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首页> 外文期刊>Hydrobiologia >Impact of food concentration on diel vertical migration behaviour of Daphnia pulex under fish predation risk
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Impact of food concentration on diel vertical migration behaviour of Daphnia pulex under fish predation risk

机译:鱼类捕食风险下食物浓度对水蚤水el垂直迁移行为的影响

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摘要

Vertical migration of Daphnia represents the best-studied predator-avoidance behaviour known; yet the mechanisms underlying the choice to migrate require further investigation to understand the role of environmental context. To investigate the optimal habitat choice of Daphnia under fish predation pressure, first, we selected the individuals exhibiting strong migration behaviour. The animals collected from the hypolimnion during the daytime were significantly larger, being more conspicuous, and in turn performed stronger diel vertical migration (DVM) when exposed to fish cue. We called them strong migrants. Second, we provided the strong migrant D. pulex with food at high and intermediate (1 and 0.4 mg C l(-1), respectively) levels, which were well above the incipient limiting level and of high quality. They traded the benefits of staying in the warm water layer and moved down to the cold water in response to fish cue indicating fish predation. The availability of food allowed the animals to stay in the cold hypolimnion. However, at the low food level (0.1 mg C l(-1)), which is an additional constraint on fitness, Daphnia moved away from the cold hypolimnion. Poor food condition resulted in strong migrant Daphnia to cease migration and remain in the upper warmer water layer. Although temperature is known to be a more important cost factor of DVM than food, our results clearly show that this is only true as long as food is available. It becomes clear that food availability is controlling the direction of vertical positioning when daphnids experience a dilemma between optimising temperature and food condition while being exposed to fish cue. Then they overlook the predation risk. Thus, the optimal habitat choice of Daphnia appears to be a function of several variables including temperature, food levels and fish predation.
机译:水蚤的垂直迁移代表了研究最好的捕食动物回避行为。然而,选择迁移的潜在机制需要进一步调查,以了解环境背景的作用。为了研究在鱼类捕食压力下水蚤的最佳生境选择,首先,我们选择了表现出较强迁徙行为的个体。白天从低层动物身上收集的动物明显更大,更显眼,并且当暴露于鱼的提示下时,它们执行更强的diel垂直迁移(DVM)。我们称他们为强移民。其次,我们向强势移民D. pulex提供了处于较高和中等水平(分别为1和0.4 mg Cl(-1))的食物,这些食物远高于最初的限制水平和高质量。他们交换了留在温水层中的好处,并根据鱼的指示表明鱼被捕食而移至冷水。食物的供应使动物得以保持低温。但是,在低食物水平(0.1 mg C l(-1))下,这是对体适能的另一种限制,水蚤已经摆脱了冷冰霜。食物条件差导致强大的移民水蚤停止迁移并留在较暖的水层中。尽管已知温度是DVM的重要成本因素,而不是食物,但我们的结果清楚地表明,只要有食物,这就是正确的。很明显,当水蚤在暴露于鱼鳞的同时经历温度和食物条件的优化之间的困境时,食物的可利用性正在控制垂直定位的方向。然后他们忽略了捕食的风险。因此,水蚤的最佳生境选择似乎是几个变量的函数,包括温度,食物水平和鱼类捕食。

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