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The effect of water temperature on routine swimming behaviour of new born guppies (Poecilia reticulata)

机译:水温对新生孔雀鱼(Poecilia reticulata)常规游泳行为的影响

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Guppies have successfully established populations in places with thermal regimes very different from the Tropical conditions in their native range. This indicates a remarkable capacity for thermal adaptation. Given their vulnerability to predation as juveniles, acute changes in temperature, which can alter predator-prey relationships, can impact juvenile survival and have amplified consequences at the population level. To understand how temperature may impact juvenile survival and gain insight into their success as an invasive species, we researched the effect of acute temperature changes on the routine swimming behaviour of juvenile guppies. Using a novel 3-dimensional tracking technique, we calculated 4 routine swimming parameters, speed, depth, and variation in speed or depth, at 6 different test temperatures (17, 20, 23, 26, 29, or 32°C). These temperatures cover their natural thermal range and also extended past it in order to include upper and lower thermal limits. Using model selection, we found that body length and temperature had a significant positive relationship with speed. Variation in speed decreased with rising temperatures and fish swam slightly closer to the bottom at higher temperatures. All juveniles increased variation in depth at higher temperatures, though larger individuals maintained slightly more consistent depths. Our results indicate that guppies have a large thermal range and show substantial plasticity in routine swimming behaviours, which may account for their success as an invasive species.
机译:孔雀鱼已经成功地在热力条件不同于其本地范围热带条件的地方建立了种群。这表明具有出色的热适应能力。鉴于它们容易被捕食,因此温度的急剧变化会改变食肉动物与猎物之间的关系,从而影响少年的生存,并在人口一级造成更大的后果。为了了解温度如何影响少年生存并获得其作为入侵物种的成功的见解,我们研究了急性温度变化对少年孔雀鱼常规游泳行为的影响。使用新颖的三维跟踪技术,我们在6种不同的测试温度(17、20、23、26、29或32°C)下计算了4个常规游泳参数,速度,深度以及速度或深度的变化。这些温度涵盖其自然热范围,并且也超出了其自然范围,以包括上下限。使用模型选择,我们发现体长和体温与速度呈显着正相关。速度的变化随着温度的升高而减小,在较高的温度下,鱼游向底部的距离略微接近。在较高的温度下,所有少年的深度变化都增加了,尽管较大的个体保持了略微更一致的深度。我们的结果表明,孔雀鱼具有较大的发热量范围,并且在常规游泳行为中显示出可塑性,这可能解释了它们作为入侵物种的成功。

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