通过多组学方法进行有效的微生物生物修复:趋势、问题和前景综述

Y. R. Yunusa, Zubairu Darma Umar
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引用次数: 5

摘要

世界各地的技术工业进步导致了有害环境污染物的产生。微生物生物修复是去除这些污染物的最佳选择。微生物生物修复的最新进展是由各种工具的出现所催化的,这些工具能够在复杂的细节水平上研究微生物,包括基因组分析工具(基因组学),分析表达蛋白质和酶或蛋白质组学(蛋白质组学)的协议,分析核糖核酸(rna)转录组学(转录组学)的技术,以及分析代谢最终产物/代谢组学(代谢组学)的工具。21世纪是组学方法在有效微生物生物修复中的应用发展的见证,因此,本文试图回顾近二十年(2000-2020年)在多组学在微生物生物修复中的应用中获得的一些最重要的见解,包括趋势和前沿研究。我们的目标是特别强调在组学方法成功地应用于微生物生物修复之前需要克服的挑战,特别是在发展中国家。还概述了克服这些挑战的战略和所取得的前景。在未来的几年里,我们设想在微生物生物修复中应用多组学方法的进一步研究可能会彻底改变这一领域,开辟研究途径,并导致污染环境的生物修复的改进。关键词:生物降解;生物修复;基因组学;多组学,组学技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effective microbial bioremediation via the multi-omics approach: An overview of trends, problems and prospects
Techno-industrial advancements the world over had led to the generation of hazardous environmental pollutants. Microbial bioremediation offers the best alternative for the removal of these pollutants. The most recent advancements in microbial bioremediation were catalyzed by the advent of various tools that enable the study microbes at levels of sophisticated detail, including genome analysis tools (genomics), protocols for analyzing expressed proteins and enzymes or proteomes (proteomics), techniques of analyzing ribonucleic acids (RNAs) transcriptomes (transcriptomics), and tools for analyzing metabolic end products/metabolomes (metabolomics). The twenty first century is witnessing an outpour of developments in the application of omics approaches in effective microbial bioremediation, thus, this paper attempts to review some of the most significant insights gained from relatively recent studies over a period of two decades (2000-2020) in the applications of multi-OMICS in microbial bioremediation, including trends and cutting-edge researches. We aim to highlight, particularly, the challenges that need to be overcome before OMICs approaches are successfully enshrined in microbial bioremediation, especially in developing countries. The strategies for overcoming such challenges, and the prospects achieved were also outlined. In the coming years, we envision further researches involving the application of multi-OMICs approach in microbial bioremediation potentially revolutionizing this field, opening up research avenues, and leading to improvements in bioremediation of polluted environment. Keywords: Biodegradation, Bioremediation; Genomics; Multi-OMICs, OMICs techniques.
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