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The effect of age, interval collection and season on selected semen parameters and prediction of AI boars productivity

机译:年龄,间隔收集和季节对选择精液参数的影响及AI公猪生产力的预测

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The possibility of planning the production level has a special importance for AI stations, and its inaccuracy should be minimized by eliminating the factors differentiating the quantity and quality of the ejaculate. The aim of the study was to determine the effect of age, collection interval and season on selected quantitative and qualitative semen parameters and to develop equations for estimating production capacity for AI stations. The study included 48 117 ejaculates. Experimental groups were created according to: age of boar (8-9, 10-12, 13-18, 19-24, 25-30, > 30 months), collection interval (2, 3, 4, 5, 6, 7, 8 days), and season (Winter, Spring, Summer, Autumn). Selected quantitative and qualitative parameters were analyzed: semen volume (ml), spermatozoa concentration (x 10(6) ml(-1)), total number of spermatozoa in ejaculate (x 10(9)), number of motile spermatozoa in ejaculate (x 109), and number of insemination doses obtained from one ejaculate (n). The most important role in shaping the results was played by interactions. The highest semen volumes were achieved for the oldest boars after 7-day interval collection during Autumn (about 300 ml). Interestingly, the lowest semen volumes were also noted during Autumn from the youngest boars after 1-2 and 7-day interval collection (a little over 160 ml). The highest spermatozoa concentrations (515 x 10(6) ml(-1)) were observed in Autumn for 10-12 month-old boars with the longest interval collection, which clearly demonstrates the positive impact of long resting on young boars. The lowest spermatozoa concentrations - below 300 x 10(6) ml(-1)- were reported for the oldest boars after 1-2 and 3-day collection intervals. The highest total number of spermatozoa in ejaculate and motile spermatozoa were noted during the longest collection interval in Winter at the ages of 13-18 months and 25-30 months, while the lowest occurred in the same season with a short interval from the 10-12 month boars. Almost all correlations were statistically proven at the level of P = 0.05 and P = 0.01, except for the correlation between the number of motile spermatozoa and the age of boars. Developed regression equations enable, with a high degree of accuracy, the estimation of the selected ejaculate parameters on the basis of age, collection interval and season. The solution proposed in the article is a useful tool, especially for AI stations or large farms with a high rate of boars producing semen for AI. AI stations assessing the long-term production capacity of boars should take into account the factors examined in this study. Underestimation of the interaction may, in fact, reduce the number of insemination doses by up to 5 portions of a single ejaculate.
机译:规划生产水平的可能性对AI站具有特殊重要性,并且通过消除区分射精的数量和质量来最小化其不准确。该研究的目的是确定年龄,收集间隔和季节对所选择的定量和定性精液参数的影响,以及开发用于估算AI站的生产能力的方程。该研究包括48117 eCaculates。实验组根据:野猪年龄(8-9,10-12,13-18,19-24,25-30,> 30个月),收集间隔(2,3,4,5,6,7 ,8天)和季节(冬天,春天,夏天,秋天)。分析了所选的定量和定性参数:精液体积(ml),精子浓度(x 10(6)ml(-1)),射精中的精子总数(x 10(9)),射精中的电机精子数量( X 109),从一个射精(N)中获得的授精剂量的数量。塑造结果中最重要的作用是通过互动扮演的。在秋季期间7天间隔收集后最古老的公猪可以实现最高的精液卷。有趣的是,在1-2和7天间隔收集后的最年轻的公猪中,还注意到了最低的精液体积。在秋季观察到最高精子浓度(515×10(6)ml(-1)),以10-12个月的公猪,最长的间隔收集,这清楚地展示了长时间休息对年轻公猪的积极影响。最低精子浓度 - 低于300×10(6)毫升(-1) - 在1-2和3天收集间隔后最古老的公猪报告。在冬季最长的收集间隔期间,在13-18个月和25-30个月的冬季最长的收集间隔期间注意到射精和动机精子的总数最高,而最低发生在同一季节,从10- 12个月的公猪。几乎所有相关性在统计上被证明在P& 0.05和p& = 0.01之外,除了动机精子数与公猪年龄之间的相关性。开发的回归方程使得具有高精度,基于年龄,集合间隔和季节的所选射精参数的估计。本文中提出的解决方案是一种有用的工具,特别是对于AI站或大型农场,具有高猪的Sequen用于AI。评估公猪长期生产能力的AI站应考虑到本研究中检测的因素。实际上,低估相互作用可能会将授精剂量的数量减少到5次射精中。

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