AI Article Synopsis

  • The common bean is a widely grown legume affected by Fusarium wilt (FW), causing significant yield losses; disease-resistant cultivars are essential to combat this issue.
  • This study aimed to identify single nucleotide polymorphisms (SNPs) linked to FW resistance in a panel of 157 common bean accessions using Genome-wide association studies (GWAS). 21 resistant accessions and multiple resistance-associated SNPs were identified.
  • The research identified 17 candidate genes related to disease resistance and demonstrated genomic prediction accuracy for FW resistance, contributing to future enhancements through marker-assisted and genomic selection strategies.

Article Abstract

The common bean ( L.) is a globally cultivated leguminous crop. Fusarium wilt (FW), caused by f. sp. (), is a significant disease leading to substantial yield loss in common beans. Disease-resistant cultivars are recommended to counteract this. The objective of this investigation was to identify single nucleotide polymorphism (SNP) markers associated with FW resistance and to pinpoint potential resistant common bean accessions within a core collection, utilizing a panel of 157 accessions through the Genome-wide association study (GWAS) approach with TASSEL 5 and GAPIT 3. Phenotypes for race 1 and race 4 were matched with genotypic data from 4740 SNPs of BARCBean6K_3 Infinium Bea Chips. After ranking the 157-accession panel and revealing 21 Fusarium wilt-resistant accessions, the GWAS pinpointed 16 SNPs on chromosomes Pv04, Pv05, Pv07, Pv8, and Pv09 linked to race 1 resistance, 23 SNPs on chromosomes Pv03, Pv04, Pv05, Pv07, Pv09, Pv10, and Pv11 associated with race 4 resistance, and 7 SNPs on chromosomes Pv04 and Pv09 correlated with both race 1 and race 4 resistances. Furthermore, within a 30 kb flanking region of these associated SNPs, a total of 17 candidate genes were identified. Some of these genes were annotated as classical disease resistance protein/enzymes, including NB-ARC domain proteins, Leucine-rich repeat protein kinase family proteins, zinc finger family proteins, P-loopcontaining nucleoside triphosphate hydrolase superfamily, etc. Genomic prediction (GP) accuracy for race resistances ranged from 0.26 to 0.55. This study advanced common bean genetic enhancement through marker-assisted selection (MAS) and genomic selection (GS) strategies, paving the way for improved resistance.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10607830PMC
http://dx.doi.org/10.3390/ijms242015300DOI Listing

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