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利用鸡 44K 寡核苷酸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。I. 差异表达基因的上调。

Gene expression in breast muscle associated with feed efficiency in a single male broiler line using a chicken 44K oligo microarray. I. Top differentially expressed genes.

机构信息

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

出版信息

Poult Sci. 2011 Nov;90(11):2535-47. doi: 10.3382/ps.2011-01435.

Abstract

Global RNA expression in breast muscle obtained from a male broiler line phenotyped for high or low feed efficiency (FE) was investigated. Pooled RNA samples (n = 6/phenotype) labeled with cyanine 3 or cyanine 5 fluorescent dyes to generate cRNA probes were hybridized on a 4 × 44K chicken oligo microarray. Local polynomial regression normalization was applied to background-corrected red and green intensities with a moderated t-statistic. Corresponding P-values were computed and adjusted for multiple testing by false discovery rate to identify differentially expressed genes. Microarray validation was carried out by comparing findings with quantitative reverse-transcription PCR. A 1.3-fold difference in gene expression was set as a cutoff value, which encompassed 20% (782 of 4,011) of the total number of genes that were differentially expressed between FE phenotypes. Using an online software program (Ingenuity Pathway Analysis), the top 10 upregulated genes identified by Ingenuity Pathway Analysis in the high-FE group were generally associated with anabolic processes. In contrast, 7 of the top 10 downregulated genes in the high-FE phenotype (upregulated in the low-FE phenotype) were associated with muscle fiber development, muscle function, and cytoskeletal organization, with the remaining 3 genes associated with self-recognition or stress-responding genes. The results from this study focusing on only the top differentially expressed genes suggest that the high-FE broiler phenotype is derived from the upregulation of genes associated with anabolic processes as well as a downregulation of genes associated with muscle fiber development, muscle function, cytoskeletal organization, and stress response.

摘要

本研究旨在调查表型为高或低饲料效率(FE)的雄性肉鸡品系的胸肌的全球 RNA 表达。将 6 个胸肌样本(每个表型 6 个)混合,用 Cy3 和 Cy5 荧光染料标记以生成 cRNA 探针,然后在 4×44K 鸡寡核苷酸微阵列上杂交。用局部多项式回归法对背景校正后的红色和绿色强度进行归一化处理,并用修正 t 检验进行分析。计算相应的 P 值,并通过假发现率进行多重检验调整,以识别差异表达的基因。通过与定量逆转录 PCR 比较验证微阵列的结果。将基因表达差异 1.3 倍作为截断值,涵盖了 FE 表型之间差异表达的总基因数的 20%(4011 个中的 782 个)。使用在线软件程序(Ingenuity Pathway Analysis),在高 FE 组中由 Ingenuity Pathway Analysis 识别的前 10 个上调基因通常与合成代谢过程有关。相反,在高 FE 表型中下调基因的前 10 个(在低 FE 表型中上调)中,有 7 个与肌肉纤维发育、肌肉功能和细胞骨架组织有关,其余 3 个基因与自我识别或应激反应基因有关。本研究仅关注差异表达基因的结果表明,高 FE 肉鸡表型是由与合成代谢过程相关的基因上调以及与肌肉纤维发育、肌肉功能、细胞骨架组织和应激反应相关的基因下调引起的。

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