首页> 美国卫生研究院文献>Springer Open Choice >Insertional mutagenesis screening identifies the zinc finger homeodomain 2 (zfh2) gene as a novel factor required for embryonic leg development in Tribolium castaneum
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Insertional mutagenesis screening identifies the zinc finger homeodomain 2 (zfh2) gene as a novel factor required for embryonic leg development in Tribolium castaneum

机译:插入诱变筛选将锌指同源域2(zfh2)基因鉴定为Tribolium castaneum胚胎腿发育所需的新因子

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摘要

The genetic control of leg development is well characterized in the fly Drosophila melanogaster. These control mechanisms, however, must differ to some degree between different insect species to account for the morphological diversity of thoracic legs in the insects. The legs of the flour beetle Tribolium castaneum differ from the Drosophila legs in their developmental mode as well as in their specific morphology especially at the larval stage. In order to identify genes involved in the morphogenesis of the Tribolium larval legs, we have analyzed EGFP enhancer trap lines of Tribolium. We have identified the zfh2 gene as a novel factor required for normal leg development in Tribolium. RNA interference with zfh2 function leads to two alternative classes of leg phenotype. The loss of a leg segment boundary and the generation of ectopic outgrowths in one class of phenotype suggest a role in leg segmentation and segment growth. The malformation of the pretarsal claw in the second class of phenotype suggests a role in distal development and the morphogenesis of the claw-shaped morphology of the pretarsus. This suggests that zfh2 is involved in the regulation of an unidentified target gene in a concentration-dependent manner. Our results demonstrate that enhancer trap screens in T. castaneum have the potential to identify novel gene functions regulating specific developmental processes.
机译:在果蝇果蝇中,对腿发育的遗传控制具有很好的特征。但是,这些控制机制在不同昆虫物种之间必须有一定程度的差异,以说明昆虫中胸腿的形态多样性。面粉甲虫Tribolium castaneum的腿在果蝇的发育方式以及特定形态方面与果蝇腿不同,尤其是在幼虫阶段。为了鉴定与Tribolium幼虫腿的形态发生有关的基因,我们分析了Tribolium的EGFP增强子陷阱系。我们已经将zfh2基因鉴定为Tribolium中正常腿发育所需的新因子。 RNA对zfh2功能的干扰导致腿表型的两类替代。在一类表型中腿节边界的丧失和异位产物的产生表明在腿节段和节段生长中起作用。第二类表型的前爪畸形表明远端发育和前爪形的形态发生。这表明zfh2以浓度依赖的方式参与了未知目标基因的调控。我们的结果表明,在锥栗中的增强子捕获筛选具有识别调节特定发育过程的新型基因功能的潜力。

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