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授精后营养对肉用小母牛胚胎发育的影响。

Influence of post-insemination nutrition on embryonic development in beef heifers.

作者信息

Kruse S G, Bridges G A, Funnell B J, Bird S L, Lake S L, Arias R P, Amundson O L, Larimore E L, Keisler D H, Perry G A

机构信息

North Central Research and Outreach Center, University of Minnesota, Grand Rapids, MN 55744, United States.

North Central Research and Outreach Center, University of Minnesota, Grand Rapids, MN 55744, United States.

出版信息

Theriogenology. 2017 Mar 1;90:185-190. doi: 10.1016/j.theriogenology.2016.11.021. Epub 2016 Nov 24.

Abstract

Previous studies have demonstrated that a decrease in nutrition immediately following AI reduces pregnancy success in beef heifers. The objective of this experiment was to determine if nutrient restriction following AI impacted early embryonic development among non-super ovulated heifers. Beef heifers in eight replications (Rep; Rep 1; n = 14, Rep 2; n = 15, Rep 3; n = 15, Rep 4; n = 14, Rep 5; n = 15, Rep 6; n = 15, Rep 7; n = 25, Rep 8; n = 25) across two locations (UMN, SDSU) were developed in a dry-lot and fed 125% NRC requirements from weaning to timed-AI (d 0). Heifers were timed-AI to a single sire in all replications. Immediately following AI, heifers were assigned, based on age, weight, and estrous response to one of two post-AI nutritional treatments. Half the heifers in each replication continued on the pre-insemination diet, serving as the control treatment (CON) and the remaining heifers were restricted to a sub-maintenance diet (RES). At UMN, heifers in the RES treatment were fed the same diet, but intake was limited to 80% NE, while at SDSU, DMI remained the same, but diet composition was altered with the addition of straw to reduce NE to 50% of requirements. On d 6, single embryos were collected nonsurgically and recovered embryos (CON; n = 46, RES; n = 42) were evaluated to determine quality (grade 1-9) and stage (1-4). Embryos were then stained and evaluated to determine the number of dead cells and total blastomeres. In Reps 1 through 6, concentrations of IGF-1 were assessed on d 0 and 6 and progesterone concentrations on d 4 and 6. Data were analyzed using the Mixed procedures of SAS. There were no treatment by Rep or treatment by location interactions for any embryo parameter evaluated, thus all data were pooled. Embryo stage and quality were improved (P < 0.01) in the CON (4.4 ± 0.16, 2.2 ± 0.19, respectively) compared to RES treatment (3.7 ± 0.16, 2.9 ± 0.19, respectively). Embryos in the CON treatment had greater total blastomeres (66.9 ± 5.05; P < 0.01) and tended to have a greater percentage of live cells (P < 0.10; 80.9 ± 4.19%) compared to RES (47.9 ± 5.41; 69.7 ± 4.39%, respectively). Progesterone and IGF-1 concentrations did not differ between treatments. In summary, nutrient restriction for 6 days immediately following AI resulted in poorer quality embryos that were delayed in stage of development, suggesting that immediate changes in nutritional status after insemination can alter early embryonic development.

摘要

先前的研究表明,人工授精(AI)后立即出现营养下降会降低肉牛小母牛的妊娠成功率。本实验的目的是确定AI后营养限制是否会影响未进行超数排卵的小母牛的早期胚胎发育。来自两个地点(明尼苏达大学[UMN]、南达科他州立大学[SDSU])的八次重复实验中的肉牛小母牛(重复;重复1;n = 14,重复2;n = 15,重复3;n = 15,重复4;n = 14,重复5;n = 15,重复6;n = 15,重复7;n = 25,重复8;n = 25)在干栏中饲养,从断奶到定时人工授精(第0天)饲喂125%的美国国家研究委员会(NRC)需求量。在所有重复实验中,小母牛都对单一公牛进行定时人工授精。人工授精后,根据年龄、体重和发情反应,将小母牛分配到两种人工授精后营养处理之一。每个重复实验中的一半小母牛继续采用授精前的日粮,作为对照处理(CON),其余小母牛则限制在低于维持水平的日粮(RES)。在UMN,RES处理的小母牛饲喂相同的日粮,但采食量限制在80%的净能(NE),而在SDSU,干物质采食量(DMI)保持不变,但通过添加秸秆改变日粮组成,将NE降低到需求量的50%。在第6天,通过非手术方法收集单个胚胎,对回收胚胎(CON;n = 46,RES;n = 42)进行评估,以确定质量(1 - 9级)和阶段(1 - 4期)。然后对胚胎进行染色和评估,以确定死细胞数量和总卵裂球数量。在重复1至6中,在第0天和第6天评估胰岛素样生长因子-1(IGF-1)浓度,在第4天和第6天评估孕酮浓度。使用SAS的混合程序对数据进行分析。对于所评估的任何胚胎参数,均不存在重复或地点与处理之间的交互作用,因此所有数据进行合并。与RES处理(分别为3.7 ± 0.16、2.9 ± 0.19)相比,CON处理的胚胎阶段和质量得到改善(P < 0.01)(分别为4.4 ± 0.16、2.2 ± 0.19)。与RES处理(分别为47.9 ± 5.41、69.7 ± 4.39%)相比,CON处理的胚胎具有更多的总卵裂球(66.9 ± 5.05;P < 0.01),并且活细胞百分比有增加趋势(P < 0.10;80.9 ± 4.19%)。处理之间的孕酮和IGF-1浓度没有差异。总之,人工授精后立即进行6天的营养限制会导致胚胎质量较差且发育阶段延迟,这表明授精后营养状况的即时变化会改变早期胚胎发育。

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