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昼行性和夜行性啮齿动物的昼夜节律系统能被紫外线同步化吗?

Can the circadian system of a diurnal and a nocturnal rodent entrain to ultraviolet light?

作者信息

Hut R A, Scheper A, Daan S

机构信息

Zoological Laboratory, University of Groningen, The Netherlands.

出版信息

J Comp Physiol A. 2000 Jul-Aug;186(7-8):707-15. doi: 10.1007/s003590000124.

Abstract

Spectral measurements of sunlight throughout the day show close correspondence between the timing of above ground activity of the European ground squirrel and the presence of ultraviolet light in the solar spectrum. However, in a standard entrainment experiment ground squirrels show no entrainment to ultraviolet light, while Syrian hamsters do entrain under the same protocol. Presented transmittance spectra for lenses, corneas, and vitreous bodies may explain the different results of the entrainment experiment. We found ultraviolet light transmittance in the colourless hamster lens (50% cut-off at 341 nm), but not in the yellow ground squirrel lens (50% cut-off around 493 nm). Ultraviolet sensitivity in the ground squirrels based upon possible fluorescence mechanisms was not evident. Possible functions of ultraviolet lens filters in diurnal mammals are discussed, and compared with nocturnal mammals and diurnal birds. Species of the latter two groups lack ultraviolet filtering properties of their lenses and their circadian system is known to respond to ultraviolet light, a feature that does not necessarily has to depend on ultraviolet photoreceptors. Although the circadian system of several species responds to ultraviolet light, we argue that the role of ultraviolet light as a natural Zeitgeber is probably limited.

摘要

对一整天阳光的光谱测量表明,欧洲地松鼠地面活动的时间与太阳光谱中紫外线的存在之间存在密切对应关系。然而,在一项标准的同步实验中,地松鼠对紫外线没有同步反应,而叙利亚仓鼠在相同的实验方案下却会产生同步反应。所呈现的晶状体、角膜和玻璃体的透过光谱可能解释了同步实验的不同结果。我们发现无色仓鼠晶状体中有紫外线透过(在341纳米处50%截止),但黄色地松鼠晶状体中没有(在493纳米左右50%截止)。基于可能的荧光机制,地松鼠的紫外线敏感性并不明显。讨论了紫外线晶状体滤光片在昼行性哺乳动物中的可能功能,并与夜行性哺乳动物和昼行性鸟类进行了比较。后两组动物的晶状体缺乏紫外线过滤特性,且已知它们的昼夜节律系统对紫外线有反应,这一特征不一定依赖于紫外线光感受器。尽管几种物种的昼夜节律系统对紫外线有反应,但我们认为紫外线作为自然授时因子的作用可能是有限的。

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