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四种深海甲壳类动物的视觉色素。

The visual pigments of four deep-sea crustacean species.

作者信息

Hiller-Adams P, Widder E A, Case J F

机构信息

Neuroscience Research Program, IES, Santa Barbara, California 93106.

出版信息

J Comp Physiol A. 1988 May;163(1):63-72. doi: 10.1007/BF00611997.

Abstract

The visual pigments of four mesopelagic crustacean species were studied at sea by means of microspectrophotometry. The absorbance maxima obtained for the visual pigments and their metarhodopsins, respectively, were: 493 nm and 481 nm (Systellaspis debilis), 485 nm and 480 nm (Acanthephyra curtirostris), 491 nm and 482 nm (A. smithi), and 495 nm and 487 nm (Sergestes tenuiremis). The spectral characteristics of the rhodopsins and metarhodopsins permit high photosensitivity and facilitate photoregeneration in a nearly monochromatic environment. Photic regeneration of rhodopsins from the deep-sea environment was demonstrated, and data were obtained which are consistent with the occurrence of dark regeneration. Specific optical density of the observed visual pigments was calculated for two species.

摘要

利用显微分光光度法在海上研究了四种中层甲壳类动物的视觉色素。分别获得的视觉色素及其变视紫红质的最大吸收波长为:493纳米和481纳米(弱体筒虾),485纳米和480纳米(短吻刺糠虾),491纳米和482纳米(史密斯刺糠虾),以及495纳米和487纳米(细尾刺虾)。视紫红质和变视紫红质的光谱特征具有高感光性,并有助于在近乎单色的环境中进行光再生。证实了深海环境中视紫红质的光再生,并获得了与暗再生发生情况相符的数据。计算了两个物种观察到的视觉色素的比光密度。

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