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首页> 外文期刊>Animal Biotechnology >Using human microarrays to identify differentially expressed genes associated with increased steroidogenesis in boars.
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Using human microarrays to identify differentially expressed genes associated with increased steroidogenesis in boars.

机译:使用人类微阵列识别与公猪类固醇生成增加相关的差异表达基因。

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Human microarrays are readily available, and it would be advantageous if they could be used to study gene expression in other species, such as pigs. The objectives of this research were to validate the use of human microarrays in the analysis of porcine gene expression, to assess the variability of the data generated, and to compare gene expression in boars with different levels of steroidogenesis. Cytochrome b5 (CYB5) expression was used to assess array detection sensitivity. Samples having high or low CYB5 RNA levels were hybridized to microarrays to determine if the known expression difference could be detected. Six hybridizations were conducted using human microarrays containing 3840 total spots representing 1718 characterized human ESTs. To analyze gene expression in boars with different levels of steroidogenesis, testis RNA from four boars with high levels of plasma estrone sulphate was hybridized to testis RNA from four boars with lower levels. Eight microarray hybridizations were conducted including fluor-flips. Self-self hybridizations were also conducted to assess the variability of array experiments. The Cy5 and Cy3 intensity values for each array were normalized using a locally weighted linear regression (LOESS). Statistical significance was assessed using a Student's t-test followed by the Benjamini and Hochberg multiple testing correction procedure. Quantitative real-time PCR (Q-RT-PCR) was used to verify select gene expression differences. The results show that CYB5 was significantly overexpressed in the high CYB5 sample by 1.8 fold (P<0.05), verifying the known expression difference. The average log2 ratio of the majority of genes (1643) falls within one standard deviation of the mean, indicating the data were reproducible. In the high versus low steroidogenesis experiment, seven genes were significantly overexpressed in the high group (P<0.05). Quantitative real-time PCR was used to validate five genes with the highest fold change, and the results corroborated those found by the microarray experiments. The results of the self-self hybridizations showed that no genes were significantly differentially expressed following the application of the Benjamini and Hochberg multiple testing correction procedure. The results presented in this report show that human arrays can be used for gene expression analysis in pigs..
机译:人微阵列是容易获得的,如果将其用于研究其他物种(如猪)中的基因表达,将是有利的。这项研究的目的是验证人基因芯片在猪基因表达分析中的应用,评估所产生数据的变异性,并比较具有不同类固醇生成水平的公猪的基因表达。细胞色素b5(CYB5)表达用于评估阵列检测灵敏度。将具有高或低CYB5 RNA水平的样品与微阵列杂交,以确定是否可以检测到已知的表达差异。使用包含3840个总斑点的人类微阵列进行了六次杂交,这些斑点代表1718个特征化的人类EST。为了分析具有不同类固醇生成水平的公猪的基因表达,将来自血浆雌酮硫酸盐含量高的四只公猪的睾丸RNA与来自水平较低的四只公猪的睾丸RNA杂交。进行了八次微阵列杂交,包括荧光翻转。还进行了自我-自我杂交以评估阵列实验的变异性。使用局部加权线性回归(LOESS)归一化每个阵列的Cy5和Cy3强度值。使用学生t检验,然后进行Benjamini和Hochberg多重检验校正程序,评估统计学显着性。实时定量PCR(Q-RT-PCR)用于验证选择的基因表达差异。结果表明,CYB5在高CYB5样品中明显过表达1.8倍(P <0.05),证实了已知的表达差异。大多数基因(1643)的平均log2比值落在平均值的一个标准差之内,表明数据是可重现的。在高类固醇与低类固醇生成实验中,高组中有七个基因显着过表达(P <0.05)。实时定量PCR用于验证五个具有最高倍数变化的基因,结果证实了通过微阵列实验发现的基因。自我-自我杂交的结果表明,应用Benjamini和Hochberg多重测试校正程序后,没有基因显着差异表达。该报告中显示的结果表明,人类阵列可用于猪的基因表达分析。

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