RCC references

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2017
Cuvelier ML, Guo J, Ortiz AC, van Baren MJ, Tariq MAkram, Partensky F, Worden AZ.  2017.  Responses of the picoprasinophyte Micromonas commoda to light and ultraviolet stress. PLOS ONE. 12:e0172135.PDF icon Cuvelier et al_2017_Responses of the picoprasinophyte Micromonas commoda to light and ultraviolet.pdf (3.4 MB)
Riou V, Périot M, Biegala IC.  2017.  Specificity re-evaluation of oligonucleotide probes for the detection of marine picoplankton by tyramide signal amplification-fluorescent in situ hybridization. Frontiers in Microbiology. 8:854.PDF icon Riou et al_2017_Specificity re-evaluation of oligonucleotide probes for the detection of marine.pdf (1.87 MB)
Paerl RW, Bouget F-Y, Lozano J-C, Vergé V, Schatt P, Allen EE, Palenik B, Azam F.  2017.  Use of plankton-derived vitamin B1 precursors, especially thiazole-related precursor, by key marine picoeukaryotic phytoplankton. The ISME Journal. 11:753–765.PDF icon Paerl et al_2017_Use of plankton-derived vitamin B1 precursors, especially thiazole-related.pdf (2.16 MB)
Paerl RW, Bouget F-Y, Lozano J-C, Vergé V, Schatt P, Allen EE, Palenik B, Azam F.  2017.  Use of plankton-derived vitamin B1 precursors, especially thiazole-related precursor, by key marine picoeukaryotic phytoplankton. The ISME Journal. 11:753–765.PDF icon Paerl et al_2017_Use of plankton-derived vitamin B1 precursors, especially thiazole-related.pdf (2.16 MB)
2016
Simmons MP, Sudek S, Monier A, Limardo AJ, Jimenez V, Perle CR, Elrod VA, J. Pennington T, Worden AZ.  2016.  Abundance and biogeography of picoprasinophyte ecotypes and other phytoplankton in the eastern north pacific ocean. Applied and Environmental Microbiology. 82:1693–1705.PDF icon Simmons et al_2016_Abundance and biogeography of picoprasinophyte ecotypes and other phytoplankton.pdf (2.44 MB)
Simmons MP, Sudek S, Monier A, Limardo AJ, Jimenez V, Perle CR, Elrod VA, J. Pennington T, Worden AZ.  2016.  Abundance and biogeography of picoprasinophyte ecotypes and other phytoplankton in the eastern north pacific ocean. Applied and Environmental Microbiology. 82:1693–1705.PDF icon Simmons et al_2016_Abundance and biogeography of picoprasinophyte ecotypes and other phytoplankton.pdf (2.44 MB)
Bolton CT, Hernández-Sánchez MT, Fuertes M-Á, González-Lemos S, Abrevaya L, Méndez-Vicente A, Flores J-A, Probert I, Giosan L, Johnson J et al..  2016.  Decrease in coccolithophore calcification and CO2 since the middle Miocene. Nature Communications. 7:10284.PDF icon Bolton et al_2016_Decrease in coccolithophore calcification and CO2 since the middle Miocene.pdf (9.1 MB)
Waltman PH, Guo J, Reistetter ENahas, Purvine S, Ansong CK, van Baren MJ, Wong C-H, Wei C-L, Smith RD, Callister SJ et al..  2016.  Identifying aspects of the post-transcriptional program governing the proteome of the green alga micromonas pusilla.. PloS one. 11:e0155839.PDF icon Waltman et al_2016_Identifying aspects of the post-transcriptional program governing the proteome.pdf (1.69 MB)
Percopo I, Ruggiero MValeria, Balzano S, Gourvil P, Lundholm N, Siano R, Tammilehto A, Vaulot D, Sarno D.  2016.  Pseudo-nitzschia arctica sp. nov., a new cold-water cryptic Pseudo-nitzschia species within the P. pseudodelicatissima complex. Journal of Phycology. 52:184–199.PDF icon Percopo et al_2016_Pseudo-nitzschia arctica sp.pdf (771.04 KB)
Bendif EMahdi, Probert I, Díaz-Rosas F, Thomas D, van den Engh G, Young JR, von Dassow P.  2016.  Recent reticulate evolution in the ecologically dominant lineage of coccolithophores. Frontiers in Microbiology. 7PDF icon Bendif et al_2016_Recent reticulate evolution in the ecologically dominant lineage of.pdf (4.89 MB)
Durak GM, Taylor AR, Probert I, de Vargas C, Audic S, Schroeder DC, Brownlee C, Wheeler GL.  2016.  A role for diatom-like silicon transporters in calcifying coccolithophores. Nature Communications. 7:10543.PDF icon Durak et al_2016_A role for diatom-like silicon transporters in calcifying coccolithophores.pdf (1.95 MB)
Vannier T, Leconte J, Seeleuthner Y, Mondy S, Pelletier E, Aury J-M, de Vargas C, Sieracki M, Iudicone D, Vaulot D et al..  2016.  Survey of the green picoalga Bathycoccus genomes in the global ocean. Scientific Reports. 6:37900.PDF icon Vannier et al_2016_Survey of the green picoalga Bathycoccus genomes in the global ocean.pdf (2.44 MB)
Yau S, Hemon C, Derelle E, Moreau H, Piganeau G, Grimsley N.  2016.  A viral immunity chromosome in the marine picoeukaryote, ostreococcus tauri. PLOS Pathogens. 12:e1005965.PDF icon Yau et al_2016_A viral immunity chromosome in the marine picoeukaryote, ostreococcus tauri.pdf (2.55 MB)
2015
Šupraha L, Gerecht AC, Probert I, Henderiks J.  2015.  Eco-physiological adaptation shapes the response of calcifying algae to nutrient limitation. Scientific Reports. 5:16499.PDF icon Supraha et al_2015_Eco-physiological adaptation shapes the response of calcifying algae to.pdf (884.42 KB)
Varkey D, Mazard S, Ostrowski M, Tetu SG, Haynes P, Paulsen IT.  2015.  Effects of low temperature on tropical and temperate isolates of marine Synechococcus. The ISME Journal. :1–12.PDF icon Varkey et al_2015_Effects of low temperature on tropical and temperate isolates of marine.pdf (1.82 MB)
Wheeler G, Ishikawa T, Pornsaksit V, Smirnoff N.  2015.  Evolution of alternative biosynthetic pathways for vitamin C following plastid acquisition in photosynthetic eukaryotes. eLife. 4:1–25.PDF icon Wheeler et al_2015_Evolution of alternative biosynthetic pathways for vitamin C following plastid.pdf (2.17 MB)
Bendif EMahdi, Probert I, Young JR, von Dassow P.  2015.  Morphological and phylogenetic characterization of new gephyrocapsa isolates suggests introgressive hybridization in the Emiliania/Gephyrocapsa complex (haptophyta). Protist. 166:323–336.PDF icon Bendif et al_2015_Morphological and phylogenetic characterization of new gephyrocapsa isolates.pdf (3.35 MB)
Potvin É, Jeong HJin, Kang NSeon, Noh JHoon, Yang EJin.  2015.  Morphology , molecular phylogeny , and pigment characterization of a novel phenotype of the dinoflagellate genus Pelagodinium from Korean waters. Algae. 30:183–195.PDF icon Potvin et al_2015_Morphology , molecular phylogeny , and pigment characterization of a novel.pdf (3.32 MB)
Andersen RA, J. Bailey C, Decelle J, Probert I.  2015.  Phaeocystis rex sp. nov. (Phaeocystales, Prymnesiophyceae): a new solitary species that produces a multilayered scale cell covering. European Journal of Phycology. 50:207–222.PDF icon Andersen et al_2015_Phaeocystis rex sp.pdf (7.99 MB)
Decelle J, Romac S, Stern RF, Bendif EMahdi, Zingone A, Audic S, Guiry MD, Guillou L, Tessier D, Le Gall F et al..  2015.  PhytoREF: a reference database of the plastidial 16S rRNA gene of photosynthetic eukaryotes with curated taxonomy. Molecular Ecology Resources. 15:1435–1445.PDF icon Decelle et al_2015_PhytoREF.pdf (739.73 KB)
2014
Abby SS, Touchon M, De Jode A, Grimsley N, Piganeau G.  2014.  Bacteria in Ostreococcus tauri cultures - friends, foes or hitchhikers? Frontiers in microbiology. 5:505.PDF icon Abby et al_2014_Bacteria in Ostreococcus tauri cultures - friends, foes or hitchhikers.pdf (1.03 MB)
Probert I, Siano R, Poirier C, Decelle J, Biard T, Tuji A, Suzuki N, Not F.  2014.  Brandtodinium gen. nov. and B. nutricula comb. Nov. (Dinophyceae), a dinoflagellate commonly found in symbiosis with polycystine radiolarians. Journal of Phycology. 50:388–399.PDF icon Probert et al_2014_Brandtodinium gen.pdf (625.03 KB)
Probert I, Siano R, Poirier C, Decelle J, Biard T, Tuji A, Suzuki N, Not F.  2014.  Brandtodinium gen. nov. and B. nutricula comb. Nov. (Dinophyceae), a dinoflagellate commonly found in symbiosis with polycystine radiolarians. Journal of Phycology. 50:388–399.PDF icon Probert et al_2014_Brandtodinium gen.pdf (625.03 KB)
Pittera J, Humily F, Thorel M, Grulois D, Garczarek L, Six C.  2014.  Connecting thermal physiology and latitudinal niche partitioning in marine Synechococcus. The ISME journal. 8:1221–1236.PDF icon Pittera et al_2014_Connecting thermal physiology and latitudinal niche partitioning in marine.pdf (1.62 MB)
Hamilton T.J, Paz-Yepes J., Morrison R.A, Palenik B., Tresguerres M..  2014.  Exposure to bloom-like concentrations of two marine Synechococcus cyanobacteria (strains CC9311 and CC9902) differentially alters fish behaviour. Conservation Physiology. 2PDF icon Hamilton et al. - 2014 - Exposure to bloom-like concentrations of two marin.pdf (1.97 MB)

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