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Divilov, K.

Publications and source records attributed to Divilov, K..

2 recordsLinked to original sources

Pedigree-based genome-wide imputation using a low-density amplicon panel for the highly polymorphic Pacific oyster Crassostrea (Magallana) gigas

High-density genomic data are instrumental for selective breeding, but the costs associated with these approaches can hinder progress, as is the case for most aquaculture species. A strategy to reduce genotyping costs is to genotype a few select individuals at high-density (e.g., parents, grandparents), and many others at low density (e.g., offspring), then impute genotypes. This has been demonstrated in silico for Pacific oyster Crassostrea (Magallana) gigas but was particularly challenging relative to other species and has never been empirically tested. Here, four families of Pacific oysters, bred via marker-assisted selection for variation at a locus for field survival in an ostreid herpesvirus 1 (OsHV-1)-positive estuary, were exposed to OsHV-1 then genotyped using a low-density amplicon panel (n = 240 individuals). Parents were genotyped with the amplicon panel and by whole-genome resequencing. Offspring genotypes were imputed, and accuracy was determined by comparing against held-out whole-genome data for offspring. Imputation resulted in reduced minor allele frequencies and enriched homozygosity relative to empirical data. An in silico three-generation analysis was used to investigate the effect of deepening the pedigree, resulting in superior concordance in genotypes (GC = 84.5%) and allelic dosage (r = 0.73) compared to two-generation imputation (GC = 75.3%; r = 0.63). Genome-wide associations to OsHV-1 survivorship with imputed data identified significantly associated regions on the expected chromosome 8, but not at the expected position based on previous work, pointing to a potentially more complex genetic architecture for the trait. Our results empirically demonstrate the utility of amplicon panel-based genome-wide imputation in shellfish, and thus enable low-cost selective breeding techniques.

genomics↗

The presence of the Pacific Oyster OSHV-1 resistance marker on chromosome 8 does not impact susceptibility to infection by Vibrio aestuarianus

The Pacific oyster, Crassostrea (Magallana) gigas, is an important species in aquaculture globally, but its production is threatened by pathogens including ostreid herpesvirus 1 (OsHV-1) and Vibrio aestuarianus. A genetic marker associated with resistance to OsHV-1 infection has been identified on chromosome 8 (Chr8) of the Pacific oyster genome. Marker-assisted selective breeding has used the Chr8 marker to produce oyster families with increased survivorship and resistance to OsHV-1 infection. The potential effect of the Chr8 marker on susceptibility to other pathogens remains largely unknown, but was recently associated with increased resistance of spat to Vibrio coralliilyticus. Here we assess the effect of the presence and allelic dosage of the Chr8 marker on the susceptibility of selectively bred juvenile Pacific oysters to V. aestuarianus infection. Sixteen families were produced with various Chr8 marker genotypes, and a V. aestuarianus disease challenge was conducted. Challenged oysters were individually genotyped at the Chr8 marker, and Vibrio susceptibility was evaluated among genotypes within and between families. Prior to the challenge trial, the Chr8 marker did not occur at the expected Mendelian ratios in families with heterozygous parents; in multiple families the homozygous alternate genotype occurred at a lower frequency than was expected. Mortality rates in the Vibrio challenge differed between families, ranging from 47.9% to 85.4%, but no association was observed between the Chr8 marker and survival to V. aestuarianus exposure. Therefore, we observed no pleiotropic effect (positive or negative) of the Chr8 marker on survivorship to V. aestuarianus at the evaluated life stage. Reduced-representation sequencing was used to genotype the challenged oysters and a genome-wide association study for V. aestuarianus survivorship was performed, but no significant associations were found, suggesting polygenic architecture for the trait.

genomics↗