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The underlying causes and effects of phytoplankton seasonal turnover on resource use efficiency in freshwater lakes

机译:淡水湖泊资源利用效率的浮游植物季节营业效率的潜在原因及影响

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摘要

The extent of intra‐annual turnover in phytoplankton communities is directly associated with the overall diversity. However, our understanding of the underlying causes and effects of intra‐annual turnover remains limited. In this study, we performed a two‐season investigation of the phytoplankton composition in the lakes of the Yangtze River catchment in China in spring and summer 2012, which covered a regional spatial scale. We analyzed the Sørensen pairwise dissimilarity (βsor) between the two seasons, their driving factors, and effects on resource use efficiency in phytoplankton. The results showed that the changes in phytoplankton composition from spring to summer were not synchronous among these lakes. The spatial environmental characteristics, temporal changes in environmental variables and the initial phytoplankton composition together explained the variation in βsor for phytoplankton, and their explanatory powers and primary driving variables depended on the phytoplankton taxonomic groups. Among the driving variables, increased nitrogen level and seasonal temperature difference will promote spring–summer community turnover and then improve the phosphorus use efficiency of phytoplankton community. The species diversity of the initial community might increase its stability and slow the spring–summer shift in phytoplankton, especially in cyanobacteria and Chlorophyta. Our study highlights the understanding of the patterns and underlying causes of temporal beta diversity in freshwater phytoplankton communities.
机译:浮游植物社区年度营业额的程度与整体多样性直接相关。但是,我们对年度营业额的潜在原因和影响仍然有限。在这项研究中,我们在2012年春季和夏季在中国的长江集水区湖区进行了对浮游植物组成的两季调查,涵盖了区域空间规模。我们在两种赛季,其驱动因素和对浮游植物中资源利用效率的影响之间分析了Sørensen成对异化(βSOR)。结果表明,在这些湖泊中,来自春季到夏季的浮游植物组成的变化在这些湖泊中不同步。空间环境特征,环境变量的时间变化和初始浮游植物组合物在一起解释了浮游植物的βSor的变化,以及它们的解释力和初级驱动变量依赖于浮游植物分类群。在驱动变量中,增加的氮气水平和季节性温差将促进春夏社区的营业额,然后提高浮游植物群落的磷利用效率。初始社区的物种多样性可能会增加其稳定性和慢春夏的春夏,尤其是在蓝藻和叶绿藻中。我们的研究突出了对淡水浮游植物社区临时β多样性的模式和潜在原因的理解。

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