基于宏基因组学的系统发育与系统基因组学

A. Sánchez-Reyes, J. Folch-Mallol
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引用次数: 0

摘要

自然环境中微生物类群之间的系统发育关系为形成群落结构和功能的机制提供了关键的见解。在本章中,我们讨论了目前进行群落结构分析的方法,使用单拷贝标记和rRNA基因的小亚基从下一代测序数据中测量系统发育多样性。此外,来自世界各地宏基因组学研究的大量数据使我们能够组装数千个草图基因组,从而有必要通过系统基因组近似来比较全基因组组合物。有几种计算工具可用于进行这些分析,并取得了相当大的成功;我们提供了这些开源工具的概要,易于使用,硬件要求适中,目的是它们可以被生物学家非专业人员应用于系统发育背景下研究微生物多样性。
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Metagenomics-Based Phylogeny and Phylogenomic
Phylogenetic relationships among microbial taxa in natural environments provide key insights into the mechanisms that shape community structure and functions. In this chapter, we address the current methodologies to carry out community structure profiling, using single-copy markers and the small subunit of the rRNA gene to measure phylogenetic diversity from next-generation sequencing data. Furthermore, the huge amount of data from metagenomics studies across the world has allowed us to assemble thousands of draft genomes, making necessary the comparison of whole genomes composites through phylogenomic approximations. Several computational tools are available to carry out these analyses with considerable success; we present a compendium of those open source tools, easy to use and with modest hardware requirements, with the aim that they can be applied by biologists non-specialists to study microbial diversity in a phylogenetic context.
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Introductory Chapter: Metagenomics and Metagenomic Approaches The Use of Bioinformatic Tools in Symbiosis and Co-Evolution Studies Soil Metagenomics: Concepts and Applications High-Throughput Sequencing and Metagenomic Data Analysis Metagenomics-Based Phylogeny and Phylogenomic
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