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Assessment of sperm quality through fluorometry and sperm chromatinstructure assay in relation to field fertility of frozen-thawed semen fromSwedish AI bulls

机译:通过荧光法和精子染色质结构测定法评估与瑞典AI公牛冻融精液的田间肥力有关的精子质量

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We investigated fluorometry to study sperm viability and flow cytometry to study sperm chromatin structure. We also assessed sperm quality after thawing relative to field fertility after AI as shown by 56-day non-return rates (56-d NRR), Frozen-thawed semen samples were obtained from 20 Swedish Red and White bulls (1 to 3 semen batches/bull) and the fertility data were based on 6,369 AIs. Fluorometry enabled simultaneous detection of sperm viability and concentration in Hoechst 33258-stained semen samples. Sperm chromatin structure assay (SCSA) evaluated denaturability of sperm nuclear DNA in situ after acid treatment, The intensity of fluorescence in non-permeabilized samples was negatively( r= -0.60, P < 0.001) correlated with microscopically-assessed sperm viability, and the fluorescence of permeabilized semen samples significantly (r = 0.67, P < 0.001) correlated with sperm concentration as assessed by hemocytometry. From the fluorescence output, the calculated percentage of damaged cells was negatively (r = -0.71, P < 0.001) correlated with the number of live cells derived from the microscopic assessment of sperm viability and concentration. This variable was significantly correlated with fertility results both at batch (r = -0.39, P < 0.05), and bull (r = -0.57, P < 0.01) levels. The SCSA variables SD alphat and COMP alphat were significantly (r = -0.59-0.64, P < 0.001) correlated with sperm viability variables after thawing but only the COMP alphat correlated significantly (r = -0.53, P < 0.05) with fertility results and solely at the bull level. The results indicate that fluorometric assessment is in good agreement with other practiced procedures and can be performed with sufficient accuracy. The SCSA may be a valuable complement for routinely practiced microscopic evaluation of sperm morphology of Al bull semen (
机译:我们调查了荧光法以研究精子的生存能力,并进行了流式细胞术以研究精子的染色质结构。我们还评估了AI融化后相对于田间肥力后的精子质量,如56天的非返还率(56 d NRR)所示,冻融的精液样本是从20头瑞典红公牛和白公牛(1-3批精液)中获得的/牛)和生育率数据基于6,369个认可机构。荧光分析法可以同时检测Hoechst 33258染色精液样品中的精子活力和浓度。精子染色质结构测定(SCSA)评估了酸处理后原位精子核DNA的变性,未透化样品中的荧光强度与显微镜评估的精子活力呈负相关(r = -0.60,P <0.001),并且通过血细胞计数评估,透化的精液样品的荧光显着(r = 0.67,P <0.001)与精子浓度相关。从荧光输出,受损细胞的计算百分比与从精子生存力和浓度的微观评估得出的活细胞数量负相关(r = -0.71,P <0.001)。该变量与批量(r = -0.39,P <0.05)和公牛(r = -0.57,P <0.01)水平下的生育力结果均显着相关。解冻后SCSA变量SD alphat和COMP alphat与精子生存力变量显着相关(r = -0.59-0.64,P <0.001),但只有COMP alphat与生育力结果显着相关(r = -0.53,P <0.05)仅在牛市水平。结果表明,荧光评估与其他实践程序非常吻合,并且可以足够准确地进行。 SCSA可能是常规实践中对公牛精液的精子形态进行显微镜评估的有价值的补充(

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