Bauer Barbara, Womastek Irene, Dittami John, Huber Susanne
Research Institute of Wildlife Ecology, University of Veterinary Medicine, Savoyenstrasse 1, A-1160 Vienna, Austria.
Gen Comp Endocrinol. 2008 Feb 1;155(3):680-5. doi: 10.1016/j.ygcen.2007.09.015. Epub 2007 Sep 29.
Little is known about the effects of the early environment on the development of non-seasonally reproducing species like the domestic guinea pig (Cavia aperea f. porcellus). Although guinea pigs reproduce throughout the year, there is evidence for environmental sensitivity of their reproductive physiology. To investigate the sensitivity of juvenile body weight and puberty to differences in the prenatal and early postnatal environment, subjects were exposed to either of two experimental conditions mimicking seasonal variation: a long photoperiod with 25 degrees C ambient temperature ("LD/25 degrees C"), or a short photoperiod with 15 degrees C ("SD/15 degrees C"). Mean body weight of F1-males from LD/25 degrees C-conditions was higher than that of SD/15 degrees C-males during the whole pubertal period, although the difference was significant only during the early growth phase. Testosterone concentrations also differed significantly between the two treatment groups, pointing to an earlier pubertal onset in LD/25 degrees C- than SD/15 degrees C-males. In F1-females, treatment effects on body weight or age at first estrus were absent. This indicates that the somatic and reproductive development is more sensitive to early photoperiod and temperature conditions in male than female guinea pigs, and that other environmental factors may also play a crucial role for reproductive maturation in this species.
对于早期环境对像家豚(豚鼠指名亚种)这种非季节性繁殖物种发育的影响,人们了解甚少。尽管豚鼠全年都可繁殖,但有证据表明其生殖生理对环境敏感。为了研究幼体体重和青春期对产前及产后早期环境差异的敏感性,将实验对象置于模拟季节变化的两种实验条件之一:长光照周期且环境温度为25摄氏度(“长光照/25摄氏度”),或短光照周期且温度为15摄氏度(“短光照/15摄氏度”)。在整个青春期,来自“长光照/25摄氏度”条件的F1雄性的平均体重高于“短光照/15摄氏度”雄性,不过这种差异仅在早期生长阶段显著。两个处理组之间的睾酮浓度也存在显著差异,这表明“长光照/25摄氏度”雄性比“短光照/15摄氏度”雄性青春期开始得更早。在F1雌性中,未观察到处理对体重或首次发情年龄的影响。这表明,与雌性豚鼠相比,雄性豚鼠的躯体和生殖发育对早期光照周期和温度条件更为敏感,而且其他环境因素可能对该物种的生殖成熟也起着关键作用。