Ecological Genetics Research Unit, Department of Biosciences, University of Helsinki, Helsinki, Finland.
Oecologia. 2011 Oct;167(2):435-43. doi: 10.1007/s00442-011-1989-x. Epub 2011 Apr 11.
Age and size at maturation are important correlates of fitness in many organisms and understanding how these are influenced by environmental conditions is therefore required to predict populations' responses to environmental changes. In ectotherms, growth and maturation are closely linked to temperature, but nonetheless it is often unclear how temperature-induced variation in growth and temperature per se translate to the process of maturation. Here, we test this explicitly with a common garden experiment using nine-spined sticklebacks (Pungitius pungitius). We reared fish in 14 and 17°C and recorded high resolution growth trajectories and the timing of maturation on an individual basis. To characterize the growth of each individual, we fitted a von Bertalanffy growth curve to each measured growth trajectory, so that the three parameters of the curve provided a summary of an individual's growth. Temperature treatments induced changes in both the growth parameters and the age at maturation. In females, changes in the age of maturation were encompassed by variations in growth, whereas in males there was a temperature-related shift in the age at maturation that was unrelated to growth. Our experiment demonstrates that temperature can affect maturation directly, and not only through temperature-induced changes in growth. Therefore, one cannot predict, on the basis of growth only, how changes in temperature might alter age and size at maturation and the subsequent reproduction.
年龄和成熟度是许多生物适应能力的重要相关因素,因此,了解环境条件如何影响这些因素,对于预测种群对环境变化的反应是必要的。在变温动物中,生长和成熟与温度密切相关,但温度如何引起生长和温度本身变化如何转化为成熟过程,这一点往往并不清楚。在这里,我们使用九刺鱼(Pungitius pungitius)进行了一个田间实验来明确这一点。我们在 14°C 和 17°C 下饲养鱼,并记录了个体的高分辨率生长轨迹和成熟时间。为了描述每个个体的生长情况,我们将每个测量的生长轨迹拟合到 von Bertalanffy 生长曲线上,这样曲线的三个参数就可以概括个体的生长情况。温度处理诱导了生长参数和成熟年龄的变化。在雌性中,成熟年龄的变化包含在生长变化中,而在雄性中,成熟年龄与生长无关的温度相关变化。我们的实验表明,温度可以直接影响成熟,而不仅仅是通过温度引起的生长变化。因此,仅凭生长来预测温度变化如何改变成熟年龄和大小以及随后的繁殖是不可能的。