Center for Mathematical Science and Advanced Technology, Japan Agency for Marine-Earth Science and Technology, Yokohama, Japan.
Application Laboratory, Japan Agency for Marine-Earth Science and Technology, Yokohama, Japan.
Sci Rep. 2024 Oct 31;14(1):26024. doi: 10.1038/s41598-024-74979-0.
Eels migrate along largely unknown routes to their spawning ground. By coupling Zermelo's navigation solution and data from the Japan Coastal Ocean Predictability Experiment 2 (JCOPE2M), we simulated a range of seasonal scenarios, swimming speeds, and swimming depths to predict paths that minimize migration duration and energy cost. Our simulations predict a trade-off between migration duration and energy cost. Given that eels do not refuel during their migration, our simulations suggest eels should travel at speeds of 0.4-0.6 body-length per second to retain enough energy reserves for reproduction. For real eels without full information of the ocean currents, they cannot optimize their migration in strong surface currents, thus when swimming at slow swimming speeds, they should swim at depths of 200 m or greater. Eels swimming near the surface are also influenced by seasonal factors, however, migrating at greater depths mitigates these effects. While greater depths present more favorable flow conditions, water temperature may become increasingly unfavorable, dropping near or below 5 °C. Our results serve as a benchmark, demonstrating the complex interplay between swimming speed, depth, seasonal factors, migration time, and energy consumption, to comprehend the migratory behaviors of Japanese eels and other migratory fish.
鳗鱼沿着鲜为人知的路线洄游到产卵地。通过结合泽尔梅洛的导航解决方案和日本沿海海洋可预报性实验 2(JCOPE2M)的数据,我们模拟了一系列季节性情景、游泳速度和游泳深度,以预测最小化洄游持续时间和能量消耗的路径。我们的模拟预测了洄游持续时间和能量消耗之间的权衡。鉴于鳗鱼在洄游过程中不补充能量,我们的模拟表明,鳗鱼应该以 0.4-0.6 体长/秒的速度游动,以保留足够的能量储备用于繁殖。对于没有完整海流信息的真实鳗鱼来说,它们无法在强海流中优化洄游,因此,当以较慢的游泳速度游动时,它们应该游到 200 米或更深的深度。鳗鱼在靠近水面游动时也会受到季节性因素的影响,但在更深的地方游动可以减轻这些影响。虽然更深的地方会提供更有利的流动条件,但水温可能会变得越来越不利,降至 5°C 左右或以下。我们的结果可以作为一个基准,展示了游泳速度、深度、季节性因素、洄游时间和能量消耗之间的复杂相互作用,以理解日本鳗鱼和其他洄游鱼类的洄游行为。