首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Long-term changes in phytoplankton composition in seven Canadian Shield lakes in response to multiple anthropogenic stressors
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Long-term changes in phytoplankton composition in seven Canadian Shield lakes in response to multiple anthropogenic stressors

机译:七个加拿大盾构湖中浮游植物组成的长期变化响应多个人为压力源

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摘要

We examined long- term changes in phytoplankton composition from 1981 to 2003 in seven intensively studied lakes on the southern Canadian Shield in Ontario, Canada. Significant ( P < 0.05), temporally coherent increases in the relative biovolume of colonial chrysophytes were observed in six of the seven lakes, with coincident declines in the relative biovolume of diatom algae. Variance partitioning analyses identified water chemistry variables, and the co- variation of water chemistry with physicoclimatic variables, as most important in structuring phytoplankton assemblages through time in the study lakes ( variance explained: chemical variables ( 14%- 47%, mean = 28.7%); chemistry and physicoclimatic variables ( 21%- 30%, mean = 25.5%)). With the exception of Harp Lake, which was invaded by Bythotrephes in the early 1990s, grazing variables did not explain a significant portion of the phytoplankton variance. We hypothesize that the long-term changes in phytoplankton species composition is attributable to multiple anthropogenic stressors acting at a regional scale. Our results, coupled with paleoecological studies, indicate that increases in the relative importance of colonial chrysophytes are coincident with water chemistry changes associated with industrial activity since the mid- 1900s and physical changes linked to climate indices such as the North Atlantic Oscillation.
机译:我们在加拿大安大略省南部的加拿大盾牌中,在1981年至2003年从1981年到2003年检查了浮游植物组成的长期变化。显着(P <0.05),在七个湖泊中的六个湖中观察到殖民乳糜料细胞的相对生物散毛的时间相干升高,硅藻相对藻类的相对生物剧集的重合下降。方差分析分析确定水化学变量,以及水化学与物理偶然变量的协同变化,在研究湖泊中通过时间构建浮游植物组合的最重要(方差:化学变量(14%-47%,平均值= 28.7%) );化学和物理胆能变量(21% - 30%,平均值= 25.5%))。除了在20世纪90年代初的Bytthotrein的汉普湖外,放牧变量没有解释浮游植物方差的重要部分。我们假设浮游植物种类组合物的长期变化可归因于以区域规模作用的多个人为压力源。我们的结果与古生态学研究相结合,表明殖民菊酵母细胞相对重要性的增加与自20世纪中期和与北大西洋振荡等气候指数相关的物理变化有关的水化学改变。

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