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Aggression level in different water velocities depends on population origin in grayling, Thymallus thymallus.

机译:不同水流速度下的侵略水平取决于河豚(Thymallus thymallus)的种群起源。

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摘要

Phenotypic plasticity is recognized as an important mechanism of adaptation. However, because of its potential costs and limits, it has been hypothesized to be reduced and ultimately become lost when there is no selection for its maintenance. Heterogeneous environments in particular are expected to favour and thus maintain plastic phenotypes. Lakes and rivers differ in their flow regimes. In addition to higher average water velocity, rivers are characterized by distinct spatial and temporal variation in water flow, whereas lakes can be regarded as quite uniform in this respect. We studied whether behaviour, which is generally considered to be highly plastic, shows differences in the degree of plasticity between lake and river populations of the European grayling, Thymallus thymallus, fry in response to different water velocities. Given that aggressive behaviour in fish has been shown to relate to ambient flow regime, we compared aggressiveness of hatchery-reared grayling originating from hatchery stocks of two lake and two river populations in still and flowing water. River fish showed higher aggressiveness in flowing water compared with still water, whereas aggressiveness of lake fish did not appear to vary according to water velocity. The higher plasticity of aggressiveness evoked in river fish by different water velocities may thus represent an adaptation to more variable flow and presumably related feeding conditions in their natural environment.
机译:表型可塑性被认为是适应的重要机制。但是,由于其潜在的成本和局限性,据推测它会减少,并且最终在没有选择维护的情况下会丢失。尤其是,异质环境将有利于并因此保持可塑性表型。湖泊和河流的流量不同。除了较高的平均水流速度外,河流的特征还在于水流的时空变化明显,而湖泊在这方面可以说是相当统一的。我们研究了行为(通常被认为是高度可塑性的)是否显示了响应不同水速的欧洲河鳟(Thymallus thymallus)鱼苗在湖泊和河流种群之间的可塑性程度差异。鉴于鱼类的攻击行为已被证明与环境流量有关,我们比较了孵化场饲养的河鳟的攻击性,这些孵化场源自静止和流动水中两个湖泊和两个河流种群的孵化场。与静水相比,河鱼在流动水中表现出更高的侵略性,而湖鱼的侵略性似乎并未随水流速度而变化。因此,不同水速在河鱼中引起的侵略性较高的可塑性可能表示适应其自然环境中的流量变化和推测相关的摄食条件。

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