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Marine metagenomics: strategies for the discovery of novel enzymes with biotechnological applications from marine environments

机译:海洋宏基因组学:从海洋环境中利用生物技术应用发现新酶的策略

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摘要

Metagenomic based strategies have previously been successfully employed as powerful tools to isolate and identify enzymes with novel biocatalytic activities from the unculturable component of microbial communities from various terrestrial environmental niches. Both sequence based and function based screening approaches have been employed to identify genes encoding novel biocatalytic activities and metabolic pathways from metagenomic libraries. While much of the focus to date has centred on terrestrial based microbial ecosystems, it is clear that the marine environment has enormous microbial biodiversity that remains largely unstudied. Marine microbes are both extremely abundant and diverse; the environments they occupy likewise consist of very diverse niches. As culture-dependent methods have thus far resulted in the isolation of only a tiny percentage of the marine microbiota the application of metagenomic strategies holds great potential to study and exploit the enormous microbial biodiversity which is present within these marine environments.
机译:基于元基因组的策略以前已成功地用作从各种陆地环境生态位的微生物群落不可培养的成分中分离和鉴定具有新型生物催化活性的酶的强大工具。基于序列和基于功能的筛选方法均已被用于从宏基因组文库中鉴定编码新型生物催化活性和代谢途径的基因。迄今为止,尽管大部分关注点都集中在基于陆地的微生物生态系统上,但很明显,海洋环境具有巨大的微生物生物多样性,但很大程度上尚未得到研究。海洋微生物既丰富又多样。它们所占据的环境同样由多种多样的生态位组成。迄今为止,由于依赖于文化的方法仅导致了海洋微生物群的很小一部分的分离,因此宏基因组学方法的应用具有巨大的潜力来研究和利用这些海洋环境中存在的巨大微生物多样性。

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