Cahyadi Muhammad, Hasan Ammar Ibnu, Sakti Djorodjatun Samodro, Nissa Nasta 'Ainun, Pramono Ahmad, Firmanto Suryo, Friyatna Rizwan Nur, Volkandari Slamet Diah, Sudrajad Pita
Department of Animal Science, Universitas Sebelas Maret, Surakarta, Jawa Tengah 57126, Indonesia.
PT Ultra Peternakan Bandung Selatan, Pangalengan, Kabupaten Bandung, Jawa Barat 40378, Indonesia.
Vet World. 2024 Oct;17(10):2304-2310. doi: 10.14202/vetworld.2024.2304-2310. Epub 2024 Oct 17.
Milk physicochemical properties play essential role in the milk processing industry, which are moderately to highly affected by genetic factors. This study aimed to evaluate the association between single nucleotide polymorphisms in POU class 1 homeobox 1 () and the physicochemical properties of milk in high-producing Holstein Friesian (HF) cows.
A total of 149 high-producing dairy cows from PT Ultra Peternakan Bandung Selatan was included in this study. The physicochemical properties of milk, including density, freezing point, pH, lactose, solid non-fat, protein, and ash content, were determined. Moreover, three polymorphisms within the exon regions of (c.195G>A, c.300G>T, and c.828G>A) were analyzed using polymerase chain reaction-restriction fragment length polymorphism. The association between these polymorphisms and the physicochemical properties of milk was determined using a mixed-effects model analysis, in which the lactation period was used as a covariate.
This study found that two polymorphisms, c.195G>A and c.828G>A, significantly affected the pH of fresh milk. Cows with both the GG genotypes c.195G>A and c.828G>A had lower milk pH values than those with the other genotypes. In addition, a non-significant effect of was observed on the other physicochemical properties of milk.
Two polymorphisms determined the pH of fresh milk in the Indonesian HF population. These are potential marker candidates for milk pH that directly affect the development of dairy products in the milk processing industry.
牛奶的物理化学性质在牛奶加工业中起着至关重要的作用,这些性质受到遗传因素的中度到高度影响。本研究旨在评估第1类同源盒基因1(POU1F1)单核苷酸多态性与高产荷斯坦弗里生(HF)奶牛牛奶物理化学性质之间的关联。
本研究纳入了来自万隆南区PT Ultra Peternakan的149头高产奶牛。测定了牛奶的物理化学性质,包括密度、冰点、pH值、乳糖、非脂固形物、蛋白质和灰分含量。此外,使用聚合酶链反应-限制性片段长度多态性分析了POU1F1外显子区域内的三个多态性(c.195G>A、c.300G>T和c.828G>A)。使用混合效应模型分析确定这些多态性与牛奶物理化学性质之间的关联,其中泌乳期用作协变量。
本研究发现,c.195G>A和c.828G>A这两个多态性显著影响新鲜牛奶的pH值。c.195G>A和c.828G>A均为GG基因型的奶牛,其牛奶pH值低于其他基因型的奶牛。此外,观察到POU1F1对牛奶的其他物理化学性质没有显著影响。
两个POU1F1多态性决定了印度尼西亚HF群体中新鲜牛奶的pH值。这些是牛奶pH值的潜在候选标记,直接影响牛奶加工业中乳制品的开发。