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Eco‐evolutionary dynamics driven by fishing: From single species models to dynamic evolution within complex food webs

机译:捕鱼驱动的生态进化动力学:从单一物种模型到复杂食品网中的动态演变

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摘要

Evidence of contemporary evolution across ecological time scales stimulated research on the eco‐evolutionary dynamics of natural populations. Aquatic systems provide a good setting to study eco‐evolutionary dynamics owing to a wealth of long‐term monitoring data and the detected trends in fish life‐history traits across intensively harvested marine and freshwater systems. In the present study, we focus on modelling approaches to simulate eco‐evolutionary dynamics of fishes and their ecosystems. Firstly, we review the development of modelling from single species to multispecies approaches. Secondly, we advance the current state‐of‐the‐art methodology by implementing evolution of life‐history traits of a top predator into the context of complex food web dynamics as described by the allometric trophic network (ATN) framework. The functioning of our newly developed eco‐evolutionary ATNE framework is illustrated using a well‐studied lake food web. Our simulations show how both natural selection arising from feeding interactions and size‐selective fishing cause evolutionary changes in the top predator and how those feed back to its prey species and further cascade down to lower trophic levels. Finally, we discuss future directions, particularly the need to integrate genomic discoveries into eco‐evolutionary projections.
机译:生态时间缩放的当代演化的证据促进了对自然人生态进化动态的刺激研究。由于丰富的长期监测数据和鱼类寿命性状的趋势,水管系统提供了良好的环境,以研究生态进化动态,以及在集中收获的海洋和淡水系统中的鱼类寿命性状的检测到趋势。在本研究中,我们专注于模拟鱼类及其生态系统的生态进化动态的建模方法。首先,我们审查从单种物种到多数方法的建模的开发。其次,我们通过以各种途径网络(ATN)框架描述的复杂食品Web动态的寿命历史特征的演变来推进当前的最先进的方法。我们的新开发的生态进化亚通框架的运作是使用良好的湖泊食品网进行说明的。我们的模拟展示了喂养相互作用和尺寸选择性捕捞的自然选择,导致顶部捕食者的进化变化以及那些饲料回到其猎物种类以及进一步级联到较低的营养水平。最后,我们讨论了未来的方向,特别是需要将基因组发现整合到生态进化预测中。

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