Deveau Aurélie, Antony-Babu Sanjay, Le Tacon François, Robin Christophe, Frey-Klett Pascale, Uroz Stéphane
UMR1136 INRA Université de Lorraine, Interactions Arbres - Microorganismes, F-54280, Champenoux, France.
Université de Lorraine, UMR1136, Interactions Arbres - Microorganismes, F-54500, Vandœuvre-lès-Nancy, France.
Mycorrhiza. 2016 Jul;26(5):389-99. doi: 10.1007/s00572-015-0679-7. Epub 2016 Jan 19.
Ectomycorrhizae create a multitrophic ecosystem formed by the association between tree roots, mycelium of the ectomycorrhizal fungus, and a complex microbiome. Despite their importance in the host tree's physiology and in the functioning of the ectomycorrhizal symbiosis, detailed studies on ectomycorrhiza-associated bacterial community composition and their temporal dynamics are rare. Our objective was to investigate the composition and dynamics of Tuber melanosporum ectomycorrhiza-associated bacterial communities from summer to winter seasons in a Corylus avellana tree plantation. We used 16S ribosomal RNA (rRNA)-based pyrosequencing to compare the bacterial community structure and the richness in T. melanosporum's ectomycorrhizae with those of the bulk soil. The T. melanosporum ectomycorrhizae harbored distinct bacterial communities from those of the bulk soil, with an enrichment in Alpha- and Gamma-proteobacteria. In contrast to the bacterial communities of truffle ascocarps that vastly varies in composition and richness during the maturation of the fruiting body and to those from the bulk soil, T. melanosporum ectomycorrhiza-associated bacterial community composition stayed rather stable from September to January. Our results fit with a recent finding from the same experimental site at the same period that a continuous supply of carbohydrates and nitrogen occurs from ectomycorrhizae to the fruiting bodies during the maturation of the ascocarps. We propose that this creates a stable niche in the ectomycorrhizosphere although the phenology of the tree changes.
外生菌根形成了一个多营养生态系统,该系统由树木根系、外生菌根真菌的菌丝体以及复杂的微生物群落之间的关联所构成。尽管它们在宿主树的生理学以及外生菌根共生功能中具有重要作用,但对外生菌根相关细菌群落组成及其时间动态的详细研究却很少见。我们的目标是调查在榛树人工林中,从夏季到冬季期间黑孢块菌外生菌根相关细菌群落的组成和动态。我们使用基于16S核糖体RNA(rRNA)的焦磷酸测序来比较黑孢块菌外生菌根中的细菌群落结构和丰富度与大块土壤中的细菌群落结构和丰富度。黑孢块菌外生菌根中含有与大块土壤不同的细菌群落,其中α-和γ-变形菌门富集。与在子实体成熟期间组成和丰富度差异很大的块菌子囊果的细菌群落以及大块土壤中的细菌群落不同,从9月到1月,黑孢块菌外生菌根相关细菌群落组成保持相当稳定。我们的结果与同期在同一实验地点的一项最新发现相符,即在子囊果成熟期间,碳水化合物和氮从外生菌根持续供应到子实体。我们提出,尽管树木的物候发生变化,但这在外生菌根际创造了一个稳定的生态位。