Development and evaluation of Fusarium wilt‐resistant and high‐yielding chickpea advanced breeding line, KCD 11

Author:

Laxuman C.1ORCID,Naik Yogesh Dashrath2ORCID,Desai B. K.3,Kenganal Mallikarjun1,Patil Bharat3ORCID,Reddy B. S.1,Patil D. H.1,Chakurte Sidramappa4,Kuchanur P. H.5,K Shiva Kumar6,Gaddi Ashok Kumar7,Yogesh L. N.8,Nidagundi Jayaprakash6,Dodamani B. M.1,Sunkad Gururaj9,Thudi Mahendar101112ORCID,Varshney Rajeev K.1213ORCID

Affiliation:

1. Zonal Agricultural Research Station (ZARS), Kalaburagi University of Agricultural Sciences‐Raichur (UAS‐R) Raichur Karnataka India

2. Department of Agricultural Biotechnology and Molecular Biology Dr. Rajendra Prasad Central Agricultural University (RPCAU) Samastipur Bihar India

3. Department of Agronomy University of Agricultural Sciences Raichur Karnataka India

4. Department of Genetics and Plant Breeding Agricultural Research Station, UAS‐R Bidar Karnataka India

5. Department of Genetics and Plant Breeding Collage of Agriculture, UAS‐R Bheemarayanagudi Karnataka India

6. Department of Genetics and Plant Breeding Main Agricultural Research Station (MARS), UAS‐R Raichur Karnataka India

7. Department of Soil Science Agricultural Research Station, Sirguppa, UAS‐R Sirguppa Karnataka India

8. Department of Genetics and Plant Breeding Agricultural Research Station, UAS‐R Hagari Karnataka India

9. Department of Plant Pathology University of Agricultural Sciences Raichur Karnataka India

10. Centre for Crop Health and School of Agriculture and Environmental Science University of Southern Queensland (UniSQ) Toowoomba Queensland Australia

11. College of Agriculture, Family Sciences and Technology Fort Valley State University Fort Valley Georgia USA

12. Center of Excellence in Genomics & Systems Biology International Crops Research Institute for the Semi‐Arid Tropics (ICRISAT) Patancheru Telangana India

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

Abstract

AbstractFusarium wilt (FW) is the most severe soil‐borne disease of chickpea that causes yield losses up to 100%. To improve FW resistance in JG 11, a high‐yielding variety that became susceptible to FW, we used WR 315 as the donor parent and followed the pedigree breeding method. Based on disease resistance and yield performance, four lines were evaluated in station trials during 2017–2018 and 2018–2019 at Kalaburagi, India. Further, two lines, namely, Kalaburagi chickpea desi 5 (KCD 5) and KCD 11, which possesses the resistance allele for a specific single‐nucleotide polymorphism marker linked with FW resistance, were evaluated across six different locations (Bidar, Kalaburagi, Raichur, Siruguppa, Bhimarayanagudi and Hagari) over a span of 3 years (2020–2021, 2021–2022 and 2022–2023). KCD 11 exhibited notable performance, showcasing yield advantages of 8.67%, 11.26% and 23.88% over JG 11, and the regional checks Super Annigeri 1 (SA 1) and Annigeri 1, respectively, with enhanced FW resistance in wilt sick plot. Further, KCD 11 outperformed JG 11, SA 1 and Annigeri 1 in multi‐location trials conducted across three seasons in the North Eastern Transition Zone, North Eastern Dry Zone, and North Dry Zones of Karnataka. KCD 11 was also tested in trials conducted by All India Coordinated Research Project on chickpea and was also nominated for state varietal trials for its release as a FW‐resistant and high‐yielding variety. The selected line is anticipated to cater the needs of chickpea growers with the dual advantage of yield increment and disease resistance.

Publisher

Wiley

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