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利用人类基因芯片进行马转录组定量分析,可以通过基因组 DNA 杂交和探针选择得到改善。

Equine transcriptome quantification using human GeneChip arrays can be improved using genomic DNA hybridisation and probe selection.

机构信息

Nottingham Arabidopsis Stock Centre, Division of Plant and Crop Sciences, School of Biosciences, University of Nottingham, Loughborough, UK.

出版信息

Vet J. 2010 Dec;186(3):323-7. doi: 10.1016/j.tvjl.2009.08.030. Epub 2009 Sep 27.

Abstract

Affymetrix GeneChip arrays are a powerful tool for transcriptome profiling and have been applied to a wide range of species. A genomic DNA (gDNA)-based probe selection method has been developed which broadens the range of species to which GeneChips may be successfully applied. This study demonstrated that gDNA-based probe selection on the Affymetrix U133+2 GeneChip array can be used to study the equine transcriptome which, to date, has received only limited attention. More than 29,000 transcripts can be detected in equine brain and liver and in primary cultures of equine articular chondrocytes. Gene ontology analysis of differentially expressed genes revealed the presence of expected categories within each tissue. The level of gene expression could also be correlated with the phenotypes and specialised functions of each tissue. The results demonstrated that probe selection on a human chip can be successfully used to study the equine transcriptome.

摘要

Affymetrix GeneChip 阵列是一种用于转录组分析的强大工具,已广泛应用于多个物种。我们开发了一种基于基因组 DNA(gDNA)的探针选择方法,扩大了 GeneChip 可成功应用的物种范围。本研究表明,基于 Affymetrix U133+2 GeneChip 阵列的 gDNA 探针选择可用于研究马转录组,迄今为止,马转录组仅受到有限关注。在马脑和肝以及马关节软骨细胞原代培养物中可检测到 29000 多个转录本。差异表达基因的基因本体分析显示,每个组织中都存在预期的类别。基因表达水平也可以与每个组织的表型和特定功能相关。结果表明,在人芯片上进行探针选择可成功用于研究马转录组。

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