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Effects of novel single nucleotide polymorphisms of the FSH beta-subunit gene on semen quality and fertility in bulls

机译:FSHβ-亚基基因的新型单核苷酸多态性对公牛精液质量和受精能力的影响

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The follicle-stimulating hormone (FSH) acts on the Sertoli cells in the seminiferous tubules of the testis and regulates spermatogenesis up to the secondary spermatocyte stage. This study aimed to investigate molecular genetic characteristics of the bovine FSH o-subunit gene (FSHB) and elucidate the effects of single nucleotide polymorphisms (SNPs) of FSHB on the quality of fresh and frozen semen and on fertility in bulls. We used polymerase chain reaction single-strand conformation polymorphism (PCR-SSCP) and sequencing of the FSHB gene in 56 bulls belonging to three breeds. We identified 13 substitutions and 1 insertion in the upstream regulation region and in the coding region of exon 3, which were all linked together. Bioinformatics analysis suggested that mutations of the 5'-upstream regulation region altered the binding sites for transcription factors, and radioimmunoassay demonstrated that mutations may result in alterations in the serum FSH concentrations. The least-squares analysis revealed that bulls with this genotype exhibited a significantly lower sperm concentration in fresh semen and a lower percentage of acrosome integrity in both fresh and frozen semen (P <0.05). These bulls also exhibited a significantly higher percentage of sperm deformity in fresh semen (P <0.05), which was more pronounced in frozen semen (P <0.01), and a significantly lower sperm motility in frozen semen (P <0.05). For fertility evaluation, the nonreturn rates obtained from 14,416 inseminations with the analyzed batches revealed that bulls with this genotype showed significantly lower nonreturn rates (P <0.05). In other words, bulls with this genotype exhibited lower semen quality, poor freeze resistance, and lower fertility. These results suggest that the SNPs in bovine FSHB are associated with semen quality and fertility in bulls.
机译:促卵泡激素(FSH)作用于睾丸生精小管中的支持细胞,并调节精子发生直至第二代精母细胞阶段。这项研究旨在调查牛FSH o亚基基因(FSHB)的分子遗传学特征,并阐明FSHB的单核苷酸多态性(SNP)对新鲜和冷冻精液质量以及公牛生育能力的影响。我们使用聚合酶链反应单链构象多态性(PCR-SSCP)和FSHB基因测序在属于三个品种的56头公牛中。我们在外显子3的上游调控区和编码区中确定了13个取代和1个插入,它们都链接在一起。生物信息学分析表明,5'-上游调控区的突变改变了转录因子的结合位点,放射免疫分析表明,突变可能导致血清FSH浓度的改变。最小二乘分析显示,具有这种基因型的公牛在新鲜精液中的精子浓度明显降低,在新鲜精液和冷冻精液中的顶体完整性百分比较低(P <0.05)。这些公牛在新鲜精液中的精子畸形百分比也显着较高(P <0.05),在冷冻精液中更为明显(P <0.01),在冷冻精液中精子活力明显较低(P <0.05)。为了进行生育力评估,从分析批次的14,416次授精中获得的不re回率显示,具有该基因型的公牛的不re回率显着降低(P <0.05)。换句话说,具有这种基因型的公牛表现出较低的精液质量,较差的抗冻性和较低的生育力。这些结果表明,牛FSHB中的SNP与公牛的精液质量和生育能力有关。

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