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丛枝菌根禾草和外生菌根树种的根相关真菌群落对其在原生演替中共存的非对称响应。

Asymmetric response of root-associated fungal communities of an arbuscular mycorrhizal grass and an ectomycorrhizal tree to their coexistence in primary succession.

机构信息

Institute of Botany, Czech Academy of Sciences, Zámek 1, 252 43, Průhonice, Czech Republic.

Department of Experimental Plant Biology, Faculty of Science, Charles University, Viničná 5, 128 44, Prague, Czech Republic.

出版信息

Mycorrhiza. 2017 Nov;27(8):775-789. doi: 10.1007/s00572-017-0792-x. Epub 2017 Jul 27.

Abstract

The arbuscular mycorrhizal (AM) grass Calamagrostis epigejos and predominantly ectomycorrhizal (EcM) tree Salix caprea co-occur at post-mining sites spontaneously colonized by vegetation. During succession, AM herbaceous vegetation is replaced by predominantly EcM woody species. To better understand the interaction of AM and EcM plants during vegetation transition, we studied the reciprocal effects of these species' coexistence on their root-associated fungi (RAF). We collected root and soil samples from three different microenvironments: stand of C. epigejos, under S. caprea canopy, and contact zone where roots of the two species interacted. RAF communities and mycorrhizal colonization were determined in sampled roots, and the soil was tested for EcM and AM inoculation potentials. Although the microenvironment significantly affected composition of the RAF communities in both plant species, the effect was greater in the case of C. epigejos RAF communities than in that of S. caprea RAF communities. The presence of S. caprea also significantly decreased AM fungal abundance in soil as well as AM colonization and richness of AM fungi in C. epigejos roots. Changes observed in the abundance and community composition of AM fungi might constitute an important factor in transition from AM-dominated to EcM-dominated vegetation during succession.

摘要

丛枝菌根 (AM) 草本植物柳枝稷和主要外生菌根 (EcM) 乔木欧洲山杨在自然定居的矿区后发生地同时存在。在演替过程中,AM 草本植被被主要为 EcM 的木本物种所取代。为了更好地理解植被演替过程中 AM 和 EcM 植物之间的相互作用,我们研究了这些物种共存对其根相关真菌 (RAF) 的相互影响。我们从三个不同的微环境中收集了根和土壤样本:柳枝稷种群、欧洲山杨树冠下、两种植物根系相互作用的接触区。在采样的根系中确定了 RAF 群落和菌根定殖情况,并测试了土壤中 EcM 和 AM 的接种潜力。尽管微环境显著影响了两种植物的 RAF 群落组成,但对柳枝稷 RAF 群落的影响大于对欧洲山杨 RAF 群落的影响。欧洲山杨的存在还显著降低了土壤中 AM 真菌的丰度以及 AM 真菌对柳枝稷根的定殖和丰富度。在演替过程中,AM 真菌丰度和群落组成的变化可能构成从 AM 主导植被向 EcM 主导植被转变的一个重要因素。

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