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Impacts that cause the highest direct mortality of individuals do not necessarily have the greatest influence on temperate eel escapement

机译:导致个人直接死亡率的影响并不一定对温带鳗鱼擒纵机产生最大的影响

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摘要

Temperate eels are three panmictic catadromous species with a long period of oceanic passive larval drift and large distribution areas in contrasting environments. Spatial patterns of life history traits have been observed, and are correlated with environmental gradients, and may arise from both adaptive phenotypic plasticity and genetic polymorphism. This raises the question of the effect of spatially heterogeneous anthropogenic pressures on these populations. In this context, we used Geneveel, an individual-based optimization model that includes both phenotypic plasticity and genetic polymorphism, to explore the effects of different kinds of anthropogenic pressures: glass eel and silver eel fisheries, obstacles to upstream migration, and turbine mortality. More specifically, we analyzed the effects of these pressures on five output variables: the number of escapees, the proportion of females, the proportion of slow growers, the mean length-at-silvering and the resulting egg production. Our results suggest that phenotypic plasticity could act as a compensatory mechanism that mitigates the effects of some pressures (glass eel fishery and obstacles to upstream migration) and could be a source of resilience for the population, while other pressures did not show any compensatory effect (silver eel fishery and turbine mortality). Therefore, global impacts are very hard to assess, and the pressure that kills the most individuals does not necessarily have the biggest impact on the spawning biomass.
机译:温带鳗鱼是三种持续的三种多个海洋被动幼虫漂移和对比环境的大分布区域。已经观察到生命历史特征的空间模式,并且与环境梯度相关,并且可能从自适应表型可塑性和遗传多态性中产生。这提出了空间异质的人体发生对这些群体的影响的问题。在这种情况下,我们使用了Geneveel,一种包括表型可塑性和遗传多态性的个体优化模型,探讨不同种类的人为压力:玻璃鳗鱼和银鳗鱼渔业,上游迁移的障碍和涡轮机死亡率。更具体地说,我们分析了这些压力对五个输出变量的影响:逃亡的数量,女性的比例,慢种植者的比例,平均镀银和所得鸡蛋产生。我们的研究结果表明,表型可塑性可以作为补偿机制,这些机制可以减轻一些压力的影响(玻璃鳗鱼渔业和障碍到上游迁移),并且可能是人口的弹性来源,而其他压力没有显示任何补偿效果(银鳗鱼渔业和涡轮机死亡率)。因此,全球影响很难评估,杀死最多的压力并不一定对产卵生物质产生最大的影响。

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