Etterson J R, Shaw R G
University of Minnesota, Department of Ecology, Evolution and Behavior, Minnesota Center for Community Genetics, 1987 Upper Buford Circle, St. Paul, MN 55108, USA.
Science. 2001 Oct 5;294(5540):151-4. doi: 10.1126/science.1063656.
We characterized the genetic architecture of three populations of a native North American prairie plant in field conditions that simulate the warmer and more arid climates predicted by global climate models. Despite genetic variance for traits under selection, among-trait genetic correlations that are antagonistic to the direction of selection limit adaptive evolution within these populations. Predicted rates of evolutionary response are much slower than the predicted rate of climate change.
我们在模拟全球气候模型预测的更温暖、更干旱气候的田间条件下,对一种北美本土草原植物的三个种群的遗传结构进行了表征。尽管在选择下的性状存在遗传变异,但与选择方向相反的性状间遗传相关性限制了这些种群内的适应性进化。预测的进化响应速率远低于预测的气候变化速率。