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首页> 外文期刊>The Science of the Total Environment >Characterisation of a major phytoplankton bloom in the River Thames (UK) using flow cytometry and high performance liquid chromatography
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Characterisation of a major phytoplankton bloom in the River Thames (UK) using flow cytometry and high performance liquid chromatography

机译:使用流式细胞仪和高效液相色谱法表征泰晤士河(英国)中主要的浮游植物水华

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Recent river studies have observed rapid phytoplankton dynamics, driven by diurnal cycling and short-term responses to storm events, highlighting the need to adopt new high-frequency characterisation methods to understand these complex ecological systems. This study utilised two such analytical methods; pigment analysis by high performance liquid chromatography (HPLC) and cell counting by flow cytometry (FCM), alongside traditional chlorophyll spectrophotometry and light microscopy screening, to characterise the major phytoplankton bloom of 2015 in the River Thames, UK. All analytical techniques observed a rapid increase in chlorophyllaconcentration and cell abundances from March to early June, caused primarily by a diatom bloom. Light microscopy identified a shift from pennate to centric diatoms during this period. The initial diatom bloom coincided with increased HPLC peridinin concentrations, indicating the presence of dinoflagellates which were likely to be consuming the diatom population. The diatom bloom declined rapidly in early June, coinciding with a storm event. There were low chlorophyllaconcentrations (by both HPLC and spectrophotometric methods) throughout July and August, implying low biomass and phytoplankton activity. However, FCM revealed high abundances of pico-chlorophytes and cyanobacteria through July and August, showing that phytoplankton communities remain active and abundant throughout the summer period. In combination, these techniques are able to simultaneously characterise a wider range of phytoplankton groups, with greater certainty, and provide improved understanding of phytoplankton functioning (e.g. production of UV inhibiting pigments by cyanobacteria in response to high light levels) and ecological status (through examination of pigment degradation products). Combined HPLC and FCM analyses offer rapid and cost-effective characterisation of phytoplankton communities at appropriate timescales. This will allow a more-targeted use of light microscopy to capture phytoplankton peaks or to investigate periods of rapid community succession. This will lead to greater system understanding of phytoplankton succession in response to biogeochemical drivers.
机译:最近的河流研究发现,在昼夜循环和对暴风雨事件的短期响应的驱动下,浮游植物的动力学迅速,突显出需要采用新的高频表征方法来理解这些复杂的生态系统。这项研究利用了两种分析方法。通过高效液相色谱(HPLC)进行色素分析,并通过流式细胞术(FCM)进行细胞计数,以及传统的叶绿素分光光度法和光学显微镜筛选,以表征2015年英国泰晤士河浮游植物的主要开花。从3月到6月初,所有分析技术均观察到叶绿素浓度和细胞丰度迅速增加,这主要是由硅藻绽放引起的。在此期间,光学显微镜确定了从硅藻到中心硅藻的转变。最初的硅藻水华与HPLC Perdinin浓度升高相吻合,表明存在可能会消耗硅藻种群的鞭毛藻。硅藻绽放在6月初迅速下降,与风暴事件相吻合。整个7月和8月的叶绿素浓度较低(通过HPLC和分光光度法),这意味着生物量和浮游植物的活性较低。但是,FCM在七月和八月期间显示出大量的微绿藻类和蓝细菌,这表明整个夏季期间浮游植物群落保持活跃和丰富。结合起来,这些技术能够以更大的确定性同时表征更广泛的浮游植物群,并更好地了解浮游植物的功能(例如响应高光照水平,由蓝细菌产生抑制紫外线的色素)和生态状态(通过检查)颜料降解产物)。 HPLC和FCM组合分析可在适当的时间范围内快速,经济高效地表征浮游植物群落。这将允许更有针对性的使用光学显微镜来捕获浮游植物峰或调查群落快速演替的时期。这将使人们对生物地球化学驱动因素做出反应的浮游植物演替有更多的系统了解。

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