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解析微生物群落组装的实验与计算方法

Experimental and computational approaches to unravel microbial community assembly.

作者信息

Aguirre de Cárcer Daniel

机构信息

Departamento de Biología, Universidad Autónoma de Madrid, Madrid, Spain.

出版信息

Comput Struct Biotechnol J. 2020 Dec 3;18:4071-4081. doi: 10.1016/j.csbj.2020.11.031. eCollection 2020.

Abstract

Microbial communities have a preponderant role in the life support processes of our common home planet Earth. These extremely diverse communities drive global biogeochemical cycles, and develop intimate relationships with most multicellular organisms, with a significant impact on their fitness. Our understanding of their composition and function has enjoyed a significant thrust during the last decade thanks to the rise of high-throughput sequencing technologies. Intriguingly, the diversity patterns observed in nature point to the possible existence of fundamental community assembly rules. Unfortunately, these rules are still poorly understood, despite the fact that their knowledge could spur a scientific, technological, and economic revolution, impacting, for instance, agricultural, environmental, and health-related practices. In this minireview, I recapitulate the most important wet lab techniques and computational approaches currently employed in the study of microbial community assembly, and briefly discuss various experimental designs. Most of these approaches and considerations are also relevant to the study of microbial microevolution, as it has been shown that it can occur in ecological relevant timescales. Moreover, I provide a succinct review of various recent studies, chosen based on the diversity of ecological concepts addressed, experimental designs, and choice of wet lab and computational techniques. This piece aims to serve as a primer to those new to the field, as well as a source of new ideas to the more experienced researchers.

摘要

微生物群落对我们共同的家园地球的生命维持过程起着至关重要的作用。这些极其多样的群落驱动着全球生物地球化学循环,并与大多数多细胞生物建立密切关系,对它们的适应性产生重大影响。由于高通量测序技术的兴起,在过去十年中,我们对其组成和功能的理解有了显著的推进。有趣的是,在自然界中观察到的多样性模式表明可能存在基本的群落组装规则。不幸的是,尽管了解这些规则可能会引发一场科学、技术和经济革命,例如影响农业、环境和健康相关的实践,但我们对这些规则仍然知之甚少。在这篇微型综述中,我总结了目前在微生物群落组装研究中使用的最重要的湿实验室技术和计算方法,并简要讨论了各种实验设计。这些方法和考虑因素大多也与微生物微进化研究相关,因为已经表明它可以在生态相关的时间尺度上发生。此外,我对最近的各种研究进行了简要综述,这些研究是根据所涉及的生态概念的多样性、实验设计以及湿实验室和计算技术的选择来挑选的。这篇文章旨在为该领域的新手提供入门指导,同时也为经验更丰富的研究人员提供新的思路来源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4bb/7736701/7bb433e2abf0/gr1.jpg

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