Genomic Designing for Abiotic Stress Resistant Pulse Crops [electronic resource]

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Tác giả: Chittaranjan Kole

Ngôn ngữ:

ISBN-13: 978-3030910396

Ký hiệu phân loại: 580 Plants

Thông tin xuất bản: Cham : Springer International Publishing : Imprint: Springer, 2022.

Mô tả vật lý: XXV, 381 p. 31 illus., 27 illus. in color. , online resource.

Bộ sưu tập: Metadata2

ID: 297702

 This book presents deliberations on molecular and genomic mechanisms underlying the interactions of crop plants to the abiotic stresses caused by heat, cold, drought, flooding, submergence, salinity, acidity, etc., important to develop resistant crop varieties. Knowledge on the advanced genetic and genomic crop improvement strategies including molecular breeding, transgenics, genomic-assisted breeding, and the recently emerging genome editing for developing resistant varieties in pulse crops is imperative for addressing FHNEE (food, health, nutrition, energy, and environment) security. Whole genome sequencing of these crops followed by genotyping-by-sequencing has provided precise information regarding the genes conferring resistance useful for gene discovery, allele mining, and shuttle breeding which in turn opened up the scope for 'designing' crop genomes with resistance to abiotic stresses. The nine chapters each dedicated to a pulse crop in this volume elucidate on different types of abiotic stresses and their effects on and interaction with the crop
  enumerate on the available genetic diversity with regard to abiotic stress resistance among available cultivars
  illuminate on the potential gene pools for utilization in interspecific gene transfer
  present brief on classical genetics of stress resistance and traditional breeding for transferring them to their cultivated counterparts
  depict the success stories of genetic engineering for developing abiotic stress-resistant crop varieties
  discuss on molecular mapping of genes and QTLs underlying stress resistance and their marker-assisted introgression into elite varieties
  enunciate on different genomics-aided techniques including genomic selection, allele mining, gene discovery, and gene pyramiding for developing adaptive crop varieties with higher quantity and quality of yields, and also elaborate some case studies on genome editing focusing on specific genes for generating abiotic stress-resistant crops. .
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