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一个保守的转录网络调控果蝇视觉系统中基板的发育。

A conserved transcriptional network regulates lamina development in the Drosophila visual system.

机构信息

CABD (Andalusian Centre for Developmental Biology), CSIC-UPO-JA, Seville 41013, Spain.

CABD (Andalusian Centre for Developmental Biology), CSIC-UPO-JA, Seville 41013, Spain

出版信息

Development. 2014 Jul;141(14):2838-47. doi: 10.1242/dev.108670. Epub 2014 Jun 12.

Abstract

The visual system of insects is a multilayered structure composed externally by the compound eye and internally by the three ganglia of the optic lobe: lamina, medulla and the lobula complex. The differentiation of lamina neurons depends heavily on Hedgehog (Hh) signaling, which is delivered by the incoming photoreceptor axons, and occurs in a wave-like fashion. Despite the primary role of lamina neurons in visual perception, it is still unclear how these neurons are specified from neuroepithelial (NE) progenitors. Here we show that a homothorax (hth)-eyes absent (eya)-sine oculis (so)-dachshund (dac) gene regulatory cassette is involved in this specification. Lamina neurons differentiate from NE progenitors that express hth, eya and so. One of the first events in the differentiation of lamina neurons is the upregulation of dac expression in response to Hh signaling. We show that this dac upregulation, which marks the transition from NE progenitors into lamina precursors, also requires Eya/So, the expression of which is locked in by mutual feedback. dac expression is crucial for lamina differentiation because it ensures repression of hth, a negative regulator of single-minded, and thus dac allows further lamina neuron differentiation. Therefore, the specification of lamina neurons is controlled by coupling the cell-autonomous hth-eya-so-dac regulatory cassette to Hh signaling.

摘要

昆虫的视觉系统是一个多层次的结构,外部由复眼组成,内部由视神经叶的三个神经节组成:视网膜、脑髓质和小叶复合体。视网膜神经元的分化在很大程度上依赖于 Hedgehog(Hh)信号,该信号由传入的光感受器轴突传递,并以波状方式发生。尽管视网膜神经元在视觉感知中起着主要作用,但仍不清楚这些神经元如何从神经上皮(NE)祖细胞中特化而来。在这里,我们表明,同源异形盒基因(hth)-眼睛缺失(eya)-无眼(so)-达克斯猎犬(dac)基因调控盒参与了这一特化过程。视网膜神经元从表达 hth、eya 和 so 的 NE 祖细胞中分化而来。视网膜神经元分化的第一个事件之一是对 Hh 信号的响应上调 dac 表达。我们表明,这种 dac 上调标志着从 NE 祖细胞到视网膜前体细胞的转变,也需要 Eya/So,其表达被相互反馈锁定。dac 表达对于视网膜分化至关重要,因为它确保了单眼负调节因子 hth 的抑制,因此 dac 允许进一步的视网膜神经元分化。因此,视网膜神经元的特化是通过将细胞自主的 hth-eya-so-dac 调控盒与 Hh 信号偶联来控制的。

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