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Advanced Microbial Technology for Sustainable Agriculture and Environment

Specificaties
Paperback, blz. | Engels
Elsevier Science | e druk, 2023
ISBN13: 9780323950909
Rubricering
Elsevier Science e druk, 2023 9780323950909
€ 187,00
Levertijd ongeveer 8 werkdagen

Samenvatting

Advanced Microbial Technology for Sustainable Agriculture and Environment focuses on plant-microbe interactions in respect to bioremediation and plant growth promotion, providing insights on diverse approaches such as genomics, metagenomics, proteomics, bioinformatics and other high-throughput analyses of environmentally relevant microorganisms. The impact of frequent applications of potentially toxic chemicals (pesticides and fertilizers) and increased industrialization processes on microbial diversity emphasizes the potential threat to microbial biodiversity in ecosystems. This is an ideal resource on current trends and the future of PGPR developments with bioremediation potential.

Moreover, it gives a deep understanding of the genetics of microbial biodegradation and different remediation mechanisms that help to re-establish the natural environment.

Specificaties

ISBN13:9780323950909
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

1. Microbial diversity and its application for plant growth promotion and bioremediation <br>2. Plant microbe interactions: signalling and perception <br>3. Role of plant growth promoting bacteria in sustainable agriculture <br>4. Rhizosphere metagenomics: applications in plant microbes’ interactions <br>5. Recent molecular and omics approaches to study rhizosphere functioning <br>6. Rhizosphere engineering for sustainable agriculture <br>7. Cultivation of unculturable microorganism: latest advancement and applications <br>8. Microbial enzymes and their mechanisms for plant growth promotion <br>9. Microbial inoculants and their impact on plant and soil health <br>10. PGPR mediated mitigation of biotic and abiotic stress in plants <br>11. Microbes as a biofertilizer and biopesticides for sustainable agriculture <br>12. Role of psychrophilic or psychrotolerant microorganism towards the development of hill agriculture <br>13. Genetic engineering in plant growth promontory microorganisms: opportunities and obstacles. <br>14. Tracking of microbial inoculants in agriculture soil <br>15. Fungal and bacterial diversity towards xenobiotic compound degradation <br>16. PGPR mediated bioremediation of toxic pollutants for sustainable environment and human health <br>17. Mitigation of soil heavy metal contamination through PGPR <br>18. Role of PGPR in arsenic bioremediation in agriculture crops <br>19. Microbial exopolysaccharide (EPS): its application in degradation of environmental pollutants <br>20. Technological advancement in tool and techniques used for biodegradation analysis <br>21. Mechanisms of microbial based biodegradation of environmental pollutants <br>22. Microbial nanotechnology for the development of sustainable agriculture and environment <br>23. Role of nanoparticles in soil heavy metal bioremediation <br>24. Insight into microbial metabolic pathways for degradation of different xenobiotic compounds <br>25. Role of microorganism in agricultural waste management <br>26. New insights into the enzymatic catalysis for the degradation of toxic chemicals <br>27. Future of PGPR based plant growth promotion and bioremediation technologies <br>28. The role of hidden microbes for sustainable agriculture and environment
€ 187,00
Levertijd ongeveer 8 werkdagen

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        Advanced Microbial Technology for Sustainable Agriculture and Environment