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昆虫中神经母细胞表达模式的保护和进化修饰。

Conservation and evolutionary modifications of neuroblast expression patterns in insects.

机构信息

School of Biological and Chemical Sciences, Queen Mary, University of London, Mile End Road, London E1 4NS, UK.

School of Biological and Chemical Sciences, Queen Mary, University of London, Mile End Road, London E1 4NS, UK.

出版信息

Dev Biol. 2014 Apr 1;388(1):103-16. doi: 10.1016/j.ydbio.2014.01.028. Epub 2014 Feb 10.

Abstract

One of the major questions in evolutionary developmental neurobiology is how neuronal networks have been adapted to different morphologies and behaviour during evolution. Analyses of neurogenesis in representatives of all arthropod species have revealed evolutionary modifications of various developmental mechanisms. Among others, variations can be seen in mechanisms that are associated with changes in neural progenitor identity, which in turn determines the neuronal subtype of their progeny. Comparative analyses of the molecular processes that underlie the generation of neuronal identity might therefore uncover the steps of evolutionary changes that eventually resulted in modifications in neuronal networks. Here we address this question in the flour beetle Tribolium castaneum by analyzing and comparing the development and expression profile of neural stem cells (neuroblasts) to the published neuroblast map of the fruit fly Drosophila melanogaster. We show that substantial changes in the identity of neuroblasts have occurred during insect evolution. In almost all neuroblasts the relative positions in the ventral hemi-neuromeres are conserved; however, in over half of the neuroblasts the time of formation as well as the gene expression profile has changed. The neuroblast map presented here can be used for future comparative studies on individual neuroblast lineages in D. melanogaster and T. castaneum and additional markers and information on lineages can be added. Our data suggest that evolutionary changes in the expression profile of individual neuroblasts might have contributed to the evolution of neural diversity and subsequently to changes in neuronal networks in arthropod.

摘要

进化发育神经生物学的一个主要问题是,在进化过程中,神经元网络如何适应不同的形态和行为。对所有节肢动物代表物种的神经发生分析揭示了各种发育机制的进化改变。其中,可以看到与神经祖细胞身份变化相关的机制的变化,而神经祖细胞身份又决定了其后代的神经元亚型。因此,对产生神经元身份的分子过程进行比较分析,可能会揭示导致神经元网络改变的进化变化的步骤。在这里,我们通过分析和比较粉甲虫 Tribolium castaneum 的神经干细胞(神经母细胞)的发育和表达谱,以及与已发表的果蝇 Drosophila melanogaster 的神经母细胞图谱进行比较,来解决这个问题。我们表明,在昆虫进化过程中,神经母细胞的身份发生了实质性的变化。在几乎所有的神经母细胞中,其在腹侧半神经节中的相对位置是保守的;然而,在超过一半的神经母细胞中,其形成时间以及基因表达谱都发生了变化。这里呈现的神经母细胞图谱可用于未来对果蝇和粉甲虫个别神经母细胞谱系的比较研究,并可添加关于谱系的其他标记和信息。我们的数据表明,个别神经母细胞表达谱的进化变化可能有助于神经多样性的进化,进而导致节肢动物神经元网络的改变。

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