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Environmental paleomicrobiology: using DNA preserved in aquatic sediments to its full potential

机译:环境古微生物学:充分利用保存在水生沉积物中的DNA

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摘要

Summary In‐depth knowledge about spatial and temporal variation in microbial diversity and function is needed for a better understanding of ecological and evolutionary responses to global change. In particular, the study of microbial ancient DNA preserved in sediment archives from lakes and oceans can help us to evaluate the responses of aquatic microbes in the past and make predictions about future biodiversity change in those ecosystems. Recent advances in molecular genetic methods applied to the analysis of historically deposited DNA in sediments have not only allowed the taxonomic identification of past aquatic microbial communities but also enabled tracing their evolution and adaptation to episodic disturbances and gradual environmental change. Nevertheless, some challenges remain for scientists to take full advantage of the rapidly developing field of paleo‐genetics, including the limited ability to detect rare taxa and reconstruct complete genomes for evolutionary studies. Here, we provide a brief review of some of the recent advances in the field of environmental paleomicrobiology and discuss remaining challenges related to the application of molecular genetic methods to study microbial diversity, ecology, and evolution in sediment archives. We anticipate that, in the near future, environmental paleomicrobiology will shed new light on the processes of microbial genome evolution and microbial ecosystem responses to quaternary environmental changes at an unprecedented level of detail. This information can, for example, aid geological reconstructions of biogeochemical cycles and predict ecosystem responses to environmental perturbations, including in the context of human‐induced global changes.
机译:总结 需要深入了解微生物多样性和功能的空间和时间变化,以更好地了解对全球变化的生态和进化反应。特别是,研究保存在湖泊和海洋沉积物档案中的微生物古代DNA,可以帮助我们评估过去水生微生物的反应,并预测这些生态系统中未来的生物多样性变化。分子遗传学方法的最新进展应用于分析沉积物中历史上沉积的DNA,不仅能够对过去的水生微生物群落进行分类鉴定,而且还能够追踪它们的进化和对偶发性干扰和逐渐环境变化的适应。然而,科学家们在充分利用快速发展的古遗传学领域方面仍然存在一些挑战,包括检测稀有分类群和重建完整基因组以进行进化研究的能力有限。在这里,我们简要回顾了环境古微生物学领域的一些最新进展,并讨论了与应用分子遗传学方法研究沉积物档案中的微生物多样性、生态学和进化相关的仍然存在的挑战。我们预计,在不久的将来,环境古微生物学将以前所未有的详细程度揭示微生物基因组进化过程和微生物生态系统对第四纪环境变化的响应。例如,这些信息可以帮助生物地球化学循环的地质重建,并预测生态系统对环境扰动的反应,包括在人为引起的全球变化的背景下。

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