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首页> 外文期刊>The American Naturalist: Devoted to the Conceptual Unification of the Biological Sciences >Avian visual pigments: Characteristics, spectral tuning, and evolution
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Avian visual pigments: Characteristics, spectral tuning, and evolution

机译:鸟类视觉色素:特征,光谱调整和演变

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摘要

Birds are highly visual animals with complex visual systems. In this article, we discuss the spectral characteristics and genetic mechanisms of the spectral tuning of avian visual pigments. The avian retina contains a single type of rod, four spectrally distinct types of single cone, and a single type of double cone photoreceptor. Only the single cones are thought to be involved in color discrimination; double cones are thought to be involved in achromatic visual tasks, such as movement detection and pattern recognition. Visual pigment opsin protein genes in birds are orthologous to those in other vertebrates and have a common origin early in vertebrate evolution. Mechanisms of spectral tuning in the different classes of avian cone visual pigments show similarities in most instances to those in other vertebrates. The exception is the ultraviolet/violet (SWS1) class of pigments; phylogenetic evidence indicates that the ancestral vertebrate SWSI pigment was ultraviolet sensitive (UVS), with different molecular mechanisms accounting for the generation of violet-sensitive (VS) pigments in different vertebrate classes. In birds, however, UVS visual pigments have re-evolved from an ancestral avian VS pigment by using a novel molecular mechanism not seen in other vertebrate classes. This has occurred independently in four of the 14 avian orders examined to date, although the adaptive significance of this is currently unknown.
机译:鸟类是具有复杂视觉系统的高度视觉动物。在本文中,我们讨论了鸟类视觉色素的光谱特性和光谱调节的遗传机制。禽视网膜包含单一类型的视杆,四种在光谱上不同的单一视锥细胞和单一的双视锥感光细胞类型。仅单个锥体被认为与颜色辨别有关。双锥被认为与消色差视觉任务有关,例如运动检测和模式识别。鸟类中的视觉色素视蛋白蛋白基因与其他脊椎动物的同源,并且在脊椎动物进化的早期就有共同的起源。在大多数类别的鸟类视锥色素中,光谱调谐的机制在大多数情况下都与其他脊椎动物相似。紫外线/紫色(SWS1)类颜料除外;系统发育证据表明,祖先的脊椎动物SWSI颜料对紫外线敏感(UVS),其分子机制不同,说明了在不同脊椎动物类别中产生了紫光敏感(VS)颜料。然而,在鸟类中,UVS视觉色素已通过使用其他脊椎动物类别中未发现的新型分子机制,从祖先的鸟类VS色素进化而来。迄今为止,这已经在14个禽类订单中的四个中独立发生,尽管目前尚不清楚其适应性意义。

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