Genome-Wide Association Study Using Genotyping by Sequencing for Bacterial Leaf Blight Resistance Loci in Local Thai Indica Rice

Author:

Danaisilichaichon Chananton12,Vejchasarn Phanchita2,Patarapuwadol Sujin3ORCID,Tondelli Alessandro4ORCID,Valè Giampiero5ORCID,Toojinda Theerayut6,Jantasuriyarat Chatchawan17ORCID

Affiliation:

1. Department of Genetics, Faculty of Science, Kasetsart University, Bangkok 10900, Thailand

2. Rice Department, Ministry of Agriculture, Bangkok 10900, Thailand

3. Department of Plant Pathology, Faculty of Agriculture at Kamphaeng Saen, Kasetsart University, Nakhon Pathom 73140, Thailand

4. Council for Agricultural Research and Economics, Research Centre for Genomics and Bioinformatics, 29017 Fiorenzuola d’Arda, Italy

5. Department for Sustainable Development and Ecological Transition–DiSSTE, University of Piemonte Orientale, Piazza S. Eusebio 5, 13100 Vercelli, Italy

6. National Center for Genetic Engineering and Biotechnology (BIOTEC), 113 Thailand Science Park, Pahonyothin Road, Khlong Nueng, Khlong Luang, Pathumthani 12120, Thailand

7. Center for Advanced Studies in Tropical Natural Resources, National Research University-Kasetsart (CASTNAR, NRU-KU), Kasetsart University, Bangkok 10900, Thailand

Abstract

Bacterial leaf blight (BLB) is a devastating disease caused by Xanthomonas oryzae pv. oryzae (Xoo), which poses a significant threat to global rice production. In this study, a genome-wide association study (GWAS) was conducted using the genotyping-by-sequencing (GBS) approach to identify candidate single nucleotide polymorphisms (SNPs) associated with BLB resistance genes. The study utilized 200 indica rice accessions inoculated with seven distinct Xoo isolates and filtered highly significant SNPs using a minor allele frequency (MAF) of >5% and a call rate of 75%. Four statistical models were used to explore potential SNPs associated with BLB resistance, resulting in the identification of 32 significant SNPs on chromosomes 1–8 and 12 in the rice genome. Additionally, 179 genes were located within ±100 kb of the SNP region, of which 49 were selected as candidate genes based on their known functions in plant defense mechanisms. Several candidate genes were identified, including two genes in the same linkage disequilibrium (LD) decay as the well-known BLB resistance gene (Xa1). These findings represent a valuable resource for conducting further functional studies and developing novel breeding strategies to enhance the crop’s resistance to this disease.

Funder

National Research Council of Thailand

Kasetsart University Research and Development Institute

Agricultural Research Development Agency (ARDA), Thailand

Publisher

MDPI AG

Subject

Agronomy and Crop Science

Reference103 articles.

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