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中国黑松露()改变宿主树木的外生菌根际和内菌根圈微生物群及代谢谱。

Chinese Black Truffle () Alters the Ectomycorrhizosphere and Endoectomycosphere Microbiome and Metabolic Profiles of the Host Tree .

作者信息

Li Qiang, Yan Lijuan, Ye Lei, Zhou Jie, Zhang Bo, Peng Weihong, Zhang Xiaoping, Li Xiaolin

机构信息

Soil and Fertilizer Institute, Sichuan Academy of Agricultural Sciences, Chengdu, China.

Key Laboratory of Bio-Resource and Eco-Environment of Ministry of Education, College of Life Sciences, Sichuan University, Chengdu, China.

出版信息

Front Microbiol. 2018 Sep 18;9:2202. doi: 10.3389/fmicb.2018.02202. eCollection 2018.

Abstract

Truffles are one group of the most famous ectomycorrhizal fungi in the world. There is little information on the ecological mechanisms of truffle ectomycorrhizal synthesis . In this study, we investigated the ecological effects of - ectomycorrhizal synthesis on microbial communities in the host plant roots and the surrounding soil using high-throughput sequencing and on the metabolic profiles of host plant roots using metabolomics approaches. We observed an increase in the diversity and richness of prokaryotic communities and a decrease in richness of fungal communities in the presence of . The microbial community structures in the host roots and the surrounding soil were altered by ectomycorrhizal synthesis in the greenhouse. Bacterial genera , , and and fungal genera , , and were significantly more abundant in ectomycorhizae and the ectomycorrhizosphere soil compared with the corresponding -free controls ( < 0.05). Truffle-colonization reduced the abundance of some fungal genera surrounding the host tree, such as , , and . Putative prokaryotic metabolic functions and fungal functional groups (guilds) were also differentiated by ectomycorrhizal synthesis. The ectomycorrhizal synthesis had great impact on the measured soil physicochemical properties. Metabolic profiling analysis uncovered 55 named differentially abundant metabolites between the ectomycorhizae and the control roots, including 44 upregulated and 11 downregulated metabolites. Organic acids and carbohydrates were two major upregulated metabolites in ectomycorhizae, which were found formed dense interactions with other metabolites, suggesting their crucial roles in sustaining the metabolic functions in the truffle ectomycorrhization system. This study revealed the effects of truffle-colonization on the metabolites of ectomycorrhiza and illustrates an interactive network between truffles, the host plant, soil and associated microbial communities, shedding light on understanding the ecological effects of truffles.

摘要

松露是世界上最著名的外生菌根真菌之一。关于松露外生菌根合成的生态机制,目前所知甚少。在本研究中,我们利用高通量测序技术研究了外生菌根合成对宿主植物根系及周围土壤微生物群落的生态影响,并利用代谢组学方法研究了其对宿主植物根系代谢谱的影响。我们观察到,在有菌根的情况下,原核生物群落的多样性和丰富度增加,而真菌群落的丰富度降低。温室中的外生菌根合成改变了宿主根系和周围土壤中的微生物群落结构。与相应的无菌根对照相比,外生菌根和外生菌根际土壤中的细菌属、和以及真菌属、和的丰度显著更高(<0.05)。松露定殖降低了宿主树周围一些真菌属的丰度,如、和。外生菌根合成还区分了假定的原核生物代谢功能和真菌功能组(类群)。外生菌根合成对所测土壤理化性质有很大影响。代谢谱分析发现,外生菌根和对照根之间有55种命名的差异丰富代谢物,包括44种上调代谢物和11种下调代谢物。有机酸和碳水化合物是外生菌根中两种主要的上调代谢物,它们与其他代谢物形成了密集的相互作用,表明它们在维持松露外生菌根化系统的代谢功能中起着关键作用。本研究揭示了松露定殖对外生菌根代谢物的影响,并阐明了松露、宿主植物、土壤和相关微生物群落之间的相互作用网络,为理解松露的生态影响提供了线索。

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