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Inactive trout come out at night: behavioral variation, circadian activity, and fitness in the wild

机译:夜间不活动的鳟鱼出来:行为变化,昼夜节律活动和野外健身

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Theory suggests that high activity levels in animals increase growth at the cost of increased mortality. This growth-mortality tradeoff has recently been incorporated into the wider framework of the pace-of-life syndrome (POLS) hypothesis. However, activity is often quantified only in the laboratory and on a diurnal basis, leaving open the possibility that animals manage predation risk and feeding efficiency in the wild by modulating their circadian activity rhythms. Here we investigate how laboratory activity in wild brown trout parr (Salmo trutta L.) associates with circadian activity, growth, and mortality in their natal stream. We found that individuals with high activity in the laboratory displayed high dispersal and cathemeral activity in their natal stream. In contrast, trout with low laboratory activity showed variation of activity in the wild, which was negatively related to the light intensity. Our results do not support the growth-mortality trade-off of the POLS hypothesis as highly active, fast-growing individuals showed higher survival than inactive conspecifics. These novel results show for the first time that active and inactive individuals, as scored in the lab, can show different circadian patterns of behavior in the wild driven by light intensity. This implies that studies conducted under a narrow range of light conditions can bias our understanding of individual behavioral variation and its fitness consequences in the wild.
机译:理论表明,动物体内的高活性水平以增加死亡率为代价来促进生长。这种增长死亡率折衷方案最近已纳入生活节奏综合症(POLS)假设的更广泛框架中。但是,活性通常仅在实验室和昼夜基础上进行定量,这使动物有可能通过调节其昼夜节律活动节奏来控制野外的捕食风险和进食效率。在这里,我们研究了野生褐鳟(Salmo trutta L.)的实验室活动如何与他们的出生时昼夜节律活动,生长和死亡率相关联。我们发现,实验室中具有较高活动能力的人在其出生流中显示出较高的分散和反复活动。相反,具有低实验室活动性的鳟鱼在野外活动表现出变化,这与光照强度呈负相关。我们的结果不支持POLS假说的增长-死亡率折衷,因为高度活跃,快速成长的个体比非活跃同种异体具有更高的生存率。这些新颖的结果首次表明,在实验室中进行评分的活跃和不活跃的个体可以显示出受光强度驱动的野外行为的昼夜节律模式。这意味着在狭窄的光照条件下进行的研究可能会使我们对个体行为变化及其在野外适应性后果的理解产生偏差。

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