Xing Yi, Ouyang Zhengqing, Kapur Karen, Scott Matthew P, Wong Wing Hung
Mol Biol Evol. 2007 Jun;24(6):1283-5. doi: 10.1093/molbev/msm061. Epub 2007 Mar 25.
Microarray data from multiple species have been used to study evolutionary constraints on gene expression. Expression measurements from conventional microarray platforms such as the 3' expression arrays are strongly affected by platform-dependent probe effects that may introduce apparent but misleading discrepancies between species. In this manuscript, we assess the conservation of mammalian gene expression in adult tissues using data from a high-density exon array platform. The exon arrays have more than 6 million probes on a single array targeting all exons in a genome. We find that, unlike 3' array data, gene expression measurements from exon arrays reveal patterns of gene expression that are highly conserved between humans and mice in multiple tissues. Our analysis provides strong evidence for widespread stabilizing selection pressure on transcript abundance during mammalian evolution.
来自多个物种的微阵列数据已被用于研究基因表达的进化限制。来自传统微阵列平台(如3' 表达阵列)的表达测量受到平台依赖性探针效应的强烈影响,这些效应可能会在物种之间引入明显但具有误导性的差异。在本手稿中,我们使用来自高密度外显子阵列平台的数据评估成年组织中哺乳动物基因表达的保守性。外显子阵列在单个阵列上有超过600万个探针,靶向基因组中的所有外显子。我们发现,与3' 阵列数据不同,外显子阵列的基因表达测量揭示了在多个组织中人类和小鼠之间高度保守的基因表达模式。我们的分析为哺乳动物进化过程中转录本丰度普遍存在的稳定选择压力提供了有力证据。