Gilbert Jack A, Laverock Bonnie, Temperton Ben, Thomas Simon, Muhling Martin, Hughes Margaret
Plymouth Marine Laboratory, The Hoe, Plymouth, UK.
Methods Mol Biol. 2011;733:173-83. doi: 10.1007/978-1-61779-089-8_12.
Metagenomics has evolved over the last 3 decades from the analysis of single genes and their apparent diversity in an ecosystem to the provision of complex genetic information relating to whole ecosystems. Metagenomics is a vast subject area in terms of methodology, which encompasses a suite of molecular technologies employed to investigate genomic information from all members of a microbial community. However, the relatively recent developments in high-throughput sequencing platforms have meant that metagenomic can be performed simply by extracting DNA and sequencing it. Here, we outline explicit methodologies for the extraction of metagenomic DNA from marine and sediments/soil environmental samples, the subsequent production and sequencing of large-insert metagenomic libraries, and also shotgun pyrosequencing considerations. We also provide relevant advice on bioinformatic analyses of the complex metagenomic datasets. We hope that the information provided here will be useful to establish the techniques in most reasonably equipped molecular biology laboratories.
在过去30年里,宏基因组学已从分析生态系统中的单个基因及其明显的多样性,发展到提供与整个生态系统相关的复杂遗传信息。就方法而言,宏基因组学是一个广阔的学科领域,它涵盖了一系列用于研究微生物群落所有成员基因组信息的分子技术。然而,高通量测序平台的相对较新发展意味着,宏基因组学可以简单地通过提取DNA并对其进行测序来完成。在这里,我们概述了从海洋和沉积物/土壤环境样本中提取宏基因组DNA的明确方法、随后构建大型插入宏基因组文库并进行测序,以及鸟枪法焦磷酸测序的注意事项。我们还提供了关于复杂宏基因组数据集生物信息学分析的相关建议。我们希望这里提供的信息将有助于在大多数配备合理的分子生物学实验室中建立这些技术。