Plant Pangenomes and Pangenomics

Specificaties
Paperback, blz. | Engels
Elsevier Science | e druk, 2025
ISBN13: 9780443267918
Rubricering
Elsevier Science e druk, 2025 9780443267918
Verwachte levertijd ongeveer 8 werkdagen

Samenvatting

Plant Pangenomes and Pangenomics summarizes the current state of plant pangenomes and pangenomics as applied in a wide range of plant biology involving the subtopics of genome evolution, phenotypic evolution, population genetics, and evolutionary developmental biology. Explaining the resources and technologies of pangenomics with plant functional genomics, the book also presents precision molecular breeding of crops to produce improved stress-tolerance and climate-smart capacities in an attempt to improve growth, development, enhanced production, and quality. It covers key critical stressors, including temperature, salt, drought, pollutants, pests, fungi, bacteria, and viruses.

This book is an complete guide for students, researchers, experts, and professors with its discussions on all aspects of pangenomes and pangenomics, from fundamental and advanced tools and current applications in the plant sciences to plant functional genomics, plant stress physiology, plant biotechnology, plant pathology, and plant breeding.

Specificaties

ISBN13:9780443267918
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

1. Plant pangenomes and pangenomics: Current achievements and future directions<br>2. Technological development for analyzing and constructing plant pangenomes<br>3. Bioinformatics tools for plant pangenomics: Analysis, assembly and visualization<br>4. Pangenomics for crop improvement on yield and quality<br>5. Pangenomics for accelerating crop breeding<br>6. Super-pangenomes in plants: Progress and future perspectives<br>7. The impact of whole genome duplication on plant pangenomes<br>8. Pangenomics for combating plant abiotic stress<br>9. Pangenomics for combating plant diseases<br>10. Pangenomics for developing future climate-smart crops<br>11. Pangenomics for developing heat stress-tolerant plants<br>12. Pangenomics for developing cold stress-tolerant plants<br>13. Pangenomics for developing drought stress-tolerant plants<br>14. Pangenomics for developing salinity stress-tolerant plants<br>15. Pangenomics for developing heavy metal stress-tolerant plants<br>16. Pangenomics for developing bacterial disease-resistant plants<br>17. Pangenomics for developing viral disease-resistant plants<br>18. Pangenomics for developing fungal disease-resistant plants<br>19. Pangenomics for developing pest-resistant plants<br>20. Pangenomics for studying plant-microbe interactions<br>21. Pangenomics for plant evolutionary developmental biology<br>22. Pangenomics for studying plant population genetics<br>23. Pangenomics for studying plant genome evolution<br>24. Pangenomics for studying plant phenotypic evolution<br>25. Pangenomics for studying plant secondary metabolism<br>26. Structural variants in plant pangenomes: Current findings and applications<br>27. Plant pangenome graphs: Methods and applications<br>28. Pangenomics for plant growth-promoting microorganisms<br>29. The integration of pangenomics with plant functional and comparative genomics<br>30. Advances in telomere-to-telomere plant genomes<br>31. Applied Pangenomes in Agriculture and Plant Biology

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        Plant Pangenomes and Pangenomics