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光周期对雄性豚鼠(Cavia aperea)生殖发育的影响。

Photoperiodic effects on reproductive development in male cavies (Cavia aperea).

出版信息

Physiol Behav. 2014 Jan 17;123:142-7.

Abstract

Age at maturity is a particularly important life history parameter, as it predicts potential life time reproductive success in many small mammal species. Animals should therefore optimize the timing of maturation by reacting to environmental stimuli that predict future environmental conditions. Photoperiod often reliably predicts ecological conditions. Animals born into a photoperiod indicating favorable conditions (spring, summer) may mature earlier and at a lower weight than animals born into conditions indicating unfavorable conditions (autumn, winter). So far most work was done on small, altricial rodent species and we still lack knowledge about their precocial relatives. Precocial animals are born much further developed than altricials and might show less plasticity in their ontogenetic trajectory than the latter. We tested the influence of photoperiod simulated by increasing (spring) or decreasing (autumn) light in climate chambers on important life history parameters in a medium sized rodent, the highly precocial cavy (Cavia aperea). We wanted to determine whether photoperiod influences timing of maturation and early growth in male cavies and whether patterns of testosterone in blood are reflected by patterns of testosterone metabolites in feces.Males born into simulated spring grew faster and matured at an earlier age than males born into simulated autumn conditions. Patterns of testosterone in blood correlated with testosterone metabolites measured in feces. Male cavies strongly react to predictive photoperiod cues by adjusting growth and timing of maturation as we found previously for females, corroborating the importance of seasonal cues for adjustments of life history.

摘要

成熟年龄是一个特别重要的生活史参数,因为它可以预测许多小型哺乳动物物种的潜在生命时间生殖成功。因此,动物应该通过对预测未来环境条件的环境刺激做出反应来优化成熟的时机。光周期通常可靠地预测生态条件。在指示有利条件(春季、夏季)的光周期中出生的动物可能比在指示不利条件(秋季、冬季)的光周期中出生的动物更早、体重更轻地成熟。到目前为止,大多数工作都是在小型、早产的啮齿动物物种上进行的,我们仍然缺乏关于它们早产亲属的知识。早产动物比晚产动物出生时发育得更成熟,在其个体发育轨迹上的可塑性可能比后者小。我们通过在气候室中增加(春季)或减少(秋季)光照来模拟光周期,测试了光周期对一种中型啮齿动物——高度早产的豚鼠(Cavia aperea)的重要生活史参数的影响。我们想确定光周期是否会影响雄性豚鼠的成熟时间和早期生长,以及血液中的睾丸激素模式是否反映了粪便中睾丸激素代谢物的模式。在模拟春季出生的雄性比在模拟秋季出生的雄性生长速度更快,成熟年龄更早。血液中的睾丸激素模式与粪便中测量的睾丸激素代谢物相关。雄性豚鼠强烈地对预测性光周期线索做出反应,通过调整生长和成熟时间来适应,正如我们之前在雌性动物中发现的那样,证实了季节性线索对生活史调整的重要性。

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