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利用鸡 44K 微阵列研究单只雄性肉鸡品系中与饲料效率相关的胸肌基因表达。二、差异表达的焦点基因。

Gene expression in breast muscle associated with feed efficiency in a single male broiler line using a chicken 44K microarray. II. Differentially expressed focus genes.

机构信息

Department of Poultry Science, University of Arkansas, Fayetteville, AR, USA.

出版信息

Poult Sci. 2012 Oct;91(10):2576-87. doi: 10.3382/ps.2012-02204.

Abstract

Global RNA expression in breast muscle obtained from a male broiler line phenotyped for high or low feed efficiency (FE) was investigated using microarray analysis. Microarray procedures and validation were reported previously. By using an overlay function of a software program (Ingenuity Pathway Analysis, IPA) in which canonical pathways are projected onto a set of genes, a subset of 27 differentially expressed focus genes were identified. Focus genes that were upregulated in the high FE phenotype were associated with important signal transduction pathways (Jnk, G-coupled, and retinoic acid) or in sensing cell energy status and stimulating energy production that would likely enhance growth and development of muscle tissue. In contrast, focus genes that were upregulated in the low FE muscle phenotype were associated with cytoskeletal architecture (e.g., actin-myosin filaments), fatty acid oxidation, growth factors, or ones that would likely be induced in response to oxidative stress. The results of this study provide additional information on gene expression and the cellular basis of feed efficiency in broilers.

摘要

本研究使用基因芯片分析技术,调查了表型为高或低饲料效率(FE)的雄性肉鸡胸肌的全球 RNA 表达。基因芯片程序和验证先前已有报道。通过使用软件程序(Ingenuity Pathway Analysis,IPA)的覆盖功能,其中将规范途径投射到一组基因上,确定了一组 27 个差异表达的焦点基因。在高 FE 表型中上调的焦点基因与重要的信号转导途径(Jnk、G 偶联和视黄酸)或感知细胞能量状态和刺激能量产生有关,这可能会增强肌肉组织的生长和发育。相比之下,在低 FE 肌肉表型中上调的焦点基因与细胞骨架结构(例如肌动球蛋白丝)、脂肪酸氧化、生长因子或可能对氧化应激做出反应的基因有关。本研究的结果为肉鸡饲料效率的基因表达和细胞基础提供了更多信息。

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