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Titlebook: Genomic Designing of Climate-Smart Pulse Crops; Chittaranjan Kole Book 2019 Springer Nature Switzerland AG 2019 global warming.adaptation.

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Yanwu Yang,Christophe Claramuntmolecular breeding research is slow due to the complexity of faba bean genome and few studies, compared to those reported in other important crops (e.g., wheat, maize, etc.), have been conducted to detect quantitative trait loci (QTLs) controlling CSTs. This chapter sheds light on the recent breedin
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N. Ibrahim,J. Md. Jahim,Lim S. S.markets and research funding. The recent emphasis on climate smart crops has refocused attention on this very promising crop. Genomic resources and low-ODAP lines are being developed, and it is hoped that these will soon allow grass pea to reach its full potential as a resilient protein crop for foo
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Genomic Interventions to Improve Resilience of Pigeonpea in Changing Climate,inferred from multilocation and multiyear data sets also open new avenues for ‘remote breeding’ which is very much required to achieve genotype selection for future climates. Speed breeding pigeonpea with deployment of rapid generation advancement (RGA) technologies will improve our capacity to bree
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Towards Development of Climate Smart Mungbean: Challenges and Opportunities,ecting the quality and quantity of the produce significantly. Ample genetic and genomic resources are now available in mungbean and related . crops, which can be exploited for the development of climate smart mungbean cultivars. Through various breeding approaches, climate smart traits can be incorp
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Genomic Designing for Climate-Smart Pea,ogen sequestration, greenhouse gas emission, genome plasticity, as well as specific traits for vegetable purposes, were reviewed; CS stress tolerance/resistance traits studies of peas, like cold tolerance, drought tolerance, salinity tolerance, disease resistance, insect resistance were also reviewe
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Genomics-Aided Breeding for Climate-Smart Traits in Faba Bean,molecular breeding research is slow due to the complexity of faba bean genome and few studies, compared to those reported in other important crops (e.g., wheat, maize, etc.), have been conducted to detect quantitative trait loci (QTLs) controlling CSTs. This chapter sheds light on the recent breedin
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