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光诱导的运动活动与蜥蜴的光生境有关。

Photic induction of locomotor activity is correlated with photic habitat in Anolis lizards.

机构信息

Department of Biology, University of Virginia, PO Box 400328, Charlottesville, VA 22904-4328, USA.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2012 Mar;198(3):193-201. doi: 10.1007/s00359-011-0699-5. Epub 2011 Nov 17.

Abstract

A variety of ecologically important behaviors, including circadian rhythms and seasonal reproduction, are influenced by non-visual responses to light, yet very little is known about the relationship between photic habitat and non-visual photoreception. Puerto Rican Anolis lizards have diverged into multiple photic niches, making them a good model for non-visual photosensory ecology. We investigated the photic induction of locomotor activity, a non-visual response to light, in four species of Anolis comprising two pairs of closely related, ecomorphologically similar species whose microhabitats differ in solar irradiance. We developed a device for continuous, automated detection and recording of anole locomotor activity, and used it to characterize activity under 12:12 h light-dark cycles. Next, we administered a series of 2-h light pulses during the dark period of the light-dark cycle and measured the increase in locomotor activity relative to baseline dark activity. Five different irradiances (ranging from very dim to daytime levels) were given to each individual lizard on separate nights. As expected, light caused an irradiance-dependent increase in locomotor activity in all four species. The responses at the highest irradiances were significantly greater in species occupying relatively more shaded habitats, suggesting that non-visual photoreception may be adapted to habitat light in Anolis lizards.

摘要

多种生态重要行为,包括昼夜节律和季节性繁殖,受非视觉对光的反应影响,但人们对光生境与非视觉光感受器之间的关系知之甚少。波多黎各变色蜥已经分化为多个光生境,使它们成为非视觉光感觉生态学的良好模型。我们研究了四种安诺蜥蜴的光诱导运动活性,这是对光的非视觉反应,这四种安诺蜥蜴包括两对密切相关、生态形态相似的物种,它们的微生境在太阳辐照度上存在差异。我们开发了一种用于连续、自动检测和记录蜥蜴运动活性的设备,并使用它来描述 12:12 小时光暗循环下的活性。接下来,我们在光暗循环的暗期给予一系列 2 小时的光脉冲,并测量相对于暗期基础活性的运动活性增加。在不同的夜晚,将五种不同的辐照度(从非常暗到白天水平)分别给予每个个体蜥蜴。正如预期的那样,在所有四种物种中,光都会引起与辐照度相关的运动活性增加。在占据相对较暗生境的物种中,最高辐照度下的反应明显更大,这表明非视觉光感受器可能适应了安诺蜥蜴的栖息地光。

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