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睾酮并不能介导白足鼠(Peromyscus leucopus)生殖状态和光周期与基础代谢率和活动变化的关系。

Testosterone does not mediate variation in basal metabolic rate and activity in relation to reproductive condition and photoperiod in white-footed mice (Peromyscus leucopus).

机构信息

Department of Biology, College of William and Mary, Williamsburg, Virginia.

Department of Biology, Virginia State University, Petersburg, Virginia.

出版信息

J Exp Zool A Ecol Integr Physiol. 2019 Oct;331(8):456-462. doi: 10.1002/jez.2312. Epub 2019 Aug 5.

Abstract

The photoperiodic response of many temperate zone rodents, including white-footed mice (Peromyscus leucopus), is a heritable life-history trait with underlying physiological variation. Previous studies of intact male P. leucopus utilized two wild-derived bidirectional selection lines, a short photoperiod responsive (R) line selected for reproductive suppression in short-day conditions (SD) and a nonresponsive (NR) line selected for reproductive maturity in SD. NR mice in SD had greater food intake, but also higher levels of locomotor activity, and basal metabolic rate (BMR) than R mice. We hypothesized that testosterone may be a key mediator of this metabolic difference, as it is likely to be significantly reduced in R SD mice. Male P. leucopus from either line in SD were castrated and given either an implant containing testosterone (T) or a sham control (C). They were then tested for variation in metabolic rate and activity in SD, thermoneutral conditions. T mice had significantly higher levels of food intake, testosterone, and seminal vesicle dry weight than C mice. Seminal vesicle dry weight was significantly and positively correlated with average testosterone level, indicating an effect of the T implants. There was no statistically significant difference among treatment groups in BMR and average daily metabolic rate, suggesting that differences in testosterone alone are not the cause of differences in metabolic rate between selection lines.

摘要

许多温带啮齿动物(包括白足鼠)的光周期反应是一种可遗传的生活史特征,具有潜在的生理变化。以前对完整雄性白足鼠的研究利用了两个野生衍生的双向选择系,一个是对短日照条件下生殖抑制有反应的短光周期反应(R)系,另一个是对短日照条件下生殖成熟有反应的非反应(NR)系。在短日照条件下,NR 小鼠的食物摄入量更大,但运动活性和基础代谢率(BMR)也比 R 小鼠高。我们假设睾酮可能是这种代谢差异的关键介导物,因为它在 R SD 小鼠中可能会显著降低。来自任一线的雄性白足鼠在短日照条件下被阉割,并给予含有睾酮(T)的植入物或假对照(C)。然后在短日照和热中性条件下测试它们的代谢率和活性的变化。T 组的食物摄入量、睾酮和精囊干重显著高于 C 组。精囊干重与平均睾酮水平呈显著正相关,表明 T 植入物的影响。在 BMR 和平均每日代谢率方面,处理组之间没有统计学上的显著差异,这表明仅仅是睾酮的差异并不是选择系之间代谢率差异的原因。

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