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Exploration of the bovine colostrum proteome and effects of heat treatment time on colostrum protein profile

机译:牛初乳蛋白质组的探索及热处理时间对初乳蛋白质谱的影响

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摘要

Heat treatment of colostrum is performed on modern dairy farms to reduce pathogenic contamination before hand-feeding the colostrum to newborn calves; however, limited data are available concerning effects of heat treatment on biologically active proteins in colostrum. The objective of this exploratory study was to investigate effects of heat treatment and length of heat treatment on colostrum protein profile. Colostrum samples were collected from Holstein cows within 12 h after parturition and assigned to the following groups: heat treatment at 60°C for 0 (untreated control), 30, 60, or 90 min. Samples were fractionated using acid precipitation, followed by ultracentrifugation and ProteoMiner (Bio-Rad Laboratories, Hercules, CA) treatment, and tandem-mass tagging was used to comparatively assess the low abundance protein profile. A total of 162 proteins were identified with more than 2 peptides in the low abundance protein enriched fraction. Of these, 62 differed in abundance by more than 2-fold in heat treated samples compared with the unheated control. The majority of proteins affected by heat treatment were involved in immunity, enzyme function, and transport-related processes; affected proteins included lactadherin, chitinase-3-like protein 1, and complement component C9. These results provide a foundation for further research to determine optimum heat treatment practices to ensure newborn calves are fed colostrum-containing proteins with the highest nutritional and biological value.
机译:在现代奶牛场中对初乳进行热处理以减少病原污染,然后再将初乳人工喂给新生犊牛。但是,关于热处理对初乳中生物活性蛋白的影响的可用数据有限。这项探索性研究的目的是研究热处理和热处理时间对初乳蛋白质谱的影响。分娩后12小时内从荷斯坦奶牛收集初乳样品,并将其分为以下几组:60°C热处理0(未处理的对照组),30、60或90分钟。使用酸沉淀法对样品进行分级分离,然后进行超速离心和ProteoMiner(加利福尼亚州Hercules的Bio-Rad实验室)处理,并使用串联质谱标记法比较评估低丰度蛋白质谱。在低丰度蛋白质富集级分中,共鉴定出162种蛋白质和2种以上的肽。在这些样品中,与未加热的对照相比,在经过热处理的样品中,有62个样品的丰度差异超过2倍。受热处理影响的大多数蛋白质都与免疫力,酶功能和运输相关过程有关。受影响的蛋白质包括乳黏附素,几丁质酶-3样蛋白质1和补体成分C9。这些结果为进一步研究确定最佳的热处理方法奠定了基础,以确保给新生的犊牛饲喂具有最高营养和生物学价值的初乳蛋白质。

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