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Genome-wide association mapping for milk fat composition and fine mapping of a QTL for de novo synthesis of milk fatty acids on bovine chromosome 13

机译:乳脂成分的全基因组关联映射和牛染色体13上乳脂肪酸从头合成的QTL的精细映射

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摘要

BackgroundBovine milk is widely regarded as a nutritious food source for humans, although the effects of individual fatty acids on human health is a subject of debate. Based on the assumption that genomic selection offers potential to improve milk fat composition, there is strong interest to understand more about the genetic factors that influence the biosynthesis of bovine milk and the molecular mechanisms that regulate milk fat synthesis and secretion. For this reason, the work reported here aimed at identifying genetic variants that affect milk fatty acid composition in Norwegian Red cattle. Milk fatty acid composition was predicted from the nation-wide recording scheme using Fourier transform infrared spectroscopy data and applied to estimate heritabilities for 36 individual and combined fatty acid traits. The recordings were used to generate daughter yield deviations that were first applied in a genome-wide association (GWAS) study with 17,343 markers to identify quantitative trait loci (QTL) affecting fatty acid composition, and next on high-density and sequence-level datasets to fine-map the most significant QTL on BTA13 (BTA for Bos taurus chromosome).
机译:背景技术尽管个体脂肪酸对人类健康的影响尚存争议,但牛乳被广泛认为是人类的营养食品。基于基因组选择提供改善乳脂成分的潜力的假设,人们强烈希望更多地了解影响牛乳生物合成的遗传因素以及调节乳脂合成和分泌的分子机制。因此,本文报道的工作旨在鉴定影响挪威红牛中牛奶脂肪酸组成的遗传变异。使用傅立叶变换红外光谱数据从全国范围的记录计划中预测牛奶脂肪酸组成,并将其用于估算36个单独和组合脂肪酸性状的遗传力。这些记录用于生成子代产量偏差,该子代偏差首先用于全基因组关联(GWAS)研究,具有17,343个标记,以识别影响脂肪酸组成的定量性状基因座(QTL),然后用于高密度和序列水平数据集来精确绘制BTA13(金牛座BTA的BTA)上最重要的QTL。

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