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了解微生物遗传相关性和系统发育关系的分子鉴定及多相分类方法。

Understanding molecular identification and polyphasic taxonomic approaches for genetic relatedness and phylogenetic relationships of microorganisms.

作者信息

Das Surajit, Dash Hirak R, Mangwani Neelam, Chakraborty Jaya, Kumari Supriya

机构信息

Laboratory of Environmental Microbiology and Ecology (LEnME), Department of Life Science, National Institute of Technology, Rourkela 769 008, Odisha, India.

Laboratory of Environmental Microbiology and Ecology (LEnME), Department of Life Science, National Institute of Technology, Rourkela 769 008, Odisha, India.

出版信息

J Microbiol Methods. 2014 Aug;103:80-100. doi: 10.1016/j.mimet.2014.05.013. Epub 2014 Jun 2.

Abstract

The major proportion of earth's biological diversity is inhabited by microorganisms and they play a useful role in diversified environments. However, taxonomy of microorganisms is progressing at a snail's pace, thus less than 1% of the microbial population has been identified so far. The major problem associated with this is due to a lack of uniform, reliable, advanced, and common to all practices for microbial identification and systematic studies. However, recent advances have developed many useful techniques taking into account the house-keeping genes as well as targeting other gene catalogues (16S rRNA, rpoA, rpoB, gyrA, gyrB etc. in case of bacteria and 26S, 28S, β-tubulin gene in case of fungi). Some uncultivable approaches using much advanced techniques like flow cytometry and gel based techniques have also been used to decipher microbial diversity. However, all these techniques have their corresponding pros and cons. In this regard, a polyphasic taxonomic approach is advantageous because it exploits simultaneously both conventional as well as molecular identification techniques. In this review, certain aspects of the merits and limitations of different methods for molecular identification and systematics of microorganisms have been discussed. The major advantages of the polyphasic approach have also been described taking into account certain groups of bacteria as case studies to arrive at a consensus approach to microbial identification.

摘要

地球上生物多样性的主要部分由微生物构成,它们在多样的环境中发挥着有益作用。然而,微生物分类学的进展极其缓慢,因此到目前为止,已鉴定的微生物种群不到1%。与此相关的主要问题是缺乏统一、可靠、先进且适用于所有微生物鉴定和系统研究的方法。不过,最近的进展开发出了许多有用的技术,这些技术考虑到了持家基因以及针对其他基因目录(如细菌的16S rRNA、rpoA、rpoB、gyrA、gyrB等,真菌的26S、28S、β-微管蛋白基因)。一些使用诸如流式细胞术和基于凝胶的技术等更先进技术的不可培养方法也已被用于解读微生物多样性。然而,所有这些技术都有其相应的优缺点。在这方面,多相分类方法具有优势,因为它同时利用了传统和分子鉴定技术。在本综述中,讨论了微生物分子鉴定和系统学不同方法的优点和局限性的某些方面。还以某些细菌群体为案例研究,描述了多相方法的主要优点,以达成微生物鉴定的共识方法。

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