RCC references

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Doré H, Leconte J, Guyet U, Breton S, Farrant GK, Demory D, Ratin M, Hoebeke M, Corre E, Pitt FD et al..  2022.  Global Phylogeography of Marine Synechococcus in Coastal Areas Reveals Strong Community Shifts. mSystems. :e00656–22.PDF icon Dore et al_2022_Global Phylogeography of Marine Synechococcus in Coastal Areas Reveals Strong.pdf (1.87 MB)
Degraeve-Guilbault C, Bréhélin C, Haslam R, Sayanova O, Marie-Luce G, Jouhet J, Corellou F.  2017.  Glycerolipid characterization and nutrient deprivation-associated changes in the green picoalga ostreococcus tauri. Plant Physiology. 173:2060–2080.PDF icon Degraeve-Guilbault et al_2017_Glycerolipid characterization and nutrient deprivation-associated changes in.pdf (2.8 MB)
Guillou L, Jacquet S, Chrétiennot-Dinet M.-J., Vaulot D.  2001.  Grazing impact of two small heterotrophic flagellates on Prochlorococcus and Synechococcus. Aquatic Microbial Ecology. 26:201–207.PDF icon Guillou et al_2001_Grazing impact of two small heterotrophic flagellates on Prochlorococcus and.pdf (32 KB)
Worden AZ, Lee J.-H, Mock T, Rouzé P, Simmons MP, Aerts AL, Allen AE, Cuvelier ML, Derelle E, Everett MV et al..  2009.  Green evolution and dynamic adaptations revealed by genomes of the marine picoeukaryotes Micromonas. Science. 324:268–272.
Worden AZ, Lee J.-H, Mock T, Rouzé P, Simmons MP, Aerts AL, Allen AE, Cuvelier ML, Derelle E, Everett MV et al..  2009.  Green evolution and dynamic adaptations revealed by genomes of the marine picoeukaryotes Micromonas. Science. 324:268–272.
Wang KJiaxi, Huang Y, Majaneva M, Belt ST, Liao S, Novak J, Kartzinel TR, Herbert TD, Richter N, Cabedo-Sanz P.  2021.  Group 2i Isochrysidales produce characteristic alkenones reflecting sea ice distribution. Nature Communications. 12:15.PDF icon Wang et al_2021_Group 2i Isochrysidales produce characteristic alkenones reflecting sea ice.pdf (2.14 MB)
Giovagnetti V, Cataldo ML, Conversano F, Brunet C.  2012.  Growth and photophysiological responses of two picoplanktonic ¡i¿Minutocellus species¡/i¿, strains RCC967 and RCC703 (Bacillariophyceae). European Journal of Phycology. 47:408–420.PDF icon Giovagnetti et al_2012_Growth and photophysiological responses of two picoplanktonic ¡i¿Minutocellus.pdf (912.82 KB)
Giovagnetti V, Cataldo ML, Conversano F, Brunet C.  2012.  Growth and photophysiological responses of two picoplanktonic ¡i¿Minutocellus species¡/i¿, strains RCC967 and RCC703 (Bacillariophyceae). European Journal of Phycology. 47:408–420.PDF icon Giovagnetti et al_2012_Growth and photophysiological responses of two picoplanktonic ¡i¿Minutocellus.pdf (912.82 KB)
López-Pacheco IY, Ayala-Moreno VGuadalupe, Mejia-Melara CArlette, Rodríguez-Rodríguez J, Cuellar-Bermudez SP, González-González RBerenice, Coronado-Apodaca KG, Farfan-Cabrera LI, González-Meza GMaría, Iqbal HMN et al..  2023.  Growth Behavior, Biomass Composition and Fatty Acid Methyl Esters (FAMEs) Production Potential of Chlamydomonas reinhardtii, and Chlorella vulgaris Cultures. Marine Drugs. 21:450.PDF icon López-Pacheco et al. - 2023 - Growth Behavior, Biomass Composition and Fatty Aci.pdf (2.38 MB)
López-Pacheco IY, Ayala-Moreno VGuadalupe, Mejia-Melara CArlette, Rodríguez-Rodríguez J, Cuellar-Bermudez SP, González-González RBerenice, Coronado-Apodaca KG, Farfan-Cabrera LI, González-Meza GMaría, Iqbal HMN et al..  2023.  Growth Behavior, Biomass Composition and Fatty Acid Methyl Esters (FAMEs) Production Potential of Chlamydomonas reinhardtii, and Chlorella vulgaris Cultures. Marine Drugs. 21:450.PDF icon López-Pacheco et al. - 2023 - Growth Behavior, Biomass Composition and Fatty Aci.pdf (2.38 MB)
Frada M, Young J, Cachão M, Lino S, Martins A, Narciso Á, Probert I, de Vargas C.  2010.  A guide to extant coccolithophores (Calcihaptophycidae, Haptophyta) using light microscopy.. Journal of Nannoplankton Research. 31:58–112.PDF icon Frada et al_2010_A guide to extant coccolithophores (Calcihaptophycidae, Haptophyta) using light.pdf (2.52 MB)
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Fernandes T, Cordeiro N.  2020.  Hemiselmis andersenii and chlorella stigmatophora as new sources of High-value compounds: A lipidomic approach. Journal of Phycology. :jpy.13042.
Vázquez V, León P, Gordillo FJL, Jiménez C, Concepción I, Mackenzie K, Bresnan E, Segovia M.  2022.  High-CO2 Levels Rather than Acidification Restrict Emiliania huxleyi Growth and Performance. Microbial Ecology. PDF icon Vazquez et al_2022_High-CO2 Levels Rather than Acidification Restrict Emiliania huxleyi Growth and.pdf (1.81 MB)
Fernandes T, Cordeiro N.  2022.  High-value lipids accumulation by Pavlova pinguis as a response to nitrogen-induced changes. Biomass and Bioenergy. 158:106341.PDF icon Fernandes et Cordeiro - 2022 - High-value lipids accumulation by Pavlova pinguis .pdf (3.94 MB)
Monier A, Pagarete A, Allen MJ, Read BA, de Vargas C, Claverie JM, Ogata H.  2009.  Horizontal gene transfer of an entire metabolic pathway between a eukaryotic alga and its DNA virus. Genome Research. 19:1441–1449.PDF icon Monier et al_2009_Horizontal gene transfer of an entire metabolic pathway between a eukaryotic.pdf (1.14 MB)
Monier A, Chambouvet A, Milner DS, Attah V, Terrado R, Lovejoy C, Moreau H, Santoro AE, Derelle E, Richards TA.  2017.  Host-derived viral transporter protein for nitrogen uptake in infected marine phytoplankton. Proceedings of the National Academy of Sciences. :201708097.PDF icon Monier et al_2017_Host-derived viral transporter protein for nitrogen uptake in infected marine.pdf (7.09 MB)
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Carrillo JB, Gomez-Casati DF, Martín M, Busi MV.  2018.  Identification and analysis of OsttaDSP, a phosphoglucan phosphatase from Ostreococcus tauri. PLOS ONE. 13:e0191621.
Carrillo JB, Torresi F, Morales LL, Ricordi M, Gomez-Casati DF, Busi MV, Martín M.  2020.  Identification and characterization of ChlreSEX4, a novel glucan phosphatase from Chlamydomonas reinhardtii green alga. Archives of Biochemistry and Biophysics. 680:108235.
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)
Uwizeye C, Decelle J, Jouneau P-H, Gallet B, Keck J-baptiste, Schwab Y, Schoehn G, Zeeman SC, Falconet D, Finazzi G et al..  2020.  In-cell quantitative structural imaging of phytoplankton using 3D electron microscopy. bioRxiv. :2020.05.19.104166.PDF icon Uwizeye et al_2021_Morphological bases of phytoplankton energy management and physiological.pdf (3.78 MB)
Uwizeye C, Decelle J, Jouneau P-H, Gallet B, Keck J-baptiste, Schwab Y, Schoehn G, Zeeman SC, Falconet D, Finazzi G et al..  2020.  In-cell quantitative structural imaging of phytoplankton using 3D electron microscopy. bioRxiv. :2020.05.19.104166.PDF icon Uwizeye et al_2021_Morphological bases of phytoplankton energy management and physiological.pdf (3.78 MB)
Smallwood AChuck R, Chen J-hua, Kumar N, Chrisler W, Samuel O, Kyle JE, Nicora CD, Boudreau R, Ekman A, Kim K et al..  2018.  Integrated systems biology and imaging of the smallest free-living eukaryote Ostreococcus tauri. bioRxiv. PDF icon Smallwood et al_2018_Integrated systems biology and imaging of the smallest free-living eukaryote.pdf (2.67 MB)
Smallwood AChuck R, Chen J-hua, Kumar N, Chrisler W, Samuel O, Kyle JE, Nicora CD, Boudreau R, Ekman A, Kim K et al..  2018.  Integrated systems biology and imaging of the smallest free-living eukaryote Ostreococcus tauri. bioRxiv. PDF icon Smallwood et al_2018_Integrated systems biology and imaging of the smallest free-living eukaryote.pdf (2.67 MB)
Smallwood AChuck R, Chen J-hua, Kumar N, Chrisler W, Samuel O, Kyle JE, Nicora CD, Boudreau R, Ekman A, Kim K et al..  2018.  Integrated systems biology and imaging of the smallest free-living eukaryote Ostreococcus tauri. bioRxiv. PDF icon Smallwood et al_2018_Integrated systems biology and imaging of the smallest free-living eukaryote.pdf (2.67 MB)
Bendif EM, Probert I, Hervé A, Billard C, Goux D, Lelong C, Cadoret JP, Véron B.  2011.  Integrative taxonomy of the pavlovophyceae (haptophyta) : a reassessment. Protist. 162:738–761.PDF icon Bendif et al_2011_Integrative taxonomy of the pavlovophyceae (haptophyta).pdf (1.73 MB)

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