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Voltinism flexibility of a riverine dragonfly along thermal gradients

机译:沿热梯度的河蜻蜓的Voltinism灵活性

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Potential effects of future warming should be reflected in life history patterns of aquatic organisms observed in warmer climates or in habitats that are different in ambient temperature. In the special case of the dragonfly Gomphus vulgatissimus (L.) (Odonata: Gomphidae) previous research suggests that voltinism decreases from south to north. We analysed data on voltinism from 11 sample sites along a latitudinal gradient from about 44 degrees N to 53 degrees N, comprising small streams to medium-sized rivers. Furthermore, to simulate different conditions and to allow projections for future climate change scenarios, we developed a population dynamic model based on a projection matrix approach. The parameters of the model are dependent on temperature and day length. Our field results indicate a decrease in voltinism along the latitudinal gradient from southern to northern Europe and a corresponding increase of voltinism with higher temperatures. An increase in voltinism with width of the running water implies an effect of varying habitat temperature. Under the impact of global warming, our model predicts an increased development speed, particularly in the northern part of the latitudinal gradient, an extension of the northern range limit and changes in phenology of G. vulgatissimus, leading to an extension of the flight season in certain regions along the gradient.
机译:未来变暖的潜在影响应反映在气候变暖或环境温度不同的栖息地中的水生生物的生活史模式中。以前的研究表明,在蜻蜓的特殊情况下,寻常性从南到北逐渐减少。我们分析了11个采样点沿纬度梯度(从北纬44度到北纬53度)中包括小溪流到中型河流的Voltinism数据。此外,为了模拟不同的条件并允许对未来的气候变化情景进行预测,我们基于投影矩阵方法开发了人口动态模型。模型的参数取决于温度和日长。我们的田间研究结果表明,从欧洲南部到北欧,随着纬度梯度的逐渐减少,随着温度的升高,垂直性也相应增加。随着流水宽度的增加,Voltinism的变化意味着栖息地温度变化的影响。在全球变暖的影响下,我们的模型预测发展速度会加快,尤其是在纬度梯度的北部,北部范围界限的扩大以及寻常型G. vulgatissimus的变化,从而导致飞行季节的延长。沿梯度的某些区域。

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