首页> 外文期刊>Animal Reproduction Science >Effects of in ovo injecting disaccharides and alanyl-glutamine dipeptide on the energy status in duck embryos and neonates.
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Effects of in ovo injecting disaccharides and alanyl-glutamine dipeptide on the energy status in duck embryos and neonates.

机译:卵内注射二糖和丙氨酰谷氨酰胺二肽对鸭胚胎和新生儿能量状态的影响。

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摘要

This experiment tested the hypothesis that administering additional available nutrients to duck embryos would enhance the glucose store and improve the body growth of ducks. A total of 520 duck eggs of 21 days' incubation containing viable embryos were used in the present study and randomly divided into four treatments. At 23 days of incubation (23E), three groups of eggs were injected with the following solution: (1) sucrose and maltose (DS); (2) L-alanyl-L-glutamine (Ala-Gln); (3) sucrose, maltose and Ala-Gln (DS+Ala-Gln); the remaining groups served as non-injected control. DS and Ala-Gln injection significantly increased the plasma glucose concentration at hatch and 3 days post-hatch (P<0.05). Compared with control, the liver glycogen content in the DS group was elevated by 56% at 25 days' incubation (25E) and by 45% at hatch, respectively (P<0.05). At 25E, the pectoral glycogen content was increased by 109% in the Ala-Gln group and by 67% in the DS+Ala-Gln group, respectively, when compared with non-injected control. There was high and positive correlation between the body weight (BW) and liver glycogen content (r=0.809, P<0.01). The data of the present study suggest that the energy store is probably an important factor in affecting the growth of late-term embryos and ducklings.
机译:该实验检验了这样的假设,即向鸭胚胎施用额外的可用营养素会增强葡萄糖的储存并改善鸭的身体生长。在本研究中,总共使用了520个含有活胚的21天孵化的鸭卵,并随机分为4种处理方法。在孵化的第23天(23E),向三组卵中注入以下溶液:(1)蔗糖和麦芽糖(DS); (2)L-丙氨酰-L-谷氨酰胺(Ala-Gln); (3)蔗糖,麦芽糖和Ala-Gln(DS + Ala-Gln);其余组用作非注射对照。 DS和Ala-Gln注射显着增加了孵化和孵化后3天的血浆葡萄糖浓度( P <0.05)。与对照组相比,DS组在孵化25天(25E)时的肝糖原含量分别提高了56%,在孵化时分别提高了45%( P <0.05)。与未注射的对照组相比,在25E时,Ala-Gln组的胸膜糖原含量分别增加了109%和DS + Ala-Gln组的胸膜糖原含量增加了67%。体重(BW)与肝糖原含量之间呈高度正相关( r = 0.809, P <0.01)。本研究的数据表明,能量存储可能是影响后期胚胎和小鸭生长的重要因素。

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