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利用组学方法理解和设计微生物介导的环境污染物修复策略

Understanding and Designing the Strategies for the Microbe-Mediated Remediation of Environmental Contaminants Using Omics Approaches.

作者信息

Malla Muneer A, Dubey Anamika, Yadav Shweta, Kumar Ashwani, Hashem Abeer, Abd Allah Elsayed Fathi

机构信息

Department of Zoology, Dr. Harisingh Gour University, Sagar, India.

Metagenomics and Secretomics Research Laboratory, Department of Botany, Dr. Harisingh Gour University, Sagar, India.

出版信息

Front Microbiol. 2018 Jun 4;9:1132. doi: 10.3389/fmicb.2018.01132. eCollection 2018.

Abstract

Rapid industrialization and population explosion has resulted in the generation and dumping of various contaminants into the environment. These harmful compounds deteriorate the human health as well as the surrounding environments. Current research aims to harness and enhance the natural ability of different microbes to metabolize these toxic compounds. Microbial-mediated bioremediation offers great potential to reinstate the contaminated environments in an ecologically acceptable approach. However, the lack of the knowledge regarding the factors controlling and regulating the growth, metabolism, and dynamics of diverse microbial communities in the contaminated environments often limits its execution. In recent years the importance of advanced tools such as genomics, proteomics, transcriptomics, metabolomics, and fluxomics has increased to design the strategies to treat these contaminants in ecofriendly manner. Previously researchers has largely focused on the environmental remediation using single omics-approach, however the present review specifically addresses the integrative role of the multi-omics approaches in microbial-mediated bioremediation. Additionally, we discussed how the multi-omics approaches help to comprehend and explore the structural and functional aspects of the microbial consortia in response to the different environmental pollutants and presented some success stories by using these approaches.

摘要

快速工业化和人口爆炸导致了各种污染物的产生并排放到环境中。这些有害化合物会损害人类健康以及周围环境。当前的研究旨在利用并增强不同微生物代谢这些有毒化合物的天然能力。微生物介导的生物修复具有巨大潜力,能够以生态可接受的方式恢复受污染的环境。然而,对于控制和调节受污染环境中不同微生物群落的生长、代谢及动态变化的因素缺乏了解,这常常限制了生物修复的实施。近年来,基因组学、蛋白质组学、转录组学、代谢组学和通量组学等先进工具在设计以生态友好方式处理这些污染物的策略方面的重要性日益增加。以前,研究人员主要侧重于使用单一组学方法进行环境修复,然而本综述特别探讨了多组学方法在微生物介导的生物修复中的综合作用。此外,我们讨论了多组学方法如何有助于理解和探索微生物群落对不同环境污染物的结构和功能方面的响应,并通过使用这些方法展示了一些成功案例。

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