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丘脑间膝小叶介导光周期无反应性西伯利亚仓鼠运动活动诱导的表型逆转。

The thalamic intergeniculate leaflet mediates locomotor activity-induced reversal of phenotype in photoperiod nonresponsive Siberian hamsters.

作者信息

Freeman David A, Teubner Brett J W, Goldman Bruce D

机构信息

Department of Biology, University of Memphis, Memphis, TN 38152-3540, USA.

出版信息

J Biol Rhythms. 2006 Jun;21(3):206-13. doi: 10.1177/0748730406287996.

Abstract

The role of the intergeniculate leaflet of the thalamus (IGL) in photoperiod responsiveness was examined in a laboratory-selected line of photoperiod nonresponsive (NR) Siberian hamsters. NR hamsters fail to exhibit typical winter-type responses (i.e., gonadal regression and development of winter-type pelage) when exposed to short day lengths (e.g., 10 h of light/day). Earlier studies revealed that NR hamsters will exhibit winter-type responses when exposed to short photoperiod if they are given free access to a running wheel. The present study tested the hypothesis that this locomotor activity-induced reversal of phenotype is dependent on the IGL. Male NR hamsters underwent destruction of the IGL prior to being housed in short day lengths in cages equipped with running wheels. Activity rhythms were monitored for 8 weeks, after which time pelage response and paired testes weights were obtained. In contrast to sham-operated NR animals given access to running wheels, IGL-ablated animals showed no increase in the duration of nocturnal running wheel activity and became active later in the night than sham-lesioned animals. Lesioned animals also failed to exhibit the typical short photoperiod-induced gonadal regression and pelage molt. The results implicate the IGL in the mechanism by which running wheel activity can influence photoperiodic responses.

摘要

在一个实验室选择的光周期无反应(NR)西伯利亚仓鼠品系中,研究了丘脑膝间小叶(IGL)在光周期反应性中的作用。当暴露于短日照长度(例如,每天10小时光照)时,NR仓鼠不会表现出典型的冬季型反应(即性腺退化和冬季型被毛的生长)。早期研究表明,如果给予NR仓鼠自由使用跑步机的机会,它们在短光周期下会表现出冬季型反应。本研究检验了这样一个假设,即这种运动活动诱导的表型逆转依赖于IGL。雄性NR仓鼠在被安置在配备有跑步机的笼子里处于短日照长度之前,接受了IGL损毁。监测活动节律8周,之后获得被毛反应和双侧睾丸重量。与给予跑步机使用机会的假手术NR动物相比,IGL损毁的动物夜间跑步机活动持续时间没有增加,并且比假损伤动物在夜间更晚开始活动。损毁动物也没有表现出典型的短光周期诱导的性腺退化和被毛换毛。结果表明IGL参与了跑步机活动影响光周期反应的机制。

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