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Collection frequency affects percent Y-chromosome bearing sperm, sperm head area and quality of bovine ejaculates

机译:采集频率影响Y染色体精子百分率,精子头部面积和牛精液的质量

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This study evaluated the percentage of Y-chromosome bearing spermatozoal (%Y-CBS) variation from ejaculates within individual males using two experiments. In the first experiment, six ejaculates were taken from each of five sexually rested (>30 days) Holstein bulls. Ejaculates were processed separately and stored in liquid nitrogen. From each ejaculate, five straws were thawed and equal sperm number, pooled samples were constructed using hemacytometer counts. Individual ejaculate DNA samples were extracted and quantified by spectroscopy. AY-chromosome specific segment was amplified by polymerase chain reaction (PCR) and the product separated by gel electrophoresis. Ethidium bromide stained bands were detected by image analysis and equated to a 50 %Y-CBS pool. In the second experiment (91 days), two ejaculates were collected from sexually rested (>21 days) bulls weekly and two ejaculates were collected from bulls every 21 days. Specific Y-chromosome (SRY) and X-chromosome (factor IX, F9) sperm DNA was amplified by PCR and the products separated by gel electrophoresis. Ethidium bromide stained bands were detected by image analysis and compared to a standard curve constructed from pure SRY and F9 PCR product. The log ratio (SRY/F9) of the corrected intensity densities were used to estimate the percent Y-chromosome DNA bearing spermatozoa (%Y-CDBS) in each ejaculate using inverse regression procedures. In Experiment 1, ejaculate differences for the first collection ranged from 17 to 71 %Y-CBS. Differences remained large for the second ejaculates and lessened for the third and fourth collections. Differences were least for the last two collections. Sperm head area also fluctuated. In Experiment 2, collection frequency affected the pattern of %Y-CDBS response. In bulls collected weekly, %Y-CDBS changed in a sinusoid fashion with a period of about 13.5 days. For bulls collected on a 21-day interval, %Y-CDBS ejaculate differences were high in the first ejaculate after sexual rest. Maximization of %Y-CDBS variation between ejaculate and its identification by PCR would allow ejaculate selection to be used to the alter the sex ratio in producers' calf crops.
机译:这项研究使用两个实验评估了男性男性射精中携带Y染色体的精子的百分比(%Y-CBS)。在第一个实验中,从五只性休息时间(> 30天)的荷斯坦公牛中各取走了六个精液。射精分别处理并储存在液氮中。从每个射精中融化五个吸管,并获得相等的精子数量,并使用血球计数器计数收集合并的样本。提取各个射精的DNA样品并通过光谱法定量。通过聚合酶链反应(PCR)扩增AY-染色体特异性节段,并通过凝胶电泳分离产物。通过图像分析检测到溴化乙锭染色的条带,其等于50%Y-CBS库。在第二个实验中(91天),每周从性休息时间(> 21天)的公牛中收集两个精液,每21天从公牛中收集两个精液。通过PCR扩增特异性Y染色体(SRY)和X染色体(因子IX,F9)的精子DNA,并通过凝胶电泳分离产物。通过图像分析检测溴化乙锭染色的条带,并将其与由纯SRY和F9 PCR产物构建的标准曲线进行比较。使用逆回归程序,使用校正后的强度密度的对数比(SRY / F9)估算每个射精中带有精子的Y染色体DNA的百分比(%Y-CDBS)。在实验1中,第一个集合的射精差异范围为17-71%Y-CBS。第二个射精之间的差异仍然很大,而第三和第四个射精之间的差异有所减小。后两个集合的差异最小。精子头部面积也有波动。在实验2中,收集频率影响%Y-CDBS响应的模式。在每周收集的公牛中,%Y-CDBS以正弦形式变化,约13.5天。对于以21天为间隔收集的公牛,性休息后的第一次射精中%Y-CDBS的射精差异较高。射精之间的%Y-CDBS变化最大,通过PCR鉴定,可使射精选择用于改变生产者犊牛作物的性别比。

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