首页> 外文期刊>European Journal of Protistology >Environmental factors influencing soil testate amoebae in herbaceous and shrubby vegetation along an altitudinal gradient in subarctic tundra (Abisko, Sweden)
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Environmental factors influencing soil testate amoebae in herbaceous and shrubby vegetation along an altitudinal gradient in subarctic tundra (Abisko, Sweden)

机译:沿寒带苔原的海拔梯度影响草本和灌木植物的土壤睾丸变形虫的环境因素(瑞典阿比斯库)

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Shifts in community composition of soil protozoa in response to climate change may substantially influence microbial activity and thereby decomposition processes. However, effects of climate and vegetation on soil protozoa remain poorly understood. We studied the distribution of soil testate amoebae in herbaceous and shrubby vegetation along an altitudinal gradient (from below the treeline at 500. m to the mid-alpine region at 900. m a.s.l.) in subarctic tundra. To explain patterns in abundance, species diversity and assemblage composition of testate amoebae, a data set of microclimate and soil chemical characteristics was collected. Both elevation and vegetation influenced the assemblage composition of testate amoebae. The variation was regulated by interactive effects of summer soil moisture, winter soil temperature, soil pH and nitrate ion concentrations. Besides, soil moisture regulated non-linear patterns in species richness across the gradient. This is the first study showing the effects of winter soil temperatures on species composition of soil protozoa. The effects could be explained by specific adaptations of testate amoebae such as frost-resistant cysts allowing them to survive low winter temperatures. We conclude that the microclimate and soil chemical characteristics are the main drivers of changes in protozoan assemblage composition in response to elevation and vegetation.
机译:响应气候变化,土壤原生动物群落组成的变化可能会极大地影响微生物的活动,进而影响分解过程。然而,气候和植被对土壤原生动物的影响知之甚少。我们研究了北极寒带苔藓上草本和灌木状植被沿土壤梯度的海拔分布(从树线以下500. m到中高山地区900. m a.s.l.)的分布。为了解释睾丸变形虫的丰度,物种多样性和组合组成的模式,收集了微气候和土壤化学特征的数据集。海拔和植被都影响睾丸变形虫的组合组成。夏季土壤水分,冬季土壤温度,土壤pH值和硝酸盐离子浓度的交互作用调节了这种变化。此外,土壤水分在整个梯度上调节物种丰富度的非线性模式。这是第一项显示冬季土壤温度对土壤原生动物物种组成影响的研究。可以通过对睾丸变形虫的特殊适应来解释这种影响,例如抗冻囊肿使它们能够在冬季低温下生存。我们得出的结论是,微气候和土壤化学特征是响应海拔和植被而改变原生动物组合组成的主要驱动力。

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