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低纬度浮游动物色素沉着可塑性对多种威胁的响应

Low-latitude zooplankton pigmentation plasticity in response to multiple threats.

作者信息

Lee Marcus, Zhang Huan, Sha Yongcui, Hegg Alexander, Ugge Gustaf Ekelund, Vinterstare Jerker, Škerlep Martin, Pärssinen Varpu, Herzog Simon David, Björnerås Caroline, Gollnisch Raphael, Johansson Emma, Hu Nan, Nilsson P Anders, Hulthén Kaj, Rengefors Karin, Langerhans R Brian, Brönmark Christer, Hansson Lars-Anders

机构信息

Department of Biology, Aquatic Ecology, Lund University, Lund, Sweden.

Chinese Academy of Sciences, Institute of Hydrobiology, Wuhan, People's Republic of China.

出版信息

R Soc Open Sci. 2019 Jul 24;6(7):190321. doi: 10.1098/rsos.190321. eCollection 2019 Jul.

Abstract

Crustacean copepods in high-latitude lakes frequently alter their pigmentation facultatively to defend themselves against prevailing threats, such as solar ultraviolet radiation (UVR) and visually oriented predators. Strong seasonality in those environments promotes phenotypic plasticity. To date, no one has investigated whether low-latitude copepods, experiencing continuous stress from UVR and predation threats, exhibit similar inducible defences. We here investigated the pigmentation levels of Bahamian 'blue hole' copepods, addressing this deficit. Examining several populations varying in predation risk, we found the lowest levels of pigmentation in the population experiencing the highest predation pressure. In a laboratory experiment, we found that, in contrast with our predictions, copepods from these relatively constant environments did show some changes in pigmentation subsequent to the removal of UVR; however, exposure to water from different predation regimes induced minor and idiosyncratic pigmentation change. Our findings suggest that low-latitude zooplankton in inland environments may exhibit reduced, but non-zero, levels of phenotypic plasticity compared with their high-latitude counterparts.

摘要

高纬度湖泊中的甲壳纲桡足类动物常常会适应性地改变自身色素沉着,以抵御常见威胁,如太阳紫外线辐射(UVR)和视觉导向型捕食者。这些环境中强烈的季节性变化促进了表型可塑性。迄今为止,尚无研究探讨经历UVR和捕食威胁持续压力的低纬度桡足类动物是否表现出类似的诱导防御机制。我们在此研究巴哈马“蓝洞”桡足类动物的色素沉着水平,以填补这一空白。通过研究几个捕食风险各异的种群,我们发现处于最高捕食压力下的种群色素沉着水平最低。在一项实验室实验中,我们发现,与我们的预测相反,来自这些相对稳定环境的桡足类动物在去除UVR后确实表现出了一些色素沉着变化;然而,暴露于不同捕食环境的水体中会引起轻微且独特的色素沉着变化。我们的研究结果表明,与高纬度同类动物相比,内陆环境中的低纬度浮游动物可能表现出较低但不为零的表型可塑性水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d05c/6689576/febe853df5c2/rsos190321-g1.jpg

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