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Cultivating the uncultured

机译:耕种未耕种

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摘要

The recent application of molecular phylogeny to environmental samples has resulted in the discovery of an abundance of unique and previously unrecognized microorganisms. The vast majority of this microbial diversity has proved refractory to cultivation. Here, we describe a universal method that provides access to this immense reservoir of untapped microbial diversity. This technique combines encapsulation of cells in gel microdroplets for massively parallel microbial cultivation under low nutrient flux conditions, followed by flow cytometry to detect microdroplets containing microcolonies. The ability to grow and study previously uncultured organisms in pure culture will enhance our understanding of microbial physiology and metabolic adaptation and will provide new sources of microbial metabolites. We show that this technology can be applied to samples from several different environments, including seawater and soil.
机译:分子系统学在环境样品中的最新应用已导致发现了许多独特的和先前未被识别的微生物。这种微生物多样性的绝大部分已被证明对耕种具有抵抗力。在这里,我们描述了一种通用的方法,该方法可以访问尚未开发的微生物多样性的巨大资源库。该技术结合了将细胞封装在凝胶微滴中,以便在低养分通量条件下进行大规模平行微生物培养,然后进行流式细胞仪检测含有微菌落的微滴。在纯培养物中生长和研究以前未培养的生物的能力将增强我们对微生物生理学和代谢适应性的理解,并将提供微生物代谢产物的新来源。我们证明了该技术可以应用于来自多种不同环境的样品,包括海水和土壤。

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