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首页> 外文期刊>Development >Modular development of the teleost trunk along the dorsoventral axis and zic1/zic4 as selector genes in the dorsal module
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Modular development of the teleost trunk along the dorsoventral axis and zic1/zic4 as selector genes in the dorsal module

机译:硬骨干沿背腹轴的模块化发育和zic1 / zic4作为背侧模块中的选择基因

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Teleost fish exhibit remarkable diversity in morphology, such as fins and coloration, particularly on the dorsal side. These structures are evolutionary adaptive because their back is highly visible to other individuals. However, owing to the late phenotypic appearance (from larva to adult) and lack of appropriate mutants, the genetic mechanisms that regulate these dorsoventrally asymmetric external patterns are largely unknown. To address this, we have analyzed the spontaneous medaka mutant Double anal fin (Da), which exhibits a mirror-image duplication of the ventral half across the lateral midline from larva to adult. Da is an enhancer mutant for zic1 and zic4 in which their expression in dorsal somites is lost. We show that the dorsoventral polarity in Da somites is lost and then demonstrate using transplantation techniques that somites and their derived tissues globally determine the multiple dorsal-specific characteristics of the body (fin morphology and pigmentation) from embryo to adult. Intriguingly, the zic1/zic4 expression in the wild type persists throughout life in the dorsal parts of somite derivatives, i.e. the myotome, dermis and vertebrae, forming a broad dorsal domain in the trunk. Comparative analysis further implies a central role for zic1/zic4 in morphological diversification of the teleost body. Taken together, we propose that the teleost trunk consists of dorsal/ventral developmental modules and that zic1/zic4 in somites function as selector genes in the dorsal module to regulate multiple dorsal morphologies
机译:硬骨鱼类在形态上表现出显着的多样性,例如鳍和着色,特别是在背侧。这些结构具有进化适应性,因为它们的背面对其他人高度可见。然而,由于晚期表型出现(从幼虫到成年)和缺乏适当的突变体,调节这些背腹不对称外部模式的遗传机制在很大程度上尚不清楚。为了解决这个问题,我们分析了自发的medaka突变体Double anal fin(Da),它在从幼虫到成虫的侧中线上表现出腹侧半部的镜像重复。 Da是zic1和zic4的增强子突变体,其中它们在背侧节中的表达丢失。我们显示Da腹节中的背腹极性丢失,然后证明使用了移植技术,该节体及其衍生组织在全球范围内确定了从胚胎到成年的人体的多个背特定于身体的特征(鳍形态和色素沉着)。有趣的是,野生型的zic1 / zic4表达在整个生命过程中一直存在于somite衍生物的背侧部分,即肌节,真皮和椎骨,在躯干中形成了一个宽阔的背域。比较分析进一步暗示了zic1 / zic4在硬骨体形态多样化中的核心作用。综上所述,我们建议硬骨干躯干由背侧/腹侧发育模块组成,而体节中的zic1 / zic4作为背侧模块中的选择基因来调节多种背侧形态

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