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晚期鸭胚胸肌从萎缩到新生仔鸭的肥大发育转变。

Developmental transition of pectoralis muscle from atrophy in late-term duck embryos to hypertrophy in neonates.

机构信息

Department of Animal Nutrition and Feed Science, Huazhong Agricultural University, Wuhan, China.

出版信息

Exp Physiol. 2012 Jul;97(7):861-72. doi: 10.1113/expphysiol.2011.01083.x.

Abstract

Unlike the mammalian fetus, whose growth is supported by the sustained provision of maternal nutrients, poultry embryos undergo development in a relatively closed space, and the yolk sac serves as the sole nutrient supply for embryonic development throughout the whole incubation period. To increase our understanding of the muscle developmental patterns in the final stage of incubation and early days posthatching, we used late-term duck embryos and newly hatched ducklings as animal models. Pectoralis muscle samples were collected at 22 days (22E) of incubation, 25 days (25E) of incubation, hatching and day 7 posthatching. The pectoralis muscle mass, muscle fibre bundles and myofibre cross-sectional area showed a marked reduction from 22E to hatching, but they increased dramatically by day 7 posthatching. The mRNA expression of Atrogin-1, a key mediator of the ubiquitin system responsible for protein degradation, increased dramatically with the age of late-term duck embryos, but it decreased by day 7 and reached a very low level. The extent of mRNA expression of FoxO1, one of the transcription factors of the Atrogin-1 gene, exhibited a transient increase at 25E and then decreased from hatching to day 7. The phosphorylated p70 ribosomal protein S6 kinase 1 (S6K1)/S6K1 ratio exhibited a dramatic reduction from 22E to hatching (P < 0.05) and then increased by day 7. The results of the present study indicated that there was a developmental transition of pectoralis muscle from atrophy in late-term duck embryos to hypertrophy in neonates.

摘要

与哺乳动物胎儿不同,其生长依赖于母体营养的持续供应,禽类胚胎在相对封闭的空间中发育,蛋黄囊在整个孵化期内为胚胎发育提供唯一的营养来源。为了深入了解孵化后期和出壳后早期肌肉的发育模式,我们以晚期鸭胚胎和刚出壳的小鸭为动物模型。在孵化 22 天(22E)、25 天(25E)、出壳和出壳后 7 天收集胸肌样本。胸肌质量、肌纤维束和肌纤维横截面积从 22E 到出壳显著减少,但在出壳后 7 天急剧增加。泛素系统关键介质 Atrogin-1 的 mRNA 表达随着晚期鸭胚胎的年龄增加而显著增加,但在出壳后 7 天下降并达到非常低的水平。Atrogin-1 基因的转录因子之一 FoxO1 的 mRNA 表达程度在 25E 时短暂增加,然后从出壳到 7 天下降。磷酸化 p70 核糖体蛋白 S6 激酶 1(S6K1)/S6K1 比值从 22E 到出壳急剧下降(P<0.05),然后在出壳后 7 天增加。本研究结果表明,胸肌从晚期鸭胚胎的萎缩到新生仔鸭的肥大存在发育转变。

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