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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Microbial polyhydroxyalkanoates from extreme niches: Bioprospection status, opportunities and challenges
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Microbial polyhydroxyalkanoates from extreme niches: Bioprospection status, opportunities and challenges

机译:来自极端利基的微生物多羟基烷烃:生物缺位地位,机遇和挑战

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Extreme niches are offered with unusual physiochemical conditions that impose stress to the life-forms including microbial communities. Microbes have evolved unique physiology and genetics to interact dynamically with extreme environments for their adaptation and survival. Amongst the several adaptive features of microbes in stressed conditions, polyhydroxyalkanoates synthesis is a crucial strategy of many bacteria and archaea to reserve carbon and energy inside the cell. Apart from the relevance of PHA to microbial world, these intracellular polyesters are seen as essential biological macromolecules for the bio-material industry owing to their plastic-like properties, biodegradable and eco-friendly nature. Recently, much attention has been attracted by the microbes of extreme habitats for a new source of industrially suited PHA producers and novel PHA with unique properties. Therefore, the current review is focused on the critical evaluation of microbes from extreme niches for PHA production and opportunities for the development of commercially feasible PHA bioprocess. (C) 2019 Elsevier B.V. All rights reserved.
机译:至尊龛提供与施加应力生命形式,包括微生物群落异常的生理条件。微生物已经进化独特生理学和遗传学与极端环境的适应他们生存和动态交互。之间在应力条件下的微生物的几个自适应特性,聚羟基烷酸酯的合成是许多细菌的关键策略和古细菌到储备碳和能量在细胞内。除了PHA的微生物世界的相关性,这些细胞内聚酯被看作是生物材料行业由于其类似塑料的特性,可生物降解和环保性所必须的生物大分子。近日,备受关注已经吸引了极端生境的微生物在工业适合PHA生产商和具有独特特性的新PHA的新来源。因此,目前审查的重点从极端龛PHA生产和机会,商业上可行的PHA生物工艺开发微生物的批判性评价。 (c)2019 Elsevier B.v.保留所有权利。

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