Akinlade, O J and Voss-Fels, K and Costilla, R and Kholova, J and Choudhary, S and Varshney, R K and Hickey, L T and Smith, M R (2022) Designing chickpea for a hotter drier world. Euphytica, 218. pp. 1-16. ISSN 1573-5060
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Abstract
Chickpea (Cicer arietinum L.) is one of the most important grain legumes in the world, but its current and future production is threatened due to the increased incidence of drought and heat stress. To address this challenge, an integrated crop improvement strategy encompassing breeding, genomics, physiology and agronomy is required. Here, we review the physiological traits known to confer drought and heat adaptation in chickpea and identify areas of drought and heat adaptation research that may be prioritised in the future. Furthermore, we underscore approaches to efficiently phenotype chickpea adaptation traits and highlight the significant challenges and importance of understanding the nexus between canopy and root development. Finally, we present the opportunity to adopt multi-trait genomic prediction approaches to efficiently utilise key physiological traits, that can be assayed using high-throughput phenotyping platforms, to accelerate genetic gain in drought and heat prone environments.
Item Type: | Article |
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Divisions: | Center of Excellence in Genomics and Systems Biology Global Research Program - Accelerated Crop Improvement |
CRP: | UNSPECIFIED |
Uncontrolled Keywords: | Cicer arietinum, Abiotic stress, Drought, Heat, Genomic prediction, High-throughput phenotyping |
Subjects: | Others > Abiotic Stress Mandate crops > Chickpea Others > Drought |
Depositing User: | Mr Nagaraju T |
Date Deposited: | 16 Jan 2024 05:12 |
Last Modified: | 16 Jan 2024 05:12 |
URI: | http://oar.icrisat.org/id/eprint/12362 |
Official URL: | https://link.springer.com/article/10.1007/s10681-0... |
Projects: | UNSPECIFIED |
Funders: | UNSPECIFIED |
Acknowledgement: | Open Access funding enabled and organized by CAUL and its Member Institutions |
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