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斑马鱼中一种新型昼夜节律突变体的分离与表型遗传学研究

Isolation and phenogenetics of a novel circadian rhythm mutant in zebrafish.

作者信息

DeBruyne Jason, Hurd Mark W, Gutiérrez Laura, Kaneko Maki, Tan Ying, Wells Dan E, Cahill Gregory M

机构信息

Department of Biology and Biochemistry, University of Houston, 4800 Calhoun, Houston, TX 77204, USA.

出版信息

J Neurogenet. 2004 Apr-Jun;18(2):403-28. doi: 10.1080/01677060490894540.

Abstract

Widespread use of zebrafish (Danio rerio) in genetic analysis of embryonic development has led to rapid advances in the technology required to generate, map and clone mutated genes. To identify genes involved in the generation and regulation of vertebrate circadian rhythmicity, we screened for dominant mutations that affect the circadian periodicity of larval zebrafish locomotor behavior. In a screen of 6,500 genomes, we recovered 8 homozygous viable, semi-dominant mutants, and describe one of them here. The circadian period of the lager and lime (lag(dg2)) mutant is shortened by 0.7 h in heterozygotes,and 1.3 h in homozygotes. This mutation also shortens the period of the melatonin production rhythm measured from cultured pineal glands, indicating that the mutant gene product affects circadian rhythmicity at the tissue level, as well as at the behavioral level. This mutation also alters the sensitivity of pineal circadian period to temperature, but does not affect phase shifting responses to light. Linkage mapping with microsatellite markers indicates that the lag mutation is on chromosome 7. A zebrafish homolog of period1(per1) is the only known clock gene homolog that maps near the lag locus. However, all sequence variants found in per1 cDNA from lag(dg2) mutants are also present in wild type lines, and we were unable to detect any defect in per1 mRNA splicing, so this mutation may identify a novel clock gene.

摘要

斑马鱼(Danio rerio)在胚胎发育遗传分析中的广泛应用推动了基因产生、定位及克隆所需技术的快速发展。为了鉴定参与脊椎动物昼夜节律产生和调节的基因,我们筛选了影响斑马鱼幼体运动行为昼夜节律周期的显性突变。在对6500个基因组的筛选中,我们获得了8个纯合可存活的半显性突变体,本文描述其中之一。lager and lime(lag(dg2))突变体的杂合子昼夜节律周期缩短0.7小时,纯合子缩短1.3小时。该突变还缩短了从培养的松果体测得的褪黑素分泌节律的周期,表明突变基因产物在组织水平以及行为水平上均影响昼夜节律。此突变还改变了松果体昼夜节律周期对温度的敏感性,但不影响对光的相位移动反应。利用微卫星标记进行连锁图谱分析表明,lag突变位于7号染色体上。period1(per1)的斑马鱼同源基因是唯一已知的位于lag位点附近的生物钟基因同源物。然而,在lag(dg2)突变体的per1 cDNA中发现的所有序列变异在野生型品系中也存在,并且我们未能检测到per1 mRNA剪接有任何缺陷,因此该突变可能鉴定出一个新的生物钟基因。

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