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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Dynamical Analysis of Regulatory Interactions in the Gap Gene System of Drosophila melanogaster
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Dynamical Analysis of Regulatory Interactions in the Gap Gene System of Drosophila melanogaster

机译:果蝇Gap基因系统中调控相互作用的动力学分析。

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Genetic studies have revealed that segment determination in Drosophila melanogaster is based on hierarchical regulatory interactions among maternal coordinate and zygotic segmentation genes. The gap gene system constitutes the most upstream zygotic layer of this regulatory hierarchy, responsible for the initial interpretation of positional information encoded by maternal gradients. We present a detailed analysis of regulatory interactions involved in gap gene regulation based on gap gene circuits, which are mathematical gene network models used to infer regulatory interactions from quantitative gene expression data. Our models reproduce gap gene expression at high accuracy and temporal resolution. Regulatory interactions found in gap gene circuits provide consistent and sufficient mechanisms for gap gene expression, which largely agree with mechanisms previously inferred from qualitative studies of mutant gene expression patterns. Our models predict activation of Kr by Cad and clarify several other regulatory interactions. Our analysis suggests a central role for repressive feedback loops between complementary gap genes. We observe that repressive interactions among overlapping gap genes show anteroposterior asymmetry with posterior dominance. Finally, our models suggest a correlation between timing of gap domain boundary formation and regulatory contributions from the terminal maternal system.
机译:遗传研究表明,果蝇中的节段确定是基于母体坐标和合子节段基因之间的分级调节相互作用。间隙基因系统构成了该调节体系中最上游的合子层,负责对由母体梯度编码的位置信息进行初始解释。我们提出了基于缺口基因电路的缺口基因调控中涉及的调控相互作用的详细分析,所述缺口基因电路是用于从定量基因表达数据中推断调控相互作用的数学基因网络模型。我们的模型以高精度和时间分辨率再现间隔基因表达。在缺口基因电路中发现的调控相互作用为缺口基因表达提供了一致而充分的机制,这在很大程度上与先前从突变基因表达模式的定性研究中推断的机制一致。我们的模型预测了Cad激活Kr,并阐明了其他几种调控相互作用。我们的分析表明互补间隙基因之间的抑制性反馈回路的核心作用。我们观察到重叠间隙基因之间的抑制性相互作用显示前后优势和后优势。最后,我们的模型提出了间隙域边界形成的时间与末期母体系统的调节作用之间的相关性。

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