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Cicer super-pangenome provides insights into species evolution and agronomic trait loci for crop improvement in chickpea
Journal article   Peer reviewed

Cicer super-pangenome provides insights into species evolution and agronomic trait loci for crop improvement in chickpea

Aamir W Khan, Vanika Garg, Shuai Sun, Saurabh Gupta, Olga Dudchenko, Manish Roorkiwal, Annapurna Chitikineni, Philipp E Bayer, Chengcheng Shi, Hari D Upadhyaya, …
Nature genetics
2024
PMID: 38783120

Abstract

Chickpea (Cicer arietinum L.)-an important legume crop cultivated in arid and semiarid regions-has limited genetic diversity. Efforts are being undertaken to broaden its diversity by utilizing its wild relatives, which remain largely unexplored. Here, we present the Cicer super-pangenome based on the de novo genome assemblies of eight annual Cicer wild species. We identified 24,827 gene families, including 14,748 core, 2,958 softcore, 6,212 dispensable and 909 species-specific gene families. The dispensable genome was enriched for genes related to key agronomic traits. Structural variations between cultivated and wild genomes were used to construct a graph-based genome, revealing variations in genes affecting traits such as flowering time, vernalization and disease resistance. These variations will facilitate the transfer of valuable traits from wild Cicer species into elite chickpea varieties through marker-assisted selection or gene-editing. This study offers valuable insights into the genetic diversity and potential avenues for crop improvement in chickpea.

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Collaboration types
Domestic collaboration
International collaboration
Citation topics
1 Clinical & Life Sciences
1.54 Molecular & Cell Biology - Genetics
1.54.1543 Flow Cytometry
Web Of Science research areas
Genetics & Heredity
ESI research areas
Molecular Biology & Genetics
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