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Effects of freezing/thawing on motile sperm subpopulations of boar and donkey ejaculates.

机译:冷冻/解冻对公猪和驴射精的运动精子亚群的影响。

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The main aim of this study is to assess the influence of freeze/thawing on motile sperm subpopulations in ejaculates from two phylogenetically different mammalian species, boar and donkey. Our results indicate that, whereas boar and donkey sperm respond very differently in their mean motion characteristics to freezing/thawing, this process did not change the existence of a 4-subpopulations structure in the ejaculates in either species when these subpopulations were defined by taking values of curvilinear velocity (VCL) as reference. Moreover, the freezing/thawing-linked changes in mean sperm-motion characteristics in both boar and donkey semen were especially due to changes in the proportion among each concrete subpopulation. In this way, the freezing/thawing-induced mean increase in motion characteristics observed in boar sperm was a result of the decrease in the percentage of sperm in Subpopulation 1 (from 53.9%+/-4.7% to 31.2%+/-3.9% after thawing) and a concomitant increase of sperm from Subpopulations 3 (from 13.3%+/-2.5% to 32.6%+/-3.9% after thawing) and 4 (from 3.4%+/-0.9% to 8.0%+/-1.1% after thawing). On the contrary, changes in mean motility of frozen/thawed donkey sperm were linked to an increase in the percentage of sperm in Subpopulation 1 (from 31.5%+/-4.3% to 58.8%+/-4.9% after thawing) and a concomitant decrease of sperm from Subpopulations 3 (from 32.4%+/-3.2% to 6.6%+/-1.8% after thawing) and 4 (from 12.2%+/-2.5% to 7.3%+/-1.9% after thawing). In conclusion, our results seem to indicate that motility changes induced by the freezing/thawing protocol are linked to concomitant changes in both the specific parameters and, more importantly, to the specific percentage of each of the motile sperm subpopulations. These changes did not affect the overall proportion of motile sperm present in both boar and donkey, which is conserved despite the detrimental effect caused by freezing/thawing in both species. Finally, the presence of some kind of motile sperm subpopulations structure has been described in mammalian species with a very great phylogenetic distance, thus suggesting that this structure could play some role in the maintenance of the overall function of mammalian ejaculates.
机译:这项研究的主要目的是评估冷冻/解冻对两种系统发育不同的哺乳动物公猪和驴的射精中运动精子亚群的影响。我们的结果表明,尽管公猪和驴精子对冷冻/融化的平均运动特性有很大不同,但当通过取值来定义这些亚种群时,该过程并未改变任一物种的射精中4-亚种群结构的存在。曲线速度(VCL)的参考。此外,公猪和驴精液中平均精子运动特性的冻融相关变化尤其是由于每个混凝土亚群中比例的变化所致。这样,在公猪精子中观察到的冻融诱导的运动特征平均增加是亚群1中精子百分比减少的结果(从53.9%+ /-4.7%降至31.2%+ /-3.9%解冻后)和亚群3(解冻后从13.3%+ /-2.5%增至32.6%+ /-3.9%)和4(从3.4%+ /-0.9%增至8.0%+ /-1.1)的精子同时增加(解冻后的百分比)。相反,冷冻/解冻后的驴精子的平均运动能力的变化与亚群1中精子百分比的增加(解冻后从31.5%+ /-4.3%增至58.8%+ /-4.9%)有关。亚群3(解冻后从32.4%+ /-3.2%降至6.6%+ /-1.8%)和4(解冻后从12.2%+ /-2.5%降至7.3%+ /-1.9%)精子减少。总之,我们的结果似乎表明,由冷冻/解冻方案引起的运动力变化与特定参数的伴随变化相关,更重要的是,与每个运动精子亚群的特定百分比相关。这些变化并没有影响公猪和驴中运动精子的总体比例,尽管这两种物种都因冷冻/解冻而产生了不利影响,但这种保守性得到了保护。最后,已经描述了某种动植物精子亚群结构的存在,在系统进化距离非常远的哺乳动物物种中,因此表明该结构在维持哺乳动物射精的整体功能中可以发挥某些作用。

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