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A mosaic of independent innovations involving eyes shut are critical for the evolutionary transition from fused to open rhabdoms

机译:涉及眼睛的独立创新的马赛克对于从融合到开放素质的进化过渡至关重要

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A fundamental question in evolutionary biology is how developmental processes are modified to produce morphological innovations while abiding by functional constraints. Here we address this question by investigating the cellular mechanism responsible for the transition between fused and open rhabdoms in ommatidia of apposition compound eyes; a critical step required for the development of visual systems based on neural superposition. Utilizing Drosophila and Tribolium as representatives of fused and open rhabdom morphology in holometabolous insects respectively, we identified three changes required for this innovation to occur. First, the expression pattern of the extracellular matrix protein Eyes Shut (EYS) was co-opted and expanded from mechanosensory neurons to photoreceptor cells in taxa with open rhabdoms. Second, EYS homologs obtained a novel extension of the amino terminus leading to the internalization of a cleaved signal sequence. This amino terminus extension does not interfere with cleavage or function in mechanosensory neurons, but it does permit specific targeting of the EYS protein to the apical photoreceptor membrane. Finally, a specific interaction evolved between EYS and a subset of Prominin homologs that is required for the development of open, but not fused, rhabdoms. Together, our findings portray a case study wherein the evolution of a set of molecular novelties has precipitated the origin of an adaptive photoreceptor cell arrangement.
机译:进化生物学中的一个基本问题是如何修改发展过程,以产生形态创新,同时遵循功能约束。在这里,我们通过调查负责融合复合眼睛的杂散和开放rhabdom之间的转型的蜂窝机制来解决这个问题;基于神经叠加的视觉系统开发所需的关键步骤。利用果蝇和翠菊作为融合和开放rhabdom的代表分别在储藏虫昆虫中,我们确定了这种创新所需的三种变化。首先,将细胞外基质蛋白的表达模式关闭(Eys)与机械感性神经元共选择并扩展到具有开放素数的分类群中的感光细胞。其次,EYS同源物获得了氨基末端的新延伸,导致切割信号序列的内化。该氨基末端延伸不会干扰机械感性神经元的切割或功能,但它确实允许Eys蛋白对顶端光感受膜的特异性靶向。最后,在EYS之间演变的特定相互作用和开放的开放所需的促进同源物的子集,但不融合,钩对钩对策。我们的研究结果描绘了一种案例研究,其中一组分子Noveltize的演变沉淀了适应性光感受器细胞布置的起源。

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