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Enumeration and Cell Cycle Analysis of Natural Populations of Marine Picoplankton by Flow Cytometry Using the Nucleic Acid Stain SYBR Green I

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Date 1997 Jan 1
PMID 16535483
Citations 208
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Abstract

The novel dye SYBR Green I binds specifically to nucleic acids and can be excited by blue light (488-nm wavelength). Cell concentrations of prokaryotes measured in marine samples with this dye on a low-cost compact flow cytometer are comparable to those obtained with the UV-excited stain Hoechst 33342 (bis-benzimide) on an expensive flow cytometer with a water-cooled laser. In contrast to TOTO-1 and TO-PRO-1, SYBR Green I has the advantage of clearly discriminating both heterotrophic bacteria and autotrophic Prochlorococcus cells, even in oligotrophic waters. As with TOTO-1 and TO-PRO-1, two groups of heterotrophic bacteria (B-I and B-II-like types) can be distinguished. Moreover, the resolution of DNA distribution obtained with SYBR Green I is similar to that obtained with Hoechst 33342 and permits the analysis of the cell cycle of photosynthetic prokaryotes over the whole water column.

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References
1.
Hobbie J, Daley R, Jasper S . Use of nuclepore filters for counting bacteria by fluorescence microscopy. Appl Environ Microbiol. 1977; 33(5):1225-8. PMC: 170856. DOI: 10.1128/aem.33.5.1225-1228.1977. View

2.
Giovannoni S, Britschgi T, Moyer C, Field K . Genetic diversity in Sargasso Sea bacterioplankton. Nature. 1990; 345(6270):60-3. DOI: 10.1038/345060a0. View

3.
Robertson B, Button D . Characterizing aquatic bacteria according to population, cell size, and apparent DNA content by flow cytometry. Cytometry. 1989; 10(1):70-6. DOI: 10.1002/cyto.990100112. View

4.
Vaulot D, Courties C, Partensky F . A simple method to preserve oceanic phytoplankton for flow cytometric analyses. Cytometry. 1989; 10(5):629-35. DOI: 10.1002/cyto.990100519. View

5.
Marie D, Vaulot D, Partensky F . Application of the novel nucleic acid dyes YOYO-1, YO-PRO-1, and PicoGreen for flow cytometric analysis of marine prokaryotes. Appl Environ Microbiol. 1996; 62(5):1649-55. PMC: 167939. DOI: 10.1128/aem.62.5.1649-1655.1996. View