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纯种荷斯坦奶牛和来自瑞典红牛、蒙贝利亚尔牛和瑞士褐牛的第一代/第二代杂交奶牛的牛奶蛋白组成。

Milk protein composition in purebred Holsteins and in first/second-generation crossbred cows from Swedish Red, Montbeliarde and Brown Swiss bulls.

机构信息

1Department of Agronomy, Food, Natural Resources, Animals and Environment (DAFNAE),University of Padua,Viale dell'Università 16,35020 Legnaro,Italy.

2Department of Animal Biosciences,Centre for Genetic Improvement of Livestock,University of Guelph,Guelph,Ontario,Canada,N1G 2W1.

出版信息

Animal. 2018 Oct;12(10):2214-2220. doi: 10.1017/S1751731117003640. Epub 2018 Jan 8.

Abstract

The aim of this study was to analyze milk protein composition in purebred and crossbred dairy cattle and estimate the effects of individual sources of variation on the investigated traits. Milk samples were collected from 505 cows from three commercial farms located in Northern Italy, some of which had originated from crossbreeding programs, although most were purebred Holsteins (HO). The basic crossbreeding scheme was a three-breed rotational system using Swedish Red (SR) semen on HO cows (SR×HO), Montbeliarde (MO) semen on SR×HO cows (MO×(SR×HO)) and HO semen again on MO×(SR×HO) cows. A smaller number of purebred HO from each of the herds were mated inverting the breed order (MO×HO and SR×(MO×HO)) or using Brown Swiss (BS) bulls (BS×HO) then MO bulls (MO×(BS×HO)). Milk samples were analyzed by reverse-phase HPLC to obtain protein fraction amounts (g/l) and proportions (% of total true protein). Traits were analyzed using a linear model, which included the fixed effects of herd-test-day (HTD), parity, days in milk and breed combination. Results showed that milk protein fractions were influenced by HTD, stage of lactation, parity and breed combination. The increase in protein concentration during lactation was due in particular to β-casein (β-CN), α S1-CN and β-lactoglobulin (β-LG). The higher protein content of primiparous milk was mainly due to higher concentrations of all casein fractions. The milk from crossbred cows had higher contents and proportions of κ-CN and α-lactalbumin (α-LA), lower proportions of β-LG and greater proportion of caseins/smaller in whey proteins on milk true protein than purebred HO. The three-way crossbreds differed from two-way crossbreds only in having greater proportions of α-LA in their milk. Of the three-way crossbreds, the SR sired cows yielded milk with a smaller content and proportion of β-LG than the MO sired cows, and, consequently, a higher proportion of caseins than whey proteins. Results from this study support the feasibility of using crossbreeding programs to alter milk protein profiles with the aim of improving milk quality and cheese-making properties.

摘要

本研究旨在分析纯种和杂交奶牛的牛奶蛋白组成,并估计个体变异源对所研究性状的影响。从意大利北部的三个商业农场收集了 505 头奶牛的牛奶样本,其中一些源自杂交计划,尽管大多数是纯种荷斯坦牛(HO)。基本的杂交方案是使用瑞典红牛(SR)精液对 HO 牛进行三品种轮换系统(SR×HO),使用蒙贝利亚德(MO)精液对 SR×HO 牛进行杂交(MO×(SR×HO)),然后再次使用 HO 精液对 MO×(SR×HO)牛进行杂交。每个牛群中都有少量纯种 HO 牛进行了交配,交配顺序颠倒(MO×HO 和 SR×(MO×HO))或使用棕色瑞士牛(BS)公牛(BS×HO),然后是 MO 公牛(MO×(BS×HO))。通过反相高效液相色谱法分析牛奶样品,以获得蛋白质分数(g/l)和比例(总真蛋白的%)。使用线性模型分析性状,该模型包括牛场-测试日(HTD)、胎次、泌乳天数和品种组合的固定效应。结果表明,牛奶蛋白组分受 HTD、泌乳阶段、胎次和品种组合的影响。泌乳期间蛋白质浓度的增加主要归因于β-酪蛋白(β-CN)、α S1-酪蛋白和β-乳球蛋白(β-LG)。初产牛奶的蛋白质含量较高主要是由于所有酪蛋白分数的浓度较高。与纯种 HO 相比,杂交奶牛的牛奶中κ-CN 和α-乳白蛋白(α-LA)的含量和比例较高,β-LG 的比例较低,酪蛋白/乳清蛋白的比例较大,真蛋白中的乳清蛋白比例较大。三品种杂交牛与两品种杂交牛的不同之处仅在于其牛奶中α-LA 的比例较大。在三品种杂交牛中,SR 公牛的牛奶中β-LG 的含量和比例低于 MO 公牛的牛奶,因此,酪蛋白的比例高于乳清蛋白。本研究的结果支持使用杂交计划来改变牛奶蛋白谱的可行性,目的是改善牛奶质量和奶酪制作特性。

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