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Bacterial community structure and soil properties of a subarctic tundra soil in Council Alaska

机译:阿拉斯加市议会的一种北极苔原冻土的细菌群落结构和土壤特性

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摘要

The subarctic region is highly responsive and vulnerable to climate change. Understanding the structure of subarctic soil microbial communities is essential for predicting the response of the subarctic soil environment to climate change. To determine the composition of the bacterial community and its relationship with soil properties, we investigated the bacterial community structure and properties of surface soil from the moist acidic tussock tundra in Council, Alaska. We collected 70 soil samples with 25-m intervals between sampling points from 0–10 cm to 10–20 cm depths. The bacterial community was analyzed by pyrosequencing of 16S rRNA genes, and the following soil properties were analyzed: soil moisture content (MC), pH, total carbon (TC), total nitrogen (TN), and inorganic nitrogen ( and ). The community compositions of the two different depths showed that Alphaproteobacteria decreased with soil depth. Among the soil properties measured, soil pH was the most significant factor correlating with bacterial community in both upper and lower-layer soils. Bacterial community similarity based on jackknifed unweighted unifrac distance showed greater similarity across horizontal layers than through the vertical depth. This study showed that soil depth and pH were the most important soil properties determining bacterial community structure of the subarctic tundra soil in Council, Alaska.
机译:亚北极地区反应迅速,容易受到气候变化的影响。了解北极土壤微生物群落的结构对于预测北极土壤环境对气候变化的响应至关重要。为了确定细菌群落的组成及其与土壤特性的关系,我们从阿拉斯加市议会的潮湿酸性丛丛苔原调查了表层土壤的细菌群落结构和特性。我们收集了70个土壤样品,采样点之间的距离为0–10 cm至10–20 cm深度,间隔为25 m。通过对16S rRNA基因进行焦磷酸测序来分析细菌群落,并分析以下土壤特性:土壤含水量(MC),pH,总碳(TC),总氮(TN)和无机氮(和)。两种不同深度的群落组成表明,随着土壤深度的增加,丙酸杆菌减少。在测量的土壤特性中,土壤pH是上层和下层土壤中与细菌群落相关的最重要因素。基于顶峰的未加权非ifrac距离的细菌群落相似性在水平层上的相似性大于在垂直深度上的相似性。这项研究表明,土壤深度和pH值是决定阿拉斯加市议会北极苔原带土壤细菌群落结构的最重要的土壤特性。

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