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部分同源导入系的杂合性定位:小鼠4号染色体上半显性神经学突变Wheels(Whl)的定位

Heterozygosity mapping of partially congenic lines: mapping of a semidominant neurological mutation, Wheels (Whl), on mouse chromosome 4.

作者信息

Nolan P M, Sollars P J, Bohne B A, Ewens W J, Pickard G E, Bućan M

机构信息

Department of Psychiatry, University of Pennsylvania, Philadelphia 19104, USA.

出版信息

Genetics. 1995 May;140(1):245-54. doi: 10.1093/genetics/140.1.245.

Abstract

We identified a semidominant, chemically induced, mouse mutation with a complex array of abnormal behaviors including bidirectional circling and hyperactivity, abnormal circadian rhythmicity and abnormal responses to light. In this report, we genetically and phenotypically characterized the circling/waltzing component of the abnormal behavior. We mapped the locus controlling this trait by heterozygosity mapping of partially congenic lines carrying the mutagenized chromosome outcrossed to different inbred strains for three generations. Analysis of 68 PCR-based markers in 13 affected individuals indicated that the mutant locus, named Wheels (Whl), resides in the subcentromeric portion of mouse chromosome 4. The statistical evaluation of data obtained by heterozygosity mapping validates this efficient mapping approach. Further characterization of the Whl mutation demonstrated that Whl/Whl homozygotes die during embryonic life and that the penetrance of circling behavior depends on genetic background. Morphological analysis of the inner ears of Whl/+ mice revealed a variable number of abnormalities in the sensory and nonsensory portions of their semicircular canals. Abnormalities ranged from slight atrophy of one or more cristae to complete absence of the lateral crista and canal. The molecular characterization of the gene disrupted in the Whl mutation will provide insight into developmental mechanisms involved in inner ear formation.

摘要

我们鉴定出一种半显性的、化学诱导的小鼠突变体,它具有一系列复杂的异常行为,包括双向转圈和多动、异常的昼夜节律以及对光的异常反应。在本报告中,我们对异常行为中的转圈/摇摆成分进行了遗传学和表型特征分析。我们通过将携带诱变染色体的部分同源系与不同近交系回交三代,利用杂合性定位来确定控制该性状的基因座。对13个受影响个体中的68个基于PCR的标记进行分析表明,名为Wheels(Whl)的突变基因座位于小鼠4号染色体的着丝粒亚端区域。通过杂合性定位获得的数据的统计评估验证了这种有效的定位方法。对Whl突变的进一步特征分析表明,Whl/Whl纯合子在胚胎期死亡,并且转圈行为的外显率取决于遗传背景。对Whl/+小鼠内耳的形态学分析揭示了其半规管感觉和非感觉部分存在数量不等的异常。异常情况从一个或多个嵴的轻微萎缩到外侧嵴和半规管完全缺失不等。对Whl突变中被破坏基因的分子特征分析将有助于深入了解内耳形成所涉及的发育机制。

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