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Special Feature: Distinct roles of the homeotic genes Ubx and abd-A in beetle embryonic abdominal appendage development

机译:特点:同源基因Ubx和abd-A在甲虫中的独特作用 胚胎腹部附件发育

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摘要

Insects are easily distinguishable by the absence of legs on the adult abdomen. Studies performed on the Dipteran, Drosophila melanogaster, indicate that this is because of the repressive effects of the homeotic genes Ultrabithorax (Ubx) and abdominal-A (abd-A) on the limb promoting gene Distal-less (Dll) during embryonic development. However, in many species appendage-like structures are present on abdominal segments in embryonic and juvenile stages. Here, by using classical genetics and double-stranded RNA-mediated gene silencing in the red flour beetle, Tribolium castaneum, a species that develops an appendage on the first abdominal segment, we investigate the roles of Ubx and Abd-A in abdominal limb development. We find that in Tribolium, Abd-A, but not Ubx, represses early expression of Dll in the embryonic abdomen. Ubx appears to modify the A1 appendage. This difference in the activities of Abd-A and Ubx is critical for proper development of this appendage. We suggest that an ancestral role of Abd-A in insect abdominal appendage development was in the repression of Dll initiation and that of Ubx was in modulation of abdominal appendage morphology.
机译:通过成年腹部没有腿可以很容易地区分出昆虫。对Dipteran的果蝇Drosophila melanogaster进行的研究表明,这是由于同源基因Ultrabithorax(Ubx)和abdominant-A(abd-A)在胚胎发育过程中对肢体促进基因Distal-less(Dll)的抑制作用。然而,在许多物种中,在胚胎和幼年阶段的腹部部分都存在类似附件的结构。在这里,通过使用经典遗传学和红色面粉甲虫Tribolium castaneum中的双链RNA介导的基因沉默,Tribolium castaneum是在第一个腹部节上形成附肢的物种,我们研究了Ubx和Abd-A在腹部四肢发育中的作用。我们发现在Tribolium中,Abd-A而不是Ubx抑制Dll在胚胎腹部的早期表达。 UBX似乎可以修改A1附件。 Abd-A和Ubx的活性差异对于这种附件的正常发育至关重要。我们建议 Abd-A在昆虫腹部附件发育中的祖先作用是 在抑制Dll起始,而Ubx在抑制 腹部附件的形态。

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