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Thermal stratification drives movement of a coastal apex predator

机译:热分层驱动沿海尖顶捕食者的运动

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摘要

A characterization of the thermal ecology of fishes is needed to better understand changes in ecosystems and species distributions arising from global warming. The movement of wild animals during changing environmental conditions provides essential information to help predict the future thermal response of large marine predators. We used acoustic telemetry to monitor the vertical movement activity of the common dentex (Dentex dentex), a Mediterranean coastal predator, in relation to the oscillations of the seasonal thermocline during two summer periods in the Medes Islands marine reserve (NW Mediterranean Sea). During the summer stratification period, the common dentex presented a clear preference for the warm suprathermoclinal layer, and adjusted their vertical movements following the depth changes of the thermocline. The same preference was also observed during the night, when fish were less active. Due to this behaviour, we hypothesize that inter-annual thermal oscillations and the predicted lengthening of summer conditions will have a significant positive impact on the metabolic efficiency, activity levels, and population dynamics of this species, particularly in its northern limit of distribution. These changes in the dynamics of an ecosystem’s keystone predator might cascade down to lower trophic levels, potentially re-defining the coastal fish communities of the future.
机译:为了更好地了解全球变暖引起的生态系统和物种分布的变化,需要对鱼类的热生态进行表征。在变化的环境条件下野生动物的活动提供了重要信息,有助于预测大型海洋捕食者的未来热响应。我们使用声学遥测技术来监测地中海沿岸捕食者共同点(Dentex树突)的垂直运动活动,该活动与梅德斯群岛海洋保护区(西北地中海)在两个夏季期间季节性温跃层的振荡有关。在夏季分层期间,常见的树突明显偏爱温暖的上黏膜上皮层,并根据温跃层的深度变化调整了它们的垂直运动。在夜间,当鱼的活动较少时,也观察到了相同的偏好。由于这种行为,我们假设年际热振荡和夏季条件的预期延长将对该物种的代谢效率,活动水平和种群动态,特别是在其北部分布极限,产生显着的积极影响。生态系统中主要捕食者的动态变化可能会降低到较低的营养水平,从而可能重新定义未来的沿海鱼类群落。

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