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Rapid Evolution of Parasite Resistance in a Warmer Environment: Insights from a Large Scale Field Experiment

机译:温暖环境中寄生虫抗性的快速进化:来自大规模现场实验的见解

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摘要

Global climate change is expected to have major effects on host-parasite dynamics, with potentially enormous consequences for entire ecosystems. To develop an accurate prognostic framework, theoretical models must be supported by empirical research. We investigated potential changes in host-parasite dynamics between a fish parasite, the eyefluke Diplostomum baeri, and an intermediate host, the European perch Perca fluviatilis, in a large-scale semi-enclosed area in the Baltic Sea, the Biotest Lake, which since 1980 receives heated water from a nuclear power plant. Two sample screenings, in two consecutive years, showed that fish from the warmer Biotest Lake were now less parasitized than fish from the Baltic Sea. These results are contrasting previous screenings performed six years after the temperature change, which showed the inverse situation. An experimental infection, by which perch from both populations were exposed to D. baeri from the Baltic Sea, revealed that perch from the Baltic Sea were successfully infected, while Biotest fish were not. These findings suggest that the elevated temperature may have resulted, among other outcomes, in an extremely rapid evolutionary change through which fish from the experimental Biotest Lake have gained resistance to the parasite. Our results confirm the need to account for both rapid evolutionary adaptation and biotic interactions in predictive models, and highlight the importance of empirical research in order to validate future projections.
机译:预计全球气候变化将对寄主-寄生虫动态产生重大影响,对整个生态系统可能产生巨大影响。为了建立准确的预后框架,理论模型必须得到实证研究的支持。我们调查了波罗的海半封闭大区Biotest湖中鱼类寄生虫,眼flu Diplostomum baeri和中间宿主欧洲鲈Perca fluviatilis之间宿主寄生虫动态的潜在变化。 1980年从核电厂接收热水。连续两年进行两次抽样检查,结果显示,比起波罗的海的鱼类,现在比温暖的Biotest湖的鱼类更被寄生。这些结果与温度变化六年后进行的先前筛查结果相反,后者显示出相反的情况。实验性感染使两个种群的鲈鱼都暴露于波罗的海的D. baeri,这表明波罗的海的鲈鱼已成功感染,而Biotest鱼并未被感染。这些发现表明,升高的温度可能导致了极其迅速的进化变化,实验的Biotest Lake的鱼类通过这种变化获得了对寄生虫的抗性。我们的结果证实了在预测模型中需要考虑快速进化适应和生物相互作用的必要性,并强调了实证研究的重要性,以验证未来的预测。

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