Climate change effects on shallow lakes: design and preliminary results of a cross-European climate gradient mesocosm experiment

F. Landkildehus, M. Søndergaard, M. Beklioğlu, R. Adrian, D. Angeler, J. Hejzlar, E. Papastergiadou, P. Zingel, A. İ. Çakıroğlu, Ulrike Scharfenberger, S. Drakare, T. Nõges, Michal Šorf, K. Stefanidis, Ü. N. Tavşanoğlu, C. Trigal, A. Mahdy, C. Papadaki, L. Tuvikene, S. Larsen, M. Kernan, E. Jeppesen
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引用次数: 37

Abstract

Climate change is expected to profoundly affect both temperature and net precipitation, with implications for lake water level. We describe the design of a harmonized, simultaneous, cross- European mesocosm experiment to elucidate the effects of climate change on community structure, functioning, and metabolism in shallow lakes at low and high nutrient levels with contrasting depths (1 and 2 m). We used cylindrical (D = 1.2 m) tanks that were either 1.2 or 2.2 m high, each having a 10-cm sediment layer. We inoculated the mesocosms with a mixed sample of sediment and plankton from lakes with contrasting nutrient concentrations and added macrophytes and planktivorous fish. Sediment was pre-equilibrated to the required experimental nutrient concentration. During the experiment the water level decreased with increasing temperature (up to 90 cm in the Mediterranean mesocosms) while conductivity increased. The average chlorophyll a concentration increased with temperature in the deep mesocosms but was more variable in the shallow mesocosms. Macrophyte
气候变化对浅湖的影响:跨欧洲气候梯度中尺度试验的设计和初步结果
预计气候变化将深刻影响温度和净降水,并对湖泊水位产生影响。我们描述了一个协调的、同步的、跨欧洲的中尺度实验的设计,以阐明气候变化对浅湖在不同深度(1米和2米)的低营养水平和高营养水平下的群落结构、功能和代谢的影响。我们使用圆柱形(D = 1.2米)水池,高1.2米或2.2米,每个有10厘米的沉积层。我们用来自不同营养浓度湖泊的沉积物和浮游生物混合样本接种中生态系统,并添加了大型植物和浮游鱼类。泥沙被预平衡到所需的实验营养物浓度。在试验期间,随着温度的升高,水位下降(地中海中生态系统最高可达90 cm),而电导率增加。深层中胚层的平均叶绿素a浓度随温度升高而升高,而浅层中胚层的变化较大。大型植物
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