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原索动物的Zic基因定义了原始体节区室,并突出了神经嵴进化的分子变化。

Protochordate Zic genes define primitive somite compartments and highlight molecular changes underlying neural crest evolution.

作者信息

Gostling Neil J, Shimeld Sebastian M

机构信息

School of Animal and Microbial Sciences, University of Reading, P.O. Box 228, Whiteknights, Reading RG6 6AJ, United Kingdom.

出版信息

Evol Dev. 2003 Mar-Apr;5(2):136-44. doi: 10.1046/j.1525-142x.2003.03020.x.

Abstract

The vertebrate Zic gene family encodes C2H2 zinc finger transcription factors closely related to the Gli proteins. Zic genes are expressed in multiple areas of developing vertebrate embryos, including the dorsal neural tube where they act as potent neural crest inducers. Here we describe the characterization of a Zic ortholog from the amphioxus Branchiostoma floridae and further describe the expression of a Zic ortholog from the ascidian Ciona intestinalis. Molecular phylogenetic analysis and sequence comparisons suggest the gene duplications that formed the vertebrate Zic family were specific to the vertebrate lineage. In Ciona maternal CiZic/Ci-macho1 transcripts are localized during cleavage stages by asymmetric cell division, whereas zygotic expression by neural plate cells commences during neurulation. The amphioxus Zic ortholog AmphiZic is expressed in dorsal mesoderm and ectoderm during gastrulation, before being eliminated first from midline cells and then from all neurectoderm during neurulation. After neurulation, expression is reactivated in the dorsal neural tube and dorsolateral somite. Comparison of CiZic and AmphiZic expression with vertebrate Zic expression leads to two main conclusions. First, Zic expression allows us to define homologous compartments between vertebrate and amphioxus somites, showing primitive subdivision of vertebrate segmented mesoderm. Second, we show that neural Zic expression is a chordate synapomorphy, whereas the precise pattern of neural expression has evolved differently on the different chordate lineages. Based on these observations we suggest that a change in Zic regulation, specifically the evolution of a dorsal neural expression domain in vertebrate neurulae, was an important step in the evolution of the neural crest.

摘要

脊椎动物的Zic基因家族编码与Gli蛋白密切相关的C2H2锌指转录因子。Zic基因在发育中的脊椎动物胚胎的多个区域表达,包括背神经管,在那里它们作为强大的神经嵴诱导因子发挥作用。在这里,我们描述了佛罗里达文昌鱼Zic直系同源基因的特征,并进一步描述了海鞘肠鳃纲动物Zic直系同源基因的表达。分子系统发育分析和序列比较表明,形成脊椎动物Zic家族的基因复制是脊椎动物谱系特有的。在海鞘中,母源CiZic/Ci-macho1转录本在卵裂阶段通过不对称细胞分裂定位,而神经板细胞的合子表达在神经胚形成期间开始。文昌鱼的Zic直系同源基因AmphiZic在原肠胚形成期间在背侧中胚层和外胚层表达,然后在神经胚形成期间首先从中线细胞中消失,然后从所有神经外胚层中消失。神经胚形成后,表达在背神经管和背外侧体节中重新激活。将CiZic和AmphiZic的表达与脊椎动物Zic的表达进行比较得出两个主要结论。首先,Zic的表达使我们能够定义脊椎动物和文昌鱼体节之间的同源区室,显示出脊椎动物分节中胚层的原始细分。其次,我们表明神经Zic表达是脊索动物的共有衍征,而神经表达的精确模式在不同的脊索动物谱系中以不同的方式进化。基于这些观察结果,我们认为Zic调控的变化,特别是脊椎动物神经胚中背侧神经表达域的进化,是神经嵴进化中的一个重要步骤。

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