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A Large Scale Systemic RNAi Screen in the Red Flour Beetle Tribolium castaneum Identifies Novel Genes Involved in Insect Muscle Development

机译:红粉甲虫Tribolium castaneum的大规模系统RNAi筛选确定涉及昆虫肌肉发育的新基因。

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摘要

Although muscle development has been widely studied in Drosophila melanogaster there are still many gaps in our knowledge, and it is not known to which extent this knowledge can be transferred to other insects. To help in closing these gaps we participated in a large-scale RNAi screen that used the red flour beetle, Tribolium castaneum, as a screening platform. The effects of systemic RNAi were screened upon double-stranded RNA injections into appropriate muscle-EGFP tester strains. Injections into pupae were followed by the analysis of the late embryonic/early larval muscle patterns, and injections into larvae by the analysis of the adult thoracic muscle patterns. Herein we describe the results of the first-pass screens with pupal and larval injections, which covered ∼8,500 and ∼5,000 genes, respectively, of a total of ∼16,500 genes of the Tribolium genome. Apart from many genes known from Drosophila as regulators of muscle development, a collection of genes previously unconnected to muscle development yielded phenotypes in larval body wall and leg muscles as well as in indirect flight muscles. We then present the main candidates from the pupal injection screen that remained after being processed through a series of verification and selection steps. Further, we discuss why distinct though overlapping sets of genes are revealed by the Drosophila and Tribolium screening approaches.
机译:尽管果蝇的肌肉发育已得到广泛研究,但我们的知识仍然存在许多空白,并且尚不清楚该知识可在多大程度上转移到其他昆虫上。为了帮助缩小这些差距,我们参加了一次大规模的RNAi筛选,该筛选使用了红色的甲虫Tribolium castaneum作为筛选平台。在将双链RNA注入适当的肌肉EGFP测试菌株后,筛选了全身RNAi的作用。 into注入后,分析后期的胚胎/早期幼虫的肌肉模式,并通过分析成年胸肌的模式注入幼虫。在这里,我们描述了p和幼虫注射的第一次通过筛选的结果,该筛选分别覆盖了Tribolium基因组的总共约16,500个基因的约8,500和5,000个基因。除了果蝇已知的许多作为肌肉发育调节因子的基因外,以前与肌肉发育无关的一系列基因在幼虫的体壁和腿部肌肉以及间接飞行的肌肉中产生了表型。然后,我们将介绍来自injection注射屏幕的主要候选对象,这些候选对象经过一系列验证和选择步骤进行处理后仍然存在。此外,我们讨论了果蝇和Tribolium筛选方法为何揭示了不同但重叠的基因集。

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