus Mortierella (phylum Zygomycota) were selected inside the columns. In contrast, a diverse community of bacteria dominated by Firmicutes and Proteobacteria was observed. The results confirm the importance of bacteria affiliated to Burkholderia as potentially associated migrating bacteria in soils and indicate that other groups such as Bacillus and Clostridium are also highly enriched in the co-colonization of a new habitat (columns) associated to Mortierella. The diversity of potentially associated migrating bacteria brings a novel perspective on the indirect metabolic capabilities that could be favored by r-strategist fungi and supports the fact that these fungi should be considered as crucial actors in soil functioning.

摘要

土壤是真菌和细菌共存并相互作用的复杂生态系统。真菌通道是细菌利用真菌菌丝在土壤中扩散的一种相互作用方式。尽管在实验室模型中已经对真菌通道进行了研究,但在土壤中以这种方式相互作用的真菌和细菌的多样性仍然未知。含有两种不同培养基的真菌通道柱被用作一种选择性方法,以研究能够在三种森林土壤中沿着菌丝迁移的真菌和细菌的特性。无论土壤类型如何,在柱内均选择到了被孢霉属(接合菌门)的真菌。相比之下,观察到以厚壁菌门和变形菌门为主导的多种细菌群落。结果证实了伯克霍尔德氏菌属细菌作为土壤中潜在相关迁移细菌的重要性,并表明芽孢杆菌属和梭菌属等其他类群在与被孢霉相关的新栖息地(柱)的共同定殖中也高度富集。潜在相关迁移细菌的多样性为r策略真菌可能青睐的间接代谢能力带来了新的视角,并支持了这些真菌应被视为土壤功能关键参与者的观点。

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