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鉴定原产于挪威的奶牛品种牛奶中的α-酪蛋白的罕见遗传变异,并与高产挪威红牛牛奶的蛋白质组成进行比较。

Identification of rare genetic variants of the α-caseins in milk from native Norwegian dairy breeds and comparison of protein composition with milk from high-yielding Norwegian Red cows.

机构信息

Department of Food Science, Aarhus University, Agro Food Park 48, DK-8200 Aarhus N, Denmark.

Department of Food Science, Aarhus University, Agro Food Park 48, DK-8200 Aarhus N, Denmark.

出版信息

J Dairy Sci. 2022 Feb;105(2):1014-1027. doi: 10.3168/jds.2021-20455. Epub 2021 Nov 19.

Abstract

Several factors influence the composition of milk. Among these, genetic variation within and between cattle breeds influences milk protein composition, protein heterogeneity, and their posttranslational modifications. Such variations may further influence technological properties, which are of importance for the utilization of milk into dairy products. Furthermore, these potential variations may also facilitate the production of differentiated products (e.g., related to specific breeds or specific genetic variants). The objective of this study was to investigate the genetic variation and relative protein composition of the major proteins in milk from 6 native Norwegian dairy breeds representing heterogeneity in geographical origin, using the modern Norwegian breed, Norwegian Red, as reference. In total, milk samples from 144 individual cows were collected and subjected to liquid chromatography-electrospray ionization/mass spectrometry-based proteomics for identification of genetic and posttranslational modification isoforms of the 4 caseins (α-CN, α-CN, β-CN, κ-CN) and the 2 most abundant whey proteins (α-lactalbumin and β-lactoglobulin). Relative quantification of these proteins and their major isoforms, including phosphorylations of α-CN and glycosylation of κ-CN, were determined based on UV absorbance. The presence and frequency of genetic variants of the breeds were found to be very diverse and it was possible to identify rare variants of the CN, which, to our knowledge, have not been identified in these breeds before. Thus, α-CN variant D was identified in low frequency in 3 of the 6 native Norwegian breeds. In general, α-CN was found to be quite diverse between the native breeds, and the even less frequent A and C variants were furthermore detected in 1 and 5 of the native breeds, respectively. The α-CN variant C was also identified in samples from the Norwegian Red cattle. The variant E of κ-CN was identified in 2 of the native Norwegian breeds. Another interesting finding was the identification of α-CN variant D, which was found in relatively high frequencies in the native breeds. Diversity in more common protein genetic variants were furthermore observed in the protein profiles of the native breeds compared with milk from the high-yielding Norwegian Reds, probably reflecting the more diverse genetic background between the native breeds.

摘要

有几个因素会影响牛奶的成分。其中,牛种内部和种间的遗传变异会影响牛奶蛋白的组成、蛋白异质性及其翻译后修饰。这些变化可能会进一步影响技术特性,这对于将牛奶应用于乳制品生产非常重要。此外,这些潜在的变化也可能有助于生产差异化产品(例如,与特定品种或特定遗传变异有关)。本研究的目的是使用现代挪威红牛作为参考,调查代表地理起源差异的 6 种挪威本土奶牛品种牛奶中主要蛋白质的遗传变异和相对蛋白质组成。共收集了 144 头个体奶牛的牛奶样本,并进行基于液相色谱-电喷雾电离/质谱的蛋白质组学分析,以鉴定 4 种酪蛋白(α-CN、β-CN、κ-CN)和 2 种最丰富的乳清蛋白(α-乳白蛋白和β-乳球蛋白)的遗传和翻译后修饰同工型。基于紫外吸光度确定这些蛋白质及其主要同工型(包括α-CN 的磷酸化和κ-CN 的糖基化)的相对定量。发现这些品种的遗传变异的存在和频率非常多样化,并且可以鉴定出 CN 的罕见变异体,据我们所知,以前在这些品种中没有发现过这些变异体。因此,在 6 种挪威本土品种中的 3 种中发现了α-CN 变体 D 的低频率存在。一般来说,α-CN 在本土品种之间存在相当大的多样性,并且在 1 种和 5 种本土品种中进一步检测到更罕见的 A 和 C 变体。在挪威红牛的样本中也鉴定到了α-CN 变体 C。κ-CN 的变体 E 在 2 种挪威本土品种中被鉴定到。另一个有趣的发现是鉴定到了相对高频率存在于本土品种中的α-CN 变体 D。与高产的挪威红牛相比,在本土品种的蛋白质图谱中还观察到了更常见的蛋白质遗传变异的多样性,这可能反映了本土品种之间更多样化的遗传背景。

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