Comparison of epifluorescence microscopy and flow cytometry in counting freshwater picophytoplankton
Salmi, P., Mäki, A., Mikkonen, A., Pupponen, V.-M., Vuorio, K., & Tiirola, M. (2021). Comparison of epifluorescence microscopy and flow cytometry in counting freshwater picophytoplankton. Boreal Environment Research, 26, 17-27. http://www.borenv.net/BER/archive/pdfs/ber26/ber26-017-027.pdf
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Boreal Environment ResearchAuthors
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2021Copyright
© Authors, 2021
The smaller the phytoplankton, the greater effort is required to distinguish individual cells by optics-based methods. Flow cytometry is widely applied in marine picophytoplankton research, but in freshwater research its role has remained minor. We compared epifluorescence microscopy and flow cytometry in assessing the composition, abundance and cell sizes of autofluorescent picophytoplankton in epilimnia of 46 Finnish lakes. Phycocyaninrich picocyanobacteria were the most dominant. The two methods yielded comparable total picophytoplankton abundances, but the determination of cell sizes, and thus total biomasses, were on average an order of magnitude higher in the microscopy results. However, flow cytometry yielded higher cell sizes when applied on small-celled cultured algae. Our study demonstrated that both epifluorescence microscopy and flow cytometry are useful methods in assessing abundances of phycocyanin-rich and phycoerythrin-rich picocyanobacteria and eukaryotic picophytoplankton in lakes. However, accurate determination of cell size and biomass remain challenges for microscopy and especially for flow cytometry.
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Suomen ympäristökeskusISSN Search the Publication Forum
1239-6095Keywords
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http://www.borenv.net/BER/archive/pdfs/ber26/ber26-017-027.pdfDataset(s) related to the publication
http://urn.fi/URN:NBN:fi:jyu-201911084794Salmi, Pauliina; Mäki, Anita; Mikkonen, Anu; Puupponen, Veli-Mikko; Vuorio, Kristiina; Tiirola, Marja. (2019). Original data for article: Comparison of epifluorescence microscopy and flow cytometry in counting freshwater picophytoplankton. V. 31.5.2019. University of Jyväskylä. https://doi.org/10.17011/jyx/dataset/66278. https://urn.fi/URN:NBN:fi:jyu-201911084794
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European CommissionFunding program(s)
FP7 (EU's 7th Framework Programme)
The content of the publication reflects only the author’s view. The funder is not responsible for any use that may be made of the information it contains.
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This work was supported by the European Research Council (ERC) under the European Union’s Seventh Framework Programme (FP/2007-2013, ERC CoG 615146) for Marja Tiirola and by the Academy of Finland, projects RNA-unit 260797 for Marja Tiirola and MiDAS 311229 for Kristiina Vuorio. The Finnish Cultural Foundation supported the work of Pauliina Salmi.License
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