Li Mingxun, Gao Qisong, Wang Mengqi, Liang Yan, Sun Yujia, Chen Zhi, Zhang Huimin, Karrow Niel A, Yang Zhangping, Mao Yongjiang
Key Laboratory of Animal Genetics & Breeding and Molecular Design of Jiangsu Province, Yangzhou University, Yangzhou 225009, China.
Joint International Research Laboratory of Agriculture and Agri-Product Safety of Ministry of Education of China, Yangzhou University, Yangzhou 225009, China.
Animals (Basel). 2020 Apr 12;10(4):671. doi: 10.3390/ani10040671.
This study investigated the single nucleotide polymorphisms (SNPs) of Fatty acid desaturase 2 () gene and further explored their genetic effects on conventionally collected milk production traits in Chinese Holstein cows using 18,264 test-day records of 841 cows. One missense mutation c. 908 C > T (SNP site in the complementary DNA sequence), which caused an amino acid change from alanine to valine (294Ala > Val), and two 3' untranslated region (UTR) SNPs, c.1571 G > A and c.2776 A > G were finally identified. The SNP c.908 C > T was significantly associated with test-day milk yield, fat percentage and 305-day milk, fat and protein yield. In particular, the T allele of the SNP c.908 C > T showed a significant association with decreased somatic cell score (SCS) in the investigated population. Significant relationship between the SNP c.1571 G > A and 305-day milk yield showed that genotype GG was linked to the highest milk yield. Substituting the allele G for A at the c.2776 A > G locus resulted in a decrease of protein percentage. Our results demonstrated that was an interesting candidate for selection to increase milk production and improve resistance against mastitis.
本研究利用841头奶牛的18264条测定日记录,对脂肪酸去饱和酶2(FAD2)基因的单核苷酸多态性(SNP)进行了研究,并进一步探讨了它们对中国荷斯坦奶牛常规采集的产奶性状的遗传效应。最终鉴定出一个错义突变c.908 C>T(互补DNA序列中的SNP位点),该突变导致氨基酸从丙氨酸变为缬氨酸(294Ala>Val),以及两个3'非翻译区(UTR)SNP,即c.1571 G>A和c.2776 A>G。SNP c.908 C>T与测定日产奶量、乳脂率以及305天产奶量、乳脂产量和乳蛋白产量显著相关。特别是,SNP c.908 C>T的T等位基因与所研究群体中体细胞评分(SCS)的降低显著相关。SNP c.1571 G>A与305天产奶量之间存在显著关系,表明基因型GG与最高产奶量相关。在c.2776 A>G位点将等位基因A替换为G会导致乳蛋白率降低。我们的结果表明,FAD2是增加产奶量和提高乳腺炎抗性的一个有吸引力的选择候选基因。