Advanced omics approach and sustainable strategies for heavy metal microbial remediation in contaminated environments

被引:2
作者
Kumar, Vaishali [1 ]
Singh, Vandana [2 ]
Pandit, Soumya [3 ]
机构
[1] Sharda Univ, Sharda Sch Allied Hlth Sci, Dept Forens Sci, Greater Noida, India
[2] Sharda Univ, Sharda Sch Allied Hlth Sci, Dept Microbiol, Greater Noida, India
[3] Sharda Univ, Sharda Sch Basic Sci & Res, Dept Life Sci, Greater Noida, India
关键词
Heavy metals; Toxicity; Bioremediation; Microbial remediation; Omics; Proteomics; HEXAVALENT CHROMIUM; RISK-ASSESSMENT; LEAD TOXICITY; PUBLIC-HEALTH; MERCURY; BIOTRANSFORMATION; TECHNOLOGIES; BIOSORPTION; ADSORPTION; SOIL;
D O I
10.1016/j.biteb.2025.102040
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Contamination of the environment by heavy metals is a major problem on a worldwide scale. They are nonessential, nonbiodegradable and persistent in nature. Heavy metal contamination of soils and waterbodies has become a serious problem due to rapid industrialization and human activities including the uncontrolled use of agrochemicals, burning fossil fuels, and dumping sewage sludge. Bioremediation is a multifaceted approach for environmental cleanup that is effective, sustainable, safe, and inexpensive. Additionally, in-situ treatment is a key component of bioremediation technology that lessens the likelihood of contamination transmission to another location. Bioaccumulation, bioaugmentation, biotransformation, and biosorption are all included in the in-situ process. Microbial remediation demonstrates potential, with bacteria like Pseudomonas aeruginosa, Enterobacter cloacae B2-DHA, Klebsiella pneumoniae, Enterobacter sp. and Bacillus spp. showing effectiveness in metal detoxification. The inclination towards omics (genomics, proteomics, transcriptomics, etc.,) is to enhance the efficiency of the microorganisms which regulates the gene of interestand these diverse approaches constitute a critical stride towards alleviating the menace of heavy metal pollution and safeguarding the environment. This review focuses on the ecotoxicity of heavy metals and an advanced omics approach, strategies and sustainable remediation of heavy metals via microorganisms. Synergistic advantages with an unprecedented rise in heavy metal removal have been shown when these approaches are used as a sustainable environmental technology in the near future. This review emphasizes the essential significance of sophisticated omics techniques and microbiological methods in attaining sustainable and effective bioremediation, presenting a viable avenue for alleviating heavy metal contamination and safeguarding environmental health.
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页数:26
相关论文
共 205 条
[41]   Sustainable Application of Biosorption and Bioaccumulation of Persistent Pollutants in Wastewater Treatment: Current Practice [J].
Filote, Catalina ;
Rosca, Mihaela ;
Hlihor, Raluca Maria ;
Cozma, Petronela ;
Simion, Isabela Maria ;
Apostol, Maria ;
Gavrilescu, Maria .
PROCESSES, 2021, 9 (10)
[42]   Prediction of metal-adsorption behaviour in the remediation of water contamination using indigenous microorganisms [J].
Fosso-Kankeu, E. ;
Mulaba-Bafubiandi, A. F. ;
Mamba, B. B. ;
Barnard, T. G. .
JOURNAL OF ENVIRONMENTAL MANAGEMENT, 2011, 92 (10) :2786-2793
[43]   Remediation of soil contaminated with high levels of hexavalent chromium by combined chemical-microbial reduction and stabilization [J].
Fu, Lijuan ;
Feng, Aixi ;
Xiao, Jingjing ;
Wu, Qing ;
Ye, Qunying ;
Peng, Sen .
JOURNAL OF HAZARDOUS MATERIALS, 2021, 403
[44]   Pollution and health: a progress update [J].
Fuller, Richard ;
Landrigan, Philip J. ;
Balakrishnan, Kalpana ;
Bathan, Glynda ;
Bose-O'Reilly, Stephan ;
Brauer, Michael ;
Caravanos, Jack ;
Chiles, Tom ;
Cohen, Aaron ;
Corra, Lilian ;
Cropper, Maureen ;
Ferraro, Greg ;
Hanna, Jill ;
Hanrahan, David ;
Hu, Howard ;
Hunter, David ;
Janata, Gloria ;
Kupka, Rachael ;
Lanphear, Bruce ;
Lichtveld, Maureen ;
Martin, Keith ;
Mustapha, Adetoun ;
Sanchez-Triana, Ernesto ;
Sandilya, Karti ;
Schaefli, Laura ;
Shaw, Joseph ;
Seddon, Jessica ;
Suk, William ;
Tellez-Rojo, Martha Maria ;
Yan, Chonghuai .
LANCET PLANETARY HEALTH, 2022, 6 (06) :E535-E547
[45]  
Gall J., 2013, Brassicaceae, P121
[46]   Toxicity, physiological response, and biosorption mechanism of Dunaliella salina to copper, lead, and cadmium [J].
Gao, Mingze ;
Ling, Na ;
Tian, Haiyan ;
Guo, Chunqiu ;
Wang, Qiyao .
FRONTIERS IN MICROBIOLOGY, 2024, 15
[47]  
Gautam Aishvarya., 2021, FUTURE EFFLUENT TREA, P361
[48]   Thallium Use, Toxicity, and Detoxification Therapy: An Overview [J].
Genchi, Giuseppe ;
Carocci, Alessia ;
Lauria, Graziantonio ;
Sinicropi, Maria Stefania ;
Catalano, Alessia .
APPLIED SCIENCES-BASEL, 2021, 11 (18)
[49]  
Ghai M.K., 2024, Total Environment Advances, DOI DOI 10.1016/J.TEADVA.2024.200113
[50]  
Ghosh S., 2022, Development in Wastewater Treatment Research and Processes, P131