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An automated submersible flow cytometer for analyzing pico- and nanophytoplankton: FlowCytobot

机译:自动潜水流式细胞仪,用于分析微微和纳米浮游植物:FlowCytobot

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摘要

Flow cytometry is a valuable tool for the analysis of phytoplankton and other suspended particles because of its speed and quantitative measurements, but the method's oceanographic application has been limited by the need to take discrete water samples for analysis on board ship or in the laboratory. For this reason, we have developed an automated flow cytometer (FlowCytobot) that can operate in situ and unattended. The new instrument utilizes a diode-pumped 532 nm laser and can measure light scattering and fluorescence of particles as small as Synechococcus cells. For operation at the LEO-15 mooring site off New Jersey, it is connected to shore by power and communications cables, and is controlled by a microcomputer whose programming can be loaded remotely. The sampling rate is adjustable; we have used from 12.5 to 50μl min~(-1). Integrated signals from each particle (two light scattering angles and two fluorescence emission bands) are transmitted to a shore-based computer, where they are accessible by Internet and can be examined in real time. FlowCytobot was deployed at LEO-15 from late July to early October 2001, where it operated continuously (aside from occasional power or communications interruptions at the node) without outside intervention. Even after 2 months of in situ operation, FlowCytobot's measurements were similar to those of a conventional flow cytometer, as shown by analysis of a discrete water sample taken at the location of the sample inlet. In addition to documenting seasonal and event-scale changes in size distributions and population abundances in the pico- and nanophytoplankton, FlowCytobot will be useful for examining diel cycles in light scattering and pigment fluorescence of cells in situ that may allow estimation of rates of production by different phytoplankton groups.
机译:由于流式细胞仪的速度和定量测量,它是分析浮游植物和其他悬浮颗粒的有价值的工具,但是该方法在海洋学中的应用受到了在船上或实验室中采集离散水样进行分析的限制。因此,我们开发了可在原位无人值守运行的自动流式细胞仪(FlowCytobot)。这款新仪器采用了二极管泵浦的532 nm激光器,可以测量与Synechococcus细胞一样小的颗粒的光散射和荧光。为了在新泽西州附近的LEO-15系泊站点上运行,它通过电源和通信电缆连接到岸上,并由一台微型计算机控制,该计算机可以远程加载程序。采样率可调;我们使用了12.5至50μlmin〜(-1)。来自每个粒子的积分信号(两个光散射角和两个荧光发射带)被传输到岸上的计算机,在那里它们可以通过Internet访问并可以进行实时检查。 FlowCytobot从2001年7月下旬至2001年10月上旬部署在LEO-15上,在此过程中,该设备连续运行(除了节点偶尔断电或通讯中断),而且没有外界干预。即使经过2个月的原位操作,FlowCytobot的测量结果也与常规流式细胞仪相似,这是通过分析在样品入口处采集的离散水样得出的。除了记录微微和纳米浮游植物大小分布和种群丰度的季节性和事件尺度变化外,FlowCytobot还可以用于检查原位细胞的光散射和色素荧光中的迪尔循环,从而可以通过不同的浮游植物群。

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