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21世纪水生环境中金属的细菌生物修复应用:一项系统综述

The use of bacterial bioremediation of metals in aquatic environments in the twenty-first century: a systematic review.

作者信息

de Alencar Feliphe Lacerda Souza, Navoni Julio Alejandro, do Amaral Viviane Souza

机构信息

Development and Environment, Biosciences Center, Federal University of Rio Grande do Norte, Natal, RN, Brazil.

Department of Cell Biology and Genetics, Federal University of Rio Grande do Norte (UFRN), Natal, RN, Brazil.

出版信息

Environ Sci Pollut Res Int. 2017 Jul;24(20):16545-16559. doi: 10.1007/s11356-017-9129-8. Epub 2017 May 24.

Abstract

Metal pollution is a current environmental issue as a consequence of unregulated anthropic activiy. A wide range of bioremediation strategies have been successfully implemented to recover contaminated areas. Among them, bacterial bioremediation stands out as a promising tool to confront these types of concerns. This study aimed to compare and discuss worldwide scientific evolution of bacterial potential for metal bioremediation in aquatic ecosystems. The study consisted of a systematic review, elaborated through a conceptual hypothesis model, during the period from 2000 to 2016, using PubMed, MEDLINE, and SciELO databases as data resources. The countries with the largest number of reports included in this work were India and the USA. Industrial wastewater discharge was the main subject associated to metal contamination/pollution and where bacterial bioremediations have mostly been applied. Biosorption is the main bioremediation mechanism described. Bacterial adaptation to metal presence was discussed in all the selected studies, and chromium was the most researched bioremedied substrate. Gram-negative Pseudomonas aeruginosas and the Gram-positive Bacillus subtilis bacteria were microorganisms with the greatest applicability for metal bioremediation. Most reports involved the study of genes and/or proteins related to metal metabolism and/or resistence, and Chromobacterium violaceum was the most studied. The present work shows the relevance of metal bacterial bioremediation through the high number of studies aimed at understanding the microbiological mechanisms involved. Moreover, the developed processes applied in removal and/or reducing the resulting environmental metal contaminant/pollutant load have become a current and increasingly biotechnological issue for recovering impacted areas.

摘要

金属污染是当前一个环境问题,这是由无节制的人类活动导致的。已经成功实施了多种生物修复策略来恢复受污染地区。其中,细菌生物修复作为应对这类问题的一种有前景的工具脱颖而出。本研究旨在比较和讨论全球范围内水生生态系统中细菌进行金属生物修复潜力的科学发展情况。该研究包括一项系统综述,通过概念假设模型精心设计,研究时间段为2000年至2016年,使用PubMed、MEDLINE和SciELO数据库作为数据资源。这项工作中纳入报告数量最多的国家是印度和美国。工业废水排放是与金属污染相关的主要主题,也是细菌生物修复应用最为广泛的领域。生物吸附是所描述的主要生物修复机制。在所有选定的研究中都讨论了细菌对金属存在的适应性,铬是研究最多的生物修复底物。革兰氏阴性铜绿假单胞菌和革兰氏阳性枯草芽孢杆菌是对金属生物修复适用性最强的微生物。大多数报告涉及与金属代谢和/或抗性相关的基因和/或蛋白质的研究,紫色杆菌是研究最多的。本研究通过大量旨在了解其中微生物学机制的研究表明了金属细菌生物修复的重要性。此外,所开发的用于去除和/或减少由此产生的环境金属污染物负荷的工艺已成为当前恢复受影响地区的一个日益重要的生物技术问题。

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