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A blended genome and exome sequencing method captures genetic variation in an unbiased and cost-effective manner

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dc.contributor.author Kigen, Gabriel
dc.contributor.author Kamulegeya, Rogers
dc.contributor.author Kalmbach, Phillip R.
dc.contributor.author Kachulis, Christopher
dc.contributor.author Joloba, Moses
dc.contributor.author Chapman, Sinéad B.
dc.contributor.author James, Roxanne
dc.contributor.author Injera, Wilfred E.
dc.contributor.author Hubbard, Kalyn M.
dc.contributor.author Huang, Hailiang
dc.contributor.author Rubinacci, Simone
dc.contributor.author Hill, Toni C.
dc.contributor.author Gildea, Marissa L.
dc.contributor.author Gichuru, Stella
dc.contributor.author Gelaye, Bizu
dc.contributor.author Gatzen, Michael
dc.contributor.author Fekadu, Abebaw
dc.contributor.author Diaz-Zuluaga, Ana M.
dc.contributor.author DeLuca, Samuel
dc.contributor.author Chibnik, Lori B.
dc.contributor.author Brand, Harrison
dc.contributor.author Bradway, Amanda B.
dc.contributor.author Bigdeli, Tim B.
dc.contributor.author Atkinson, Elizabeth G.
dc.contributor.author Ashaba, Fred K.
dc.contributor.author Alemayehu, Melkam
dc.contributor.author Abebe, Tamrat
dc.contributor.author Grimsby, Jonna L.
dc.date.accessioned 2026-07-22T06:37:44Z
dc.date.available 2026-07-22T06:37:44Z
dc.date.issued 2026-07
dc.identifier.uri https://doi.org/10.1038/s41588-026-02669-w
dc.identifier.uri http://ir.mu.ac.ke:8080/jspui/handle/123456789/10385
dc.description.abstract Genome-wide association studies (GWAS) have grown exponentially over the past 15 years, rapidly increasing in statistical power to enable the identification of hundreds of thousands of associations between genetic variants and human traits 1 . While these discoveries have been facilitated in part by precipitous drops in sequencing costs, microarrays have been the primary technology used for GWAS to date because of their lower costs. However, by design, they have biased ascertainment of genetic variants; sites that are included on many GWAS arrays, such as the widely used Illumina Global Screening Array (GSA) or Global Diver- sity Array, are most common in European ancestry populations. Previ- ous work has shown that low-coverage sequencing is a cost-effective alternative that can more accurately capture genetic variants across the allele frequency spectrum for variants present in imputation reference panels 2,3. Low-coverage sequencing is especially useful in populations underrepresented in genomics, even compared with GWAS arrays that have been designed to reflect variation within those populations, such as the H3Africa GWAS Array. en_US
dc.description.sponsorship The Broad Institute of MIT and Harvard, Broad Clinical Labs (BCL); The Stanley Family Foundation; The US National Institutes of Health Grants U54HG003067 and 5UM1HG008895 to the Broad Institute of MIT and Harvard en_US
dc.language.iso en en_US
dc.publisher Springer en_US
dc.subject Blended genome en_US
dc.subject Genetic variation en_US
dc.subject Exome sequencing method en_US
dc.title A blended genome and exome sequencing method captures genetic variation in an unbiased and cost-effective manner en_US
dc.type Article en_US


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