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Processing of Metals and Metalloids by

机译:用金属和金属加工

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摘要

Metal(loid)s have a dual biological role as micronutrients and stress agents. A few geochemical and natural processes can cause their release in the environment, although most metal-contaminated sites derive from anthropogenic activities. Actinobacteria include high GC bacteria that inhabit a wide range of terrestrial and aquatic ecological niches, where they play essential roles in recycling or transforming organic and inorganic substances. The metal(loid) tolerance and/or resistance of several members of this phylum rely on mechanisms such as biosorption and extracellular sequestration by siderophores and extracellular polymeric substances (EPS), bioaccumulation, biotransformation, and metal efflux processes, which overall contribute to maintaining metal homeostasis. Considering the bioprocessing potential of metal(loid)s by Actinobacteria, the development of bioremediation strategies to reclaim metal-contaminated environments has gained scientific and economic interests. Moreover, the ability of Actinobacteria to produce nanoscale materials with intriguing physical-chemical and biological properties emphasizes the technological value of these biotic approaches. Given these premises, this review summarizes the strategies used by Actinobacteria to cope with metal(loid) toxicity and their undoubted role in bioremediation and bionanotechnology fields.
机译:金属(Loid)S作为微量营养素和胁迫剂的双生物作用。几种地球化学和自然过程可以导致它们在环境中释放,尽管大多数金属污染的位点都来自人为的活动。 Actinobacteria包括高GC细菌,居住在广泛的陆地和水生生态利基,在那里他们在回收或转化有机和无机物质中起重要作用。该文学的几个成员的金属(Loid)耐受性和/或抗性依赖于诸如生物吸收和细胞外螯合的机制,并且细胞团和细胞外聚合物(EPS),生物累积,生物转化和金属流出过程,其总体贡献了维持金属稳态。考虑到金属的生物处理潜力(LOID)通过肌动杆菌,生物修复策略的发展,以收回金属污染的环境获得科学和经济的利益。此外,抗肌肌细菌产生具有有趣物理化学和生物学特性的纳米级材料的能力强调了这些生物方法的技术价值。鉴于这些场所,本综述总结了抗菌杆菌用于应对金属(LoID)毒性的策略及其在生物修复和生物化技术领域的毫无疑问作用。

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