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首页> 外文期刊>Transactions of the American Fisheries Society >Seasonally Dynamic Diel Vertical Migrations of Mysis diluviana, Coregonine Fishes, and Siscowet Lake Trout in the Pelagia of Western Lake Superior
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Seasonally Dynamic Diel Vertical Migrations of Mysis diluviana, Coregonine Fishes, and Siscowet Lake Trout in the Pelagia of Western Lake Superior

机译:西湖苏必利尔湖中上层鱼类的Mysis diluviana,Coregonine鱼和Siscowet湖鳟的季节性动态Diel垂直迁移

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Diel vertical migrations are common among many aquatic species and are often associated with changing light levels. The underlying mechanisms are generally attributed to optimizing foraging efficiency or growth rates and avoiding predation risk (mu). The objectives of this study were to (1) assess seasonal and interannual changes in vertical migration patterns of three trophic levels in the Lake Superior pelagic food web and (2) examine the mechanisms underlying the observed variability by using models of foraging, growth, and mu. Our results suggest that the opossum shrimp Mysis diluviana, kiyi Coregonus kiyi, and siscowet lake trout Salvelinus namaycush migrate concurrently during each season, but spring migrations are less extensive than summer and fall migrations. In comparison with M. diluviana, kiyis, and siscowets, the migrations by ciscoes C. artedi were not as deep in the water column during the day, regardless of season. Foraging potential and mu probably drive the movement patterns of M. diluviana, while our modeling results indicate that movements by kiyis and ciscoes are related to foraging opportunity and growth potential and receive a lesser influence from mu. The siscowet is an abundant apex predator in the pelagia of Lake Superior and probably undertakes vertical migrations in the water column to optimize foraging efficiency and growth. The concurrent vertical movement patterns of most species are likely to facilitate nutrient transport in this exceedingly oligotrophic ecosystem, and they demonstrate strong linkages between predators and prey. Fishery management strategies should use an ecosystem approach and should consider how altering the densities of long-lived top predators produces cascading effects on the nutrient cycling and energy flow in lower trophic levels.
机译:Diel垂直迁移在许多水生物种中很常见,并且通常与光照水平的变化有关。潜在的机制通常归因于优化觅食效率或生长速度并避免捕食风险(mu)。这项研究的目的是(1)评估苏必利尔湖中上层食物网中三个营养水平的垂直迁移模式的季节性和年际变化,以及(2)通过使用觅食,生长和繁殖模型研究观测到的变化的潜在机制。亩。我们的研究结果表明,负鼠虾Mysis diluviana,基伊Coregonus kiyi和粘胶湖鳟Salvelinus namaycush在每个季节同时迁移,但春季迁移的范围不如夏季和秋季迁移。与Diluviana,kiyis和siscowets相比,白天,不论季节如何,科迪斯C. artedi的迁移在水柱中的深度都不那么深。觅食潜力和亩可能驱动了Diluviana的运动模式,而我们的建模结果表明,基伊斯和科伊斯人的运动与觅食机会和增长潜力有关,并且受到亩的影响较小。 siscowet是苏必利尔湖平原的丰富的先天捕食者,可能在水柱中进行垂直迁移,以优化觅食效率和生长。大多数物种同时发生的垂直运动模式很可能促进这种营养不足的生态系统中的养分运输,它们显示了食肉动物与猎物之间的紧密联系。渔业管理战略应采用生态系统方法,并应考虑改变长寿顶级捕食者的密度如何在较低营养水平下对养分循环和能量流产生连锁效应。

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