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A comparative examination of neural circuit and brain patterning between the lamprey and amphioxus reveals the evolutionary origin of the vertebrate visual center

机译:对七rey鳗和文昌鱼之间的神经回路和大脑模式的比较研究揭示了脊椎动物视觉中心的进化起源

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摘要

Vertebrates are equipped with so-called camera eyes, which provide them with image-forming vision. Vertebrate image-forming vision evolved independently from that of other animals and is regarded as a key innovation for enhancing predatory ability and ecological success. Evolutionary changes in the neural circuits, particularly the visual center, were central for the acquisition of image-forming vision. However, the evolutionary steps, from protochordates to jaw-less primitive vertebrates and then to jawed vertebrates, remain largely unknown. To bridge this gap, we present the detailed development of retinofugal projections in the lamprey, the neuroarchitecture in amphioxus, and the brain patterning in both animals. Both the lateral eye in larval lamprey and the frontal eye in amphioxus project to a light-detecting visual center in the caudal prosencephalic region marked by Pax6, which possibly represents the ancestral state of the chordate visual system. Our results indicate that the visual system of the larval lamprey represents an evolutionarily primitive state, forming a link from protochordates to vertebrates and providing a new perspective of brain evolution based on developmental mechanisms and neural functions. J. Comp. Neurol. 523:251–261, 2015.
机译:脊椎动物配备了所谓的照相机眼睛,可为它们提供成像的视觉。脊椎动物的影像形成视觉独立于其他动物而演化,被认为是增强掠食能力和生态成功的关键创新。神经回路的进化变化,特别是视觉中心,是获取图像形成视觉的关键。然而,从原生动物到无颚的原始脊椎动物再到有颚的脊椎动物的进化步骤仍然是未知的。为了弥合这一差距,我们介绍了七lamp鳗中视网膜视真菌投射的详细发展,两栖动物的神经结构以及两种动物的大脑模式。幼虫lamp鱼的侧眼和两栖动物的前眼都投射到Pax6标记的尾部前脑区域的光探测视觉中心,这可能代表了cho状视觉系统的祖先状态。我们的结果表明,幼虫七爪鱼的视觉系统代表了一种进化的原始状态,形成了从原脚目动物到脊椎动物的联系,并基于发育机制和神经功能提供了大脑进化的新视角。 J.比较神经元。 523:251-261,2015年。

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