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对乙醇有不同急性反应的动物中的基因表达。

Gene expression in animals with different acute responses to ethanol.

作者信息

Hoffman Paula, Tabakoff Boris

机构信息

Department of Pharmacology, University of Colorado Health Sciences Center, Denver, CO 80045, USA.

出版信息

Addict Biol. 2005 Mar;10(1):63-9. doi: 10.1080/13556210412331308985.

Abstract

The genetic and environmental contributions to differences in response to ethanol have been examined widely using inbred strains, selected lines and genetically engineered (transgenic and 'knock-out') animals. In addition, recombinant inbred strains have been used to identify QTLs (chromosomal regions) associated with particular responses to ethanol. If the polymorphism that underlies such a QTL is localized within the regulatory region of a gene, it could alter the level or stability of the gene product (transcript). This possibility can be addressed by measuring mRNA levels in brains (or other tissue) of inbred or selected lines of animals using DNA microarray technology. In this paper, we review microarray studies conducted in animals that differ in their responses to ethanol. The results of these studies point out the critical nature of the experimental design, statistical analyses and 'filtering' procedures for producing interpretable data and identifying candidate genes. In particular, the determination of differentially expressed genes between selected lines of animals, and the localization of the differentially expressed genes within QTLs for the selected phenotype, dramatically increases the probability of identifying genes that contribute to that phenotype through differential expression. Microarray analysis can also be used to assess changes in gene expression that accompany transgene introduction and/or gene 'knock-out', which may modulate the influence of the targeted gene on behaviour.

摘要

利用近交系、选择品系和基因工程(转基因和“基因敲除”)动物,已广泛研究了遗传和环境因素对乙醇反应差异的影响。此外,重组近交系已被用于鉴定与对乙醇的特定反应相关的数量性状基因座(QTL,染色体区域)。如果构成此类QTL基础的多态性位于基因的调控区域内,它可能会改变基因产物(转录本)的水平或稳定性。利用DNA微阵列技术测量近交或选择品系动物大脑(或其他组织)中的mRNA水平,可以解决这一可能性。在本文中,我们综述了对乙醇反应不同的动物所进行的微阵列研究。这些研究结果指出了实验设计、统计分析和“过滤”程序对于产生可解释数据和鉴定候选基因的关键性质。特别是,确定选择品系动物之间差异表达的基因,以及将差异表达基因定位在所选表型的QTL内,极大地增加了通过差异表达鉴定对该表型有贡献的基因的可能性。微阵列分析还可用于评估伴随转基因导入和/或基因“敲除”的基因表达变化,这可能会调节目标基因对行为的影响。

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