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The Outcome and Economic Viability of Embryo Production Using IVF and SOV Techniques in the Wagyu Breed of Cattle

机译:和牛育种中使用IVF和SOV技术进行胚胎生产的结果和经济可行性

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摘要

The Japanese black cattle breed (Wagyu) has an improved metabolism, which allows them to have a higher marbling score when compared with other cattle breeds. However, this may affect other aspects of the animal’s physiology, including hormone secretion and their reproductive success, such as their response to synchronization protocols and embryo production. Therefore, the objectives of this study were to test a superovulation protocol (SOV) developed with low doses of FSH and to evaluate the outcome and economic viability of embryo production using the SOV and in vitro fertilization (IVF) approaches in the Wagyu cattle breed. For that, ten Wagyu cows were submitted to five SOVs over a period of 15 months using a standard protocol: CIDR + 3 mg estradiol benzoate (D0), 35 mg FSH (Folltropin ) a.m. and p.m. (D4), 35 mg Folltropin a.m. and 20 mg p.m. (D5), 20 mg Folltropin a.m. and 10 mg p.m. (D6), 10 mg Folltropin and 0.5 mg cloprostenol, both a.m. and p.m., + CIDR removal (D7), 0.05 mg GnRH + insemination 12 and 24 h after (D8) and embryo collection + 0.5 mg of cloprostenol (D16). Thirty days after each SOV, a follicular aspiration was conducted to produce IVF embryos without any pre-synchronization using standard semen in the same group of animals. The average number of embryos produced was 7.63 ± 5.61 (SOV) and 4.52 ± 2.44 (IVF) ( = 0.303). There was no significant correlation between the number of embryos produced by the different techniques (SOV and IVF), indicating that cows that respond well to SOV did not respond well to IVF and vice versa (r = 0.379, = 0.529). The total cost of each embryo produced by SOV was R$215.00 and R$410.00 for IVF. Therefore, cows that produce less than five embryos by SOV are not economically viable due their lack of response to FSH, and the use of IVF in those animals may be more effective.
机译:日本黑牛品种(和牛)的代谢得到改善,与其他牛品种相比,它们的大理石花纹得分更高。但是,这可能会影响动物生理的其他方面,包括激素分泌及其繁殖成功,例如它们对同步方案和胚胎产生的反应。因此,本研究的目的是测试用低剂量FSH开发的超排卵方案(SOV),并评估和牛牛品种使用SOV和体外受精(IVF)方法评估胚胎生产的结果和经济可行性。为此,使用标准方案:CIDR + 3 mg苯甲酸雌二醇(D0),35 mg FSH(Follltropin)a.m.和p.m,在15个月内对10头和牛进行5次SOV接种。 (D4),上午35 mg促卵泡素和下午20 mg。 (D5),上午20 mg促卵泡素和下午10 mg。 (D6),上午和下午分别为10 mg促卵泡素和0.5 mg氯前列醇,+ CIDR去除(D7),0.05 mg GnRH +(D8)后12和24 h授精和胚胎收集+ 0.5 mg氯前列醇(D16)。每个SOV后30天,在同一组动物中使用标准精液进行卵泡抽吸以产生IVF胚胎,而没有任何预同步。产生的平均胚胎数为7.63±5.61(SOV)和4.52±2.44(IVF)(= 0.303)。不同技术(SOV和IVF)生产的胚胎数量之间没有显着相关性,表明对SOV响应良好的母牛对IVF响应不好,反之亦然(r = 0.379,= 0.529)。 SOV产生的每个胚胎的总成本为215.00雷亚尔,IVF为410.00雷亚尔。因此,通过SOV产生少于五个胚胎的母牛由于缺乏对FSH的反应而在经济上不可行,在这些动物中使用IVF可能更有效。

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