Trask B J, van den Engh G J, Elgershuizen J H
Cytometry. 1982 Jan;2(4):258-64. doi: 10.1002/cyto.990020410.
Optical properties of eight algae species were measured on a flow cytometer. Forward and perpendicular light scatter measurements provide information on the size and shape of algae cells. The intensity of chlorophyll fluorescence varies greatly among the studied algae species and can be used to distinguish them. Measurements of chlorophyll fluorescence after excitation with different wavelengths provide a fluorescence excitation spectrum for each species over the available wavelength range. These spectra reflect the different photosynthetic pigment contents of the species. Staining algae cells with the DNA stains, Hoechst 33342 and DAPI, provides two additional optical parameters to distinguish algae populations: blue nuclear fluorescence and yellow granular fluorescence. The combination of these optical measurements enables the distinction of each algae species into a small cluster in a hyperspace of parameters. The automation of phytoplankton analysis on the flow cytometer may lead to the rapid and objective assessment of water quality.
在流式细胞仪上测量了八种藻类的光学特性。前向和垂直光散射测量提供了有关藻类细胞大小和形状的信息。叶绿素荧光强度在所研究的藻类物种之间差异很大,可用于区分它们。用不同波长激发后叶绿素荧光的测量提供了每个物种在可用波长范围内的荧光激发光谱。这些光谱反映了物种不同的光合色素含量。用DNA染料Hoechst 33342和DAPI对藻类细胞进行染色,提供了另外两个区分藻类群体的光学参数:蓝色核荧光和黄色颗粒荧光。这些光学测量的组合能够在参数超空间中将每个藻类物种区分为一个小簇。流式细胞仪上浮游植物分析的自动化可能会导致对水质进行快速、客观的评估。