Detection of two SNPs of the LIPE gene in Holstein-Friesian cows with divergent milk production.

IF 1.6 3区 农林科学 Q2 AGRICULTURE, DAIRY & ANIMAL SCIENCE
Journal of Dairy Research Pub Date : 2023-08-01 Epub Date: 2023-08-24 DOI:10.1017/S002202992300050X
Seham El-Kassas, Haitham G Abo-Al-Ela, Esraa Abdulraouf, Mohamed Atef Helal, A M Sakr, Safaa E Abdo
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引用次数: 0

Abstract

The LIPE gene (lipase E, hormone-sensitive type), also known as hormone-sensitive lipase, acts as a primary regulator of lipid metabolism during lactation in cows. We studied a total of two hundred Holstein-Friesian cows and performed sequencing analysis that revealed two synonymous nucleotide changes within the LIPE gene: a transition change, c.276 T > C in exon 2 (g.50631651 T > C; position 351 of GenBank: ON638900) and a transversion change, c.219C > A in exon 6 (g.50635369C > A; position 1070 of GenBank: ON638901). The observed genotypes were TC and CC for the c.276 T > C SNP and CC and CA for the c.219C > A SNP. Notably, the heterozygous TC genotype of the T351C SNP exhibited a significant association with high milk yield. Furthermore, the T351C SNP displayed significant associations with various milk parameters, including temperature, freezing point, density and the percentages of fat, protein, lactose, solids and solids-not-fat, with the homozygous CC genotype showing higher values. The c.219C > A SNP also demonstrated a significant association with milk composition, with heterozygous genotypes (CA) exhibiting higher percentages of fat, protein, and lactose compared to homozygous genotypes (CC). This effect was consistent among both high and low milk producers for fat and lactose percentages, while high milk producers exhibited a higher protein percentage than low milk producers. These findings highlight the importance of considering the detected SNPs in marker-assisted selection and breeding programs for the identification of high milk-producing Holstein-Friesian cows and potentially other breeds. Moreover, this study strongly supports the fundamental role of the LIPE gene in milk production and composition in lactating animals.

产奶量不同的荷斯坦-弗里斯奶牛LIPE基因两个SNPs的检测。
LIPE基因(脂肪酶E,激素敏感型),也称为激素敏感型脂肪酶,是奶牛泌乳期间脂质代谢的主要调节因子。我们研究了总共200头荷斯坦-弗里斯奶牛,并进行了测序分析,揭示了LIPE基因中的两个同义核苷酸变化:外显子2中的转换变化c.276 T>c(g.50631651 T>c;GenBank的351位:ON638900)和外显子6中的颠换变化c.219C>a(g.50635369C>a;GenBank:ON638901的1070位)。观察到的基因型为c.276 T>c SNP的TC和CC,c.219C>A SNP的CC和CA。值得注意的是,T351C SNP的杂合TC基因型与高产奶量显著相关。此外,T351C SNP与各种牛奶参数显示出显著的相关性,包括温度、冰点、密度和脂肪、蛋白质、乳糖、固体和非脂肪固体的百分比,纯合CC基因型显示出更高的值。c.219C>A SNP也显示出与牛奶成分的显著相关性,与纯合基因型(CC)相比,杂合子基因型(CA)表现出更高的脂肪、蛋白质和乳糖百分比。这种影响在高奶生产者和低奶生产者中的脂肪和乳糖百分比是一致的,而高奶生产者比低奶生产者表现出更高的蛋白质百分比。这些发现强调了在标记辅助选择和育种计划中考虑检测到的SNPs对于鉴定高产荷斯坦-弗里斯奶牛和潜在的其他品种的重要性。此外,本研究有力地支持了LIPE基因在泌乳动物乳汁生产和组成中的基本作用。
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来源期刊
Journal of Dairy Research
Journal of Dairy Research 农林科学-奶制品与动物科学
CiteScore
3.80
自引率
4.80%
发文量
117
审稿时长
12-24 weeks
期刊介绍: The Journal of Dairy Research is an international Journal of high-standing that publishes original scientific research on all aspects of the biology, wellbeing and technology of lactating animals and the foods they produce. The Journal’s ability to cover the entire dairy foods chain is a major strength. Cross-disciplinary research is particularly welcomed, as is comparative lactation research in different dairy and non-dairy species and research dealing with consumer health aspects of dairy products. Journal of Dairy Research: an international Journal of the lactation sciences.
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