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首页> 外文期刊>Behavioral Ecology and Sociobiology >Behavioral adjustments of a pipefish to bacterial Vibrio challenge.
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Behavioral adjustments of a pipefish to bacterial Vibrio challenge.

机译:pipe鱼对细菌弧菌挑战的行为调整。

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摘要

Animals can profit from increasing temperatures by prolonged breeding seasons and faster growth rates. However, these fitness benefits are traded off against higher parasite load and increased virulence of temperature-sensitive pathogens. In thermally stratified habitats, behavioral plasticity can allow hosts to choose the optimal temperature to enhance individual fitness and to escape parasite pressure. To test this idea, we performed a temperature choice experiment with the host-parasite system of the sex-role reversed broad-nosed pipefish ( Syngnathus typhle) and its bacterial pathogen Vibrio spp. In this species, pregnant males are expected to face a trade-off between shortening their brooding period in warm water and decreasing the effect of the infection in cold water. We found that exposure to Vibrio changed the temperature preference for both pregnant and nonpregnant males, as well as females compared to nonchallenged fish that tended to prefer warm water. This study shows that behavioral plasticity is one option for avoidance of higher bacterial prevalence, as expected due to rising ocean temperatures.
机译:通过延长繁殖季节和加快生长速度,动物可以从气温升高中获利。但是,这些适合性的好处是要与更高的寄生虫负荷和对温度敏感的病原体的毒力增加进行权衡。在热分层的栖息地中,行为可塑性可以使宿主选择最佳温度以增强个体适应能力并摆脱寄生虫压力。为了验证这一想法,我们对性角色反转的宽鼻pipe鱼(Syngnathus typhle)及其细菌病原体弧菌属的宿主寄主进行了温度选择实验。在这个物种中,预计怀孕的雄性将面临在缩短在温水中的育雏期与降低在冷水中感染的影响之间的权衡。我们发现,与不喜欢挑战温水的非挑战性鱼类相比,暴露于弧菌会改变怀孕和不怀孕的雄性以及雌性的温度偏好。这项研究表明,行为可塑性是避免由于海洋温度上升而预期的较高细菌患病率的一种选择。

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