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当主动权掌握在雌性手中时:北美红松鼠的争夺式交配系统如何塑造了雄性生理特征和睾酮动态变化。

When the ball is in the female's court: How the scramble-competition mating system of the North American red squirrel has shaped male physiology and testosterone dynamics.

作者信息

Boonstra Rudy, Dušek Adam, Lane Jeffrey E, Boutin Stan

机构信息

Centre for the Neurobiology of Stress, Department of Biological Sciences, University of Toronto Scarborough, Toronto, Ontario M1C 1A4, Canada.

Centre for the Neurobiology of Stress, Department of Biological Sciences, University of Toronto Scarborough, Toronto, Ontario M1C 1A4, Canada; Department of Ethology, Institute of Animal Science, Praha CZ-104 00, Czech Republic.

出版信息

Gen Comp Endocrinol. 2017 Oct 1;252:162-172. doi: 10.1016/j.ygcen.2017.06.016. Epub 2017 Jun 23.

Abstract

Male reproductive success in most mammals is determined by their success in direct inter-male competition through aggression and conflict, resulting in female-defense mating systems being predominant. This is linked to male testosterone levels and its dynamics. However, in certain environments, a scramble-competition mating system has evolved, where female reproductive behavior takes precedence and male testosterone dynamics are unlikely to be related to inter-male competition. We studied the North American red squirrel (Tamiasciurus hudsonicus), a species with a well-established scramble-competition system. Using an ACTH hormonal challenge protocol as a proxy for competitive interactions, we compared the testosterone dynamics in breeding males in late winter with that in nonbreeding males in late spring in the Yukon. To gain an integrated picture of their physiological state, we also assessed changes in their stress response, body mass, energy mobilization, and indices of immune function. Testosterone levels at the base bleed were high in breeding males (2.72ng/mL) and virtually absent in non-breeding males (0.04ng/mL). Breeding males were in better condition (heavier body mass, higher hematocrit, and higher erythrocytes), had higher indices of immune function (neutrophil:lymphocyte ratio), but a similar ability to mobilize energy (glucose) compared with non-breeding males. Though total cortisol was higher in non-breeding males, free cortisol was twice as high in breeding males as their corticosteroid binding globulin levels were half as high. In response to the ACTH challenge, testosterone levels in breeding males declined 49% over the first hour and increased 36% over the next hour; in non-breeding males levels showed no change. Free cortisol increased only modestly (26% in breeding males; 23% in non-breeding males). Glucose levels changed similarly in breeding and nonbreeding males, declining for the first 30min and then increasing for the next 60min. Thus, testosterone and components of the stress axis function in a profoundly different manner in male red squirrels than in males of mammals with female-defense mating systems. There are four probable interrelated reasons for these adaptations in male red squirrels: the marginal benefits of each mating, the constraints of mate searching away from their own resource-based territories, energy mobilization in a harsh environment, and a long life span.

摘要

在大多数哺乳动物中,雄性的繁殖成功率取决于它们在通过攻击和冲突进行的直接雄性间竞争中的成功程度,这导致雌性防御交配系统占主导地位。这与雄性的睾酮水平及其动态变化有关。然而,在某些环境中,一种争夺竞争交配系统已经进化出来,在这种系统中,雌性的繁殖行为占优先地位,雄性的睾酮动态变化不太可能与雄性间竞争有关。我们研究了北美红松鼠(Tamiasciurus hudsonicus),这是一种具有成熟争夺竞争系统的物种。我们使用促肾上腺皮质激素(ACTH)激素激发试验作为竞争相互作用的替代指标,比较了育空地区冬末繁殖期雄性和春末非繁殖期雄性的睾酮动态变化。为了全面了解它们的生理状态,我们还评估了它们应激反应、体重、能量动员和免疫功能指标的变化。基础采血时,繁殖期雄性的睾酮水平较高(2.72纳克/毫升),而非繁殖期雄性几乎检测不到(0.04纳克/毫升)。与非繁殖期雄性相比,繁殖期雄性身体状况更好(体重更重、血细胞比容更高、红细胞数量更多),免疫功能指标更高(中性粒细胞:淋巴细胞比率),但能量动员能力(葡萄糖)相似。虽然非繁殖期雄性的总皮质醇水平较高,但繁殖期雄性的游离皮质醇水平是其两倍,因为它们的皮质类固醇结合球蛋白水平只有非繁殖期雄性的一半。对ACTH激发试验的反应中,繁殖期雄性体内的睾酮水平在第一个小时内下降了49%,在接下来的一个小时内上升了36%;非繁殖期雄性的睾酮水平没有变化。游离皮质醇仅适度增加(繁殖期雄性增加26%;非繁殖期雄性增加23%)。繁殖期和非繁殖期雄性的葡萄糖水平变化相似,前30分钟下降,然后在接下来的60分钟内上升。因此,雄性红松鼠体内的睾酮和应激轴成分的功能方式与具有雌性防御交配系统的哺乳动物中的雄性有很大不同。雄性红松鼠的这些适应性变化可能有四个相互关联的原因:每次交配带来的边际收益、在远离自身资源领地寻找配偶的限制因素、在恶劣环境中的能量动员以及较长的寿命。

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