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Fungal Communities Along a Small-Scale Elevational Gradient in an Alpine Tundra Are Determined by Soil Carbon Nitrogen Ratios

机译:通过土壤碳氮比确定高寒苔原上小规模海拔梯度上的真菌群落

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摘要

Elevational gradients are associated not only with variations in temperature and precipitation, but also with shifts in vegetation types and changes in soil physicochemical properties. While large-scale elevational patterns of soil microbial diversity, such as monotonic declines and hump-shaped models, have been reported, it is unclear whether within-ecosystem elevational distribution patterns exist for soil fungal communities at the small scale. Using Illumina Miseq DNA sequencing, we present a comprehensive analysis of soil fungal diversity and community compositions in an alpine tundra ecosystem at elevations ranging from 2000 to 2500 m on the Changbai Mountain, China. Soil fungal community composition differed among elevations, and the fungal diversity (i.e., species richness and Chao1) increased along elevations. Soil fungal richness was negatively correlated with soil carbonitrogen (C/N) ratio, and community composition varied according to the C/N ratio. In addition, the relative abundances of Basidiomycota and Leotiomycetes were similarly negatively correlated with C/N ratio. For functional guilds, our data showed that mycoparasite and foliar epiphyte abundances were also influenced by C/N ratio. These results indicated that soil C/N ratio might be a key factor in determining soil fungal distribution at small-scale elevational gradients.
机译:海拔梯度不仅与温度和降水的变化有关,而且与植被类型的变化和土壤理化性质的变化有关。虽然已经报道了土壤微生物多样性的大规模海拔格局,例如单调下降和驼峰状模型,但尚不清楚小规模土壤真菌群落的生态系统内海拔分布格局是否存在。使用Illumina Miseq DNA测序技术,我们对中国长白山海拔2000-2500 m的高山冻原生态系统中的土壤真菌多样性和群落组成进行了全面分析。不同海拔高度的土壤真菌群落组成不同,真菌多样性(即物种丰富度和Chao1)随海拔高度增加。土壤真菌丰富度与土壤碳/氮(C / N)比呈负相关,群落组成随碳/氮比而变化。另外,担子菌和Leotiomycetes的相对丰度与C / N比也呈负相关。对于功能性行会,我们的数据表明,真菌寄生虫和叶片附生植物的丰度也受C / N比的影响。这些结果表明,土壤碳氮比可能是决定小尺度海拔梯度土壤真菌分布的关键因素。

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