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应用经典的dN/dS检验来检测古菌中的选择作用。

Applying the Classic Test dN/dS to Detect Selection in Archaea.

作者信息

Martinez-Gutierrez Carolina A, Douglas Gavin M, Bobay Louis-Marie

机构信息

Department of Biological Sciences, North Carolina State University, Raleigh, NC, USA.

出版信息

Methods Mol Biol. 2025;2955:111-132. doi: 10.1007/978-1-0716-4702-8_7.

Abstract

Compared with the long history of research on Bacteria and Eukaryotes, Archaea are a young domain of study for life sciences. Before sequencing technologies, the scientific community primarily understood Archaea to be limited to extreme environments. However, it is now recognized that Archaea occupy a broad diversity of environments, including soil and marine habitats, where they play essential geochemical roles, as well as being animal and plant symbionts. Due to their late recognition as a new domain, the study of archaeal evolution has been delayed relative to Bacteria. Recent progress in high-throughput sequencing technologies has improved the accessibility of genomic data to broader phylogenetic breadths, including uncultivated clades. Here, we provide a step-by-step computational pipeline to estimate the ratio of nonsynonymous to synonymous substitution rates (dN/dS), a measure of the strength and direction of selection on protein-coding genes. We focus our chapter on the estimation of dN/dS to disentangle the evolutionary forces acting on the core genome of archaeal genomes, but this workflow is also applicable to Bacteria. Importantly, we present an overview of the biases to consider when estimating dN/dS, as well as potential strategies to circumvent technical limitations. We describe a case example of the use of dN/dS to explore differences in the evolutionary constraints acting on different archaeal species belonging to the genus Methanosarcina. We provide custom Python scripts, which are freely available and applicable to a broad diversity of questions on the evolution of Archaea.

摘要

与对细菌和真核生物的悠久研究历史相比,古菌是生命科学领域中一个较新的研究范畴。在测序技术出现之前,科学界主要认为古菌仅限于极端环境。然而,现在人们认识到古菌存在于广泛多样的环境中,包括土壤和海洋栖息地,它们在这些环境中发挥着重要的地球化学作用,同时也是动植物的共生体。由于古菌作为一个新范畴被认识的时间较晚,相对于细菌而言,古菌进化的研究有所滞后。高通量测序技术的最新进展提高了基因组数据在更广泛系统发育广度上的可获取性,包括未培养的进化枝。在这里,我们提供了一个逐步的计算流程,用于估计非同义替换率与同义替换率的比值(dN/dS),这是衡量蛋白质编码基因选择强度和方向的一个指标。我们在本章重点关注dN/dS的估计,以厘清作用于古菌基因组核心基因组的进化力量,但这个工作流程也适用于细菌。重要的是,我们概述了在估计dN/dS时需要考虑的偏差以及规避技术限制的潜在策略。我们描述了一个使用dN/dS来探索作用于甲烷八叠球菌属不同古菌物种的进化限制差异的案例。我们提供了自定义的Python脚本,这些脚本可免费获取,适用于关于古菌进化的广泛多样的问题。

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