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早期脊椎动物光感受器的进化。

The evolution of early vertebrate photoreceptors.

作者信息

Collin Shaun P, Davies Wayne L, Hart Nathan S, Hunt David M

机构信息

School of Biomedical Sciences, The University of Queensland, Brisbane 4072, Queensland, Australia.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2009 Oct 12;364(1531):2925-40. doi: 10.1098/rstb.2009.0099.

Abstract

Meeting the challenge of sampling an ancient aquatic landscape by the early vertebrates was crucial to their survival and would establish a retinal bauplan to be used by all subsequent vertebrate descendents. Image-forming eyes were under tremendous selection pressure and the ability to identify suitable prey and detect potential predators was thought to be one of the major drivers of speciation in the Early Cambrian. Based on the fossil record, we know that hagfishes, lampreys, holocephalans, elasmobranchs and lungfishes occupy critical stages in vertebrate evolution, having remained relatively unchanged over hundreds of millions of years. Now using extant representatives of these 'living fossils', we are able to piece together the evolution of vertebrate photoreception. While photoreception in hagfishes appears to be based on light detection and controlling circadian rhythms, rather than image formation, the photoreceptors of lampreys fall into five distinct classes and represent a critical stage in the dichotomy of rods and cones. At least four types of retinal cones sample the visual environment in lampreys mediating photopic (and potentially colour) vision, a sampling strategy retained by lungfishes, some modern teleosts, reptiles and birds. Trichromacy is retained in cartilaginous fishes (at least in batoids and holocephalans), where it is predicted that true scotopic (dim light) vision evolved in the common ancestor of all living gnathostomes. The capacity to discriminate colour and balance the tradeoff between resolution and sensitivity in the early vertebrates was an important driver of eye evolution, where many of the ocular features evolved were retained as vertebrates progressed on to land.

摘要

早期脊椎动物应对对古老水生环境进行采样的挑战对它们的生存至关重要,并且会建立一种视网膜蓝图供所有后续脊椎动物后代使用。成像眼睛面临着巨大的选择压力,识别合适猎物和检测潜在捕食者的能力被认为是寒武纪早期物种形成的主要驱动力之一。根据化石记录,我们知道盲鳗、七鳃鳗、全头类、软骨鱼类和肺鱼在脊椎动物进化中占据关键阶段,在数亿年里相对没有变化。现在利用这些“活化石”的现存代表,我们能够拼凑出脊椎动物光感受的进化过程。虽然盲鳗的光感受似乎基于光检测和控制昼夜节律,而非成像,但七鳃鳗的光感受器分为五个不同类别,代表了视杆和视锥二分法中的一个关键阶段。七鳃鳗至少有四种视网膜视锥细胞对视觉环境进行采样,介导明视觉(以及可能的色觉),这种采样策略被肺鱼、一些现代硬骨鱼、爬行动物和鸟类保留。软骨鱼类(至少在鳐类和全头类中)保留了三色视觉,据预测,所有现存有颌类动物的共同祖先中进化出了真正的暗视觉(暗光)。早期脊椎动物辨别颜色以及平衡分辨率和敏感度之间权衡的能力是眼睛进化的一个重要驱动力,随着脊椎动物向陆地进化,许多进化出的眼部特征得以保留。

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Evolution of vertebrate retinal photoreception.脊椎动物视网膜光感受器的进化。
Philos Trans R Soc Lond B Biol Sci. 2009 Oct 12;364(1531):2911-24. doi: 10.1098/rstb.2009.0102.
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THE INTRA-OCULAR COLOUR-FILTERS OF VERTEBRATES.脊椎动物的眼内滤色器
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