Paylor Richard, Spencer Corinne M, Yuva-Paylor Lisa A, Pieke-Dahl Sandra
Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX 77030, USA.
Physiol Behav. 2006 Jan 30;87(1):95-102. doi: 10.1016/j.physbeh.2005.09.002. Epub 2005 Sep 28.
Test batteries are commonly used to assess the behavioral phenotype of genetically modified and inbred strains of mice. However, few systematic studies have been employed to address several key issues concerning the use of a test battery. The current study was designed to address whether inter-test interval affects behavioral performance. Male mice of 3 different inbred strains and one F1 hybrid strain were randomly assigned to either a test battery with 1 week inter-test intervals, or a rapid test battery with 1-2 day inter-test intervals. The test battery included a neurological exam, open-field activity, light-dark exploration, rotarod test, prepulse inhibition, and startle habituation. The experiment was repeated with female animals of 2 different strains. As expected, there were strain differences on each of the behavioral assays; however, there was no major difference in performance between mice of the standard test battery and the rapid test battery. Similar results were found with females. These results indicate that the interval between most tests could be as little as 1-2 days, with little significant effect on overall performance. Thus, it is possible with the current test battery to reduce the inter-test interval to facilitate the rate of studying and identifying behavioral phenotypes in mice.
测试组合通常用于评估基因改造小鼠和近交系小鼠的行为表型。然而,很少有系统性研究探讨与使用测试组合相关的几个关键问题。当前的研究旨在探讨测试间隔时间是否会影响行为表现。将3种不同近交系和1种F1杂交系的雄性小鼠随机分为两组,一组接受测试间隔为1周的测试组合,另一组接受测试间隔为1 - 2天的快速测试组合。测试组合包括神经学检查、旷场活动、明暗箱探索、转棒试验、前脉冲抑制和惊吓习惯化。对2种不同品系的雌性动物重复了该实验。正如预期的那样,每种行为测试都存在品系差异;然而,标准测试组合的小鼠和快速测试组合的小鼠在表现上没有重大差异。在雌性小鼠中也发现了类似的结果。这些结果表明,大多数测试之间的间隔时间可以短至1 - 2天,而对整体表现几乎没有显著影响。因此,使用当前的测试组合有可能缩短测试间隔时间,以加快研究和识别小鼠行为表型的速度。