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怀孕诱导的超日节律变化在昼夜节律紊乱的西伯利亚仓鼠中持续存在。

Pregnancy-induced changes in ultradian rhythms persist in circadian arrhythmic Siberian hamsters.

作者信息

Wang Z Yan, Cable Erin J, Zucker Irving, Prendergast Brian J

机构信息

Committee on Neurobiology, University of Chicago, Chicago, IL 60637, USA.

Department of Psychology, University of Chicago, Chicago, IL 60637, USA.

出版信息

Horm Behav. 2014 Jul;66(2):228-37. doi: 10.1016/j.yhbeh.2014.04.014. Epub 2014 May 2.

Abstract

The impact of pregnancy and lactation on ultradian rhythms (URs) and circadian rhythms (CRs) of locomotor activity was assessed in circadian rhythmic and arrhythmic Siberian hamsters maintained in a long-day photoperiod (16h light/day). Progressive decrements in CR robustness and amplitude over the course of gestation were accompanied by enhanced URs. Dark-phase UR period and amplitude increased during early gestation and complexity and robustness increased during late gestation. The persistence of pregnancy-associated enhancements of URs in circadian arrhythmic (ARR) hamsters suggests that reproductive modulation of the UR waveform is not dependent on coherent circadian organization. The increased incidence of dark-phase URs appeared more rapidly in ARR dams than entrained (ENTR) dams. Throughout gestation, the percentage of dams with dark-phase URs was significantly greater in the ARR group. Gestational increases in UR complexity and robustness emerged earlier and were greater in ARR than ENTR dams. The attenuation of CRs during lactation is correlated with increased expression of URs. Relaxation of circadian control of the dam's behavior may increase fitness by permitting more efficient interactions with circadian arrhythmic pups.

摘要

在长日照光周期(16小时光照/天)下饲养的昼夜节律性和无节律性西伯利亚仓鼠中,评估了怀孕和哺乳对运动活动的超日节律(URs)和昼夜节律(CRs)的影响。在妊娠过程中,CR的稳健性和振幅逐渐降低,同时UR增强。暗期UR周期和振幅在妊娠早期增加,而复杂性和稳健性在妊娠后期增加。昼夜无节律(ARR)仓鼠中与妊娠相关的UR增强持续存在,这表明UR波形的生殖调节不依赖于连贯的昼夜节律组织。ARR母鼠中暗期UR的发生率比节律正常(ENTR)的母鼠增加得更快。在整个妊娠期,ARR组中出现暗期UR的母鼠百分比显著更高。妊娠期间UR复杂性和稳健性的增加在ARR母鼠中比ENTR母鼠出现得更早且程度更大。哺乳期间CR的减弱与UR表达增加相关。母鼠行为的昼夜节律控制的放松可能通过允许与昼夜无节律的幼崽进行更有效的互动来提高适应性。

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