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Vegetation pH and Water Content as Main Factors for Shaping Fungal Richness Community Composition and Functional Guilds Distribution in Soils of Western Greenland

机译:植被pH和水分含量是影响西部格陵兰土壤真菌丰富度群落组成和功能协会分布的主要因素

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摘要

Fungi are the most abundant and one of the most diverse components of arctic soil ecosystems, where they are fundamental drivers of plant nutrient acquisition and recycling. Nevertheless, few studies have focused on the factors driving the diversity and functionality of fungal communities associated with these ecosystems, especially in the scope of global warming that is particularly affecting Greenland and is leading to shrub expansion, with expected profound changes of soil microbial communities. We used soil DNA metabarcoding to compare taxonomic and functional composition of fungal communities in three habitats [bare ground (BG), biological soil crusts (BSC), and vascular vegetation (VV) coverage] in Western Greenland. Fungal richness increased with the increasing complexity of the coverage, but BGs and BSCs samples showed the highest number of unique OTUs. Differences in both fungal community composition and distribution of functional guilds identified were correlated with edaphic factors (mainly pH and water content), in turn connected with the different type of coverage. These results suggest also possible losses of diversity connected to the expansion of VV and possible interactions among the members of different functional guilds, likely due to the nutrient limitation, with potential effects on elements recycling.
机译:真菌是北极土壤生态系统中含量最丰富,种类最多的组成部分之一,是植物养分获取和循环利用的根本驱动力。然而,很少有研究集中在驱动与这些生态系统相关的真菌群落的多样性和功能的因素上,特别是在特别影响格陵兰岛并导致灌木扩展的全球变暖范围内,土壤微生物群落有望发生深刻的变化。我们使用土壤DNA元条形码技术比较了西部格陵兰岛三个生境[裸地(BG),生物土壤结皮(BSC)和维管植物(VV)覆盖率]中真菌群落的分类和功能组成。真菌丰富度随着覆盖范围的增加而增加,但是BG和BSC样品显示出最大数量的独特OTU。真菌群落组成和功能工会分布的差异均与营养因子(主要是pH和水含量)相关,进而与覆盖类型不同有关。这些结果还表明,与VV的扩展有关的多样性丧失可能以及不同功能行会成员之间可能的相互作用,这可能是由于营养物质的限制而对元素回收产生了潜在影响。

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