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Using an individual-based model of fish assemblages to study the response of size spectra to changes in fishing

机译:使用基于个体的鱼群模型研究大小光谱对捕捞变化的响应

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For most fish species, strong environmental constraints imposed by living in an aquatic medium have produced converging streamlined body forms without prehensile appendices. This similarity in body shapes highlights a common predation constraint: a predatory fish must have a jaw large enough to swallow its prey. Fish diets may then reflect local prey availability and predator-prey size ratios. Based on this size-based opportunistic predation process, the multispecies individual-based model OSMOSE (Object-oriented Simulator of Marine ecOSystem Exploitation) is used to investigate to what extent the size distribution of fish communities can contribute to better our understanding of the functioning of marine food webs and the ecosystem effects of fishing. Strong similarity in shape is found between simulated size spectra and those described in empirical studies. The existence of a curvature towards small size classes is discussed in the light of the size-based predation hypothesis, which implies that smaller fish may undergo higher predation mortality. Applying linear and quadratic regressions to the simulated size spectra allows the detection of variations in fishing pressure and the proposal of different ways to quantify them. In particular, it is shown that the slope of the size spectrum decreases quasilinearly with fishing mortality and that the curvature could help to detect ecosystem overexploitation.
机译:对于大多数鱼类而言,由于生活在水生介质中而产生的强大的环境约束导致其收敛的流线型体形没有附加附件。身体形状的相似性凸显了一个常见的捕食约束:掠食性鱼类的下巴必须足够大以吞噬猎物。鱼的饮食可能会反映出当地猎物的可获得性和捕食者与猎物的大小比。基于这种基于大小的机会性捕食过程,基于多物种个体的模型OSMOSE(海洋ecOSystem开发的面向对象仿真器)用于调查鱼类群落的大小分布在多大程度上可以帮助我们更好地了解鱼类的功能海洋食物网和捕鱼对生态系统的影响。在模拟尺寸光谱与经验研究中描述的形状之间发现形状上的强烈相似性。根据基于尺寸的捕食假设,讨论了朝向小尺寸类别的曲率的存在,这意味着较小的鱼类可能遭受更高的捕食死亡率。将线性和二次回归应用于模拟尺寸谱可以检测捕鱼压力的变化,并提出了不同的量化方法。特别是,它表明,尺寸谱的斜率与捕捞死亡率成线性关系,并且曲率可以帮助检测生态系统的过度开发。

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