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Rapid evolution of thermal plasticity in mountain lake Daphnia populations

机译:山区湖泊湖泊山区热塑性快速演变

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Populations at risk of extinction due to climate change may be rescued by adaptive evolution or plasticity. Selective agents, such as introduced predators, may enhance or constrain plastic or adaptive responses to temperature. We tested responses of Daphnia to temperature by collecting populations from lakes across an elevational gradient in the presence and absence of fish predators (long-term selection). We subsequently grew these populations at two elevations in field mesocosms over two years (short-term selection), followed by a common-garden experiment at two temperatures in the lab to measure life-history traits. Both long-term and short-term selection affected traits, suggesting that genetic variation of plasticity within populations enabled individuals to rapidly evolve plasticity in response to high temperature. We found that short-term selection by high temperature increased plasticity for growth rate in all populations. Fecundity was higher in populations from fishless lakes and body size showed greater plasticity in populations from warm lakes (long-term selection). Neither body size nor fecundity were affected by short-term thermal selection. These results demonstrate that plasticity is an important component of the life-history response of Daphnia, and that genetic variation within populations enabled rapid evolution of plasticity in response to selection by temperature.
机译:由于气候变化导致的灭绝风险的人口可能通过适应性的演化或可塑性来救出。选择性代理,例如引入的捕食者,可以增强或限制塑料或适应性对温度的反应。我们通过在存在和缺乏鱼类捕食者的情况下,通过从高度梯度的湖泊收集湖泊的群体来测试Daphnia到温度的反应(长期选择)。我们随后在两年内的田间科科技硕士学位(短期选择)的两个海拔中增加了这些群体,其次是在实验室的两个温度下进行共同园区实验,以测量寿命历史特征。长期和短期选择受影响的特征,表明人群中可塑性的遗传变异使得能够响应高温而迅速地发展可塑性。我们发现,在所有人群中,通过高温的短期选择增加了增长速度的可塑性。无鱼湖泊的人群的繁殖力较高,身体大小在温暖的湖泊中表现出更大的可塑性(长期选择)。由于短期热选择,身体尺寸和繁殖不会影响。这些结果表明,可塑性是Daphnia生命历史反应的重要组成部分,并且群体内的遗传变异能够响应于温度选择而快速地进化可塑性。

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