In fish, fast starts are brief, sudden accelerations during predator-prey encounters. They serve for escape and predation and are therefore ecologically important movements. Fast starts are generated by glycolytic muscle performance and are influenced by many internal and external factors. It is known that ammonia pollution has a major effect on the glycolytic muscle action, thus creating conditions in which fast start performance might be reduced and predation rates altered. Therefore, escape response and predation strikes were investigated in brown trout (Salmo trutta) of 10 and 20 cm body length exposed to an elevated (1 mg l(-1)) ammonia concentration for 24 and 96 h. Various locomotor and behavioural variables were measured. In C-starts, i.e. an escape start where the fish bends into a C-shaped position, ammonia exposure had no effect on response latency. After 96 h of exposure, cumulative distance, maximum swimming speed and turning radius of the prey were all significantly reduced and the escape went in no definite direction. The effect of ammonia exposure was more pronounced in large fish than in small fish. Predation strikes were also affected. Distance, speed and turning radius were significantly lower in exposed fish. Agonistic behaviour of dominant fish was significantly reduced and fish spent more time resting. Predator behaviour was also altered and the number of prey captured was reduced. This study shows that ammonia exposure affects brown trout escape response mainly through a reduction in fast start velocity and through an impairment of directionality. Thus, in addition to a reduced strength of the response, ammonia exposure could also reduce the fish's elusiveness facing a predator. Predation rate and social interactions are disrupted and predator-prey relationships could be altered.

译文

在鱼类中,快速启动是在捕食者与猎物相遇期间短暂而突然的加速。它们用于逃避和捕食,因此是生态上重要的运动。快速启动是由糖酵解肌肉性能产生的,并受到许多内部和外部因素的影响。众所周知,氨污染对糖酵解肌肉的作用具有重大影响,从而创造了可能降低快速启动性能并改变捕食速率的条件。因此,在暴露于升高的 (1 mg l(-1)) 氨浓度24和96小时的10和20厘米体长的褐鳟 (Salmo trutta) 中研究了逃逸反应和捕食打击。测量了各种运动和行为变量。在C启动中,即鱼弯曲到C形位置的逃逸启动中,氨暴露对响应潜伏期没有影响。暴露96小时后,累积距离,最大游泳速度和猎物的转弯半径均显着减小,并且逃逸没有确定的方向。大鱼比小鱼暴露氨的影响更明显。捕食罢工也受到影响。裸露鱼的距离,速度和转弯半径明显降低。优势鱼的激动行为显着降低,鱼花费了更多的时间休息。捕食者的行为也发生了变化,捕获的猎物数量也减少了。这项研究表明,氨暴露主要通过降低快速启动速度和损害方向性来影响鳟鱼的逃逸反应。因此,除了降低响应强度外,氨暴露还可以降低鱼面对捕食者的难以捉摸的能力。捕食率和社交互动被破坏,捕食者与猎物的关系可能会改变。

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