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Crop and Pasture Science Crop and Pasture Science Society
Plant sciences, sustainable farming systems and food quality

Just Accepted

This article has been peer reviewed and accepted for publication. It is in production and has not been edited, so may differ from the final published form.

Chickpea Genetic Diversity: Genetic Resources, Breeding Progress, and Future Prospects

Zeba Shahnaz, Arooba Shahnaz, Asif Ismail, Zahid Manzoor 0000-0003-4243-9233, Rashid Iqbal, Muhammad Abu Bakar Zia 0000-0002-7685-1392

Abstract

Chickpea is the 3rd most significant grain legume grown in dry and semi-arid regions. Ensuring global food security necessitates sustainable practices, such as improving agricultural productivity with cultivars that provide increased yields and adaptability. The major limits on chickpea production are poor genetic diversity, low and variable yield, and vulnerability to biotic and abiotic stresses. Despite the abundance of germplasm accessions, their impact on improving chickpea genetics has been limited. Combining contemporary genomic resources with conventional breeding techniques holds the potential to develop climate-resilient chickpea varieties. To close the genome-to-phenome gap, contemporary genomic technology must be integrated with molecular breeding initiatives. Furthermore, major genetic resources, such as molecular markers and transcript sequences, have been identified. Recent advances in genomic methods and technologies have eased large-scale sequencing and genotyping in chickpea as well as in other crops. These tools are intended to help identify trait-specific germplasm, map phenotypes, and mine alleles for biotic and abiotic stress tolerance, as well as agronomic qualities. This review focuses on recent improvements that have opened new opportunities for establishing and screening breeding populations and tactics for improving selection efficiency and speeding genetic gain in chickpea.

CP24238  Accepted 19 December 2024

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