IF 3.5 1区 环境科学与生态学 Q1 ECOLOGY Journal of Animal Ecology Pub Date : 2025-02-27 DOI:10.1111/1365-2656.70015
Kaj Hulthén, Cornelia Martel, Dan-E Nilsson, Christer Brönmark, P Anders Nilsson, R Brian Langerhans, Lars-Anders Hansson, Jakob Brodersen, Henrik Baktoft, Christian Skov
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引用次数: 0

摘要

每年都有数十亿动物进行迁徙,对生态系统的动态变化产生巨大影响。成功迁徙的关键行为通常由视觉系统引导。动物从视觉场景中提取信息的数量和质量与眼睛的结构大小直接相关--大眼睛可以容纳更大的瞳孔,通过提高视觉敏锐度和对比敏感度来增强光收集能力和视觉。迁徙应该对个体的视觉表现提出很高的要求,例如通过觅食、抵御捕食者的益处或导航要求。然而,眼睛形态和相应视觉能力的变化是否与迁徙倾向相关,目前仍是一个未知数。在这里,我们利用鳊鱼(一种常见的淡水鱼)种群内洄游倾向(也称为部分洄游)的变异,直接测试物种内眼睛成像的洄游相关变异。在对两个不同湖泊系统中超过 2000 个个体的洄游决策进行的多年实地研究中,我们发现相对瞳孔大小与个体洄游倾向呈正相关。对与观察到的瞳孔大小差异相关的视觉生态学进行的计算模拟显示,迁徙者的视觉探测范围更广,而且在弱光条件下观察小目标(如浮游猎物)时的性能增益最为明显。这些结果表明,迁徙者较大的瞳孔是为了提高觅食效率,帮助积累迁徙前的关键能量储备。我们的解剖学和功能学研究结果为视觉系统设计与个体迁移决策的关系提供了新的视角。
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Will I stay or will I go? Eye morphology predicts individual migratory propensity in a partial migrant.

Billions of animals undertake migratory journeys every year, with powerful consequences for ecosystem dynamics. Key behaviours that enable successful migration are often guided by the visual system. The amount and quality of information that animals can extract from visual scenes are directly related to structural eye size-larger eyes can house larger pupils, enhancing light-gathering capacity and vision by improving visual acuity and contrast sensitivity. Migration should exert strong demands on individual visual performance, for example via foraging, antipredator benefits or navigational requirements. Yet, it remains elusive whether variations in eye morphology and corresponding visual capabilities are associated with migratory propensity. Here, we capitalize upon intra-population variation in migratory propensity (also known as partial migration) in roach, a common freshwater fish, to directly test for migration-associated variation in image-forming eyes within a species. In a multi-year field study tracking the migration decisions of over 2000 individuals in two different lake systems, we found that relative pupil size was positively associated with individual migration propensity. Computational simulations of the visual ecology associated with the observed differences in pupil size show that migrants have an extended visual detection range and that the performance gain is most pronounced for viewing small targets (e.g. planktonic prey) under low-light conditions. These results suggest that the larger pupils of migrants represent an adaptation for increased foraging efficiency to aid in the accumulation of critical pre-migratory energy reserves. Together, our anatomical and functional findings provide new perspectives on visual system design in relation to individual-level migratory decision-making.

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来源期刊
Journal of Animal Ecology
Journal of Animal Ecology 环境科学-动物学
CiteScore
9.10
自引率
4.20%
发文量
188
审稿时长
3 months
期刊介绍: Journal of Animal Ecology publishes the best original research on all aspects of animal ecology, ranging from the molecular to the ecosystem level. These may be field, laboratory and theoretical studies utilising terrestrial, freshwater or marine systems.
期刊最新文献
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