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Critical Reviews in Biotechnology|February 3, 2022
Proteomics for abiotic stresses in legumes: present status and future directionsNelofer Jan, Asif Mohi-Ud-Din Rather, Riffat John, et al.
BMC Genomics|May 2, 2024
Meta QTL analysis for dissecting abiotic stress tolerance in chickpeaSourav Panigrahi, Upendra Kumar, Sonu Swami, et al.
Physiology and Molecular Biology of Plants : an International Journal of Functional Plant Biology|January 15, 2024
Comprehensive biochemical approach for understanding the interaction between host "common bean" and pathogen "Colletotrichum lindemuthianum" causing bean anthracnoseSafoora Shafi, Mohd Anwar Khan, Fehim Jeelani Wani, et al.
Frontiers in Plant Science|July 24, 2019
Altered Expression of an FT Cluster Underlies a Major Locus Controlling Domestication-Related Changes to Chickpea Phenology and Growth HabitRaul Ortega, Valerie F G Hecht, Jules S Freeman, et al.
Molecular Biology Reports|February 24, 2023
Recent advances on genome-wide association studies (GWAS) and genomic selection (GS); prospects for Fusarium head blight research in Durum wheatZahoor Ahmad Mir, Tilak Chandra, Anurag Saharan, et al.
The Plant Genome|November 14, 2023
Advances and opportunities in unraveling cold-tolerance mechanisms in the world's primary staple food cropsSofora Jan, Sachin Rustgi, Rutwik Barmukh, et al.
Horticulture Research|May 12, 2025
A panomics-driven framework for the improvement of major food legume crops: advances, challenges, and future prospectsHongliang Hu, Xingxing Yuan, Dinesh Kumar Saini, et al.
Functional & Integrative Genomics|March 11, 2014
Integrated physical, genetic and genome map of chickpea (Cicer arietinum L.)Rajeev K Varshney, Reyazul Rouf Mir, Sabhyata Bhatia, et al.
Briefings in Bioinformatics|July 14, 2026
OptimGS: a dual integrative genomic prediction framework for improving cold stress tolerance in wheatPrabina Kumar Meher, Farkhandah Jan, Nelofer Jan, et al.
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