4.7 Article

Genetically engineered microbial remediation of soils co-contaminated by heavy metals and polycyclic aromatic hydrocarbons: Advances and ecological risk assessment

期刊

JOURNAL OF ENVIRONMENTAL MANAGEMENT
卷 296, 期 -, 页码 -

出版社

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jenvman.2021.113185

关键词

Heavy metals; Polycyclic aromatic hydrocarbons; Microbial remediation; Multi-functional genetic engineering microbe; Soil; Regulation

资金

  1. National Natural Science Foundation of China [21577118]
  2. Key Research and Development Plan of Hunan Province [2018SK2045, 2018SK2042]
  3. Innovation platform open fund project of Hunan Provincial Education Committee [19K090]
  4. Collaborative Innovation Center of New Chemical Technologies for Environmental Benignity and Efficient Resource Utilization

向作者/读者索取更多资源

Soils contaminated with heavy metals and polycyclic aromatic hydrocarbons have become a global environmental concern, requiring urgent remediation. Traditional physical and chemical methods are not environmentally friendly, while genetically engineered microorganisms offer a more ecofriendly and cost-effective strategy for efficient bioremediation.
Soils contaminated with heavy metals (HMs) and polycyclic aromatic hydrocarbons (PAHs) have been becoming a worldwide concerned environmental problem because of threatening public healthy via food chain exposure. Thus soils polluted by HMs and PAHs need to be remediated urgently. Physical and chemical remediation methods usually have some disadvantages, e.g., cost-expensiveness and incomplete removal, easily causing secondary pollution, which are hence not environmental-friendly. Conventional microbial approaches are mostly used to treat a single contaminant in soils and lack high efficiency and specificity for combined contaminants. Genetically engineered microorganisms (GEMs) have emerged as a desired requirement of higher bioremediation efficiency for soils polluted with HMs and PAHs and environmental sustainability, which can provide a more ecofriendly and cost-effective strategy in comparison with some conventional techniques. This review comments the recent advances about successful bioremediation techniques and approaches for soil contaminated with HMs and/or PAHs by GEMs, and discusses some challenges in the simultaneous removal of HMs and PAHs from soil by designing multi-functional genetic engineering microorganisms (MFGEMs), such as improvement of higher efficiency, strict environmental conditions, and possible ecological risks. Also, the modern biotechnological techniques and approaches in improving the ability of microbial enzymes to effectively degrade combined contaminants at a faster rate are introduced, such as reasonable gene editing, metabolic pathway modification, and protoplast fusion. Although MFGEMs are more potent than the native microbes and can quickly adapt to combined contaminants in soils, the ecological risk of MFGEMs needs to be evaluated under a regulatory, safety, or costs benefit-driving system in a way of stratified regulation. Nevertheless, the innovation of genetic engineering to produce MFGEMs should be inspired for the welfare of successful bioremediation for soils contaminated with HMs and PAHs but it must be supervised by the public, authorities, and laws.

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