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Computer-assisted sperm morphometry fluorescence-based analysis has potential to determine progeny sex

机译:基于荧光的计算机辅助精子形态测定具有确定子代性别的潜力

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摘要

This study was designed to determine the ability of computer-assisted sperm morphometry analysis (CASA-Morph) with fluorescence to discriminate between spermatozoa carrying different sex chromosomes from the nuclear morphometrics generated and different statistical procedures in the bovine species. The study was divided into two experiments. The first was to study the morphometric differences between X- and Y-chromosome-bearing spermatozoa (SX and SY, respectively). Spermatozoa from eight bulls were processed to assess simultaneously the sex chromosome by FISH and sperm morphometry by fluorescence-based CASA-Morph. SX cells were larger than SY cells on average (P < 0.001) although with important differences between bulls. A simultaneous evaluation of all the measured features by discriminant analysis revealed that nuclear area and average fluorescence intensity were the variables selected by stepwise discriminant function analysis as the best discriminators between SX and SY. In the second experiment, the sperm nuclear morphometric results from CASA-Morph in nonsexed (mixed SX and SY) and sexed (SX) semen samples from four bulls were compared. FISH allowed a successful classification of spermatozoa according to their sex chromosome content. X-sexed spermatozoa displayed a larger size and fluorescence intensity than nonsexed spermatozoa (P < 0.05). We conclude that the CASA-Morph fluorescence-based method has the potential to find differences between X- and Y-chromosome-bearing spermatozoa in bovine species although more studies are needed to increase the precision of sex determination by this technique.
机译:这项研究旨在确定具有荧光的计算机辅助精子形态分析(CASA-Morph)的能力,以区分携带不同性别染色体的精子与生成的核形态学方法以及牛物种中不同的统计程序。该研究分为两个实验。首先是研究带有X和Y染色体的精子(分别为SX和SY)之间的形态学差异。对来自八头公牛的精子进行处理,以通过FISH同时评估性染色体,并通过基于荧光的CASA-Morph评估精子形态。 SX细胞平均大于SY细胞(P <0.001),尽管公牛之间存在重要差异。通过判别分析对所有测量特征的同时评估表明,核面积和平均荧光强度是逐步判别函数分析选择的变量,是SX和SY之间的最佳判别器。在第二个实验中,比较了来自四只公牛的无性(SX和SY混合)和有性(SX)精液样本中CASA-Morph的精子核形态结果。 FISH可以根据其性染色体含量成功分类精子。 X性别的精子比非性别的精子具有更大的大小和荧光强度(P <0.05)。我们得出结论,基于CASA-Morph荧光的方法有可能发现牛物种中X和Y染色体的精子之间的差异,尽管还需要进行更多的研究来提高通过该技术进行性别确定的精度。

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