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捕食者群落与资源利用共同调节鲫鱼体高的诱导防御反应。

Predator community and resource use jointly modulate the inducible defense response in body height of crucian carp.

作者信息

de Meo Ilaria, Østbye Kjartan, Kahilainen Kimmo K, Hayden Brian, Fagertun Christian H H, Poléo Antonio B S

机构信息

Department of Forestry and Wildlife Management Inland Norway University of Applied Sciences Koppang Norway.

Lammi Biological Station University of Helsinki Helsinki Finland.

出版信息

Ecol Evol. 2021 Feb 3;11(5):2072-2085. doi: 10.1002/ece3.7176. eCollection 2021 Mar.

Abstract

Phenotypic plasticity can be expressed as changes in body shape in response to environmental variability. Crucian carp (), a widespread cyprinid, displays remarkable plasticity in body morphology and increases body depth when exposed to cues from predators, suggesting the triggering of an antipredator defense mechanism. However, these morphological changes could also be related to resource use and foraging behavior, as an indirect effect of predator presence. In order to determine whether phenotypic plasticity in crucian carp is driven by a direct or indirect response to predation threat, we compared twelve fish communities inhabiting small lakes in southeast Norway grouped by four categories of predation regimes: no predator fish, or brown trout (), perch (), or pike () as main piscivores. We predicted the body shape of crucian carp to be associated with the species composition of predator communities and that the presence of efficient piscivores would result in a deeper body shape. We use stable isotope analyses to test whether this variation in body shape was related to a shift in individual resource use-that is, littoral rather than pelagic resource use would favor the development of a specific body shape-or other environmental characteristics. The results showed that increasingly efficient predator communities induced progressively deeper body shape, larger body size, and lower population densities. Predator maximum gape size and individual trophic position were the best variables explaining crucian carp variation in body depth among predation categories, while littoral resource use did not have a clear effect. The gradient in predation pressure also corresponded to a shift in lake productivity. These results indicate that crucian carp have a fine-tuned morphological defense mechanism against predation risk, triggered by the combined effect of predator presence and resource availability.

摘要

表型可塑性可表现为身体形态随环境变化而改变。鲫鱼()是一种分布广泛的鲤科鱼类,其身体形态具有显著的可塑性,在接触到捕食者的线索时会增加体深,这表明触发了一种反捕食防御机制。然而,这些形态变化也可能与资源利用和觅食行为有关,是捕食者存在的间接影响。为了确定鲫鱼的表型可塑性是由对捕食威胁的直接还是间接反应驱动的,我们比较了挪威东南部小湖泊中的十二个鱼类群落,这些群落按四类捕食模式分组:无捕食鱼类,或以褐鳟()、鲈鱼()或梭子鱼()作为主要食鱼动物。我们预测鲫鱼的身体形态与捕食者群落的物种组成有关,高效食鱼动物的存在会导致身体更深。我们使用稳定同位素分析来测试这种身体形态的变化是否与个体资源利用的转变有关,即沿岸而非浮游资源利用是否有利于特定身体形态的发展,或与其他环境特征有关。结果表明,捕食者群落效率越高,鲫鱼的身体越深、体型越大、种群密度越低。捕食者的最大口裂尺寸和个体营养级是解释不同捕食类别中鲫鱼体深变化的最佳变量,而沿岸资源利用没有明显影响。捕食压力梯度也对应着湖泊生产力的变化。这些结果表明,鲫鱼对捕食风险具有一种微调的形态防御机制,由捕食者存在和资源可用性的综合作用触发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eeb2/7920785/0fe3bef12814/ECE3-11-2072-g001.jpg

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