首页> 外文期刊>Journal of great lakes research >Contemporary abundance patterns of Cyclotella sensu lato diatom taxa in Lake Superior: Assessing responses to physical and chemical gradients and potential links to climate change
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Contemporary abundance patterns of Cyclotella sensu lato diatom taxa in Lake Superior: Assessing responses to physical and chemical gradients and potential links to climate change

机译:苏必利尔湖的现代小轮藻硅藻类群的现代丰度模式:评估对物理和化学梯度的响应以及与气候变化的潜在联系

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Many studies attribute shifts in relative abundances of Cyclotella sensu lato diatom taxa in freshwater lakes over the past 150 years to climate change. Although abundances of several of these taxa have also changed in Lake Superior over the last century, the specific drivers are currently undear. This study used multiple linear regression to analyze long-term planktonic monitoring data to identify drivers of changing cell densities of six Cyclotella sensu lato species, four shown to be responsive to climate-driven change in smaller lakes and two species with similar morphology to two previously assessed taxa: Discostella stelligera and the morphologically similar D. pseudostelligera, Lindavia comensis and the morphologically similar L. delicatula, Lindavia ocellata, and Lindavia bodanica. Assessed variables associated with climate-driven physical change included surface water temperature and light availability, with turbidity and thermocline depth as indicators of the light environment. One to three variables explained 8-61% variation for each of 5 taxa from 2001 to 2011, significant predictive variables were not identified for D. stelligera. Multiple linear regression identified nutrients, including nitrate, phosphorus, and silica, as essential in explaining distributions of all the other assessed taxa. A physical variable associated with climate explained changes of one taxon: L. ocellata, which increased with lower water temperatures. Climate-driven species responses were not as apparent as in other systems; specifically, changes in the light environment of this clear lake did not explain abundance changes in any of the taxa. Multiple and complex environmental variables drive Cyclotella sensu lato abundance patterns in Lake Superior, possibly suggesting ecotype formation. (C) 2018 International Association for Great Lakes Research. Published by Elsevier B.V. All rights reserved.
机译:许多研究将过去150年间淡水湖中的小环藻硅藻分类群的相对丰度变化归因于气候变化。尽管上个世纪苏必利尔湖中其中一些分类单元的丰度也发生了变化,但具体的驱动因素目前尚不存在。这项研究使用多元线性回归分析长期浮游监测数据来确定6种Cyclotella sensu lato物种的细胞密度变化的驱动因素,其中4种对较小湖泊中的气候驱动变化有响应,另外2种形态与以前的2种相似评估的类群:Discostella stelligera和形态相似的D. pseudostelligera,Lindavia comensis以及形态相似的L. delicatula,Lindavia ocellata和Lindavia bodanica。与气候驱动的物理变化有关的评估变量包括地表水温度和光的可利用性,浊度和温跃层深度是光环境的指标。 1-3个变量解释了2001年至2011年5个分类单元中每一个分类单元的8-61%变异,但未鉴定出D. stelligera的重要预测变量。多元线性回归确定了包括硝酸盐,磷和二氧化硅在内的营养素,这对于解释所有其他评估的类群的分布至关重要。一个与气候有关的物理变量解释了一种分类单位:ocellata的变化,该变化随着水温的降低而增加。气候驱动的物种反应并不像其他系统那样明显。具体地说,这个清澈的湖泊的光照环境的变化并不能解释任何一个分类单元的丰度变化。多个复杂的环境变量驱动苏必利尔湖中的小环孢菌丰度模式,可能暗示了生态型的形成。 (C)2018国际大湖研究协会。由Elsevier B.V.发布。保留所有权利。

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