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Caudal Regulates the Spatiotemporal Dynamics of Pair-Rule Waves in Tribolium

机译:尾部调节Tribolium中成对规则波的时空动力学

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摘要

In the short-germ beetle Tribolium castaneum, waves of pair-rule gene expression propagate from the posterior end of the embryo towards the anterior and eventually freeze into stable stripes, partitioning the anterior-posterior axis into segments. Similar waves in vertebrates are assumed to arise due to the modulation of a molecular clock by a posterior-to-anterior frequency gradient. However, neither a molecular candidate nor a functional role has been identified to date for such a frequency gradient, either in vertebrates or elsewhere. Here we provide evidence that the posterior gradient of Tc-caudal expression regulates the oscillation frequency of pair-rule gene expression in Tribolium. We show this by analyzing the spatiotemporal dynamics of Tc-even-skipped expression in strong and mild knockdown of Tc-caudal, and by correlating the extension, level and slope of the Tc-caudal expression gradient to the spatiotemporal dynamics of Tc-even-skipped expression in wild type as well as in different RNAi knockdowns of Tc-caudal regulators. Further, we show that besides its absolute importance for stripe generation in the static phase of the Tribolium blastoderm, a frequency gradient might serve as a buffer against noise during axis elongation phase in Tribolium as well as vertebrates. Our results highlight the role of frequency gradients in pattern formation.
机译:在短种甲虫Tribolium castaneum中,成对规则基因表达的波从胚胎的后端向前方传播,并最终冻结成稳定的条纹,将前后轴划分为多个部分。假定脊椎动物中类似的波是由于分子钟通过前后频率梯度的调制而产生的。但是,到目前为止,在脊椎动物或其他地方,尚未发现这种频率梯度的分子候选物或功能性作用。在这里我们提供证据,Tc尾部表达的后梯度调节Tribolium中成对规则基因表达的振荡频率。我们通过分析Tc尾部强弱敲击中Tc均匀跳动表达的时空动态,以及将Tc尾部表达梯度的延伸,水平和斜率与Tc均匀时空动态相关联,来显示这一点。跳过野生型以及Tc尾调控因子的不同RNAi敲低表达。此外,我们显示,除了在Tribolium blastoderm静态阶段中条带生成方面绝对重要之外,频率梯度还可以充当Tribolium以及脊椎动物在轴延长阶段期间抵御噪声的缓冲区。我们的结果突出了频率梯度在图案形成中的作用。

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