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From nature to nurture: Essence and methods to isolate robust methanotrophic bacteria

机译:从自然到养育:隔离强大的甲烷营养细菌的本质和方法

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摘要

Methanotrophic bacteria are entities with innate biocatalytic potential to biofilter and oxidize methane into simpler compounds concomitantly conserving energy, which can contribute to copious industrial applications. The future and efficacy of such industrial applications relies upon acquiring and/or securing robust methanotrophs with taxonomic and phenotypic diversity. Despite several dramatic advances, isolation of robust methanotrophs is still a long-way challenging task with several lacunae to be filled in sequentially. Methanotrophs with high tolerance to methane can be isolated and cultivated by mimicking natural environs, and adopting strategies like adaptive metabolic evolution. This review summarizes existent and innovative methods for methanotrophic isolation and purification, and their respective applications. A comprehensive description of new insights shedding light upon how to isolate and concomitantly augment robust methanotrophic metabolism in an orchestrated fashion follows.
机译:甲烷营养菌是具有先天生物催化潜力的实体,可以生物滤除甲烷并将甲烷氧化为更简单的化合物,从而节省能源,可为众多工业应用做出贡献。这种工业应用的未来和功效取决于获得和/或确保具有分类学和表型多样性的坚固的甲烷营养生物。尽管取得了令人瞩目的进步,但要分离出健壮的甲烷营养生物仍然是一项艰巨的任务,需要依次填充几个缺陷。可以通过模拟天然环境并采用适应性代谢进化等策略来分离和培养对甲烷具有高度耐受性的甲烷营养生物。这篇综述总结了用于甲烷营养分离和纯化的现有和创新方法,以及它们各自的应用。接下来是对新见解的全面描述,这些新见解阐明了如何以精心策划的方式隔离和伴随增强健壮的甲烷营养代谢。

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