Weiss Stuart B, Murphy Dennis D, Ehrlich Paul R, Metzler Charles F
Department of Biological Sciences, Stanford University, 94305, Stanford, CA, USA.
Oecologia. 1993 Nov;96(2):261-270. doi: 10.1007/BF00317740.
The prediction of adult emergence times in insect populations can be greatly complicated by microclimatic gradients, especially in circumstances where distributions of juveniles along those gradients vary from year to year. To investigate adult emergence patterns in topographically heterogeneous habitats, we built a model of postdiapause development of the Bay checkerspot butterfly, Euphydryas editha bayensis. The model uses slope-specific insolation as the rate-controlling variable, and accounts for both solar exposure of the habitat and cloud cover. Instar-specific larval mass gains per unit of insolation were determined from mark-recapture experiments. A small correction for daily low temperatures was used to calibrate the model to five years of field data on larval mass. The model predicted mean mass of 90% of larval samples within 4 clear days over a 70-120 day growing season. The magnitude of spatial variation in emergence times across habitat slopes is greater than annual variation in emergence times due to yearly weather conditions. Historical variation (yearly shifts in larval distributions across slopes) is an important determinant of mean population emergence dates. All of these factors need to be considered in understanding adult emergence phenology in this butterfly and in other insects inhabiting heterogeneous thermal environments. Such an understanding can be useful in managing insect populations for both pest control and conservation.
昆虫种群中成年个体出现时间的预测可能会因微气候梯度而变得极为复杂,尤其是在幼虫沿这些梯度的分布逐年变化的情况下。为了研究地形异质栖息地中的成年个体出现模式,我们构建了一种湾纹豆粉蝶(Euphydryas editha bayensis)滞育后发育的模型。该模型使用特定坡度的日照作为速率控制变量,并考虑了栖息地的日照情况和云量。通过标记重捕实验确定了每单位日照下各龄期幼虫的质量增加量。使用对每日低温的微小校正,将模型校准至关于幼虫质量的五年实地数据。该模型在70 - 120天的生长季节内,能在4个晴天内预测90%幼虫样本的平均质量。栖息地不同坡度上出现时间的空间变化幅度大于由于年度天气条件导致的出现时间的年度变化。历史变化(幼虫在不同坡度上分布的逐年变化)是平均种群出现日期的一个重要决定因素。在理解这种蝴蝶以及其他栖息于异质热环境中的昆虫的成年个体出现物候时,所有这些因素都需要考虑。这样的理解对于害虫防治和保护方面的昆虫种群管理可能是有用的。