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Full Description
Proteomics Driven Bioremediation: Strategies for Sustainable Environment explores the innovative use of microbial proteomics to address environmental health and agricultural sustainability. This comprehensive volume provides detailed insights into how proteomic techniques can be applied to remediate various environmental pollutants, offering eco-friendly solutions for managing contaminated sites. The book covers a wide range of topics, including the role of proteomics in studying the microbiome of polluted environments, recent developments in the bioremediation of pesticides and petroleum products, and the application of proteomics in managing heavy metals, dyes, and pharmaceutical wastes. It also examines integrative omics approaches, combining proteomics with metabolomics and genomics, to enhance bioremediation strategies. With a strong focus on practical implementation, the book highlights recent research data, updated figures, and case studies that demonstrate the effectiveness of proteomic tools in decontaminating polluted sites. It addresses the educational needs of undergraduate and postgraduate students, research scholars, teachers, and scientists working in the fields of omics, microbiology, biotechnology, bioengineering, environmental sciences, and pollution studies. This book is an essential resource for environmentalists, microbiologists, biotechnologists, agriculturists, and bioengineers. It provides valuable information on the eco-friendly management of environmental pollutants through emerging microbial proteomic strategies, making it a crucial reference for those involved in environmental microbiology, bioremediation, molecular biology, and sustainability.
Contents
1. Proteomics: a combined approach for ecological safety and sustainability
2. Utility of proteomics in studying microbiome of polluted environs
3. Role of proteomics in bioremediation of pesticides: recent developments
4. Application of proteomics in remediation of petroleum products
5. Mycoremediation of heavy metals by proteomic techniques: mechanism and applications
6. Integrative Omics for Bioremediation: Proteomics with Metabolomics and Genomics
7. Proteomic engineering for sustainability of agro-ecosystem: an innovative tool
8. Yeast proteomic strategies for bioremediation of oil contaminated soils
9. Proteomics as a versatile tool for addressing environmental pollution
10. Proteomics: a novel and potential strategies for pollution assessment
11. Exploring role of immobilized microbial enzyme for bioremediation of dyes: a proteomic approach
12. Biodegradation of micro-plastic through proteomics approach: current and future perspective
13. Use of proteomics as biomonitoring tool for aquatic pollution: current findings and future prospective
14. Proteomics in bioremediation of pharmaceutical wastes: recent insight
15. Role of proteomics in management of e-waste: global scenario and remediation strategies
16. Proteomics in Health care: Current development



