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首页> 外文期刊>Journal of Comparative Physiology, A. Sensory, Neural, and Behavioral Physiology >Visual pigments, oil droplets, ocular media and cone photoreceptor distribution in two species of passerine bird: the blue tit (Parus caeruleus L.) and the blackbird (Turdus merula L.)
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Visual pigments, oil droplets, ocular media and cone photoreceptor distribution in two species of passerine bird: the blue tit (Parus caeruleus L.) and the blackbird (Turdus merula L.)

机译:两种Passerine鸟类的视觉颜料,油滴,眼镜介质和锥形光感受器分布:蓝雀(Parus caeruleus L.)和黑鹂(Turdus Merula L.)

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The spectral absorption characteristics of the retinal photoreceptors of the blue tit (Pal trs caeruleus) and blackbird (Turdus merula) were investigated using microspectrophotometry. The retinae of both species contained rods, double cones and four spectrally distinct types of single cone. Whilst the visual pigments and cone oil droplets in the other receptor types are very similar in both species, the wavelength of maximum sensitivity (lambda(max)) of long-wavelength-sensitive single and double cone visual pigment occurs at a shorter wavelength (557 nm) in the blackbird than in the blue tit (563 nm). Oil droplets located in the long-wavelength-sensitive-single cones of both species cut off wavelengths below 570-573 nm, theoretically shifting cone peak spectral sensitivity some 40 nm towards the long-wavelength end of the spectrum. This raises the possibility that the precise lambda(max) of the long-wavelength-sensitive visual pigment is optimised for the visual function of the double cones. The distribution of cone photoreceptors across the retina, determined using conventional light and fluorescence microscopy also varies between the two species and may reflect differences in their visual ecology. [References: 57]
机译:使用微斑体测定,研究了蓝冠状山雀(PAL TRS caeruleus)和黑鸟(Turdus merula)的视网膜光感受器的光谱吸收特性。两种物种的视网膜含有棒,双锥体和四种光谱不同类型的单锥。虽然在其他受体类型中的视觉颜料和锥形油液滴在两种物种中非常相似,但长波长敏感单锥和双锥形颜料的最大灵敏度(Lambda(MAX))的波长发生在较短的波长(557 NM)在黑鹂比蓝山雀(563nm)。位于两个物种的长波长敏感 - 单锥体的油滴切断波长低于570-573 nm,理论上将锥形峰值谱灵敏度朝向光谱的长波长结束。这提出了长波长敏视色素的精确λ(MAX)优化了双锥体的视觉功能的可能性。使用常规光和荧光显微镜测定的视网膜锥形光感受器的分布也在两个物种之间变化,并且可能反映视觉生态学的差异。 [参考:57]

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