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Bovine oocytes show a higher tolerance to heat shock in the warm compared with the cold season of the year.

机译:与一年中的寒冷季节相比,牛卵母细胞在温暖的季节对热休克表现出更高的耐受性。

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Heat stress is especially harmful for bovine ovarian follicle development and oocyte competence. In this study, we assessed the effects of heat shock on oocyte maturation in oocytes collected during the cold (February-March; n=114) or warm (May-June; n=116) periods of the year. In both cases, cumulus-oocyte complexes were matured under control (38 degrees C) and heat shock conditions (41.5 degrees C, 18-21 h of maturation). For each oocyte, nuclear stage, cortical granule distribution and steroidogenic activity of cumulus cells were evaluated. Based on the odds ratio, heat-shocked oocytes were 26.83 times more likely to show an anomalous metaphase II morphology. When matured under heat shock conditions, oocytes obtained in both seasons were similarly affected in terms of nuclear maturation, whereas a seasonal effect was observed on cytoplasmic maturation. For oocytes collected during the cold season, the likelihood to show an anomalous maturation was 25.96 times higher when exposed to the heat treatment than when matured under control conditions. By contrast, oocytes collected during the warm season matured under control or heat shock did not show significant risk of showing an anomalous cytoplasmic maturation. Our findings indicate an increased rate of premature oocytes in response to heat shock as well as a higher tolerance to this stress of oocytes harvested in the warm season compared with those collected in the colder period.Digital Object Identifier http://dx.doi.org/10.1016/j.theriogenology.2012.08.020
机译:热应激对牛卵巢卵泡发育和卵母细胞能力特别有害。在这项研究中,我们评估了热休克对在一年的寒冷(2月至3月; n = 114)或温暖(5月至6月; n = 116)期间收集的卵母细胞成熟的影响。在这两种情况下,卵-卵母细胞复合物都在对照(38摄氏度)和热休克条件(41.5摄氏度,成熟18-21小时)下成熟。对于每个卵母细胞,评估卵丘细胞的核阶段,皮质颗粒分布和类固醇生成活性。根据比值比,热休克卵母细胞出现异常中期II形态的可能性高26.83倍。当在热激条件下成熟时,两个季节获得的卵母细胞在核成熟方面受到类似的影响,而在细胞质成熟中观察到季节性影响。对于在寒冷季节收集的卵母细胞,暴露于热处理的异常成熟的可能性比在对照条件下成熟的高出25.96倍。相反,在温暖季节收集的卵母细胞在控制或热休克条件下成熟,没有显示出异常胞质成熟的显着风险。我们的发现表明,与寒冷时期相比,在温暖季节收获的卵母细胞对热休克的反应早卵的比率增加,并且对这种压力的耐受性更高。数字对象标识符http://dx.doi。 org / 10.1016 / j.theriogenology.2012.08.020

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