Imputation accuracy for genomic selection using embryo biopsy samples in Gir

插补(统计学) 胚胎 生物 一致性 基因组选择 基因分型 一致相关系数 统计 遗传学 单核苷酸多态性 基因型 数学 缺少数据 基因
作者
Clara Slade Oliveira,Marcos Vinícius Gualberto Barbosa da Silva,C. C. R. Quintão,Pamela Itajara Otto,Rodrigo Vitorio Alonso,Luiz Fernando Feres,J. C. do C. Panetto,M. A. Machado,Luiz Sérgio de Almeida Camargo
出处
期刊:Reproductive Biology [Elsevier BV]
卷期号:23 (2): 100765-100765 被引量:1
标识
DOI:10.1016/j.repbio.2023.100765
摘要

The aim of this study was to establish a platform for genomic selection of in vitro-fertilized (IVF) Gir embryos. Multiple displacement amplification (MDA)-based embryo biopsy samples were genotyped, and genomic estimated breeding values (GEBV) for milk yield (305MY) were calculated. The concordance of GEBV and accuracy between embryo biopsies and the respective liveborn were assessed. Imputation was performed using two panels (Z-Chip and Bovine HD, Illumina) based on a database of 73,110 lactating cow’s database and pedigree files from 147,131 animals. Biopsied embryos had similar pregnancy rates (39% vs 40%), pregnancy loss rates (18% vs 20%), and pregnancy length compared to Control embryos. After genotyping, low call rate means were detected for biopsy samples compared to the respective calf samples (0.80 vs 0.98). Imputation presented 0.83 (Z-Chip) and 0.96 (HD) accuracy (CORRanim). Embryo GEBV accuracy levels were higher in BovineHD imputation (0.82) than Z-Chip imputation (0.55) or no imputation (0.62), and the correlation between embryo/calf pairs’ accuracy was 0.85 for BovineHD imputation, 0.11 for Z-Chip imputation, and 0.02 for no imputation. GEVB estimates correlation between embryo/calf pairs was 0.87 for BovineHD imputation, 0.80 for Z-Chip imputation, and 0.41 before imputation. The call rate of embryo samples did not affect the correlation between embryo/calf pairs for accuracy and GEBV before and after BovineHD imputation. Embryos obtained on the same farm presented GEBV 305MY differences of up to 800 kg, emphasizing the expected impact of embryo genomic selection for the Gir breed.
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