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乙醇精神运动性兴奋作用的生物统计学遗传分析。

Biometrical genetic analysis of ethanol's psychomotor stimulant effect.

作者信息

Dudek B C, Tritto T

机构信息

Department of Psychology, State University of New York at Albany 12222.

出版信息

Alcohol Clin Exp Res. 1994 Aug;18(4):956-63. doi: 10.1111/j.1530-0277.1994.tb00066.x.

DOI:10.1111/j.1530-0277.1994.tb00066.x
PMID:7978110
Abstract

Hereditary influences on psychomotor stimulant effects of ethanol (ETOH) were studied in a classical Mendelian cross of DBA/2Abg (D2) and C57BL/6Abg (B6) inbred mouse strains. A dose-response study with nine doses (0-3.5 g/kg ip) indicated that B6 mice lack the activational limb of the biphasic curve (< or = 1.5 g/kg), as assessed in a 15-min test. D2 mice ran greater distances and ran faster, at doses up to 2.5 g/kg. B6 mice showed no increments in speed or distance at these doses that activated D2 mice. Several other indices reinforced the conclusion of ETOH-induced behavioral activation in D2 mice and lack there of in B6 mice (traditional photobeam interruptions--horizontal counts; center distance; vertical movements; inactive time; as well as derived indices of running speed and average length of each movement). The F1, F2, and backcross generations produced dose-response curves that showed additive inheritance of the activational response to doses below 1.5 g/kg. A second study (n = 1446) examined response to 1.5 g/kg with a within-subjects design in the full Mendelian cross. This study verified the completely additive mode of inheritance for the total distance measure suggested in the dose-response study, and showed that sex linkage and sex differences were not present. Narrow sense heritability of the ETOH activation response (indexed by total distance) was calculated at 0.35 and approximately 3 loci were estimated to be responsible for the B6/D2 difference. The other phenotypes (described above) also showed strongly additive genetic control.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在DBA/2Abg(D2)和C57BL/6Abg(B6)近交系小鼠的经典孟德尔杂交实验中,研究了遗传因素对乙醇(ETOH)精神运动兴奋作用的影响。一项使用九种剂量(0 - 3.5 g/kg腹腔注射)的剂量反应研究表明,在15分钟的测试中,B6小鼠缺乏双相曲线的激活阶段(≤1.5 g/kg)。在高达2.5 g/kg的剂量下,D2小鼠跑动距离更远且速度更快。在这些激活D2小鼠的剂量下,B6小鼠的速度和距离没有增加。其他几个指标也强化了以下结论:ETOH在D2小鼠中诱导行为激活,而在B6小鼠中则不存在。(传统的光束中断——水平计数;中心距离;垂直运动;不活动时间;以及跑动速度和每次运动平均长度的派生指标)。F1、F2和回交后代产生的剂量反应曲线表明,对低于1.5 g/kg剂量的激活反应具有加性遗传。第二项研究(n = 1446)在完整的孟德尔杂交实验中采用受试者内设计,研究了对1.5 g/kg的反应。这项研究验证了剂量反应研究中提出的总距离测量的完全加性遗传模式,并表明不存在性连锁和性别差异。ETOH激活反应的狭义遗传力(以总距离为指标)计算为0.35,估计约有3个基因座导致B6/D2差异。其他表型(如上所述)也显示出强烈的加性遗传控制。(摘要截断于250字)

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