功能宏基因组学:最新进展和未来挑战

L. Chistoserdova
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引用次数: 46

摘要

宏基因组学是环境生物学中一个相对较新的但发展迅速的领域,旨在获得环境微生物基因组以及整个微生物群落的知识。随着测序技术的不断进步,产生大量的序列已成为常规。然而,将特定的微生物门与环境中的特定功能联系起来仍然很困难。近年来已经实施了许多“功能宏基因组学”方法,这些方法允许对未培养的微生物进行高分辨率基因组分析,并将它们与环境中的特定功能联系起来。这些包括分析特定的低复杂性社区、反应堆浓缩和使用标记技术。元转录组学和元蛋白质组学是元基因组学领域中最新的分支学科,它们为未培养微生物和群落的功能分析提供了更高水平的分辨率。最近新(下一代)测序技术的出现,导致更高的序列输出和测序价格的急剧下降,将定义宏基因组学的新时代。在这个时候,测序工作将被带到一个新的水平,以允许解决新的,以前无法实现的生物学问题,并加速基于基因组的医学和生物技术应用的发现。
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Functional Metagenomics: Recent Advances and Future Challenges
Abstract Metagenomics is a relatively new but fast growing field within environmental biology directed at obtaining knowledge on genomes of environmental microbes as well as of entire microbial communities. With the sequencing technologies improving steadily, generating large amounts of sequence is becoming routine. However, it remains difficult to connect specific microbial phyla to specific functions in the environment. A number of ‘functional metagenomics’ approaches have been implemented in the recent years that allow high-resolution genomic analysis of uncultivated microbes, connecting them to specific functions in the environment. These include analysis of nichespecialized low complexity communities, reactor enrichments, and the use labeling technologies. Metatranscriptomics and metaproteomics are the newest sub-disciplines within the metagenomics field that provide further levels of resolution for functional analysis of uncultivated microbes and communities. The recent emergence of new (next generation) sequencing technologies, resulting in higher sequence output and dramatic drop in the price of sequencing, will be defining a new era in metagenomics. At this time the sequencing effort will be taken to a new level to allow addressing new, previously unattainable biological questions as well as accelerating genome-based discovery for medical and biotechnological applications.
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