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首页> 外文期刊>Fungal Ecology >Distinct environmental variables drive the community composition of mycorrhizal and saprotrophic fungi at the alpine treeline ecotone
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Distinct environmental variables drive the community composition of mycorrhizal and saprotrophic fungi at the alpine treeline ecotone

机译:不同的环境变量驱动了高山林线生态交错带菌根和腐生真菌的群落组成

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摘要

Soil inhabiting fungi have an important role in ecosystems around the treeline representing both plant symbionts and organic matter decomposers. To identify the drivers of their diversity and community structure, amplicon sequencing of soil fungal DNA was conducted on six elevation transects across the transition from spruce forests to dwarf pine stands in the Krkonose Mts. (Czech Republic, Central Europe). Between 104 and 269 operational taxonomic units (OTUs) per plot were detected, however, no relation between OTU richness and elevation was found. Importantly, the dominant (representing more than 5 of all sequences per plot) OTUs assigned to ectomycorrhizal taxa decreased with elevation. Whereas the community composition of mycorrhizal fungi followed the elevation gradient and most of the total variability was explained by tree height, communities of saprotrophs were shaped mainly by vegetation, soil cover and soil properties, and differed among the transects. (C) 2016 Elsevier Ltd and British Mycological Society. All rights reserved.
机译:栖息在土壤中的真菌在代表植物共生体和有机物分解者的树线周围的生态系统中发挥着重要作用。为了确定其多样性和群落结构的驱动因素,在克尔科诺斯山(捷克共和国,中欧)从云杉林到矮松林分过渡的六个高程样带上进行了土壤真菌DNA的扩增子测序。每个样地检测到 104 至 269 个业务分类单元 (OTU),但未发现 OTU 丰富度与海拔之间的关系。重要的是,分配给外生菌根类群的优势(占每个样地所有序列的5%以上)OTU随着升高而减少。菌根真菌的群落组成随海拔梯度变化而变化,总变异性主要由树高来解释,而腐生菌群落主要由植被、土壤覆盖和土壤性质组成,并且不同样带之间存在差异。(C) 2016年爱思唯尔有限公司和英国真菌学会。保留所有权利。

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