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Composition of the Summer Photosynthetic Pico and Nanoplankton Communities in the Beaufort Sea Assessed by T-RFLP and Sequences of the 18S RRNA Gene from Flow Cytometry Sorted Samples

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Journal ISME J
Date 2012 Jan 27
PMID 22278671
Citations 34
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Abstract

The composition of photosynthetic pico and nanoeukaryotes was investigated in the North East Pacific and the Arctic Ocean with special emphasis on the Beaufort Sea during the MALINA cruise in summer 2009. Photosynthetic populations were sorted using flow cytometry based on their size and pigment fluorescence. Diversity of the sorted photosynthetic eukaryotes was determined using terminal-restriction fragment length polymorphism analysis and cloning/sequencing of the 18S ribosomal RNA gene. Picoplankton was dominated by Mamiellophyceae, a class of small green algae previously included in the prasinophytes: in the North East Pacific, the contribution of an Arctic Micromonas ecotype increased steadily northward becoming the only taxon occurring at most stations throughout the Beaufort Sea. In contrast, nanoplankton was more diverse: North Pacific stations were dominated by Pseudo-nitzschia sp. whereas those in the Beaufort Sea were dominated by two distinct Chaetoceros species as well as by Chrysophyceae, Pelagophyceae and Chrysochromulina spp.. This study confirms the importance of Arctic Micromonas within picoplankton throughout the Beaufort Sea and demonstrates that the photosynthetic picoeukaryote community in the Arctic is much less diverse than at lower latitudes. Moreover, in contrast to what occurs in warmer waters, most of the key pico- and nanoplankton species found in the Beaufort Sea could be successfully established in culture.

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References
1.
Shi X, Marie D, Jardillier L, Scanlan D, Vaulot D . Groups without cultured representatives dominate eukaryotic picophytoplankton in the oligotrophic South East Pacific Ocean. PLoS One. 2009; 4(10):e7657. PMC: 2764088. DOI: 10.1371/journal.pone.0007657. View

2.
Nolte V, Pandey R, Jost S, Medinger R, Ottenwalder B, Boenigk J . Contrasting seasonal niche separation between rare and abundant taxa conceals the extent of protist diversity. Mol Ecol. 2010; 19(14):2908-15. PMC: 2916215. DOI: 10.1111/j.1365-294X.2010.04669.x. View

3.
Shi X, Lepere C, Scanlan D, Vaulot D . Plastid 16S rRNA gene diversity among eukaryotic picophytoplankton sorted by flow cytometry from the South Pacific Ocean. PLoS One. 2011; 6(4):e18979. PMC: 3084246. DOI: 10.1371/journal.pone.0018979. View

4.
Lovejoy C, Massana R, Pedros-Alio C . Diversity and distribution of marine microbial eukaryotes in the Arctic Ocean and adjacent seas. Appl Environ Microbiol. 2006; 72(5):3085-95. PMC: 1472370. DOI: 10.1128/AEM.72.5.3085-3095.2006. View

5.
Lepere C, Demura M, Kawachi M, Romac S, Probert I, Vaulot D . Whole-genome amplification (WGA) of marine photosynthetic eukaryote populations. FEMS Microbiol Ecol. 2011; 76(3):513-23. DOI: 10.1111/j.1574-6941.2011.01072.x. View