Development of an SNP Assay for Marker-Assisted Selection of Soil-Borne Rhizoctonia solani AG-2-2-IIIB Resistance in Sugar Beet

Author:

Ravi Samathmika,Hassani Mahdi,Heidari BahramORCID,Deb Saptarathi,Orsini Elena,Li Jinquan,Richards Christopher M.,Panella Lee W.,Srinivasan Subhashini,Campagna Giovanni,Concheri GiuseppeORCID,Squartini AndreaORCID,Stevanato PiergiorgioORCID

Abstract

Rhizoctonia solani, causing Rhizoctonia crown and root rot, is a major risk to sugar beet (Beta vulgaris L.) cultivation. The development of resistant varieties accelerated by marker-assisted selection is a priority of breeding programs. We report the identification of a single-nucleotide polymorphism (SNP) marker linked to Rhizoctonia resistance using restriction site-associated DNA (RAD) sequencing of two geographically discrete sets of plant materials with different degrees of resistance/susceptibility to enable a wider selection of superior genotypes. The variant calling pipeline utilized SAMtools for variant calling and the resulting raw SNPs from RAD sequencing (15,988 and 22,439 SNPs) were able to explain 13.40% and 25.45% of the phenotypic variation in the two sets of material from different sources of origin, respectively. An association analysis was carried out independently on both the datasets and mutually occurring significant SNPs were filtered depending on their contribution to the phenotype using principal component analysis (PCA) biplots. To provide a ready-to-use marker for the breeding community, a systematic molecular validation of significant SNPs distributed across the genome was undertaken to combine high-resolution melting, Sanger sequencing, and rhAmp SNP genotyping. We report that RsBv1 located on Chromosome 6 (9,000,093 bp) is significantly associated with Rhizoctonia resistance (p < 0.01) and able to explain 10% of the phenotypic disease variance. The related SNP assay is thus ready for marker-assisted selection in sugar beet breeding for Rhizoctonia resistance.

Funder

Veneto Region

Publisher

MDPI AG

Subject

General Agricultural and Biological Sciences,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology

Reference46 articles.

1. Rhizoctonia Root Rot in Sugar Beet (Beta Vulgaris Ssp. Altissima)—Epidemiological Aspects in Relation to Maize (Zea Mays) as a Host Plant/Rhizoctonia-Rübenfäule in Zuckerrüben (Beta Vulgaris Ssp. Altissima)—Epidemiologische Aspekte in Zusammenhang Mit Mais (Zea Mays) Als Wirtspflanze;Ithurrart;Z. Für Pflanzenkrankh. Und Pflanzenschutz/J. Plant Dis. Prot.,2004

2. Greenhouse and field techniques for testing sugar beet for resistance to Rhizoctonia root and crown rot

3. Integrated Control of Root and Crown Rot in Sugar Beet: Combined Effects of Cultivar, Crop Rotation, and Soil Tillage

4. Virulence, distribution and diversity ofRhizoctonia solanifrom sugar beet in Idaho and Oregon

5. Susceptibility of intercrops to infection with Rhizoctonia solani AG 2-2 IIIB and influence on subsequently cultivated sugar beet

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