非冬眠动物 Nyctalusnoctula 冬季活动中温度和昼夜节律周期性的相互作用。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-11-02 DOI:10.1016/j.jtherbio.2024.103999
Kseniia Kravchenko, Joanna Furmankiewicz
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引用次数: 0

摘要

冬眠哺乳动物的冬季活动很可能受到气候变化的影响。我们的研究重点是夜蝙蝠(Nyctalus noctula),它是一种非冬眠动物,在一个新近殖民的冬季地区使用人工栖息地。通过连续的声学监测和栖息地内外的温度测量,我们发现蝙蝠即使在冬眠季节也表现出昼夜节律周期(夜间活动,白天休息)。活动持续时间和强度随环境温度、光周期和冬眠进程而变化。温暖的环境温度导致夜间活动增加,从而延长了活动阶段的持续时间。随着光周期的延长,休息阶段也随之延长,而从冬眠期开始到结束,总体活动强度有所下降。温度低于 0 °C时,蝙蝠的声音活动几乎为零,这表明蝙蝠在白天和夜晚的活动概率都很小。该物种最近成功地将冬眠范围向北扩展,这可能要归功于它能灵活地适应当时的环境条件。尽管如此,在温度高于0 °C的情况下进行日常活动是否会给北纬地区的蝙蝠带来任何好处以防止过早的能量消耗,这一点仍不确定。冬季持续的昼夜节律活动可能是一种遗存行为,是从昆虫丰富和温暖的南纬地区过冬的历史模式中适应而来的。
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The interplay of temperature and circadian periodicity in winter activity of non-cavernous hibernator, Nyctalusnoctula.

Winter activity of hibernating mammals is likely to be influenced by climate change. Our study focuses on Nyctalus noctula, a non-cavernous hibernator using artificial roosts in a recently colonized winter region. Using continuous acoustic monitoring and temperature measurements inside and outside the roosts, we found that bats exhibit a circadian cycle (active at night, resting during the day) even during hibernation season. Activity duration and intensity changed in response to ambient temperature, photoperiod, and hibernation progression. Warm ambient temperatures led to increased nighttime activity, extending the duration of the active phase. As photoperiod increased, the rest phase lengthened, while the overall magnitude of activity decreased from the beginning to the end of the hibernation period. Below 0 °C vocal activity was nearly zero indicating a minimal probability of bat activity during both day and night. The species recent success in extending its hibernation range northward may be attributed to its flexible adjustment to prevailing environmental conditions. Nevertheless, it remains uncertain whether engaging in daily activity at temperatures above 0 °C confers any advantages at northern latitudes to prevent premature energy depletion. The persistence of circadian activity during winter could be a relic behavior, adapted from historical patterns of wintering in insect-rich and warm southern latitudes.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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