Temperature during embryonic development in brown trout influences juvenile behaviour in encounters with predators

IF 1.9 3区 生物学 Q1 ZOOLOGY
K. Filipsson, E. Bergman, A. Erlandsson, L. Greenberg, M. Österling, J. Watz
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引用次数: 0

Abstract

Variation in thermal conditions during embryogenesis can have far-reaching impact throughout ontogeny and may give rise to behavioural variation. Many animals, such as salmonids, exhibit behavioural trade-offs related to foraging and predator avoidance. How embryonic temperature affects these behaviours has remained unexplored. Not only abiotic conditions during embryogenesis but also biotic factors such as predator conditioning may affect fish behaviour, especially anti-predator responses. We examined how elevated temperatures and predator odours throughout embryogenesis affect the behaviour of 28–37 mm young-of-the-year brown trout (Salmo trutta) in encounters with predators, namely Atlantic salmon (Salmo salar; 20 cm) and burbot (Lota lota; 40 cm). Juvenile brown trout were more active and aggressive if they were incubated in warmer water as eggs than if they were incubated in colder water, and trout remained inactive longer when encountering predators if they were cold incubated. Brown trout were less active and aggressive when an Atlantic salmon was present than when a burbot or no predator was present. Behavioural responses did not differ between trout that had been subjected to water with versus without predator odours during embryogenesis, possibly because brown trout were not subjected to conspecific alarm cues during egg incubation. This study shows that thermal conditions during embryogenesis can influence fish behaviour early in life and thus contribute to behavioural variation, with potential effects on life history. Considering the rapid warming of northern regions, elevated embryonic temperatures may contribute substantially to variation in salmonid behaviour in the near future.

Abstract Image

Abstract Image

褐鳟鱼胚胎发育过程中的温度会影响幼鱼在遭遇捕食者时的行为
胚胎发生过程中热条件的变化会对整个个体发育产生深远的影响,并可能引起行为变化。许多动物,如鲑鱼,表现出与觅食和躲避捕食者有关的行为权衡。胚胎温度如何影响这些行为仍未被探索。除了胚胎发生过程中的非生物条件外,捕食者条件等生物因素也可能影响鱼类的行为,特别是反捕食者反应。我们研究了胚胎发育过程中温度升高和捕食者气味如何影响28-37毫米的年轻褐鳟(Salmo trutta)在遇到捕食者时的行为,即大西洋鲑鱼(Salmo salar;20厘米)和burbot (Lota Lota;40厘米)。如果在温暖的水中孵育幼鳟鱼,它们会比在较冷的水中孵育的幼鳟鱼更活跃,更具攻击性,如果在寒冷的水中孵育,鳟鱼在遇到捕食者时保持不活动的时间更长。当有大西洋鲑鱼存在时,褐鳟的活跃度和攻击性要比没有捕食者存在时低。在胚胎发生期间,受到有捕食者气味的水和没有捕食者气味的水的鳟鱼的行为反应没有区别,可能是因为在卵孵化期间,褐鳟没有受到相同的警报提示。这项研究表明,胚胎发生期间的热条件可以影响鱼类生命早期的行为,从而导致行为变化,并对生活史产生潜在影响。考虑到北方地区的快速变暖,胚胎温度的升高可能会在不久的将来对鲑鱼行为的变化做出重大贡献。
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来源期刊
Journal of Zoology
Journal of Zoology 生物-动物学
CiteScore
3.80
自引率
0.00%
发文量
90
审稿时长
2.8 months
期刊介绍: The Journal of Zoology publishes high-quality research papers that are original and are of broad interest. The Editors seek studies that are hypothesis-driven and interdisciplinary in nature. Papers on animal behaviour, ecology, physiology, anatomy, developmental biology, evolution, systematics, genetics and genomics will be considered; research that explores the interface between these disciplines is strongly encouraged. Studies dealing with geographically and/or taxonomically restricted topics should test general hypotheses, describe novel findings or have broad implications. The Journal of Zoology aims to maintain an effective but fair peer-review process that recognises research quality as a combination of the relevance, approach and execution of a research study.
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