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用于阐明任何环境中微生物和功能基因多样性的标签编码FLX扩增子焦磷酸测序技术。

Tag-encoded FLX amplicon pyrosequencing for the elucidation of microbial and functional gene diversity in any environment.

作者信息

Sun Yan, Wolcott Randall D, Dowd Scot E

机构信息

Research and Testing Laboratory, Lubbock, TX, USA.

出版信息

Methods Mol Biol. 2011;733:129-41. doi: 10.1007/978-1-61779-089-8_9.

Abstract

Comprehensive evaluation of microbial diversity in almost any environment is now possible. Questions such as "Does the addition of fiber to the diet of humans change the gastrointestinal microbiota?" can now be answered easily and inexpensively. Tag-encoded FLX-amplicon pyrosequencing (TEFAP) has been utilized to evaluate bacterial, archaeal, fungal, algal, as well as functional genes. Using the new tag-encoded FLX amplicon pyrosequencing (bTEFAP) approach, we have evaluated the microbial diversity using a more cost-effective and largely reproducible method that would allow us to sequence the ribosomal RNA genes of microorganisms (hereafter focused on bacteria), without the need for the inherent bias of culture methods. These developments have ushered in a new age of microbial ecology studies, and we have utilized this technology to evaluate the microbiome in a wide range of systems in almost any conceivable environment.

摘要

现在,对几乎任何环境中的微生物多样性进行全面评估已成为可能。诸如“在人类饮食中添加纤维是否会改变胃肠道微生物群?”这样的问题现在可以轻松且低成本地得到解答。标签编码的FLX扩增子焦磷酸测序(TEFAP)已被用于评估细菌、古菌、真菌、藻类以及功能基因。使用新的标签编码FLX扩增子焦磷酸测序(bTEFAP)方法,我们采用了一种更具成本效益且在很大程度上可重复的方法来评估微生物多样性,这种方法使我们能够对微生物的核糖体RNA基因(以下主要关注细菌)进行测序,而无需培养方法所固有的偏差。这些进展开创了微生物生态学研究的新纪元,并且我们已经利用这项技术在几乎任何可想象的环境中的广泛系统中评估微生物组。

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