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Hedgehog directly controls initiation and propagation of retinal differentiation in the Drosophila eye

机译:刺猬直接控制果蝇眼中视网膜分化的起始和传播

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摘要

Patterning of the compound eye begins at the posterior edge of the eye imaginal disc and progresses anteriorly toward the disc margin. The advancing front of ommatidial differentiation is marked by the morphogenetic furrow (MF). Here we show by clonal analysis that Hedgehog (Hh), secreted from two distinct populations of cells has two distinct functions: It was well documented that Hh expression in the differentiating photoreceptor cells drives the morphogenetic furrow. Now we show that, in addition, Hh, secreted from cells at the posterior disc margin, is absolutely required for the initiation of patterning and predisposes ommatidial precursor cells to enter ommatidial assembly later. These two functions of Hh in eye patterning are similar to the biphasic requirement for Sonic Hh in patterning of the ventral neural tube in vertebrates. We show further that Hh induces ommatidial development in the absence of its secondary signals Wingless (Wg) and Dpp and that the primary function of Dpp in MF initiation is the repression of wg, which prevents ommatidial differentiation. Our results show that the regulatory relationships between Hh, Dpp, and Wg in the eye are similar to those found in other imaginal discs such as the leg disc despite obvious differences in their modes of development.
机译:复眼的图案从眼睛假想椎间盘的后边缘开始,并朝着椎间盘边缘向前发展。形态发生犁沟(MF)标记着前进的胚发生分化。在这里,我们通过克隆分析表明,从两个不同的细胞群体中分泌出来的刺猬(Hh)具有两个不同的功能:充分证明,在分化的感光细胞中Hh的表达驱动形态发生沟。现在我们显示,此外,从后椎间盘边缘的细胞分泌的Hh绝对是启动图案形成所必需的,并易于使卵母细胞前体细胞随后进入卵母细胞装配体。 Hh在眼图样中的这两种功能类似于在脊椎动物腹侧神经管的图样中对Sonic Hh的两相需求。我们进一步表明,Hh在没有其次要信号Wingless(Wg)和Dpp的情况下诱导了卵母细胞的发育,并且Dpp在MF启动中的主要功能是抑制wg,这阻止了卵母细胞的分化。我们的研究结果表明,尽管Hh,Dpp和Wg之间的调节方式存在明显差异,但它们在眼睛中的调节关系与其他虚构的盘(如腿间盘)中的调节关系相似。

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