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幼鱼身体生长对同时发生的褐变和变暖的反应。

Larval fish body growth responses to simultaneous browning and warming.

作者信息

Huss Magnus, van Dorst Renee M, Gårdmark Anna

机构信息

Department of Aquatic Resources Swedish University of Agricultural Sciences Öregrund Sweden.

Department of Biology and Ecology of Fishes Leibniz-Institute of Freshwater Ecology and Inland Fisheries Berlin Germany.

出版信息

Ecol Evol. 2021 Oct 4;11(21):15132-15140. doi: 10.1002/ece3.8194. eCollection 2021 Nov.

Abstract

Organisms are facing global climate change and other anthropogenic pressures, but most research on responses to such changes only considers effects of single drivers. Observational studies and physiological experiments suggest temperature increases will lead to faster growth of small fish. Whether this effect of warming holds in more natural food web settings with concurrent changes in other drivers, such as darkening water color ("browning") is, however, unknown. Here, we set up a pelagic mesocosm experiment with large bags in the Baltic Sea archipelago, inoculated with larval Eurasian perch () and zooplankton prey and varying in temperature and color, to answer the question how simultaneous warming and browning of coastal food webs impact body growth and survival of larval perch. We found that browning decreased body growth and survival of larval perch, whereas warming increased body growth but had no effect on survival. Based on daily fish body growth estimates based on otolith microstructure analysis, and size composition and abundance of available prey, we explain how these results may come about through a combination of physiological responses to warming and lower foraging efficiency in brown waters. We conclude that larval fish responses to climate change thus may depend on the relative rate and extent of both warming and browning, as they may even cancel each other out.

摘要

生物正面临全球气候变化和其他人为压力,但大多数关于对这些变化的响应的研究仅考虑单一驱动因素的影响。观测研究和生理实验表明,温度升高将导致小鱼生长加快。然而,在其他驱动因素同时发生变化(如水色变暗,即“褐变”)的更自然的食物网环境中,这种变暖效应是否成立尚不清楚。在此,我们在波罗的海群岛设置了一个大型袋式中尺度海洋生态系统实验,接种了欧洲河鲈幼鱼和浮游动物猎物,并改变温度和颜色,以回答沿海食物网同时变暖和褐变如何影响河鲈幼鱼的身体生长和存活这一问题。我们发现,褐变降低了河鲈幼鱼的身体生长和存活率,而变暖增加了身体生长,但对存活率没有影响。基于通过耳石微结构分析得出的每日鱼类身体生长估计值,以及可用猎物的大小组成和丰度,我们解释了这些结果可能是如何通过对变暖的生理反应和褐色水域中较低的觅食效率共同作用而产生的。我们得出结论,幼鱼对气候变化的反应可能取决于变暖和褐变的相对速率和程度,因为它们甚至可能相互抵消。

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