首页> 外文期刊>Developmental biology >Genetic interactions of eyes absent, twin of eyeless and orthodenticle regulate sine oculis expression during ocellar development in Drosophila.
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Genetic interactions of eyes absent, twin of eyeless and orthodenticle regulate sine oculis expression during ocellar development in Drosophila.

机译:果蝇的眼球发育过程中,无眼,双眼和正齿的双生遗传相互作用调节正弦骨的表达。

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摘要

The homeobox gene sine oculis (so) is required for the development of the entire visual system in Drosophila, which includes the compound eyes, the ocelli, the optic lobe of the brain and the Bolwig's organ. During ocelli development, so expression labels, together with eyes absent (eya), the emergence of the ocellar precursor cells in the third instar eye-antennal disc. Footprinting and misexpression studies have led to the proposal that the Pax6 homologue twin of eyeless (toy) directly regulates the initiation of so expression in ocellar precursor cells. However, so expression in a toy loss-of-function mutant background has not been yet analyzed due to the lack of eye-antennal disc development in strong toy mutant alleles. Using an embryonic eye primordium-specific enhancer of toy, we have rescued the developmental defect of a strong toy mutant allele and analyzed so expression in the ocelli primordium of toy loss-of-function eye-antennal discs during third instar larva. The results show that so expression is only marginally affected in the absence of Toy transcriptional activity and that the toy positive effect on so expression is largely eya-mediated. These results suggest that eya is the main factor controlling both initiation and maintenance of so expression in ocellar precursor cells. In addition, we present the characterization of a new minimal eye/ocellus-specific enhancer of the so gene.
机译:同源盒基因正弦球菌(so)是果蝇整个视觉系统发展所必需的,果蝇包括复眼,眼球,大脑视神经叶和Bolwig器官。在卵泡发育过程中,表达标记与眼睛一起缺失(eya),是第三龄幼虫眼-肛门盘中卵母细胞前体细胞的出现。足迹和错误表达的研究提出了这样的建议,即无眼(玩具)的Pax6同源双生子直接调节卵母细胞前体细胞中so表达的起始。但是,由于在强玩具突变体等位基因中缺乏眼-眼盘发育,因此尚未分析在玩具功能丧失突变体背景下的表达。使用玩具的胚胎眼原基特异性增强剂,我们挽救了一个强的玩具突变体等位基因的发育缺陷,并分析了三龄幼虫在玩具中失去功能的眼-肛门盘的卵原基中的表达。结果表明,在没有Toy转录活性的情况下,so表达仅受到很小的影响,并且玩具对so表达的积极影响很大程度上是由eya介导的。这些结果表明,eya是控制卵母细胞前体细胞中so表达起始和维持的主要因素。此外,我们提出了so基因的新的最小眼/眼特异性增强子的表征。

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