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首页> 外文期刊>Frontiers in zoology >The bear circadian clock doesn’t ‘sleep’ during winter dormancy
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The bear circadian clock doesn’t ‘sleep’ during winter dormancy

机译:熊昼夜时钟在冬季休眠期间不会“睡觉”

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Background Most biological functions are synchronized to the environmental light:dark cycle via a circadian timekeeping system. Bears exhibit shallow torpor combined with metabolic suppression during winter dormancy. We sought to confirm that free-running circadian rhythms of body temperature (Tb) and activity were expressed in torpid grizzly (brown) bears and that they were functionally responsive to environmental light. We also measured activity and ambient light exposures in denning wild bears to determine if rhythms were evident and what the photic conditions of their natural dens were. Lastly, we used cultured skin fibroblasts obtained from captive torpid bears to assess molecular clock operation in peripheral tissues. Circadian parameters were estimated using robust wavelet transforms and maximum entropy spectral analyses. Results Captive grizzly bears housed in constant darkness during winter dormancy expressed circadian rhythms of activity and Tb. The rhythm period of juvenile bears was significantly shorter than that of adult bears. However, the period of activity rhythms in adult captive bears was virtually identical to that of adult wild denning bears as was the strength of the activity rhythms. Similar to what has been found in other mammals, a single light exposure during the bear’s active period delayed subsequent activity onsets whereas these were advanced when light was applied during the bear’s inactive period. Lastly, in vitro studies confirmed the expression of molecular circadian rhythms with a period comparable to the bear’s own behavioral rhythms. Conclusions Based on these findings we conclude that the circadian system is functional in torpid bears and their peripheral tissues even when housed in constant darkness, is responsive to phase-shifting effects of light, and therefore, is a normal facet of torpid bear physiology.
机译:背景技术大多数生物功能与环境灯同步:通过昼夜计时系统进行暗循环。在冬季休眠期间,熊熊展示浅扭力结合代谢抑制。我们试图证实,在Torpid Grizzly(棕色)熊中表达了体温(TB)和活性的自由运行的昼夜节律,并且它们在功能上对环境光线有效。我们还测量了丹宁野生熊的活动和环境光曝光,以确定节奏是否明显,它们的天然晶体的光照条件是什么。最后,我们使用从俘虏扭矩获得的培养的皮肤成纤维细胞,以评估外周组织中的分子钟操作。使用鲁棒小波变换和最大熵谱分析估计昼夜节律参数。结果在冬季休眠期间捕获灰色熊在冬季休眠期间持续黑暗的熊熊族的昼夜节律和结核病。青少年熊的节奏时间明显短于成年熊。然而,成人俘虏熊中的活动节奏几乎与成年狂野的熊的熊熊队的强度与活动节奏的强度相同。类似于其他哺乳动物中发现的内容,在熊的活动时段期间的单个灯暴露在熊在熊在熊的非活动时期应用时,这些曝光延迟了随后的活动垂直。最后,体外研究证实了分子昼夜节律的表达,与熊自身行为节律相当的时间。基于这些发现的结论我们得出的结论是,昼夜节律体系在托皮特熊和外周组织中的功能性,即使在恒定的黑暗中容纳,响应于光的相移效应,因此,是托普德熊生理学的正常方面。

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