RCC references

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Partensky F, Six C, Ratin M, Garczarek L, Vaulot D, Probert I, Calteau A, Gourvil P, Marie D, Grébert T et al..  2018.  A novel species of the marine cyanobacterium Acaryochloris with a unique pigment content and lifestyle. Scientific Reports. 8:9142.PDF icon Partensky et al. - A novel species of the marine cyanobacterium Acaryochloris with a unique pigment content and lifestyle.pdf (5.32 MB)
Morrissey J, Sutak R, Paz-Yepes J, Tanaka A, Moustafa A, Veluchamy A, Thomas Y, Botebol H, Bouget F-Y, McQuaid JB et al..  2014.  A novel protein, ubiquitous in marine phytoplankton, concentrates iron at the cell surface and facilitates uptake. Current Biology. 25:364–371.PDF icon Morrissey et al_2014_A novel protein, ubiquitous in marine phytoplankton, concentrates iron at the.pdf (2.47 MB)
Concórdio-Reis P, Cardeira M, Macedo ACatarina, Ferreira SS, Serra ATeresa, Coimbra MA, Amorim A, Reis MAM, Freitas F.  2023.  Novel exopolysaccharide produced by the marine dinoflagellate Heterocapsa AC210: Production, characterization, and biological properties. Algal Research. 70:103014.PDF icon Concordio-Reis et al_2023_Novel exopolysaccharide produced by the marine dinoflagellate Heterocapsa AC210.pdf (992.03 KB)
Harada N, Hirose Y, Chihong S, Kurita H, Sato M, Onodera J, Murata K, Itoh F.  2021.  A novel characteristic of a phytoplankton as a potential source of straight-chain alkanes. Scientific Reports. 11:14190.PDF icon Harada et al_2021_A novel characteristic of a phytoplankton as a potential source of.pdf (5.37 MB)
Iglesias MJosé, Soengas R, Probert I, Guilloud E, Gourvil P, Mehiri M, López Y, Cepas V, Gutiérrez-del-Río I, Redondo-Blanco S et al..  2019.  NMR characterization and evaluation of antibacterial and antiobiofilm activity of organic extracts from stationary phase batch cultures of five marine microalgae (Dunaliella sp., D. salina, Chaetoceros calcitrans, C. gracilis and Tisochrysis lutea). Phytochemistry. 164:192–205.PDF icon Iglesias et al_2019_NMR characterization and evaluation of antibacterial and antiobiofilm activity.pdf (5.25 MB)
Iglesias MJosé, Soengas R, Probert I, Guilloud E, Gourvil P, Mehiri M, López Y, Cepas V, Gutiérrez-del-Río I, Redondo-Blanco S et al..  2019.  NMR characterization and evaluation of antibacterial and antiobiofilm activity of organic extracts from stationary phase batch cultures of five marine microalgae (Dunaliella sp., D. salina, Chaetoceros calcitrans, C. gracilis and Tisochrysis lutea). Phytochemistry. 164:192–205.PDF icon Iglesias et al_2019_NMR characterization and evaluation of antibacterial and antiobiofilm activity.pdf (5.25 MB)
Gobler CJ, Berry DL, Dyhrman ST, Wilhelm SW, Salamov A, Lobanov AV, Zhang Y, Collier JL, Wurch LL, Kustka AB et al..  2011.  Niche of harmful alga Aureococcus anophagefferens revealed through ecogenomics. Proceedings of the National Academy of Sciences of the United States of America. 108:4352–4357.PDF icon Gobler et al_2011_Niche of harmful alga Aureococcus anophagefferens revealed through ecogenomics.pdf (931.16 KB)
Gobler CJ, Berry DL, Dyhrman ST, Wilhelm SW, Salamov A, Lobanov AV, Zhang Y, Collier JL, Wurch LL, Kustka AB et al..  2011.  Niche of harmful alga Aureococcus anophagefferens revealed through ecogenomics. Proceedings of the National Academy of Sciences of the United States of America. 108:4352–4357.PDF icon Gobler et al_2011_Niche of harmful alga Aureococcus anophagefferens revealed through ecogenomics.pdf (931.16 KB)
Gobler CJ, Berry DL, Dyhrman ST, Wilhelm SW, Salamov A, Lobanov AV, Zhang Y, Collier JL, Wurch LL, Kustka AB et al..  2011.  Niche of harmful alga Aureococcus anophagefferens revealed through ecogenomics. Proceedings of the National Academy of Sciences of the United States of America. 108:4352–4357.PDF icon Gobler et al_2011_Niche of harmful alga Aureococcus anophagefferens revealed through ecogenomics.pdf (931.16 KB)
Descles J, Vartanian M, A Harrak E, Quinet M, Bremond N, Sapriel G, Bibette J, Lopez PJ.  2008.  New tools for labeling silica in living diatoms. New Phytologist. 177:822–829.PDF icon Descles et al_2008_New tools for labeling silica in living diatoms.pdf (277.23 KB)
Six C, Worden AZ, Rodriguez F, Moreau H, Partensky F.  2005.  New insights into the nature and phylogeny of prasinophyte antenna proteins: Ostreococcus tauri, a case study. Molecular Biology and Evolution. 22:2217–2230.PDF icon Six et al_2005_New insights into the nature and phylogeny of prasinophyte antenna proteins.pdf (294.64 KB)
Engesmo A, Eikrem W, Seoane S, Smith K, Edvardsen B, Hofgaard A, Tomas CR.  2016.  New insights into the morphology and phylogeny of Heterosigma akashiwo (Raphidophyceae), with the description of Heterosigma minor sp. nov .. Phycologia. 55:279–294.PDF icon Engesmo et al_2018_Development of a qPCR assay to detect and quantify ichthyotoxic flagellates.pdf (2.81 MB)
Engesmo A, Eikrem W, Seoane S, Smith K, Edvardsen B, Hofgaard A, Tomas CR.  2016.  New insights into the morphology and phylogeny of Heterosigma akashiwo (Raphidophyceae), with the description of Heterosigma minor sp. nov .. Phycologia. 55:279–294.PDF icon Engesmo et al_2018_Development of a qPCR assay to detect and quantify ichthyotoxic flagellates.pdf (2.81 MB)
Mohr R, Schliep M, Kurz T, Maldener I, Adams DG, Larkum ADW, Chen M, Hess WR.  2010.  A new chlorophyll d -containing cyanobacterium : evidence for niche adaptation in the genus Acaryochloris. The ISME journal. :1456–1469.PDF icon Mohr et al_2010_A new chlorophyll d -containing cyanobacterium.pdf (2.07 MB)
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Haney AM, Sanfilippo JE, Garczarek L, Partensky F, Kehoe DM.  2022.  Multiple Photolyases Protect the Marine Cyanobacterium Synechococcus from Ultraviolet Radiation. mBio. 13:e01511–22.PDF icon Haney et al. - 2022 - Multiple Photolyases Protect the Marine Cyanobacte.pdf (1.2 MB)
Subirana L, Péquin B, Michely S, Escande M-L, Meilland J, Derelle E, Marin B, Piganeau G, Desdevises Y, Moreau H et al..  2013.  Morphology, genome plasticity, and phylogeny in the genus ostreococcus reveal a cryptic species, o. mediterraneus sp. nov. (mamiellales, mamiellophyceae). Protist. 164:643–659.PDF icon Subirana et al_2013_Morphology, genome plasticity, and phylogeny in the genus ostreococcus reveal a.pdf (4.48 MB)
Uwizeye C, Decelle J, Jouneau P-H, Flori S, Gallet B, Keck J-baptiste, Dal Bo D, Moriscot C, Seydoux C, Chevalier F et al..  2021.  Morphological bases of phytoplankton energy management and physiological responses unveiled by 3D subcellular imaging. Nature Communications. 12:1–12.PDF icon Uwizeye et al_2020_In-cell quantitative structural imaging of phytoplankton using 3D electron.pdf (4.83 MB)
Uwizeye C, Decelle J, Jouneau P-H, Flori S, Gallet B, Keck J-baptiste, Dal Bo D, Moriscot C, Seydoux C, Chevalier F et al..  2021.  Morphological bases of phytoplankton energy management and physiological responses unveiled by 3D subcellular imaging. Nature Communications. 12:1–12.PDF icon Uwizeye et al_2020_In-cell quantitative structural imaging of phytoplankton using 3D electron.pdf (4.83 MB)
Uwizeye C, Decelle J, Jouneau P-H, Flori S, Gallet B, Keck J-baptiste, Dal Bo D, Moriscot C, Seydoux C, Chevalier F et al..  2021.  Morphological bases of phytoplankton energy management and physiological responses unveiled by 3D subcellular imaging. Nature Communications. 12:1–12.PDF icon Uwizeye et al_2020_In-cell quantitative structural imaging of phytoplankton using 3D electron.pdf (4.83 MB)
Uwizeye C, Decelle J, Jouneau P-H, Flori S, Gallet B, Keck J-baptiste, Dal Bo D, Moriscot C, Seydoux C, Chevalier F et al..  2021.  Morphological bases of phytoplankton energy management and physiological responses unveiled by 3D subcellular imaging. Nature Communications. 12:1–12.PDF icon Uwizeye et al_2020_In-cell quantitative structural imaging of phytoplankton using 3D electron.pdf (4.83 MB)
Balzano S, Percopo I, Siano R, Gourvil P, Chanoine M, Marie D, Vaulot D, Sarno D.  2017.  Morphological and genetic diversity of Beaufort Sea diatoms with high contributions from the Chaetoceros neogracilis species complex. Journal of Phycology. 53:161–187.PDF icon Balzano et al_2017_Morphological and genetic diversity of Beaufort Sea diatoms with high.pdf (3.54 MB)

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