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微生物胞外多糖用于重金属去除的前景

Prospective of Microbial Exopolysaccharide for Heavy Metal Exclusion.

作者信息

Mohite Bhavana V, Koli Sunil H, Narkhede Chandrakant P, Patil Sucheta N, Patil Satish V

机构信息

School of Life Sciences, North Maharashtra University, Post Box - 80, Jalgaon, Maharashtra, 425001, India.

Department of Biotechnology, K.T.H.M College, Nashik, Maharashtra, 422002, India.

出版信息

Appl Biochem Biotechnol. 2017 Oct;183(2):582-600. doi: 10.1007/s12010-017-2591-4. Epub 2017 Sep 9.

Abstract

Metals as a resource are depleting, and on another side, it fetches serious environmental pollution causing a threat to human health and ecosystem. The heavy metal accumulation due to anthropogenic activities results in toxicological manifestation. The traditional methods of remediation are not cost effective, efficient, and ecofriendly which necessitate and motivate towards the safe, effective, and ecofriendly biological methods. The increasing presence of heavy metals in the microbial habitat compels the microbes to develop the ability to tolerate or resist the presence of heavy metals. Exopolysaccharide (EPS) production is one of the strategies of microbes to fight against metal stress. EPS is a microbial biopolymer which is generally produced under stress from harsh environment and nutrition conditions. EPSs are cell-associated or secreted outside the cell and comprised organic macromolecules such as polysaccharides, proteins, and phospholipids in addition to some non-polymeric molecules. EPSs work as competent biosorbents with an anionic reactant group that effectively sequesters cationic heavy metals by electrostatic interactions. The present paper summarizes the EPSs with its types, role, and biosynthesis and an endeavor to elucidate the interaction mechanism of EPSs with heavy metal with supportive and distinctive applications for heavy metal exclusion. The review concluded with the current challenges and future prospects to make the EPS an efficient biosorbent.

摘要

金属作为一种资源正在逐渐枯竭,另一方面,它会造成严重的环境污染,对人类健康和生态系统构成威胁。人为活动导致的重金属积累会产生毒理学表现。传统的修复方法既不具有成本效益,也不高效且不利于生态环境,这就需要并促使人们采用安全、有效且环保的生物方法。微生物栖息地中重金属的不断增加迫使微生物发展出耐受或抵抗重金属存在的能力。胞外多糖(EPS)的产生是微生物对抗金属胁迫的策略之一。EPS是一种微生物生物聚合物,通常在恶劣环境和营养条件的胁迫下产生。EPS与细胞相关或分泌到细胞外,除了一些非聚合分子外,还包含多糖、蛋白质和磷脂等有机大分子。EPS作为具有阴离子反应基团的有效生物吸附剂,通过静电相互作用有效地螯合阳离子重金属。本文综述了EPS的类型、作用、生物合成,并试图阐明EPS与重金属的相互作用机制以及在重金属去除方面的支持性和独特应用。综述最后讨论了使EPS成为高效生物吸附剂的当前挑战和未来前景。

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