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在终极pH值上经 divergent 选择的鸡品系中的早期生长与蛋白质-能量代谢

Early Growth and Protein-Energy Metabolism in Chicken Lines Divergently Selected on Ultimate pH.

作者信息

Métayer-Coustard Sonia, Tesseraud Sophie, Praud Christophe, Royer David, Bordeau Thierry, Coudert Edouard, Cailleau-Audouin Estelle, Godet Estelle, Delaveau Joël, Le Bihan-Duval Elisabeth, Berri Cécile

机构信息

INRAE, Université de Tours, BOA, Nouzilly, France.

INRAE, PEAT, Nouzilly, France.

出版信息

Front Physiol. 2021 Mar 4;12:643580. doi: 10.3389/fphys.2021.643580. eCollection 2021.

Abstract

In chickens, a divergent selection on the pHu allowed the creation of the pHu+ and pHu- lines, which represent a unique model for studying the biological control of carbohydrate storage in muscle. The present study aimed to describe the early mechanisms involved in the establishment of pHu+ and pHu- phenotypes. At hatching, pHu+ chicks were slightly heavier but exhibited lower plasma glucose and triglyceride and higher uric acid. After 5 days, pHu+ chicks exhibited higher breast meat yield compared to pHu- while their body weight was no different. At both ages, muscle glycogen content was lower in pHu+ than in pHu- muscles. The lower ability of pHu+ chicks to store carbohydrate in their muscle was associated with the increased expression of and genes coding glucose transporters 1 and 3, and of and coding key enzymes of oxidative and glycolytic pathways, respectively. Reduced muscle glycogen content at hatching of the pHu+ was concomitant with higher activation by phosphorylation of S6 kinase 1/ribosomal protein S6 pathway, known to activate protein synthesis in chicken muscle. In conclusion, differences observed in muscle at slaughter age in the pHu+ and pHu- lines are already present at hatching. They are associated with several changes related to both carbohydrate and protein metabolism, which are likely to affect their ability to use eggs or exogenous nutrients for muscle growth or energy storage.

摘要

在鸡中,对肌肉糖原磷酸化酶(pHu)进行 divergent 选择,培育出了 pHu+ 和 pHu- 品系,这代表了一种研究肌肉中碳水化合物储存生物控制的独特模型。本研究旨在描述参与建立 pHu+ 和 pHu- 表型的早期机制。孵化时,pHu+ 雏鸡体重略重,但血浆葡萄糖和甘油三酯水平较低,尿酸水平较高。5 天后,与 pHu- 雏鸡相比,pHu+ 雏鸡胸肉产量更高,而它们的体重没有差异。在两个年龄段,pHu+ 雏鸡肌肉中的糖原含量均低于 pHu- 雏鸡。pHu+ 雏鸡在肌肉中储存碳水化合物的能力较低,这与编码葡萄糖转运蛋白 1 和 3 的 和 基因以及分别编码氧化和糖酵解途径关键酶的 和 基因表达增加有关。pHu+ 雏鸡孵化时肌肉糖原含量降低,同时 S6 激酶 1/核糖体蛋白 S6 途径的磷酸化激活程度更高,已知该途径可激活鸡肌肉中的蛋白质合成。总之,在屠宰年龄时 pHu+ 和 pHu- 品系肌肉中观察到的差异在孵化时就已存在。它们与碳水化合物和蛋白质代谢的多种变化有关,这些变化可能会影响它们利用鸡蛋或外源营养物质进行肌肉生长或能量储存的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3087/7969813/69852aab4259/fphys-12-643580-g001.jpg

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