Multi-Omics Tools for Pollution Remediation and Ecosystem Health
Buch, Englisch, Format (B × H): 155 mm x 235 mm
Reihe: Microorganisms for Sustainability
ISBN: 978-981-9247-55-4
Verlag: Springer
This book addresses the advanced computational techniques used to study microbial ecosystems in diverse environments. It also enables the readers to understand microbial communities and their interaction for sustainable environmental management. This book showcases the widespread use of computational biology, bioinformatics and advanced molecular tools (such as metagenomics, proteomics and genomics) in different fields of microbial assessment. It also discusses use of these techniques in bioremediation of pesticides, dye, heavy metals, hydrocarbon, e- waste, microbial enzymes, as well as in wastewater quality assessment and biological soil health assessment. Exploring computational approaches in biotechnology - such as microbial enzyme discovery, metabolic engineering, and bioprocess optimization - for sustainable bioenergy production, waste treatment and the future challenges of biodegradation and bioremediation of environment pollutants is also a key focus of the book.
Students, researchers and scientists working in the field of environmental microbiology, agricultural microbiology and bioremediation can use this book as a valuable reference. Policy makers and industrialists of these fields may also find the book insightful.
Zielgruppe
Research
Autoren/Hrsg.
Fachgebiete
- Naturwissenschaften Biowissenschaften Biowissenschaften Ökologie
- Technische Wissenschaften Verfahrenstechnik | Chemieingenieurwesen | Biotechnologie Biotechnologie
- Naturwissenschaften Biowissenschaften Mikrobiologie
- Naturwissenschaften Biowissenschaften Biowissenschaften Genetik und Genomik (nichtmedizinisch)
Weitere Infos & Material
Chapter 1. Metagenomics as a tool for biological soil health.- Chapter 2. The role of microbial genomics in advancing sustainable agriculture and food security.- Chapter 3. Recent techniques in bioremediation of pesticides from contaminated sites, challenges, and future prospects.- Chapter 4. Different approaches to bioremediation of hydrocarbons from polluted sites, challenges, and future prospects.- Chapter 5. Proteomic profiling of microbial communities in a contaminated environment.- Chapter 6. Exploring computational approaches in metabolic engineering.- Chapter 7. Use of Nanotechnology in Bioremediation of Xenobiotic Compounds from Polluted Sites.- Chapter 8. Recent advancements in metagenomics for sustainable remediation of wastewater.- Chapter 9. Applications of biosensors in the bioremediation of pollutants.- Chapter 10. Microbial Enzyme Immobilization and Their Use in Bioremediation.- Chapter 11. Metabolomic and proteomic approaches in remediation of xenobiotic dyes from industrial sites and effluents.- Chapter 12. Applications of Artificial Intelligence for Assessment of Wastewater Quality and Climate Change: A Forward Step towards Sustainability.- Chapter 13. Precision Agriculture Integrating Microbial Tolerance Strategies for Environmental Sustainability.- Chapter 14. Heavy metal remediation and microbial molecular mechanism.




