Population-specific pangenome unveils a third FAD2 gene and solves the peanut mid-oleic fatty acid mystery.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 41429781.
- Also identified by DOI 10.1038/s41467-025-67371-7 and PMC identifier 12816682.
- Licence recorded as CC BY-NC-ND.
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Abstract
Accumulating evidences have shown that the mid-oleic fatty acid phenotype in peanuts cannot be explained by the traditional two-gene model involving AhFAD2A and AhFAD2B, which are genes encoding fatty-acid desaturase 2. But the underlying genetic mechanism remains unclear. Here, we present a population-specific pangenome using the eight founder genomes of the PeanutMAGIC population. This graph-based pangenome serves as a comprehensive reference, capturing all segregating haplotypes within the population. We conduct whole genome sequencing for the MAGIC Core, a subset of 310 RILs, for genotyping. Using pangenome-based genotypes, we trace recombination for detailed genomic analysis and phenotypic association. This investigation identifies a unique third gene, named AhFAD2C, near AhFAD2B. When recombination occurs, AhFAD2C segregates from AhFAD2B. We reveal the genotype determining mid-oleic fatty acid phenotype. Our findings underscore the limitations of a single-reference genome, which leads to false association and marker discovery. In contrast, a population-specific pangenome provides a more reliable framework for genomic studies. This study reveals insights into the genetic mechanism of peanut oil quality and demonstrates the advantages of population-specific pangenomes.
Medical subject headings
- Fatty Acid Desaturases
- Arachis
- Oleic Acid
- Plant Proteins
- Genome, Plant