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对于特立尼达孔雀鱼(Poecilia reticulata)而言,寄生虫负荷而非寄生虫的存在会降低其向上游游动的能力。

Parasite load, rather than parasite presence, decreases upstream movement in Trinidadian guppies Poecilia reticulata.

作者信息

Blondel L, Klemet-N'Guessan S, Hendry A P, Scott Marilyn E

机构信息

Laboratoire Interdisciplinaire des Environnements Continentaux (LIEC), Université de Lorraine, Metz, France.

Department of Biology, Trent University, Peterborough, Ontario, Canada.

出版信息

J Fish Biol. 2024 Jul;105(1):177-185. doi: 10.1111/jfb.15771. Epub 2024 Apr 29.

Abstract

Several factors influence whether an organism remains in its local habitat. Parasites can, for example, influence host movement by impacting their behavior, physiology, and morphology. In rivers, fish that swim efficiently against the current are able to maintain their position without being displaced downstream, a behavior referred to as positive rheotaxis. We hypothesized that both the presence and number of ectoparasites on a host would affect the ability of fish to avoid downstream displacement and thus prevent them from remaining in their habitat. We used the guppy-Gyrodactylus host-ectoparasite model to test whether parasite presence and parasite load had an effect on fish rheotaxis. We quantified rheotaxis of sham-infected and parasite-infected fish in a circular flow tank in the laboratory prior to infection and 5-6 days postinfection. Both parasite-infected and sham-infected individuals expressed similar levels of positive rheotaxis prior to infection and after infection. However, with increasing parasite numbers, guppies covered less distance in the upstream direction and spent more time in slower flow zones. These results suggest that higher numbers of Gyrodactylus ectoparasites negatively influence rheotactic movements. Further research is needed to understand the ecological and evolutionary implications of this ectoparasite on fish movement.

摘要

有几个因素会影响一个生物体是否留在其当地栖息地。例如,寄生虫可以通过影响宿主的行为、生理和形态来影响宿主的移动。在河流中,能够有效地逆流游动的鱼类能够保持其位置而不被冲到下游,这种行为被称为正向趋流性。我们假设宿主身上外寄生虫的存在和数量都会影响鱼类避免下游位移的能力,从而阻止它们留在其栖息地。我们使用孔雀鱼-三代虫宿主-外寄生虫模型来测试寄生虫的存在和寄生虫负荷是否对鱼类趋流性有影响。在感染前和感染后5-6天,我们在实验室的圆形流动水槽中对假感染和寄生虫感染的鱼类的趋流性进行了量化。在感染前和感染后,寄生虫感染的个体和假感染的个体表现出相似水平的正向趋流性。然而,随着寄生虫数量的增加,孔雀鱼向上游游动的距离变短,并且在流速较慢的区域停留的时间更长。这些结果表明,较多数量的三代虫外寄生虫会对趋流运动产生负面影响。需要进一步的研究来了解这种外寄生虫对鱼类移动的生态和进化意义。

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