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From the Cover: Genetic shift in photoperiodic response correlated with global warming

机译:从封面:光周期反应的遗传转移与 全球暖化

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摘要

To date, all altered patterns of seasonal interactions observed in insects, birds, amphibians, and plants associated with global warming during the latter half of the 20th century are explicable as variable expressions of plastic phenotypes. Over the last 30 years, the genetically controlled photoperiodic response of the pitcher-plant mosquito, Wyeomyia smithii, has shifted toward shorter, more southern daylengths as growing seasons have become longer. This shift is detectable over a time interval as short as 5 years. Faster evolutionary response has occurred in northern populations where selection is stronger and genetic variation is greater than in southern populations. W. smithii represents an example of actual genetic differentiation of a seasonality trait that is consistent with an adaptive evolutionary response to recent global warming.
机译:迄今为止,在20世纪下半叶与全球变暖有关的昆虫,鸟类,两栖动物和植物中观察到的所有季节性相互作用的变化模式都可以作为塑料表型的可变表达来解释。在过去的30年中,随着生长期的延长,投手植物蚊子Wyeomyia smithii的遗传控制的光周期反应已朝着更短,更南的白天发展。这种变化可以在短至5年的时间间隔内检测到。与南部地区相比,在北部地区的种群中选择力更强且遗传变异更大的地区发生了更快的进化反应。铁匠史密斯(W. smithii)代表了季节性特征的实际遗传分化示例,该特征与对最近全球变暖的适应性进化反应一致。

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