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影响斑马鱼胚胎心血管系统形成和功能的突变

Mutations affecting the formation and function of the cardiovascular system in the zebrafish embryo.

作者信息

Stainier D Y, Fouquet B, Chen J N, Warren K S, Weinstein B M, Meiler S E, Mohideen M A, Neuhauss S C, Solnica-Krezel L, Schier A F, Zwartkruis F, Stemple D L, Malicki J, Driever W, Fishman M C

机构信息

Cardiovascular Research Center, Massachusetts General Hospital, Charlestown 02129, USA.

出版信息

Development. 1996 Dec;123:285-92. doi: 10.1242/dev.123.1.285.

Abstract

As part of a large-scale mutagenesis screen of the zebrafish genome, we have identified 58 mutations that affect the formation and function of the cardiovascular system. The cardiovascular system is particularly amenable for screening in the transparent zebrafish embryo because the heart and blood vessels are prominent and their function easily examined. We have classified the mutations affecting the heart into those that affect primarily either morphogenesis or function. Nine mutations clearly disrupt the formation of the heart. cloche deletes the endocardium. In cloche mutants, the myocardial layer forms in the absence of the endocardium but is dysmorphic and exhibits a weak contractility. Two loci, miles apart and bonnie and clyde, play a critical role in the fusion of the bilateral tubular primordia. Three mutations lead to an abnormally large heart and one to the formation of a diminutive, dysmorphic heart. We have found no mutation that deletes the myocardial cells altogether, but one, pandora, appears to eliminate the ventricle selectively. Seven mutations interfere with vascular integrity, as indicated by hemorrhage at particular sites. In terms of cardiac function, one large group exhibits a weak beat. In this group, five loci affect both chambers and seven a specific chamber (the atrium or ventricle). For example, the weak atrium mutation exhibits an atrium that becomes silent but has a normally beating ventricle. Seven mutations affect the rhythm of the heart causing, for example, a slow rate, a fibrillating pattern or an apparent block to conduction. In several other mutants, regurgitation of blood flow from ventricle to atrium is the most prominent abnormality, due either to the absence of valves or to poor coordination between the chambers with regard to the timing of contraction. The mutations identified in this screen point to discrete and critical steps in the formation and function of the heart and vasculature.

摘要

作为斑马鱼基因组大规模诱变筛选的一部分,我们鉴定出58个影响心血管系统形成和功能的突变。由于心脏和血管在透明的斑马鱼胚胎中很突出且其功能易于检测,心血管系统特别适合在斑马鱼胚胎中进行筛选。我们已将影响心脏的突变分为主要影响形态发生或功能的突变。九个突变明显破坏心脏的形成。cloche突变会缺失心内膜。在cloche突变体中,心肌层在心内膜缺失的情况下形成,但形态异常且收缩力较弱。两个基因座,相隔甚远(miles apart)和邦妮与克莱德(bonnie and clyde),在双侧管状原基的融合中起关键作用。三个突变导致心脏异常增大,一个导致形成微小、形态异常的心脏。我们没有发现完全缺失心肌细胞的突变,但有一个名为潘多拉(pandora)的突变似乎选择性地消除了心室。七个突变会干扰血管完整性,表现为特定部位出血。在心脏功能方面,一大组表现出搏动微弱。在这一组中,五个基因座影响两个腔室,七个影响特定腔室(心房或心室)。例如,微弱心房突变表现为心房停止跳动但心室跳动正常。七个突变影响心脏节律,例如导致心率缓慢、颤动模式或明显的传导阻滞。在其他几个突变体中,血液从心室反流回心房是最突出的异常,这要么是由于没有瓣膜,要么是由于腔室之间在收缩时间上协调不佳。在这个筛选中鉴定出的突变指向心脏和血管形成与功能中离散且关键的步骤。

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