Department of Biotechnology, Ministry of Science and Technology, Government of India, New Delhi, India.
Dairy Cattle Breeding Division, National Dairy Research Institute, Karnal, India.
Theriogenology. 2014 Feb;81(3):474-80. doi: 10.1016/j.theriogenology.2013.11.002. Epub 2013 Nov 11.
The decline in the male reproductive ability in terms of sexual behavior and seminal traits might lead to nonavailability of required number of bulls in a progeny testing program. The present study was conducted in 493 crossbred cattle (Bos taurus × Bos indicus) bulls to study polymorphisms of growth hormone (GH) gene and its association with seminal and sexual behavioral characteristics. A 428-base pair fragment of GH gene spanning over the fourth exon, fourth intron, and fifth exon was amplified and digested with AluI restriction enzyme. Bulls were found to be polymorphic, with two variants, LL and LV, and higher genotypic frequency for LL being 0.88. Twelve nucleotide changes and a single nonsynonymous substitution of Leucine by Valine were observed from GH1 (L) to GH2 (V). Statistical analysis revealed that the genotype of the GH gene had a significant effect on libido score, reaction time, Flehmen response, requirement of mounting stimulus, sperm mass activity, number of semen doses per collection, individual fresh sperm motility, postthaw sperm motility, acrosome integrity, hypo-osmotic swelling test, live and dead count, total morphological abnormality, and head abnormality of sperm in crossbred bulls. Growth hormone gene might be considered a candidate gene for seminal and sexual behavioral traits in crossbred cattle.
从性行为和精液特征方面来看,雄性生殖能力的下降可能会导致在后代测试计划中无法获得所需数量的公牛。本研究在 493 头杂交肉牛(Bos taurus×Bos indicus)公牛中进行,以研究生长激素(GH)基因的多态性及其与精液和性行为特征的关系。扩增了跨越第四外显子、第四内含子和第五外显子的 GH 基因的 428 碱基对片段,并使用 AluI 限制酶进行消化。发现公牛具有多态性,存在两种变体 LL 和 LV,LL 的基因型频率较高,为 0.88。从 GH1(L)到 GH2(V)观察到 12 个核苷酸变化和单个亮氨酸到缬氨酸的非同义取代。统计分析表明,GH 基因的基因型对性欲评分、反应时间、Flemen 反应、交配刺激需求、精子质量活性、每次采集的精液剂量数、个体新鲜精子活力、解冻后精子活力、顶体完整性、低渗肿胀试验、活死精子计数、总形态异常和精子头部异常有显著影响。生长激素基因可能被视为杂交肉牛精液和性行为特征的候选基因。