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首页> 外文期刊>Journal of Comparative Physiology, A. Sensory, Neural, and Behavioral Physiology >Interseasonal variation in the circadian rhythms of locomotor activity and temperature selection in sleepy lizards, Tiliqua rugosa
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Interseasonal variation in the circadian rhythms of locomotor activity and temperature selection in sleepy lizards, Tiliqua rugosa

机译:ili蜥蜴运动性活动的昼夜节律的季节间变化和温度选择

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摘要

Few studies in non-mammalian vertebrates have examined how various effectors of the circadian system interact. To determine if the daily locomotor and behavioural thermoregulatory rhythms of Tiliqua rugosa are both controlled by the circadian system in different seasons, lizards were tested in laboratory thermal gradients in four seasons and in constant darkness. Circadian rhythmicity for both rhythms was present in each season, being most pronounced in spring and summer and least evident in autumn. Most lizards displayed a unimodal locomotor activity pattern across all seasons. However, some individuals presented a bimodal locomotor activity pattern in spring and summer. Seasonal variations in the phase relationships of both rhythms to the light: dark (LD) cycle were demonstrated. No seasonal differences in the free-running period lengths of either rhythm were detected, raising the possibility that a single circadian pacemaker drives both rhythms in this species. Our present results demonstrate that both rhythms are similarly controlled by the circadian system in each season. Although seasonal variations in the thermal preferences of reptiles both in the Weld and laboratory have previously been well documented, this study is the first to demonstrate circadian rhythms of temperature selection in a reptile species in each season.
机译:在非哺乳动物脊椎动物中,很少有研究检查过昼夜节律系统的各种效应器是如何相互作用的。为了确定在不同季节中昼夜节律是否都可以控制昼夜节律的日常运动和行为温度调节节律,在四个季节和持续黑暗的实验室中,对蜥蜴进行了实验室温度梯度测试。在每个季节都存在两种节律的昼夜节律,在春季和夏季最为明显,而在秋季则最不明显。大多数蜥蜴在所有季节都表现出单峰运动活动模式。但是,有些人在春季和夏季呈现出双峰运动活动模式。证明了两个节奏与光明:黑暗(LD)周期的相位关系的季节性变化。没有检测到任何一种节律的自由运行时间长度的季节性差异,这增加了单个昼夜节律起搏器驱动该物种的两种节律的可能性。我们目前的结果表明,在每个季节中,两种节律均由昼夜节律系统控制。尽管以前在Weld和实验室中对爬行动物热偏好的季节性变化已有充分的文献记载,但这项研究还是第一个证明每个季节中爬行动物物种的温度选择的昼夜节律。

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