Responses exhibited by various microbial groups relevant to uranium exposure

IF 12.5 1区 工程技术 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Nilesh Kolhe , Smita Zinjarde , Celin Acharya
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引用次数: 35

Abstract

There is a strong interest in knowing how various microbial systems respond to the presence of uranium (U), largely in the context of bioremediation. There is no known biological role for uranium so far. Uranium is naturally present in rocks and minerals. The insoluble nature of the U(IV) minerals keeps uranium firmly bound in the earth’s crust minimizing its bioavailability. However, anthropogenic nuclear reaction processes over the last few decades have resulted in introduction of uranium into the environment in soluble and toxic forms. Microbes adsorb, accumulate, reduce, oxidize, possibly respire, mineralize and precipitate uranium. This review focuses on the microbial responses to uranium exposure which allows the alteration of the forms and concentrations of uranium within the cell and in the local environment. Detailed information on the three major bioprocesses namely, biosorption, bioprecipitation and bioreduction exhibited by the microbes belonging to various groups and subgroups of bacteria, fungi and algae is provided in this review elucidating their intrinsic and engineered abilities for uranium removal. The survey also highlights the instances of the field trials undertaken for in situ uranium bioremediation. Advances in genomics and proteomics approaches providing the information on the regulatory and physiologically important determinants in the microbes in response to uranium challenge have been catalogued here. Recent developments in metagenomics and metaproteomics indicating the ecologically relevant traits required for the adaptation and survival of environmental microbes residing in uranium contaminated sites are also included. A comprehensive understanding of the microbial responses to uranium can facilitate the development of in situ U bioremediation strategies.

与铀暴露有关的各种微生物群所表现出的反应
人们对了解各种微生物系统如何对铀(U)的存在作出反应有着浓厚的兴趣,主要是在生物修复的背景下。到目前为止,铀还没有已知的生物作用。铀天然存在于岩石和矿物中。铀(IV)矿物的不溶性使铀牢牢地束缚在地壳中,使其生物利用度降到最低。然而,在过去几十年中,人为核反应过程导致铀以可溶性和有毒形式进入环境。微生物吸附,积累,还原,氧化,可能呼吸,矿化和沉淀铀。本综述的重点是微生物对铀暴露的反应,这使得细胞内和局部环境中铀的形式和浓度发生了变化。本文详细介绍了细菌、真菌和藻类中不同类群和亚类群的微生物所表现出的三种主要生物过程,即生物吸附、生物沉淀和生物还原,阐述了它们固有的和工程的除铀能力。调查还强调了为就地铀生物修复进行的实地试验实例。基因组学和蛋白质组学方法的进展提供了有关微生物对铀挑战反应的调节和生理重要决定因素的信息。还包括宏基因组学和元蛋白质组学的最新进展,表明居住在铀污染场所的环境微生物适应和生存所需的生态相关性状。全面了解微生物对铀的反应有助于开发原位铀生物修复策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biotechnology advances
Biotechnology advances 工程技术-生物工程与应用微生物
CiteScore
25.50
自引率
2.50%
发文量
167
审稿时长
37 days
期刊介绍: Biotechnology Advances is a comprehensive review journal that covers all aspects of the multidisciplinary field of biotechnology. The journal focuses on biotechnology principles and their applications in various industries, agriculture, medicine, environmental concerns, and regulatory issues. It publishes authoritative articles that highlight current developments and future trends in the field of biotechnology. The journal invites submissions of manuscripts that are relevant and appropriate. It targets a wide audience, including scientists, engineers, students, instructors, researchers, practitioners, managers, governments, and other stakeholders in the field. Additionally, special issues are published based on selected presentations from recent relevant conferences in collaboration with the organizations hosting those conferences.
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