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Rapid Microbial Dynamics in Response to an Induced Wetting Event in Antarctic Dry Valley Soils

机译:南极旱谷土壤中对诱导的湿润事件的快速微生物动力学响应

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摘要

The cold deserts of the McMurdo Dry Valleys (MDV), Antarctica, host a high level of microbial diversity. Microbial composition and biomass in arid vs. ephemerally wetted regions are distinctly different, with wetted communities representing hot spots of microbial activity that are important zones for biogeochemical cycling. While climatic change is likely to cause wetting in areas not historically subject to wetting events, the responses of microorganisms inhabiting arid soils to water addition is unknown. The purpose of this study was to observe how an associated, yet non-wetted microbial community responds to an extended addition of water. Water from a stream was diverted to an adjacent area of arid soil with changes in microbial composition and activities monitored via molecular and biochemical methods over 7 weeks. The frequency of genetic signatures related to both prokaryotic and eukaryotic organisms adapted to MDV aquatic conditions increased during the limited 7 week period, indicating that the soil community was transitioning into a typical “high-productivity” MDV community. This work is consistent with current predictions that MDV microbial communities in arid regions are highly sensitive to climate change, and further supports the notion that changes in community structure and associated biogeochemical cycling may occur much more rapidly than predicted.
机译:南极麦克默多干旱谷(MDV)的寒冷沙漠拥有高水平的微生物多样性。干旱和短暂湿润地区的微生物组成和生物量明显不同,湿润群落代表了微生物活动的热点,这是生物地球化学循环的重要区域。尽管气候变化很可能在历来没有发生过湿润事件的地区引起湿润,但居住在干旱土壤中的微生物对加水的反应尚不清楚。这项研究的目的是观察相关的但未被弄湿的微生物群落如何对水的扩展添加做出反应。来自溪流的水在7周内被转移到干旱土壤的邻近区域,并通过分子和生化方法监测微生物的组成和活性。在有限的7周内,与适应MDV水生条件的原核生物和真核生物相关的遗传标志的频率增加,表明土壤群落正在向典型的“高产” MDV群落过渡。这项工作与当前关于干旱地区MDV微生物群落对气候变化高度敏感的预测相一致,并且进一步支持了这样一种观念,即群落结构和相关生物地球化学循环的变化可能比预期的发生得快得多。

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