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首页> 外文期刊>Developmental biology >The Tribolium columnar genes reveal conservation and plasticity in neural precursor patterning along the embryonic dorsal-ventral axis
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The Tribolium columnar genes reveal conservation and plasticity in neural precursor patterning along the embryonic dorsal-ventral axis

机译:Tribolium柱状基因揭示了沿胚胎背腹轴的神经前体模式的保守性和可塑性

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The Drosophila columnar genes are key regulators of neural precursor formation and patterning along the dorsal-ventral axis of the developing CNS and include ventral nerve cord defective (vnd), intermediate nerve cord defective (ind), muscle segment homeodomain (msh). and Epidermal growth factor receptor (Egfr). To investigate the evolution of neural pattern formation, we identified and determined the expression patterns of Tribolium vnd, ind, and msh, and found that they are expressed in the medial, intermediate, and lateral columns of the developing CNS, respectively, in patterns similar, but not identical, to their Drosophilia orthologs. The pattern of Egfr activity suggests that the genetic regulatory mechanisms that initiate Tc-vnd expression are similar in Drosophila and Tribolium, whereas those that initiate Tc-ind have diverged. RNAi analyses of gene function show that Tc-vnd and Tc-ind promote the formation of medial and intermediate column neural precursors and that vnd-mediated repression of ind establishes the boundary between the medial and intermediate columns. These data suggest that columnar gene expression and function underlie neural pattern formation in Drosophila, Tribolium, and potentially all insects, but that subtle spatiotemporal differences in expression of these genes may produce species-specific morphological differences. (C) 2005 Elsevier Inc. All rights reserved.
机译:果蝇的柱状基因是神经中枢沿发育中枢神经的前腹形成和形成的关键调控因子,包括腹侧神经脊髓缺损(vnd),中枢神经脊髓缺损(ind),肌节同源域(msh)。和表皮生长因子受体(Egfr)。为了调查神经模式形成的演变,我们确定并确定了Tribolium v​​nd,ind和msh的表达模式,发现它们分别在发育中的CNS的内侧,中间和外侧列中表达,其模式相似,但与他们的果蝇直系同源物不同。 Egfr活性的模式表明,启动Tc-vnd表达的遗传调控机制在果蝇和Tribolium中相似,而启动Tc-ind的遗传调控机制却有所不同。基因功能的RNAi分析表明,Tc-vnd和Tc-ind促进了内侧和中间柱神经前体的形成,而vnd介导的ind抑制建立了内侧和中间柱之间的边界。这些数据表明在果蝇,Tribolium和可能的所有昆虫中,柱状基因的表达和功能是神经模式形成的基础,但是这些基因表达的细微时空差异可能会产生物种特异性的形态学差异。 (C)2005 Elsevier Inc.保留所有权利。

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