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Cysteine addition on short-term cooled boar semen preservation and its relationship with swine field fertility

机译:半胱氨酸添加对短期冷却公猪精液的保存及其与猪场肥力的关系

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Artificial insemination is routinely used in the swine industry to reduce the costs of production through to increase the efficiency of the refrigerated boar semen process. The objective of this study was to evaluate the effect of different levels of cysteine (CYS) added to the Beltsville Thawing Solution (BTS) extender semen during cooling for up to 72 hours. Ejaculated from three boars were collected with the gloved-hand technique and semen aliquots were diluted in BTS as follow: BTS only (BTS), BTS + 0.1mM cysteine (CYS0.1), BTS + 0.5mM cysteine (CYS0.5), BTS + 1.0mM cysteine (CYS1.0), BTS + 2.5mM cysteine (CYS2.5), BTS + 5.0mM cysteine (CYS5.0), BTS + 10.0mM cysteine (CYS10.0), and BTS + 20.0mM cysteine (CYS20.0). Evaluation of sperm integrity were analyzed using 0.5mg/ml propidium iodide (plasma membrane), 100μg/ml isothiocynate-conjugated Pisum sativun agglutinin (acrosomal membrane) and 153μM 5,5',6,6'-tetrachloro-1,1',3,3'-tetraethylbenzimidazolyl carbocyanine iodide (mitochondria potential) after semen dilution at specific times (0, 24, 48 and 72 hours). Additionally, we also evaluated the effects of 5.0 mM CYS addition in the BTS extender on the maintenance of sperm quality and their influence on fertility in the swine production. After artificial insemination, animals were evaluated based on the estrous return and the number of piglet's born. Cysteine at concentrations of 10.0 and 20.0mM resulted in more pronounced reductions even at the time zero. Semen viability decreased to levels below 10% at these high levels of CYS in the first 24 hour of storage at 17oC. At the end of the storage time, less than 65% of sperm cells had intact plasma membrane in all groups. The sperm viability decreased significantly when the semen was added at high concentrations of CYS (time "0"; CYS10.0 and CYS20.0; p<0.05), when compared to the other CYS concentrations. The BTS (10.20±0.39) treated group showed a lower rate of estrus return when compared to other (BTSCYS; 86.05±039), and it showed also the highest total number of piglets borne per treatment (12.71±3.38 vs. 9.00±3.38, respectively). In conclusion, the addition of CYS in the BTS semen extender did not maintain spermatic viability of boar cooled spermatozoa and it results in a higher percentage of return to estrus and lower number of piglets borne.
机译:养猪业通常使用人工授精来降低生产成本,以提高冷藏公猪精液的效率。这项研究的目的是评估在冷却长达72小时的过程中,添加到Beltsville解冻液(BTS)补充精液中的不同水平的半胱氨酸(CYS)的效果。使用手套技术从三头公猪中射出,按以下方式在BTS中稀释精液:BTS仅BTS,BTS + 0.1mM半胱氨酸(CYS0.1),BTS + 0.5mM半胱氨酸(CYS0.5), BTS + 1.0mM半胱氨酸(CYS1.0),BTS + 2.5mM半胱氨酸(CYS2.5),BTS + 5.0mM半胱氨酸(CYS5.0),BTS + 10.0mM半胱氨酸(CYS10.0)和BTS + 20.0mM半胱氨酸(CYS20.0)。使用0.5mg / ml碘化丙锭(质膜),100μg/ ml异硫氰酸酯缀合的Pisum sativun凝集素(顶体膜)和153μM5,5',6,6'-tetrachloro-1,1',分析精子完整性评估在特定时间(0、24、48和72小时)稀释精液后的3,3'-四乙基苯并咪唑基碘化碳花青素(线粒体电位)。此外,我们还评估了在BTS补充剂中添加5.0 mM CYS对维持精子质量及其对猪生产能力的影响。人工授精后,根据发情回馈和仔猪的出生数量对动物进行评估。浓度为10.0和20.0mM的半胱氨酸即使在零时也导致更明显的减少。在17oC下储存的最初24小时内,在这些高水平的CYS中,精子生存力降至10%以下。在储存时间结束时,所有组中不到65%的精子细胞具有完整的质膜。与其他CYS浓度相比,当以高浓度CYS(时间“ 0”; CYS10.0和CYS20.0; p <0.05)添加精液时,精子活力显着下降。与其他(BTSCYS; 86.05±039)相比,BTS(10.20±0.39)治疗组的发情率更低,并且每次治疗所产仔猪的总数也最高(12.71±3.38 vs. 9.00±3.38) , 分别)。总之,在BTS精液补充剂中添加CYS不能维持公猪冷却的精子的精子生存力,这会导致较高的返情率和较少的仔猪数。

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