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非培养方法在衣原体基因组学中的应用。

Culture-independent approaches to chlamydial genomics.

机构信息

Centre for Animal Health Innovation, Faculty of Science, Health, Education and Engineering, University of the Sunshine Coast, Sippy Downs, Australia.

出版信息

Microb Genom. 2018 Feb;4(2). doi: 10.1099/mgen.0.000145. Epub 2018 Jan 3.

Abstract

The expanding field of bacterial genomics has revolutionized our understanding of microbial diversity, biology and phylogeny. For most species, DNA extracted from culture material is used as the template for genome sequencing; however, the majority of microbes are actually uncultivable, and others, such as obligate intracellular bacteria, require laborious tissue culture to yield sufficient genomic material for sequencing. Chlamydiae are one such group of obligate intracellular microbes whose characterization has been hampered by this requirement. To circumvent these challenges, researchers have developed culture-independent sample preparation methods that can be applied to the sample directly or to genomic material extracted from the sample. These methods, which encompass both targeted [immunomagnetic separation-multiple displacement amplification (IMS-MDA) and sequence capture] and non-targeted approaches (host methylated DNA depletion-microbial DNA enrichment and cell-sorting-MDA), have been applied to a range of clinical and environmental samples to generate whole genomes of novel chlamydial species and strains. This review aims to provide an overview of the application, advantages and limitations of these targeted and non-targeted approaches in the chlamydial context. The methods discussed also have broad application to other obligate intracellular bacteria or clinical and environmental samples.

摘要

细菌基因组学领域的不断扩展彻底改变了我们对微生物多样性、生物学和系统发育的理解。对于大多数物种,从培养材料中提取的 DNA 被用作基因组测序的模板;然而,大多数微生物实际上是无法培养的,而其他微生物,如专性细胞内细菌,则需要繁琐的组织培养才能获得足够的基因组材料进行测序。衣原体就是这样一组专性细胞内微生物,其特征受到这一要求的阻碍。为了克服这些挑战,研究人员开发了无需培养的样本制备方法,可以直接应用于样本,也可以应用于从样本中提取的基因组材料。这些方法包括靶向方法(免疫磁分离-多重置换扩增(IMS-MDA)和序列捕获)和非靶向方法(宿主甲基化 DNA 耗竭-微生物 DNA 富集和细胞分选-MDA),已应用于一系列临床和环境样本,以生成新型衣原体种和株的全基因组。本综述旨在概述这些靶向和非靶向方法在衣原体背景下的应用、优势和局限性。讨论的方法也广泛适用于其他专性细胞内细菌或临床和环境样本。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd94/5857372/d7499f87af26/mgen-4-145-g001.jpg

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