Characterization of ‘QTL-hotspot’ introgression lines reveals physiological mechanisms and candidate genes associated with drought adaptation in chickpea

Author:

Barmukh Rutwik12ORCID,Roorkiwal Manish134ORCID,Dixit Girish P5,Bajaj Prasad1,Kholova Jana67,Smith Millicent R18,Chitikineni Annapurna1,Bharadwaj Chellapilla39,Sreeman Sheshshayee M10,Rathore Abhishek1,Tripathi Shailesh9,Yasin Mohammad11,Vijayakumar Adiveppa G12,Rao Sagurthi Someswar2,Siddique Kadambot H M3,Varshney Rajeev K1313ORCID

Affiliation:

1. Centre of Excellence in Genomics and Systems Biology, International Crops Research Institute for the Semi-Arid Tropics (ICRISAT) , Hyderabad , India

2. Department of Genetics, Osmania University , Hyderabad , India

3. The UWA Institute of Agriculture, The University of Western Australia , Perth, Western Australia , Australia

4. Khalifa Center for Genetic Engineering and Biotechnology, United Arab Emirates University , Al-Ain , United Arab Emirates

5. ICAR - Indian Institute of Pulses Research (IIPR) , Kanpur , India

6. Crops Physiology & Modeling, International Crops Research Institute for the Semi-Arid Tropics (ICRISAT) , Hyderabad , India

7. Department of Information Technologies, Faculty of Economics and Management, Czech University of Life Sciences Prague , Kamýcká 129, Prague , Czech Republic

8. Queensland Alliance for Agriculture and Food Innovation, The University of Queensland , Australia

9. ICAR - Indian Agricultural Research Institute (IARI) , Delhi , India

10. Department of Crop Physiology, University of Agricultural Sciences , Bengaluru , India

11. RAK College of Agriculture, Rajmata Vijayaraje Scindia Krishi Vishwa Vidyalaya , Gwalior , India

12. UAS-Dharwad Regional Agricultural Research Station , Vijayapura , India

13. Centre for Crop and Food Innovation, State Agricultural Biotechnology Centre, Murdoch University , Murdoch, Western Australia , Australia

Abstract

Abstract ‘QTL-hotspot’ is a genomic region on linkage group 04 (CaLG04) in chickpea (Cicer arietinum) that harbours major-effect quantitative trait loci (QTLs) for multiple drought-adaptive traits, and it therefore represents a promising target for improving drought adaptation. To investigate the mechanisms underpinning the positive effects of ‘QTL-hotspot’ on seed yield under drought, we introgressed this region from the ICC 4958 genotype into five elite chickpea cultivars. The resulting introgression lines (ILs) and their parents were evaluated in multi-location field trials and semi-controlled conditions. The results showed that the ‘QTL-hotspot’ region improved seed yield under rainfed conditions by increasing seed weight, reducing the time to flowering, regulating traits related to canopy growth and early vigour, and enhancing transpiration efficiency. Whole-genome sequencing data analysis of the ILs and parents revealed four genes underlying the ‘QTL-hotspot’ region associated with drought adaptation. We validated diagnostic KASP markers closely linked to these genes using the ILs and their parents for future deployment in chickpea breeding programs. The CaTIFY4b-H2 haplotype of a potential candidate gene CaTIFY4b was identified as the superior haplotype for 100-seed weight. The candidate genes and superior haplotypes identified in this study have the potential to serve as direct targets for genetic manipulation and selection for chickpea improvement.

Funder

Bill and Melinda Gates Foundation

Department of Biotechnology, Government of India

Department of Science & Technology (DST), Government of India

Department of Science and Technology, Government of India

Council of Scientific and Industrial Research (CSIR), Government of India

Australian Government

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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