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Genomic designing of climate-smart p...
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Kole, Chittaranjan.
Genomic designing of climate-smart pulse crops
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Genomic designing of climate-smart pulse cropsedited by Chittaranjan Kole.
其他作者:
Kole, Chittaranjan.
出版者:
Cham :Springer International Publishing :2019.
面頁冊數:
xxiv, 469 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
標題:
LegumesBreeding.
電子資源:
https://doi.org/10.1007/978-3-319-96932-9
ISBN:
9783319969329$q(electronic bk.)
Genomic designing of climate-smart pulse crops
Genomic designing of climate-smart pulse crops
[electronic resource] /edited by Chittaranjan Kole. - Cham :Springer International Publishing :2019. - xxiv, 469 p. :ill., digital ;24 cm.
Common bean -- Pigeonpea Genomic interventions to improve resilience of pigeonpea in changing climate -- Chickpea Breeding and genomic approaches for sustaining chickpea yield under changing climate -- Lentil Towards climate resilient lentils-advances in abiotic and biotic stress resistance -- MungbeanGenomic perspectives towards development of climate-smart mungbean: Perspective and future -- Pea Title: Pea and Climate Change: Possibilities of Adaptation through Genomic Selection and Breeding -- Faba Bean Genomics-aided breeding for CS traits in Faba bean -- Bambara Groundnut: An old crop for the climate change era -- Lathyrus "Grass pea: Remodelling an ancient insurance crop for the 21st century".
This book describes the concepts, strategies and techniques for pulse- crop improvement in the era of climate change, highlighting the latest advances in plant molecular mapping and genome sequencing. Genetic mapping of genes and QTLs has broadened the scope of marker-assisted breeding and map-based cloning in almost all major pulse crops. Genetic transformation, particularly using alien genes conferring resistance to herbicide, insects and diseases has facilitated the development of a huge number of genetically modified varieties of the major pulse crops. Since the genome sequencing of rice in 2002, genomes of over 7 pulse crops have been sequenced. This has resulted in the possibility of deciphering the exact nucleotide sequence and chromosomal positions of agroeconomic genes. Most importantly, comparative genomics and genotyping-by-sequencing has opened up a new vista for exploring wild crop relatives for identification of useful donor genes.
ISBN: 9783319969329$q(electronic bk.)
Standard No.: 10.1007/978-3-319-96932-9doiSubjects--Topical Terms:
484320
Legumes
--Breeding.
LC Class. No.: SB317.L43 / G466 2019
Dewey Class. No.: 633.3
Genomic designing of climate-smart pulse crops
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Common bean -- Pigeonpea Genomic interventions to improve resilience of pigeonpea in changing climate -- Chickpea Breeding and genomic approaches for sustaining chickpea yield under changing climate -- Lentil Towards climate resilient lentils-advances in abiotic and biotic stress resistance -- MungbeanGenomic perspectives towards development of climate-smart mungbean: Perspective and future -- Pea Title: Pea and Climate Change: Possibilities of Adaptation through Genomic Selection and Breeding -- Faba Bean Genomics-aided breeding for CS traits in Faba bean -- Bambara Groundnut: An old crop for the climate change era -- Lathyrus "Grass pea: Remodelling an ancient insurance crop for the 21st century".
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This book describes the concepts, strategies and techniques for pulse- crop improvement in the era of climate change, highlighting the latest advances in plant molecular mapping and genome sequencing. Genetic mapping of genes and QTLs has broadened the scope of marker-assisted breeding and map-based cloning in almost all major pulse crops. Genetic transformation, particularly using alien genes conferring resistance to herbicide, insects and diseases has facilitated the development of a huge number of genetically modified varieties of the major pulse crops. Since the genome sequencing of rice in 2002, genomes of over 7 pulse crops have been sequenced. This has resulted in the possibility of deciphering the exact nucleotide sequence and chromosomal positions of agroeconomic genes. Most importantly, comparative genomics and genotyping-by-sequencing has opened up a new vista for exploring wild crop relatives for identification of useful donor genes.
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