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Oil Crop Genomics
~
Tombuloglu, Guzin.
Oil Crop Genomics
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Oil Crop Genomics/ edited by Huseyin Tombuloglu, Turgay Unver, Guzin Tombuloglu, Khalid Rehman Hakeem.
其他作者:
Hakeem, Khalid Rehman.
面頁冊數:
XXIV, 439 p. 77 illus., 67 illus. in color.online resource. :
Contained By:
Springer Nature eBook
標題:
Plant Pathology. -
電子資源:
https://doi.org/10.1007/978-3-030-70420-9
ISBN:
9783030704209
Oil Crop Genomics
Oil Crop Genomics
[electronic resource] /edited by Huseyin Tombuloglu, Turgay Unver, Guzin Tombuloglu, Khalid Rehman Hakeem. - 1st ed. 2021. - XXIV, 439 p. 77 illus., 67 illus. in color.online resource.
Preface -- Part 1. Genomes of oil-bearing crops -- Chapter 1. Soybean Genome -- Chapter 2. Overview and application of soybean genomics study -- Chapter 3. Genetics and Genomics of Cottonseed Oil -- Chapter 4. Olive genome sequencing and evolution -- Chapter 5. Translational Genomics of Cucurbit Oil Seeds -- Chapter 6. Genome sequence of oil palm -- Chapter 7. Argane Genetics and Genomics -- Chapter 8. On “the most useful” oleaginous seeds: Linum usitatissimum L., a genomic view with emphasis on important flax seed storage compounds -- Part 2. Oil crop genomics -- Chapter 9. Coconut Genomics -- Chapter 10. Complete Chloroplast Genome Sequences of Coconut var. Kopyor Green Dwarf and Comparative Genome Analysis to Oil Palm, Date Palm, Sago Palm, and Miniature Sugar Palm -- Chapter 11. Genomics, Phenomics and Next Breeding Tools for Genetic Improvement of Safflower (Carthamus tinctorius L.) -- Chapter 12. Genomics of mustard crops -- Chapter 13. Integrated omics analysis of bia metabolism in opium poppy -- Chapter 14. Transcriptome analysis in Jatropha during abiotic stress response -- Part 3. Oil crop biotechnology -- Chapter 15. Oilseed crops as the alternate source of omega fatty acids: A paradigm shift -- Chapter 16. Genetic Manipulation for Developing Desired Engineered Oil Crops -- Chapter 17. CRISPR Applications in Crops -- Chapter 18. Applications of CRISPR/Cas9 in oil crops to improve oil composition -- Chapter 19. Economics of Oil Plants: Demand, Supply, and International Trade -- Chapter 20. Production and trade of oil crops, and their contribution to the world economy -- Index.
Plants are an important source of fats and oils, which are essential for the human diet. In recent years, genomics of oil biosynthesis in plants have attracted great interest, especially in high oil-bearing plants, such as sesame, olive, sunflower, and palm. Considering that, genome sequencing projects of these plants have been undertaken with the help of advanced genomics tools such as next generation sequencing. Several genome sequencing projects of oil crops are in progress and many others are en route. In addition to genome information, advanced genomics approaches are discussed such as transcriptomics, genomics-assisted breeding, genome-wide association study (GWAS), genotyping by sequencing (GBS), and CRISPR. These have all improved our understanding of the oil biosynthesis mechanism and breeding strategies for oil production. There is, however, no book that covers the genomes and genomics of oil crops. For this reason, in this volume we collected the most recent knowledge of oil crop genomics for researchers who study oil crop genomes, genomics, biotechnology, pharmacology, and medicine. This book covers all genome-sequenced oil crops as well as the plants producing important oil metabolites. Throughout this book, the latest genomics developments and discoveries are highlighted as well as open problems and future challenges in oil crop genomics. In doing so, we have covered the state-of-the-art of developments and trends of oil crop genomics. .
ISBN: 9783030704209
Standard No.: 10.1007/978-3-030-70420-9doiSubjects--Topical Terms:
668902
Plant Pathology.
LC Class. No.: QH433
Dewey Class. No.: 581.35
Oil Crop Genomics
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Preface -- Part 1. Genomes of oil-bearing crops -- Chapter 1. Soybean Genome -- Chapter 2. Overview and application of soybean genomics study -- Chapter 3. Genetics and Genomics of Cottonseed Oil -- Chapter 4. Olive genome sequencing and evolution -- Chapter 5. Translational Genomics of Cucurbit Oil Seeds -- Chapter 6. Genome sequence of oil palm -- Chapter 7. Argane Genetics and Genomics -- Chapter 8. On “the most useful” oleaginous seeds: Linum usitatissimum L., a genomic view with emphasis on important flax seed storage compounds -- Part 2. Oil crop genomics -- Chapter 9. Coconut Genomics -- Chapter 10. Complete Chloroplast Genome Sequences of Coconut var. Kopyor Green Dwarf and Comparative Genome Analysis to Oil Palm, Date Palm, Sago Palm, and Miniature Sugar Palm -- Chapter 11. Genomics, Phenomics and Next Breeding Tools for Genetic Improvement of Safflower (Carthamus tinctorius L.) -- Chapter 12. Genomics of mustard crops -- Chapter 13. Integrated omics analysis of bia metabolism in opium poppy -- Chapter 14. Transcriptome analysis in Jatropha during abiotic stress response -- Part 3. Oil crop biotechnology -- Chapter 15. Oilseed crops as the alternate source of omega fatty acids: A paradigm shift -- Chapter 16. Genetic Manipulation for Developing Desired Engineered Oil Crops -- Chapter 17. CRISPR Applications in Crops -- Chapter 18. Applications of CRISPR/Cas9 in oil crops to improve oil composition -- Chapter 19. Economics of Oil Plants: Demand, Supply, and International Trade -- Chapter 20. Production and trade of oil crops, and their contribution to the world economy -- Index.
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Plants are an important source of fats and oils, which are essential for the human diet. In recent years, genomics of oil biosynthesis in plants have attracted great interest, especially in high oil-bearing plants, such as sesame, olive, sunflower, and palm. Considering that, genome sequencing projects of these plants have been undertaken with the help of advanced genomics tools such as next generation sequencing. Several genome sequencing projects of oil crops are in progress and many others are en route. In addition to genome information, advanced genomics approaches are discussed such as transcriptomics, genomics-assisted breeding, genome-wide association study (GWAS), genotyping by sequencing (GBS), and CRISPR. These have all improved our understanding of the oil biosynthesis mechanism and breeding strategies for oil production. There is, however, no book that covers the genomes and genomics of oil crops. For this reason, in this volume we collected the most recent knowledge of oil crop genomics for researchers who study oil crop genomes, genomics, biotechnology, pharmacology, and medicine. This book covers all genome-sequenced oil crops as well as the plants producing important oil metabolites. Throughout this book, the latest genomics developments and discoveries are highlighted as well as open problems and future challenges in oil crop genomics. In doing so, we have covered the state-of-the-art of developments and trends of oil crop genomics. .
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