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USING TEMPORAL COHERENCE TO DETERMINE THE RESPONSE TO CLIMATE CHANGE IN BOREAL SHIELD LAKES

机译:利用时间相干性来确定浮游植物屏蔽湖对气候变化的响应

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Climate change is expected to have important impacts on aquatic ecosystems. On the Boreal Shield, mean annual air temperatures are expected to increase 2 to 4℃ over the next 50 years. An important challenge is to predict how changes in climate and climate variability will impact natural systems so that sustainable management policies can be implemented. To predict responses to complex ecosystem changes associated with climate change, we used long-term biotic databases to evaluate how important elements of the biota in Boreal Shield lakes have responded to past fluctuations in climate. Our long-term records span a two decade period where there have been unusually cold years and unusually warm years. We used coherence analyses to test for regionally operating controls on climate, water temperature, pH, and plankton richness and abundance in three regions across Ontario: the Experimental Lakes Area, Sudbury, and Dorset. Inter-annual variation in air temperature was similar among regions, but there was a weak relationship among regions for precipitation. While air temperature was closely related to lake surface temperatures in each of the regions, there were weak relationships between lake surface temperature and richness or abundance of the plankton. However, inter-annual changes in lake chemistry (i.e., pH) were correlated with some biotic variables. In some lakes in Sudbury and Dorset, pH was dependent on extreme events. For example, El Nino related droughts resulted in acidification pulses in some lakes that influenced phytoplankton and zooplankton richness. These results suggest that there can be strong heterogeneity in lake ecosystem responses within and across regions.
机译:预计气候变化将对水生生态系统产生重要影响。在北盾上,未来50年的年平均气温预计将上升2至4℃。一个重要的挑战是预测气候和气候变异性的变化将如何影响自然系统,以便实施可持续管理政策。为了预测与气候变化相关的复杂生态系统变化的响应,我们使用了长期生物数据库来评估北方盾湖中生物群的重要元素如何响应过去的气候波动。我们的长期记录跨越了两个十年的时期,那里经历了异常寒冷的年份和异常温暖的年份。我们使用一致性分析来测试安大略省三个地区(实验湖区,萨德伯里和多塞特郡)在气候,水温,pH值以及浮游生物丰富度和丰度方面的区域性控制措施。各地区的气温年际变化相似,但降水之间的关系较弱。尽管每个地区的气温与湖面温度密切相关,但湖面温度与浮游生物的丰富度或丰度之间的关系较弱。但是,湖泊化学的年际变化(即pH)与某些生物变量相关。在萨德伯里和多塞特郡的一些湖泊中,pH值取决于极端事件。例如,与厄尔尼诺现象有关的干旱导致一些湖泊的酸化脉冲影响了浮游植物和浮游动物的丰富度。这些结果表明,区域内和区域间的湖泊生态系统响应可能存在很强的异质性。

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