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影响斑马鱼心血管系统和其他内脏器官的突变。

Mutations affecting the cardiovascular system and other internal organs in zebrafish.

作者信息

Chen J N, Haffter P, Odenthal J, Vogelsang E, Brand M, van Eeden F J, Furutani-Seiki M, Granato M, Hammerschmidt M, Heisenberg C P, Jiang Y J, Kane D A, Kelsh R N, Mullins M C, Nüsslein-Volhard C

机构信息

Max-Planck-Institut für Entwicklungsbiologie, Tübingen, Germany.

出版信息

Development. 1996 Dec;123:293-302. doi: 10.1242/dev.123.1.293.

Abstract

In a screen for early developmental mutants of the zebrafish, we have identified mutations specifically affecting the internal organs. We identified 53 mutations affecting the cardiovascular system. Nine of them affect specific landmarks of heart morphogenesis. Mutations in four genes cause a failure in the fusion of the bilateral heart primordia, resulting in cardia bifida. In lonely atrium, no heart venticle is visible and the atrium is directly fused to the outflow tract. In the overlooped mutant, the relative position of the two heart chambers is distorted. The heart is enormously enlarged in the santa mutant. In two mutants, scotch tape and superglue, the cardiac jelly between the two layers of the heart is significantly reduced. We also identified a number of mutations affecting the function of the heart. The mutations affecting heart function can be subdivided into two groups, one affecting heart contraction and another affecting the rhythm of the heart beat. Among the contractility group of mutants are 5 with no heart beat at all and 15 with a reduced heart beat of one or both chambers. 6 mutations are in the rhythmicity group and specifically affect the beating pattern of the heart. Mutations in two genes, bypass and kurzschluss, cause specific defects in the circulatory system. In addition to the heart mutants, we identified 23 mutations affecting the integrity of the liver, the intestine or the kidney. In this report, we demonstrate that it is feasible to screen for genes specific for the patterning or function of certain internal organs in the zebrafish. The mutations presented here could serve as an entry point to the establishment of a genetic hierarchy underlying organogenesis.

摘要

在一项针对斑马鱼早期发育突变体的筛选中,我们鉴定出了特异性影响内部器官的突变。我们鉴定出53个影响心血管系统的突变。其中9个影响心脏形态发生的特定标志。四个基因的突变导致双侧心脏原基融合失败,从而导致心脏分裂。在“孤独心房”突变体中,看不到心室,心房直接与流出道融合。在“过度弯曲”突变体中,两个心脏腔室的相对位置发生扭曲。在“圣诞老人”突变体中,心脏极大地增大。在“透明胶带”和“强力胶水”这两个突变体中,心脏两层之间的心胶显著减少。我们还鉴定出了一些影响心脏功能的突变。影响心脏功能的突变可分为两组,一组影响心脏收缩,另一组影响心跳节律。在收缩性突变体组中,有5个完全没有心跳,15个一个或两个腔室的心跳减弱。有6个突变属于节律性组,专门影响心脏的跳动模式。两个基因“旁路”和“短路”的突变导致循环系统出现特定缺陷。除了心脏突变体,我们还鉴定出23个影响肝脏、肠道或肾脏完整性的突变。在本报告中,我们证明在斑马鱼中筛选特定内部器官的模式形成或功能相关基因是可行的。这里呈现的突变可作为建立器官发生潜在遗传层次结构的切入点。

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