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Advanced Genomics and Breeding Technologies to Accelerate Genetic Gains
The mini symposium has been planned to discuss advances in genomics and breeding methodologies and their deployment in crop improvement programs. The mini symposium will have a few presentations in modern genomic and ...
Genotyping-by-sequencing based genetic mapping reveals large number of epistatic interactions for stem rot resistance in groundnut
Key message
Genetic mapping identified large number of epistatic interactions indicating the complex genetic architecture for stem rot disease resistance.
Abstract
Groundnut (Arachis hypogaea) is an important global crop ...
Pigeonpea improvement: An amalgam of breeding and genomic research
In the past five decades, constant research has been directed towards yield
improvement in pigeonpea resulting in the deployment of several commercially
acceptable cultivars in India. Though, the genesis of hybrid technology, ...
Genetic imprints of domestication for disease resistance, oil quality, and yield component traits in groundnut (Arachis hypogaea L.)
Ploidy difference between wild Arachis species and cultivated genotypes hinder transfer of useful alleles for agronomically important traits. To overcome this genetic barrier, two synthetic tetraploids, viz., ISATGR 1212 ...
Identification of QTLs for resistance to Fusarium wilt and Ascochyta blight in a recombinant inbred population of chickpea (Cicer arietinum L.)
Fusarium wilt (FW; caused by Fusarium oxysporum f. sp. ciceris) and Ascochyta blight (AB; caused by Ascochyta rabiei) are two major biotic stresses that cause significant yield losses in chickpea (Cicer arietinum L.). In ...
Integrated transcriptome, small RNA and degradome sequencing approaches provide insights into Ascochyta blight resistance in chickpea
Ascochyta blight (AB) is one of the major biotic stresses known to limit the chickpea production worldwide. To dissect the complex mechanisms of AB resistance in chickpea, three approaches,namely, transcriptome, small RNA ...