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Patterns of seasonal phytoplankton distribution in prairie saline lakes of the northern Great Plains (U.S.A.)

机译:美国大平原北部大草原盐湖中季节性浮游植物的分布方式

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摘要

Seasonal changes in freshwater phytoplankton communities have been extensively studied, but key drivers of phytoplankton in saline lakes are currently not well understood. Comparative lake studies of 19 prairie saline lakes in the northern Great Plains (USA) were conducted in spring and summer of 2004, with data gathered for a suite of limnological parameters. Nutrient enrichment assays for natural phytoplankton assemblages were also performed in spring and summer of 2006. Canonical correspondence analysis of 2004 data showed salinity (logCl), nitrogen, and phosphorus (N:P ratios) to be the main drivers of phytoplankton distribution in the spring, and phosphorus (C:P ratios), iron (logTFe), and nitrogen (logTN) as important factors in the summer. Despite major differences in nutrient limitation patterns (P-limitation in freshwater systems, N-limitation in saline systems), seasonal patterns of phytoplankton phyla changes in these saline lakes were similar to those of freshwater systems. Dominance shifted from diatoms in the spring to cyanobacteria in the summer. Nutrient enrichment assays (control, +Fe, +N, +P, +N+P) in 2006 indicated that nutrient limitation is generally more consistent within lakes than for individual taxa across systems, with widespread nitrogen and secondary phosphorus limitation. Understanding phytoplankton community structure provides insight into the overall ecology of saline lakes, and will assist in the future conservation and management of these valuable and climatically-sensitive systems.
机译:淡水浮游植物群落的季节性变化已得到广泛研究,但目前对盐湖中浮游植物的关键驱动因素尚不十分了解。 2004年春季和夏季,对北大平原(美国)的19个草原盐湖进行了比较湖研究,并收集了一套湖泊学参数的数据。 2006年春季和夏季还进行了天然浮游植物组合的营养富集测定。2004年数据的典型对应分析表明,盐度(logCl),氮和磷(N:P比)是春季浮游植物分布的主要驱动力,磷(C:P比),铁(logTFe)和氮(logTN)是夏季的重要因素。尽管养分限制模式(淡水系统中的P限制,盐溶液系统中的N限制)存在重大差异,但这些盐湖中浮游植物门变化的季节性模式与淡水系统相似。优势从春季的硅藻转变为夏季的蓝细菌。 2006年的营养富集测定(对照,+ Fe,+ N,+ P,+ N + P)表明,与整个系统中的单个分类单元相比,湖泊中的养分限制通常更为一致,且氮和次生磷的分布普遍受限。了解浮游植物的群落结构可提供对盐湖整体生态的深刻见解,并将有助于将来对这些有价值的和对气候敏感的系统进行保护和管理。

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