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首页> 外文期刊>Journal of Applied Phycology >Comparison of techniques used to count single-celled viable phytoplankton
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Comparison of techniques used to count single-celled viable phytoplankton

机译:单细胞活体浮游植物计数技术的比较

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摘要

Four methods commonly used to count phytoplankton were evaluated based upon the precision of concentration estimates: Sedgewick Rafter and membrane filter direct counts, flow cytometry, and flow-based imaging cytometry (FlowCAM). Counting methods were all able to estimate the cell concentrations, categorize cells into size classes, and determine cell viability using fluorescent probes. These criteria are essential to determine whether discharged ballast water complies with international standards that limit the concentration of viable planktonic organisms based on size class. Samples containing unknown concentrations of live and UV-inactivated phytoflagellates (Tetraselmis impellucida) were formulated to have low concentrations (< 100 mL(-1)) of viable phytoplankton. All count methods used chlorophyll a fluorescence to detect cells and SYTOX fluorescence to detect nonviable cells. With the exception of one sample, the methods generated live and nonviable cell counts that were significantly different from each other, although estimates were generally within 100% of the ensemble mean of all subsamples from all methods. Overall, percent coefficient of variation (CV) among sample replicates was lowest in membrane filtration sample replicates, and CVs for all four counting methods were usually lower than 30% (although instances of similar to 60% were observed). Since all four methods were generally appropriate for monitoring discharged ballast water, ancillary considerations (e.g., ease of analysis, sample processing rate, sample size, etc.) become critical factors for choosing the optimal phytoplankton counting method.
机译:根据浓度估算的精度评估了常用的四种浮游植物计数方法:Sedgewick Rafter和膜滤器直接计数,流式细胞术和基于流式的成像细胞术(FlowCAM)。计数方法都能够估计细胞浓度,将细胞分类为大小类别,并使用荧光探针确定细胞活力。这些标准对于确定排放的压载水是否符合限制大小尺寸活体浮游生物浓度的国际标准至关重要。包含未知浓度的活的和紫外线灭活的植物鞭毛藻(Tetraselmis impellucida)的样品被配制为具有低浓度(<100 mL(-1))的可行浮游植物。所有计数方法都使用叶绿素a荧光检测细胞,而SYTOX荧光检测无活力的细胞。除一个样本外,这些方法产生的活细胞计数和非活细胞计数彼此显着不同,尽管估计值通常在所有方法的所有子样本的总体均值的100%以内。总体而言,样品重复样品之间的变异系数(CV)在膜过滤样品重复样品中最低,并且所有四种计数方法的CV通常都低于30%(尽管观察到的相似度为60%)。由于所有四种方法通常都适合监测排放的压载水,因此,辅助考虑因素(例如分析的简便性,样品处理速率,样品量等)成为选择最佳浮游植物计数方法的关键因素。

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