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Community Structure and Biogeochemical Impacts of Microbial Life on Floating Pumice

机译:微生物对浮石浮游生物的群落结构和生物地球化学影响

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Volcanic eruptions are a widespread force of geological and ecological disturbance and present recurrent opportunities for the study of biological responses to novel habitat formation. However, scientific study of such events is difficult given their short duration and often distant location. Here we report results from opportunistic sampling of unique volcano-generated habitats formed during the 2011 explosive eruption in the Puyehue-Cordón Caulle complex (Chile), when massive amounts of pumice were ejected, creating novel floating substrata that have never before been characterized from a microbiological perspective. DNA sequencing revealed a dynamic community of microbes that came to inhabit the pumice, with a unique composition distinct from that of the lakes' surface waters and with suggestions of ecological convergence across lakes and sampling times. Furthermore, biogeochemical studies of net nutrient fluxes showed that, while the fresh pumice arriving to the lakes was an initial source of phosphorus (P), colonized pumice had high rates of nitrogen (N) and P uptake and was sufficiently abundant to represent a significant lake-wide nutrient sink. These findings highlight the remarkable versatility of microbes in exploiting novel environments and are consistent with a recent proposal of floating pumice as a favorable environment for the initial origins of life on early Earth.
机译:火山喷发是一种广泛的地质和生态扰动力量,为研究对新的栖息地形成的生物学反应提供了反复出现的机会。但是,鉴于此类事件的持续时间短且位置通常很遥远,因此很难对其进行科学研究。在这里,我们报告的是2011年Puyehue-CordónCaulle复合体(智利)爆发爆炸时形成的独特火山生成栖息地的机会抽样结果,当时喷出了大量的浮石,形成了以前从未有过的特征的​​新型漂浮基质微生物学的观点。 DNA测序揭示了浮游生物栖息的动态微生物群落,其独特的组成不同于湖泊的地表水,并暗示了整个湖泊之间生态融合和取样时间的建议。此外,对净养分通量的生物地球化学研究表明,虽然到达湖泊的新鲜浮石是磷(P)的最初来源,但定殖的浮石具有很高的氮(N)和P吸收率,并且足够丰富,代表着重要的磷。全湖养分汇。这些发现凸显了微生物在开发新环境中的非凡用途,并且与最近提出的浮石作为早期地球生命起源的有利环境的提议相一致。

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