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首页> 外文期刊>EvoDevo >Multiple Sox genes are expressed in stem cells or in differentiating neuro-sensory cells in the hydrozoan Clytia hemisphaerica
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Multiple Sox genes are expressed in stem cells or in differentiating neuro-sensory cells in the hydrozoan Clytia hemisphaerica

机译:多个Sox基因在水生Clytia hemisphaerica的干细胞或分化神经感应细胞中表达

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Background The Sox genes are important regulators of animal development belonging to the HMG domain-containing class of transcription factors. Studies in bilaterian models have notably highlighted their pivotal role in controlling progression along cell lineages, various Sox family members being involved at one side or the other of the critical balance between self-renewing stem cells/proliferating progenitors, and cells undergoing differentiation. Results We have investigated the expression of 10 Sox genes in the cnidarian Clytia hemisphaerica. Our phylogenetic analyses allocated most of these Clytia genes to previously-identified Sox groups: SoxB (CheSox2, CheSox3, CheSox10, CheSox13, CheSox14), SoxC (CheSox12), SoxE (CheSox1, CheSox5) and SoxF (CheSox11), one gene (CheSox15) remaining unclassified. In the planula larva and in the medusa, the SoxF orthologue was expressed throughout the endoderm. The other genes were expressed either in stem cells/undifferentiated progenitors, or in differentiating (-ed) cells with a neuro-sensory identity (nematocytes or neurons). In addition, most of them were expressed in the female germline, with their maternal transcripts either localised to the animal region of the egg, or homogeneously distributed. Conclusions Comparison with other cnidarians, ctenophores and bilaterians suggest ancient evolutionary conservation of some aspects of gene expression/function at the Sox family level: (i) many Sox genes are expressed in stem cells and/or undifferentiated progenitors; (ii) other genes, or the same under different contexts, are associated with neuro-sensory cell differentiation; (iii) Sox genes are commonly expressed in the germline; (iv) SoxF group genes are associated with endodermal derivatives. Strikingly, total lack of correlation between a given Sox orthology group and expression/function in stem cells/progenitors vs. in differentiating cells implies that Sox genes can easily switch from one side to the other of the balance between these fundamental cellular states in the course of evolution.
机译:背景技术Sox基因是重要的动物发育调节剂,属于含HMG结构域的转录因子。在双边模型中的研究尤其突出了它们在控制沿细胞谱系进展方面的关键作用,各种Sox家族成员一方面参与自我更新的干细胞/增殖祖细胞与经历分化的细胞之间的关键平衡,另一方面参与其中。结果我们研究了10个Sox基因在CNC中的Clytia hemisphaerica中的表达。我们的系统发育分析将大多数Clytia基因分配给了先前确定的Sox组:SoxB(CheSox2,CheSox3,CheSox10,CheSox13,CheSox14),SoxC(CheSox12),SoxE(CheSox1,CheSox5)和SoxF(CheSox11),一个基因(CheSox15) )保持未分类状态。在扁平幼虫和水母中,SoxF直向同源物在整个内胚层中表达。其他基因在干细胞/未分化祖细胞中或在具有神经感觉同一性的分化(-ed)细胞(神经细胞或神经元)中表达。此外,它们中的大多数在雌性种系中表达,其母本转录本位于卵的动物区域或均匀分布。结论与其他cnidarians,十足动物和bilaterians的比较表明,在Sox家族水平上基因表达/功能的某些方面具有古老的进化保守性:(i)许多Sox基因在干细胞和/或未分化的祖细胞中表达; (ii)其他基因,或在不同情况下相同的基因,与神经感觉细胞分化有关; (iii)Sox基因通常在种系中表达; (iv)SoxF组基因与内胚层衍生物相关。令人惊讶的是,给定的Sox矫正组与干细胞/祖细胞与分化细胞中的表达/功能之间完全缺乏相关性,这意味着在此过程中,Sox基因很容易从一侧切换到另一侧,从而达到这些基本细胞状态之间的平衡。进化

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