Singh Shiva M, Treadwell Julie, Kleiber Morgan L, Harrison Michelle, Uddin Raihan K
Molecular Genetics Unit, Department of Biology and Division of Medical Genetics, The University of Western Ontario, London, ON N6A 5B7, Canada.
Genome. 2007 Oct;50(10):877-97. doi: 10.1139/g06-118.
Most familial behavioral phenotypes result from the complex interaction of multiple genes. Studies of such phenotypes involving human subjects are often inconclusive owing to complexity of causation and experimental limitations. Studies of animal models argue for the use of established genetic strains as a powerful tool for genetic dissection of behavioral disorders and have led to the identification of rare genes and genetic mechanisms implicated in such phenotypes. We have used microarrays to study global gene expression in adult brains of four genetic strains of mice (C57BL/6J, DBA/2J, A/J, and BALB/c). Our results demonstrate that different strains show expression differences for a number of genes in the brain, and that closely related strains have similar patterns of gene expression as compared with distantly related strains. In addition, among the 24 000 genes and ESTs on the microarray, 77 showed at least a 1.5-fold increase in the brains of C57BL/6J mice as compared with those of DBA/2J mice. These genes fall into such functional categories as gene regulation, metabolism, cell signaling, neurotransmitter transport, and DNA/RNA binding. The importance of these findings as a novel genetic resource and their use and application in the genetic analysis of complex behavioral phenotypes, susceptibilities, and responses to drugs and chemicals are discussed.
大多数家族性行为表型是由多个基因的复杂相互作用导致的。由于因果关系的复杂性和实验局限性,涉及人类受试者的此类表型研究往往没有定论。动物模型研究支持使用已建立的遗传品系作为行为障碍基因剖析的有力工具,并已导致鉴定出与此类表型相关的罕见基因和遗传机制。我们使用微阵列研究了四种小鼠遗传品系(C57BL/6J、DBA/2J、A/J和BALB/c)成年大脑中的全局基因表达。我们的结果表明,不同品系在大脑中的许多基因存在表达差异,并且与远亲品系相比,近亲品系具有相似的基因表达模式。此外,在微阵列上的24000个基因和EST中,与DBA/2J小鼠相比,77个基因在C57BL/6J小鼠大脑中的表达至少增加了1.5倍。这些基因属于基因调控、代谢、细胞信号传导、神经递质转运和DNA/RNA结合等功能类别。本文讨论了这些发现作为一种新型遗传资源的重要性及其在复杂行为表型、易感性以及对药物和化学物质反应的遗传分析中的应用。