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Whole-genome scan to detect quantitative trait loci associated with milk protein composition in 3 French dairy cattle breeds

机译:全基因组扫描检测与牛奶蛋白组合有3种法国奶牛品种相关的定量性状基因座

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摘要

In the context of the PhénoFinLait project, a genome-wide analysis was performed to detect quantitative trait loci (QTL) that affect milk protein composition estimated using mid-infrared spectrometry in the Montbéliarde (MO), Normande (NO), and Holstein (HO) French dairy cattle breeds. The 6 main milk proteins (α-lactalbumin, β-lactoglobulin, and αS1-, αS2-, β-, and κ-caseins) expressed as grams per 100g of milk (% of milk) or as grams per 100g of protein (% of protein) were estimated in 848,068 test-day milk samples from 156,660 cows. Genotyping was performed for 2,773 MO, 2,673 NO, and 2,208 HO cows using the Illumina BovineSNP50 BeadChip (Illumina Inc., San Diego, CA). Individual test-day records were adjusted for environmental effects and then averaged per cow to define the phenotypes analyzed. Quantitative trait loci detection was performed within each breed using a linkage disequilibrium and linkage analysis approach. A total of 39 genomic regions distributed on 20 of the 29 Bos taurus autosomes (BTA) were significantly associated with milk protein composition at a genome-wide level of significance in at least 1 of the 3 breeds. The 9 most significant QTL were located on BTA2 (133 Mbp), BTA6 (38, 47, and 87 Mbp), BTA11 (103 Mbp), BTA14 (1.8 Mbp), BTA20 (32 and 58 Mbp), and BTA29 (8 Mbp). The BTA6 (87 Mbp), BTA11, and BTA20 (58 Mbp) QTL were found in all 3 breeds, and they had highly significant effects on κ-casein, β-lactoglobulin, and α-lactalbumin, expressed as a percentage of protein, respectively. Each of these QTL explained between 13% (BTA14) and 51% (BTA11) of the genetic variance of the trait. Many other QTL regions were also identified in at least one breed. They were located on 14 additional chromosomes (1, 3, 4, 5, 7, 15, 17, 19, 21, 22, 24, 25, 26, and 27), and they explained 2 to 8% of the genetic variance of 1 or more protein composition traits. Concordance analyses, performed between QTL status and sequence-derived polymorphisms from 13 bulls, revealed previously known causal polymorphisms in LGB (BTA11) and GHR (BTA20 at 32 Mbp) and excluded some other previously described mutations. These results constitute a first step in identifying causal mutations and using routinely collected mid-infrared predictions in future genomic selection programs to improve bovine milk protein composition.
机译:在Phénofinlait项目的背景下,进行基因组分析以检测在Montbéliarde(Mo),诺曼底(NO)和HOLSTEIN(HO)中使用中红外光谱估计估计的牛奶蛋白质组合物的定量性状基因座(QTL)。 )法国奶牛品种。 6个主要乳蛋白(α-乳白蛋白,β-乳糖蛋白和αs1-,α2-,β-和κ-酪蛋白)表示为每100g牛奶(牛奶百分比)或每100克蛋白质的克(%)蛋白质估计在156,660奶牛的848,068个试日牛奶样中。使用Illumina Bovinesnp50 Beadchip(Illumina Inc.,San Diego,CA)进行2,773μm,2,673号和2,208次Ho牛进行基因分型。为环境影响调整各个测试日记录,然后每头牛平均定义分析的表型。使用连杆不平衡和连杆分析方法在每种品种中进行定量特质基因座检测。在29bostaurus仿血剂(BTA)中的20个分布的总共39个基因组区域与牛奶蛋白质组合物在3种的基因组的范围内显着与牛奶蛋白质组合物显着相关。 9个最重要的QTL位于BTA2(133 MBP),BTA6(38,47和87 MBP),BTA11(103MBP),BTA14(1.8MBP),BTA20(32和58 MBP)和BTA29(8 MBP )。在经纬台式大型望远镜(87 MBP),BTA11和BTA20(58 MBP)QTL是在所有3个品种中发现,他们对κ酪蛋白,β乳球蛋白和α乳清蛋白高度显著的影响,表现为蛋白质的比例,分别。这些QTL中的每一个都在特征的遗传方差的13%(BTA14)和51%(BTA11)之间。在至少一种品种中也鉴定了许多其他QTL区域。它们位于14个另外的染色体(1,3,4,5,7,15,17,19,21,22,24,25,26和27)上,它们解释了2%至8%的遗传方差1或更多蛋白质组成性状。在13公牛的QTL状态和序列衍生的多态性之间进行的一致性分析显示了LGB(BTA11)和GHR(BTA20在32Mbp)中的先前已知的因果多态性,并排除了一些其他先前描述的突变。这些结果构成了识别因果突变的第一步,并在未来的基因组选择程序中使用常规收集的中红外预测来改善牛奶蛋白组合物。

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