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宏基因组分析:过去和未来的趋势。

Metagenomic analyses: past and future trends.

机构信息

Abteilung Genomische und Angewandte Mikrobiologie, Institut für Mikrobiologie und Genetik, Georg-August-Universität, Grisebachstr. 8, 37077 Göttingen, Germany.

出版信息

Appl Environ Microbiol. 2011 Feb;77(4):1153-61. doi: 10.1128/AEM.02345-10. Epub 2010 Dec 17.

Abstract

Metagenomics has revolutionized microbiology by paving the way for a cultivation-independent assessment and exploitation of microbial communities present in complex ecosystems. Metagenomics comprising construction and screening of metagenomic DNA libraries has proven to be a powerful tool to isolate new enzymes and drugs of industrial importance. So far, the majority of the metagenomically exploited habitats comprised temperate environments, such as soil and marine environments. Recently, metagenomes of extreme environments have also been used as sources of novel biocatalysts. The employment of next-generation sequencing techniques for metagenomics resulted in the generation of large sequence data sets derived from various environments, such as soil, the human body, and ocean water. Analyses of these data sets opened a window into the enormous taxonomic and functional diversity of environmental microbial communities. To assess the functional dynamics of microbial communities, metatranscriptomics and metaproteomics have been developed. The combination of DNA-based, mRNA-based, and protein-based analyses of microbial communities present in different environments is a way to elucidate the compositions, functions, and interactions of microbial communities and to link these to environmental processes.

摘要

宏基因组学通过为在复杂生态系统中存在的微生物群落提供一种无需培养的评估和开发方法,从而彻底改变了微生物学。宏基因组学包括构建和筛选宏基因组 DNA 文库,已被证明是分离具有工业重要性的新酶和药物的有力工具。到目前为止,大多数经过宏基因组学开发的生境都包含温带环境,例如土壤和海洋环境。最近,极端环境的宏基因组也被用作新型生物催化剂的来源。用于宏基因组学的下一代测序技术的应用导致了从各种环境(例如土壤、人体和海水)生成的大量序列数据集。对这些数据集的分析为环境微生物群落的巨大分类和功能多样性打开了一扇窗户。为了评估微生物群落的功能动态,已经开发了宏转录组学和宏蛋白质组学。对不同环境中存在的微生物群落进行基于 DNA、mRNA 和蛋白质的分析的组合是阐明微生物群落的组成、功能和相互作用并将其与环境过程联系起来的一种方法。

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