4.7 Article

Omics approaches in bioremediation of environmental contaminants: An integrated approach for environmental safety and sustainability

Journal

ENVIRONMENTAL RESEARCH
Volume 211, Issue -, Pages -

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.envres.2022.113102

Keywords

Genomics; Metagenomics; Molecular techniques; Environmental contaminants; Proteomics

Funding

  1. National Research Foundation, Prime Ministers Office, Singapore
  2. Consejo Nacional de Ciencia y Tecnologia (CONACYT) Mexico [CVU: 735340]

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Non-degradable pollutants resulting from industrialization, population growth, and lifestyle changes pose threats to human health and the environment. Bioremediation, utilizing microorganisms to remove hazardous contaminants, offers a cost-effective approach. Recent advancements in technologies like next-generation sequencing and metabolic profiling have provided valuable insights into microbial communities and mechanisms in environmental contaminant bioremediation.
Non-degradable pollutants have emerged as a result of industrialization, population growth, and lifestyle changes, endangering human health and the environment. Bioremediation is the process of clearing hazardous contaminants with the help of microorganisms, and cost-effective approach. The low-cost and environmentally acceptable approach to removing environmental pollutants from ecosystems is microbial bioremediation. However, to execute these different bioremediation approaches successfully, this is imperative to have a complete understanding of the variables impacting the development, metabolism, dynamics, and native microbial communities' activity in polluted areas. The emergence of new technologies like next-generation sequencing, protein and metabolic profiling, and advanced bioinformatic tools have provided critical insights into microbial communities and underlying mechanisms in environmental contaminant bioremediation. These omics approaches are meta-genomics, meta-transcriptomics, meta-proteomics, and metabolomics. Moreover, the advancements in these technologies have greatly aided in determining the effectiveness and implementing microbiological bioremediation approaches. At Environmental Protection Agency (EPA)-The government placed special emphasis on exploring how molecular and omic technologies may be used to determine the nature, behavior, and functions of the intrinsic microbial communities present at pollution containment systems. Several omics techniques are unquestionably more informative and valuable in elucidating the mechanism of the process and identifying the essential player's involved enzymes and their regulatory elements. This review provides an overview and description of the omics platforms that have been described in recent reports on omics approaches in bioremediation and that demonstrate the effectiveness of integrated omics approaches and their novel future use.

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