首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Stable transgenesis in the marine annelid Platynereis dumerilii sheds new light on photoreceptor evolution
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Stable transgenesis in the marine annelid Platynereis dumerilii sheds new light on photoreceptor evolution

机译:海洋无脊椎动物Ptynereiis dumerilii中的稳定转基因为光感受器的进化提供了新的思路

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摘要

Research in eye evolution has mostly focused on eyes residing in the head. In contrast, noncephalic light sensors are far less understood and rather regarded as evolutionary innovations. We established stable transgenesis in the annelid Platynereis, a reference species for evolutionary and developmental comparisons. EGFP controlled by cis-regulatory elements of r-opsin, a characteristic marker for rhabdomeric photoreceptors, faithfully recapitulates known r-opsin expression in the adult eyes, and marks a pair of pigment-associated frontolateral eyelets in the brain. Unexpectedly, transgenic animals revealed an additional series of photoreceptors in the ventral nerve cord as well as photoreceptors that are located in each pair of the segmental dorsal appendages (notopodia) and project into the ventral nerve cord. Consistent with a photosensory function of these noncephalic cells, decapitated animals display a clear photoavoidance response. Molecular analysis of the receptors suggests that they differentiate independent of pax6, a gene involved in early eye development of many metazoans, and that the ventral cells may share origins with the Hesse organs in the amphioxus neural tube. Finally, expression analysis of opn4×-2 and opn4m-2, two zebrafish orthologs of Platynereis r-opsin, reveals that these genes share expression in the neuromasts, known mechanoreceptors of the lateral line peripheral nervous system. Together, this establishes that noncephalic photoreceptors are more widespread than assumed, and may even reflect more ancient aspects of sensory systems. Our study marks significant advance for the understanding of photoreceptor cell (PRC) evolution and development and for Platynereis as a functional lophotrochozoan model system.
机译:眼睛进化研究主要集中在头部的眼睛上。相比之下,非头颅光传感器远没有被理解,而是被认为是进化的创新。我们在拟南芥中建立了稳定的转基因,后者是进行进化和发育比较的参考物种。由r-视蛋白的顺式调控元件控制的EGFP,其是横纹肌感光细胞的特征性标志物,忠实地概括了成人眼中已知的r-视蛋白表达,并标记了大脑中与色素有关的额叶小眼。出乎意料的是,转基因动物在腹神经索中发现了一系列额外的感光器,并且位于每对节段性附肢(无足小结)中并伸入腹神经索中的感光器。与这些非头颅细胞的光敏功能一致,断头的动物表现出明显的光回避反应。对该受体的分子分析表明,它们独立于pax6分化,该基因与许多后生动物的早期眼睛发育有关,并且腹侧细胞可能与两栖神经管中的黑森州器官共享起源。最后,对桔梗r-视蛋白的两个斑马鱼直系同源基因opn4×-2和opn4m-2的表达分析表明,这些基因在侧支周围神经系统的机械感受器神经瘤中共享表达。在一起,这证明了非头颅的感光器比假设的更为广泛,甚至可能反映了感觉系统的更古老的方面。我们的研究标志着对感光细胞(PRC)进化和发展以及作为功能性滋养体模型系统的侧柏的重大进步。

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