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首页> 外文期刊>Canadian Journal of Zoology >Variation in basal metabolic rate and activity in relation to reproductive condition and photoperiod in white-footed mice (Peromyscus leucopus)
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Variation in basal metabolic rate and activity in relation to reproductive condition and photoperiod in white-footed mice (Peromyscus leucopus)

机译:白脚小鼠(白皮病)的基础代谢率和活动与生殖状况和光周期有关的变化

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摘要

A naturally variable life-history trait with underlying physiological variation is the photoperiodic response of many temperate-zone rodents, including white-footed mice (Peromyscus leucopus (Rafinesque, 1818)). Male P. leucopus were obtained from a short photoperiod responsive (R) line, artificially selected for reproductive suppression in short-day conditions (SD) and a nonresponsive (NR) line selected for reproductive maturity in SD. We tested for variation in metabolic rate between lines in SD and long-day conditions (LD). NR mice consumed 34% more food than R mice, without concomitant increase in body mass in SD. Basal metabolic rate (BMR) was found to be significantly greater in NR than R mice, and NR mice were found to engage in significantly more spontaneous (daily) locomotor activity. Energy-use estimates based on 24 h respirometry matched closely the level of intake reported for individual mice. The increased BMR and average daily metabolic rate in NR mice was correlated with testis size, but not with major central organs or digestibility. No significant difference in BMR or activity was found in mice from the same lines held in LD. Elevated intake in SD mice appears to be associated with differences in fertility and not other aspects of physiology in the respective lines.
机译:具有潜在生理变化的自然可变的生活史特征是许多温带区啮齿动物的光周期反应,包括白脚小鼠(Peromyscus leucopus(Rafinesque,1818))。雄性白斑假单胞菌是从短的光周期反应性(R)品系中获得的,该品系是人为选择在短日条件下(SD)进行生殖抑制而人工选择的无反应性(NR)品系用于SD中的生殖成熟度。我们测试了SD和长期条件(LD)下品系之间的代谢率变化。 NR小鼠比R小鼠多消耗34%的食物,而SD的体重却没有随之增加。发现NR中的基础代谢率(BMR)显着高于R小鼠,并且发现NR小鼠参与的自发性(每日)运动能力明显更高。基于24小时呼吸测定法的能量消耗估算值与单个小鼠的摄入量水平非常接近。 NR小鼠中BMR的增加和平均每日代谢率与睾丸大小有关,但与主要中央器官或消化率无关。在LD的相同品系的小鼠中,BMR或活性无明显差异。 SD小鼠摄入量的增加似乎与生育能力的差异有关,而与各个系中生理的其他方面无关。

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