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首页> 外文期刊>Global change biology >Combined climate- and prey-mediated range expansion of Humboldt squid (Dosidicus gigas), a large marine predator in the California Current System.
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Combined climate- and prey-mediated range expansion of Humboldt squid (Dosidicus gigas), a large marine predator in the California Current System.

机译:气候和猎物介导的范围扩大的洪堡鱿鱼(Dosidicus gigas),是加利福尼亚洋流系统中的大型海洋捕食者。

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摘要

Climate-driven range shifts are ongoing in pelagic marine environments, and ecosystems must respond to combined effects of altered species distributions and environmental drivers. Hypoxic oxygen minimum zones (OMZs) in midwater environments are shoaling globally; this can affect distributions of species both geographically and vertically along with predator-prey dynamics. Humboldt (jumbo) squid (Dosidicus gigas) are highly migratory predators adapted to hypoxic conditions that may be deleterious to their competitors and predators. Consequently, OMZ shoaling may preferentially facilitate foraging opportunities for Humboldt squid. With two separate modeling approaches using unique, long-term data based on in situ observations of predator, prey, and environmental variables, our analyses suggest that Humboldt squid are indirectly affected by OMZ shoaling through effects on a primary food source, myctophid fishes. Our results suggest that this indirect linkage between hypoxia and foraging is an important driver of the ongoing range expansion of Humboldt squid in the northeastern Pacific Ocean.
机译:在中上层海洋环境中,气候驱动的范围变化仍在继续,生态系统必须对物种分布变化和环境驱动因素的综合影响做出反应。全球中部水域中的最低氧最低限度区域(OMZ)处于全球范围内;这会影响物种的地理分布和垂直分布以及捕食者-猎物的动态。洪堡鱿鱼(Dosidicus gigas)是高度迁徙的捕食者,适应低氧条件,可能会对竞争对手和捕食者造成伤害。因此,OMZ滩涂可优先促进洪堡乌贼的觅食机会。通过两种基于独特的长期数据的单独建模方法,这些数据基于对捕食者,猎物和环境变量的原位观察,我们的分析表明,洪堡乌贼通过对主要食物源(即Myctophid鱼)的影响而间接受到OMZ暗挖的影响。我们的结果表明,低氧和觅食之间的这种间接联系是东北太平洋洪堡鱿鱼持续范围扩大的重要驱动力。

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