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Intra- and interboar variability in flow cytometric sperm sex sorting

机译:流式细胞术中精子性别分类的种内和种间变异

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To improve the efficiency of porcine sperm sex sorting using flow cytometry, the aims of the present study were to determine the relevance of inter- and intraboar variability in sperm sortability and to evaluate the significance of ejaculate semen characteristics in such variability. In addition, the variability among boars in the ability of sex-sorted spermatozoa to survive liquid storage at 15 degrees C to 17 degrees C was also evaluated. In total, 132 ejaculates collected from 67 boars of different breeds that were housed at an artificial insemination center were used in three experiments. X- and Y-chromosome-bearing sperm were simultaneously separated according to the Beltsville sperm-sorting technology using a high-speed flow cytometer. In the first experiment, interboar variability in the ability of the ejaculated spermatozoa to undergo the flow-based sex-sorting procedure was observed; the ejaculates of nearly 15% of the boars (n = 67) did not exhibit well-defined X- and Y-chromosome-bearing spermatozoa peaks in the histogram, and the ejaculate sperm concentration demonstrated good predictive value for explaining this variation, as indicated by the area under the receiver operating characteristics curve (0.88, P < 0.001). In the second experiment, a certain degree of intraboar variability was observed only in the boars that showed poor sperm sortability (measured according to the presence or not a well-defined split together with sperm sortability parameters) in the first ejaculate (n = 3). In contrast, boars classified as having good sperm sortability in the first ejaculate (n = 5) maintained this condition in five ejaculates collected over the subsequent 5 months. In the third experiment, sex-sorted spermatozoa from boars with good sperm sortability (n = 5) remained viable and motile (above 70% in all boars) after 48 hours of storage at 15 degrees C to 17 degrees C, which may facilitate the commercial application of sex-sorted spermatozoa in swine artificial insemination programs.
机译:为了提高使用流式细胞仪对猪精子进行性别分选的效率,本研究的目的是确定公猪之间和公猪内部变异性与精子分类性的相关性,并评估射精的精液特性在这种变异性中的重要性。另外,还评估了公猪之间性别排序的精子在15℃至17℃下存活液体的能力的变异性。在三个实验中,总共使用了从人工授精中心饲养的67个不同品种的公猪收集的132精液。使用贝尔特斯维尔精子分选技术,使用高速流式细胞仪同时分离带有X和Y染色体的精子。在第一个实验中,观察到射精后的精子进行基于流的性别分选程序的能力之间的变异。如所示,将近15%的公猪的射精(n = 67)在直方图中未显示出明确定义的含X和Y染色体的精子峰,并且射精的精子浓度对解释这种变异表现出良好的预测价值接收器工作特性曲线下的面积(0.88,P <0.001)。在第二个实验中,仅在第一次射精中表现出一定程度的公猪内部变异性,这些公猪表现出较差的精子分选能力(根据精子的可分性参数确定是否存在分裂)(n = 3) 。相比之下,在第一个射精中被归类为具有良好精子分选能力的公猪(n = 5)在随后的5个月内收集的5个射精中保持了这种状态。在第三个实验中,将具有良好精子分选能力(n = 5)的公猪按性别分选的精子在15摄氏度至17摄氏度的温度下储存48小时后仍保持活力和活动能力(在所有公猪中占70%以上)。按性别分类的精子在猪人工授精程序中的商业应用。

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