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Genome-Wide Association Study for Agronomic Traits in Gamma-Ray-Derived Mutant Kenaf ( L.). | LitMetric

AI Article Synopsis

  • Kenaf is a significant crop for fiber and industrial materials, and this study analyzed various traits of 96 genotypes, including mutant lines, through phylogenetic analysis and a genome-wide association study (GWAS).
  • Researchers identified correlations between traits like days to flowering, plant height, and weight measures, grouping the genotypes into nine related clusters within two larger groups.
  • The study found 49 important SNP markers linked to traits such as flower and stem color, with implications for enhancing selective breeding programs in kenaf by understanding the genetic basis of these traits.

Article Abstract

Kenaf ( L.), in the Malvaceae family, is an important crop for not only fiber production, but also various other industrial materials. We performed phylogenetic analysis and a genome-wide association study (GWAS) of seven agronomic traits: days to flowering, plant height, fresh weight, dry weight, flower color, stem color, and leaf shape, using 96 kenaf genotypes, including gamma-irradiation-derived mutant lines. Genotypes were determined by genotyping-by-sequencing (GBS) and a total of 49,241 single-nucleotide polymorphisms (SNPs) were used in the analysis. Days to flowering, plant height, fresh weight, and dry weight were positively correlated with each other, and stem color was also correlated with fresh weight and dry weight. The phylogenetic analysis divided the 96 lines into nine related groups within two independent groups, and the GWAS analysis detected a total of 49 SNPs for days to flowering, plant height, fresh weight, dry weight, flower color, stem color, and leaf shape with -log() ≥ 4, of which 22 were located in genic regions. The detected SNPs were located in genes with homology ranging from 45% to 96% to plants of the Malvaceae and Betulaceae, and these genes were found to be involved in plant growth and development via various pathways. Our identification of SNP markers related to agronomic traits is expected to help improve the quality of selective breeding programs for kenaf.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10819814PMC
http://dx.doi.org/10.3390/plants13020249DOI Listing

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