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首页> 外文期刊>BMC Developmental Biology >The frizzled pathway regulates the development of arista laterals.
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The frizzled pathway regulates the development of arista laterals.

机译:卷曲的途径调节了阿里斯塔侧枝的发育。

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Background The frizzled pathway in Drosophila has been studied intensively for its role in the development of planar polarity in wing hairs, thoracic bristles and ommatidia. Selected cells in the arista (the terminal segment of the antenna) elaborate a lateral projection that shares characteristics with both hairs and bristles. Results We found that mutations in putative downstream members of the frizzled pathway, such as inturned resulted in multipled and split laterals, but no obvious polarity defects. Mutations in upstream genes such as frizzled did not show an adult arista phenotype. When we examined lateral development in the mutants we found that, as is the case on the wing for hair development the frizzled pathway regulated the subcellular location for lateral initiation. However, on the arista an altered location for lateral initiation did not result in altered polarity, as did an altered site for hair initiation. The regulation of lateral development involved the preferential accumulation of Frizzled protein at the distal edges of lateral cells much as is seen on the wing. In contrast to the situation in wing cells, in arista cells the location for lateral initiation was close to but did not overlap the region of preferential Frizzled accumulation. Conclusion Our data indicates that a modified version of the frizzled pathway regulates arista development. We conclude that the lack of a polarity defect in mutant aristae is likely to be a consequence of inherent differences in the cell biology of wing hair and lateral forming cells.
机译:背景技术果蝇中的卷曲通道在翼毛,胸毛和胸膜的平面极性发展中的作用已得到深入研究。在阿里斯塔(天线的末端)中选定的单元精心制作的侧向投影与头发和鬃毛都有共同的特征。结果我们发现卷曲的途径的推定下游成员中的突变,例如内向突变,导致了多个分支和分裂分支,但没有明显的极性缺陷。上游基因的突变(如卷曲)没有显示成年的阿里斯塔表型。当我们检查突变体的侧向发育时,我们发现,就像毛发发育的翅膀一样,卷曲的途径调节了侧向起始的亚细胞位置。然而,在阿里斯塔上,侧向起始位置的改变并没有导致极性的改变,毛发起始位置的改变也没有。侧向发育的调节涉及侧翼细胞远端边缘上卷曲蛋白的优先积累,就像在机翼上看到的那样。与机翼细胞的情况相反,在阿里斯塔细胞中,侧向起始的位置靠近但不重叠优先卷曲的区域。结论我们的数据表明卷曲通道的修饰形式调节了阿里斯塔的发育。我们得出结论,突变的阿里斯达里缺乏极性缺陷,可能是由于翼毛和侧向形成细胞的细胞生物学内在差异造成的。

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