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群居和社会等级制度会影响小鼠的昼夜活动模式。

Group housing and social dominance hierarchy affect circadian activity patterns in mice.

作者信息

Robbers Yuri, Tersteeg Mayke M H, Meijer Johanna H, Coomans Claudia P

机构信息

Laboratory for Neurophysiology, Department of Cell and Chemical Biology, Leiden University Medical Center, Leiden, The Netherlands.

出版信息

R Soc Open Sci. 2021 Feb 17;8(2):201985. doi: 10.1098/rsos.201985.

Abstract

In this study, we investigated the effect of social environment on circadian patterns in activity by group housing either six male or six female mice together in a cage, under regular light-dark cycles. Based on the interactions among the animals, the social dominance rank of individual mice was quantitatively established by calculating Elo ratings. Our results indicated that, during our experiment, the social dominance hierarchy was rapidly established, stable yet complex, often showing more than one dominant mouse and several subordinate mice. Moreover, we found that especially dominant male mice, but not female mice, displayed a significantly higher fraction of their activity during daytime. This resulted in reduced rhythm amplitude in dominant males. After division into separate cages, male mice showed an enhancement of their 24 h rhythm, due to lower daytime activity. Recordings of several physiological parameters showed no evidence for reduced health as a potential consequence of reduced rhythm amplitude. For female mice, transfer to individual housing did not affect their daily activity pattern. We conclude that 24 h rhythms under light-dark cycles are influenced by the social environment in males but not in females, and lead to a decrement in behavioural rhythm amplitude that is larger in dominant mice.

摘要

在本研究中,我们通过将六只雄性或六只雌性小鼠一起饲养在一个笼子里,在正常的明暗周期下,研究了社会环境对活动昼夜节律模式的影响。根据动物之间的相互作用,通过计算Elo评分来定量确定个体小鼠的社会优势等级。我们的结果表明,在我们的实验过程中,社会优势等级迅速建立,稳定但复杂,通常会出现不止一只优势小鼠和几只从属小鼠。此外,我们发现,尤其是优势雄性小鼠,而不是雌性小鼠,在白天表现出显著更高比例的活动。这导致优势雄性小鼠的节律幅度降低。分成单独的笼子后,雄性小鼠由于白天活动减少,其24小时节律增强。对几个生理参数的记录没有显示出节律幅度降低作为潜在后果而导致健康状况下降的证据。对于雌性小鼠,转移到单独饲养环境中并没有影响它们的日常活动模式。我们得出结论,在明暗周期下的24小时节律受雄性而非雌性的社会环境影响,并导致优势小鼠行为节律幅度的下降更大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27bb/8074631/6ae02c9bc714/rsos201985f01.jpg

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