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A Conserved Developmental Mechanism Builds Complex Visual Systems in Insects and Vertebrates

机译:保守的发展机制可在昆虫和脊椎动物中建立复杂的视觉系统

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摘要

The visual systems of vertebrates and many other bilaterian clades consist of complex neural structures guiding a wide spectrum of behaviors. Homologies at the level of cell types and even discrete neural circuits have been proposed, but many questions of how the architecture of visual neuropils evolved among different phyla remain open. In this review we argue that the profound conservation of genetic and developmental steps generating the eye and its target neuropils in fish and fruit flies supports a homology between some core elements of bilaterian visual circuitries. Fish retina and tectum, and fly optic lobe, develop from a partitioned, unidirectionally proliferating neurectodermal domain that combines slowly dividing neuroepithelial stem cells and rapidly amplifying progenitors with shared genetic signatures to generate large numbers and different types of neurons in a temporally ordered way. This peculiar ‘conveyor belt neurogenesis’ could play an essential role in generating the topographically ordered circuitry of the visual system.
机译:脊椎动物和许多其他双边进化枝的视觉系统由指导广泛行为的复杂神经结构组成。已经提出了在细胞类型甚至离散神经回路水平上的同源性,但是关于视觉神经柱的结构如何在不同门之间进化的许多问题仍然悬而未决。在这篇综述中,我们认为,在鱼类和果蝇中产生眼睛及其靶神经纤维的遗传和发育步骤的深层保守性支持了双边视觉回路某些核心元素之间的同源性。鱼的视网膜,顶盖和苍蝇的视神经叶是由一个分区的,单向增殖的中性神经真皮结构域发育而成的,该结构域结合了缓慢分裂的神经上皮干细胞,并迅速扩增具有共同遗传特征的祖细胞,从而以时间有序的方式生成大量不同类型的神经元。这种特殊的“输送带神经发生”可能在生成视觉系统的地形有序电路中发挥重要作用。

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