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Chromatin integrity of ram spermatozoa. Relationships to annual fluctuations of scrotal surface temperature and temperature-humidity index

机译:ram精子的染色质完整性。与阴囊表面温度和温湿度指数年波动的关系

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摘要

The objective of the present study was to explore the potential relationships of ovine sperm chromatin integrity, quantified using the sperm chromatin structure assay (SCSA), to the heat load of the scrotum and the discomfort felt by the animals because of fluctuations of microclimatic factors at different time periods before ejaculation. Ejaculates were collected once per week from five Chios rams and four East Friesian rams for 12 months and stored in liquid nitrogen. Frozen-thawed semen samples were analyzed using the SCSA, to determine the DNA fragmentation index (DFI) and the percentage of cells outside the main sperm population (%DFI) in each one of the samples. Scrotal surface temperature (SST) of each ram was measured using an infrared thermometer on a daily basis. Ambient air temperature and relative humidity were recorded at hourly intervals throughout the experimental period and temperature-humidity index (THI) was used to assess the discomfort felt by the rams. Mean values of SST (SST mean) and THI (THI mean) were computed for eight different time periods (up to 61 days) preceding each ejaculation day (Day 0). A linear mixed-effect model analysis was performed to describe the relation of SCSA parameters to collection month, SST mean, and THI mean of different time periods before ejaculation. The results of the statistical analysis revealed a relation of %DFI to the SST mean of the last 12 days preceding ejaculation, namely the period that resembled the phase of epididymal maturation. On the contrary, the variation of DFI was most adequately described by the linear mixed-effect model applied for Days 54 to 48 before ejaculation, which resembled the phase of spermatogonial mitoses. The effect of collection month was significant for DFI and %DFI, with semen samples collected in September and February exhibiting the lowest DFI values; a less profound seasonal pattern was detected for %DFI. The effect of THI mean on DFI and %DFI was proven nonsignificant in regard to all time periods. In conclusion, a relation of SCSA parameters to SST mean of different periods before ejaculation was shown in the present study, implying an effect of scrotal microenvironment on intratesticular and epididymal sperm population. In contrast, we failed to detect any effect of microclimate-induced discomfort felt by the animals on the chromatin integrity of frozen-thawed ram spermatozoa.
机译:本研究的目的是探索通过使用精子染色质结构测定法(SCSA)量化的绵羊精子染色质完整性与阴囊的热负荷和动物由于微气候因素波动而感到不适的潜在关系。射精前的不同时间段。每周一次从五只希俄斯公羊和四只东弗里斯兰公羊中收集精液,历时12个月,并储存在液氮中。使用SCSA分析冷冻解冻的精液样品,以确定每个样品中的DNA碎片指数(DFI)和主要精子群体以外的细胞百分比(%DFI)。每天使用红外线温度计测量每个柱塞的阴囊表面温度(SST)。在整个实验期间,每隔一小时记录一次周围的空气温度和相对湿度,并使用温度-湿度指数(THI)评估公羊感觉不到的不适。在每个射精日(第0天)之前的八个不同时间段(最长61天)内计算SST(SST平均值)和THI(THI平均值)的平均值。进行了线性混合效应模型分析,以描述射精前不同时间的SCSA参数与采集月份,SST平均值和THI平均值的关系。统计分析的结果表明,%DFI与射精前最后12天的SST平均值之间的关系,即与附睾成熟期相似的时期。相反,射精前第54至48天的线性混合效应模型最能充分描述DFI的变化,该模型类似于精原细胞有丝分裂的阶段。采集月份对DFI和%DFI的影响显着,9月和2月采集的精液样品显示出最低的DFI值。检测到%DFI的季节变化不太深。在所有时间段内,THI平均值对DFI和%DFI的影响均被证明不显着。综上所述,本研究显示了SCSA参数与射精前不同时期SST平均值的关系,暗示了阴囊微环境对睾丸内和附睾精子群体的影响。相反,我们未能检测到动物因微气候引起的不适对冷冻融化的公羊精子染色质完整性的影响。

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