Unravelling cucumber resistance to several viruses via genome-wide association studies highlighted resistance hotspots and new QTLs

Author:

Monnot Severine12,Cantet Melissa2,Mary-Huard Tristan3,Moreau Laurence3,Lowdon Rebecca4,Van Haesendonck Maurine5,Ricard Agnès2,Boissot Nathalie1

Affiliation:

1. INRAE , Génétique et Amélioration des Fruits et Légumes, 84143, Montfavet, France

2. Bayer Crop Science , 13670, Saint-Andiol, France

3. Université Paris-Saclay , INRAE, CNRS, AgroParisTech, Génétique Quantitative et Evolution - Le Moulon, 91190, Gif-sur-Yvette, France

4. Université Paris-Saclay , INRAE, AgroParisTech, Mathématiques et Informatique Appliquées-Paris, 75005 Paris, France

5. Bayer Crop Science , 700 Chesterfield Parkway West, Chesterfield, MO 63017, USA

Abstract

Abstract The mapping and introduction of sustainable resistance to viruses in crops is a major challenge in modern breeding, especially regarding vegetables. We hence assembled a panel of cucumber elite lines and landraces from different horticultural groups for testing with six virus species. We mapped 18 quantitative trait loci (QTL) with a multiloci genome wide association studies (GWAS), some of which have already been described in the literature. We detected two resistance hotspots, one on chromosome 5 for resistance to the cucumber mosaic virus (CMV), cucumber vein yellowing virus (CVYV), cucumber green mottle mosaic virus (CGMMV) and watermelon mosaic virus (WMV), colocalizing with the RDR1 gene, and another on chromosome 6 for resistance to the zucchini yellowing mosaic virus (ZYMV) and papaya ringspot virus (PRSV) close to the putative VPS4 gene location. We observed clear structuring of resistance among horticultural groups due to plant virus coevolution and modern breeding which have impacted linkage disequilibrium (LD) in resistance QTLs. The inclusion of genetic structure in GWAS models enhanced the GWAS accuracy in this study. The dissection of resistance hotspots by local LD and haplotype construction helped gain insight into the panel’s resistance introduction history. ZYMV and CMV resistance were both introduced from different donors in the panel, resulting in multiple resistant haplotypes at same locus for ZYMV, and in multiple resistant QTLs for CMV.

Publisher

Oxford University Press (OUP)

Subject

Horticulture,Plant Science,Genetics,Biochemistry,Biotechnology

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