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The influence of environmental conditions on the seasonal variation of Microcystis cell density and microcystins concentration in San Francisco Estuary

机译:环境条件对旧金山河口微囊藻细胞密度和微囊藻毒素浓度季节性变化的影响

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A bloom of the cyanobacteria Microcystis aeruginosa was sampled over the summer and fall in order to determine if the spatial and temporal patterns in cell density, chlorophyll a (chl a) concentration, total microcystins concentration, and percent microcystins composition varied with environmental conditions in San Francisco Estuary. It was hypothesized that the seasonal variation in Microcystis cell density and microcystin concentration was ecologically important because it could influence the transfer of toxic microcystins into the aquatic food web. Sampling for Microcystis cell density, chl a concentration, total microcystins concentration and a suite of environmental conditions was conducted biweekly at nine stations throughout the freshwater tidal and brackish water regions of the estuary between July and November 2004. Total microcystins in zooplankton and clam tissue was also sampled in August and October. Microcystis cell density, chl a concentration and total microcystins concentration varied by an order of magnitude and peaked during August and September when PmB and alpha B were high. Low stream-flow and high water temperature were strongly correlated with the seasonal variation of Microcystis cell density, total microcystins concentration (cell)-1 and total microcystins concentration (chl a)-1 in canonical correlation analyses. Nutrient concentrations and ratios were of secondary importance in the analysis and may be of lesser importance to seasonal variation of the bloom in this nutrient rich estuary. The seasonal variation of Microcystis density and biomass was potentially important for the structure and function of the estuarine aquatic food web, because total microcystins concentration was high at the base of the food web in mesozooplankton, amphipod, clam, and worm tissue during the peak of the bloom.
机译:为了确定San州环境条件下细胞密度,叶绿素a(chl a)浓度,总微囊藻毒素浓度和微囊藻毒素成分的百分比的时空格局,在夏季和秋季取样蓝藻铜绿微囊藻的花样。弗朗西斯科河口。据推测,微囊藻细胞密度和微囊藻毒素浓度的季节性变化在生态上很重要,因为它可能影响有毒微囊藻毒素向水食物网的转移。在2004年7月至11月的整个淡水潮汐和咸水区域的九个站点,每两周进行一次微囊藻细胞密度,chl a浓度,总微囊藻毒素浓度和一系列环境条件的采样。浮游动物和蛤c组织中的总微囊藻毒素为在8月和10月也进行了采样。微囊藻的细胞密度,chl a浓度和微囊藻毒素的总浓度变化一个数量级,并且在PmB和αB高的8月和9月达到峰值。在典型相关分析中,低流量和高水温与微囊藻细胞密度,总微囊藻毒素浓度(cell)-1和总微囊藻毒素浓度(chla)-1的季节变化密切相关。在分析中,营养物的浓度和比例次要,而对于营养丰富的河口,水华的季节变化可能次要。微囊藻的密度和生物量的季节性变化对于河口水生食物网的结构和功能可能具有重要意义,因为在高峰期,中微囊藻,两栖类,蛤类和蠕虫组织的食物网底部总微囊藻毒素浓度很高。绽放。

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