Optimized double-digest genotyping by sequencing (ddGBS) method with highdensity SNP markers and high genotyping accuracy for chickens

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Abstract

High-density single nucleotide polymorphism (SNP) markers are crucial to improve the resolution and accuracy of genome-wide association study (GWAS) and genomic selection (GS). Numerous approaches, including whole genome sequencing, genome sampling sequencing, and SNP chips are able to discover or genotype markers at different densities and costs. Achieving an optimal balance between sequencing resolution and budgets, especially in large-scale population genetics research, constitutes a major challenge. Here, we performed improved double-enzyme digestion genotyping by sequencing (ddGBS) on chicken. We evaluated eight double-enzyme digestion combinations, and EcoR I- Mse I was chosen as the optimal combination for the chicken genome. We firstly proposed that two parameters, optimal read-count point (ORP) and saturated read-count point (SRP), could be utilized to determine the optimal sequencing volume. A total of 291,772 highdensity SNPs from 824 animals were identified. By validation using the SNP chip, we found that the consistency between ddGBS data and the SNP chip is over 99%. The approach that we developed in chickens, which is high-quality, high-density, cost-effective (300 K, $30/sample), and time-saving (within 48 h), will have broad applications in animal breeding programs.

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Wang, Y., Cao, X., Zhao, Y., Fei, J., Hu, X., & Li, N. (2017). Optimized double-digest genotyping by sequencing (ddGBS) method with highdensity SNP markers and high genotyping accuracy for chickens. PLoS ONE, 12(6). https://doi.org/10.1371/journal.pone.0179073

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