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首页> 外文期刊>Environmental microbiology >Disentangling the complexity of permafrost soil by using high resolution profiling of microbial community composition, key functions and respiration rates
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Disentangling the complexity of permafrost soil by using high resolution profiling of microbial community composition, key functions and respiration rates

机译:利用微生物群落组成,关键功能和呼吸率的高分辨率分析解开多年冻土土壤的复杂性

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Thawing permafrost can stimulate microbial activity, leading to faster decomposition of formerly preserved organic matter and CO2 release. Detailed knowledge about the vertical distribution of the responsible microbial community that is changing with increasing soil depth is limited. In this study, we determined the microbial community composition from cores sampled in a high Arctic heath at Svalbard, Norway; spanning from the active layer (AL) into the permafrost layer (PL). A special aim has been on identifying a layer of recently thawed soil, the transition zone (TZ), which might provide new insights into the fate of thawing permafrost. A unique sampling strategy allowed us to observe a diverse and gradually shifting microbial community in the AL, a Bacteroidetes dominated community in the TZ and throughout the PL, a community strongly dominated by a single Actinobacteria family (Intrasporangiaceae). The contrasting abundances of these two taxa caused a community difference of about 60%, just within 3 cm from TZ to PL. We incubated subsamples at about 5 degrees C and measured highest CO2 production rates under aerobic incubations, yet contrasting for five different layers and correlating to the microbial community composition. This high resolution strategy provides new insights on how microbial communities are structured in permafrost and a better understanding of how they respond to thaw.
机译:解冻永久冻土可以刺激微生物活性,导致以前保存的有机物质和CO2释放的分解更快。关于随着土壤深度的增加而变化的负责的微生物群落的垂直分布的详细知识。在这项研究中,我们确定了在挪威Svalbard的高北极海底中取样的核心微生物群落组成;从活性层(Al)跨越多冻层(PL)。特殊目标是识别一层最近解冻的土壤,过渡区(TZ),这可能会对解冻永久冻土的命运提供新的见解。独特的抽样策略使我们可以在TZ和整个PL中占据Al,在TZ和整个PL中的群体中的群体中的群体中的多样化和逐渐变化的微生物群落,这是一种由单一的肌动菌族(血小伤群岛)强烈主导的群体。这两个分类群的对比丰度导致社区差异约为60%,距离TZ到PL之内。我们在约5摄氏度下孵育副样品,并在有氧孵育下测量最高的CO 2生产率,但对五种不同的层形成对比并与微生物群落组合物相关。这种高分辨率策略提供了关于微生物社区在永久冻土中结构的新见解,并更好地了解他们如何回应解冻。

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