RCC references

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Mucko M, Padisák J, Udovič MGligora, Pálmai T, Novak T, Medić N, Gašparović B, Štefanić PPeharec, Orlić S, Ljubešić Z.  2020.  Characterization of a lipid-producing thermotolerant marine photosynthetic pico-alga in the genus Picochlorum (Trebouxiophyceae). European Journal of Phycology. 00:1–16.PDF icon Mucko et al_2020_Characterization of a lipid-producing thermotolerant marine photosynthetic.pdf (3.24 MB)
Foresi N, Correa-Aragunde N, Parisi G, Calo G, Salerno G, Lamattina L.  2010.  Characterization of a nitric oxide synthase from the plant kingdom: NO generation from the green alga Ostreococcus tauri is light irradiance and growth phase dependent. The Plant Cell. 22:3816–3830.PDF icon Foresi et al_2010_Characterization of a nitric oxide synthase from the plant kingdom.pdf (1.99 MB)
Rousseau V, Lantoine F, Rodriguez F, Le Gall F, Chrétiennot-Dinet M.-J., Lancelot C.  2013.  Characterization of ¡i¿Phaeocystis globosa¡/i¿ (haptophyceae), the blooming species in the southern north sea. Journal of Sea Research. 76:105–113.PDF icon Rousseau et al_2013_Characterization of ¡i¿Phaeocystis globosa¡-i¿ (haptophyceae), the blooming.pdf (1.17 MB)
Rousseau V, Lantoine F, Rodriguez F, Le Gall F, Chrétiennot-Dinet M.-J., Lancelot C.  2013.  Characterization of ¡i¿Phaeocystis globosa¡/i¿ (haptophyceae), the blooming species in the southern north sea. Journal of Sea Research. 76:105–113.PDF icon Rousseau et al_2013_Characterization of ¡i¿Phaeocystis globosa¡-i¿ (haptophyceae), the blooming.pdf (1.17 MB)
Rousseau V, Lantoine F, Rodriguez F, Le Gall F, Chrétiennot-Dinet M.-J., Lancelot C.  2013.  Characterization of ¡i¿Phaeocystis globosa¡/i¿ (haptophyceae), the blooming species in the southern north sea. Journal of Sea Research. 76:105–113.PDF icon Rousseau et al_2013_Characterization of ¡i¿Phaeocystis globosa¡-i¿ (haptophyceae), the blooming.pdf (1.17 MB)
Leliaert F, Tronholm A, Lemieux C, Turmel M, DePriest MS, Bhattacharya D, Karol KG, Fredericq S, Zechman FW, Lopez-Bautista JM.  2016.  Chloroplast phylogenomic analyses reveal the deepest-branching lineage of the Chlorophyta, Palmophyllophyceae class. nov.. Scientific Reports. 6:25367.PDF icon Leliaert et al_2016_Chloroplast phylogenomic analyses reveal the deepest-branching lineage of the.pdf (2.32 MB)
Leliaert F, Tronholm A, Lemieux C, Turmel M, DePriest MS, Bhattacharya D, Karol KG, Fredericq S, Zechman FW, Lopez-Bautista JM.  2016.  Chloroplast phylogenomic analyses reveal the deepest-branching lineage of the Chlorophyta, Palmophyllophyceae class. nov.. Scientific Reports. 6:25367.PDF icon Leliaert et al_2016_Chloroplast phylogenomic analyses reveal the deepest-branching lineage of the.pdf (2.32 MB)
Leliaert F, Tronholm A, Lemieux C, Turmel M, DePriest MS, Bhattacharya D, Karol KG, Fredericq S, Zechman FW, Lopez-Bautista JM.  2016.  Chloroplast phylogenomic analyses reveal the deepest-branching lineage of the Chlorophyta, Palmophyllophyceae class. nov.. Scientific Reports. 6:25367.PDF icon Leliaert et al_2016_Chloroplast phylogenomic analyses reveal the deepest-branching lineage of the.pdf (2.32 MB)
Langer G, Bode M.  2011.  CO2 mediation of adverse effects of seawater acidification in Calcidiscus leptoporus. Geochemistry Geophysics Geosystems. 12:1–8.PDF icon Langer_Bode_2011_CO2 mediation of adverse effects of seawater acidification in Calcidiscus.pdf (839.94 KB)
Reid EL, Worthy CA, Probert I, Ali ST, Love J, Napier J, Littlechild JA, Somerfield PJ, Allen MJ.  2011.  Coccolithophores: Functional biodiversity, enzymes and bioprospecting. Marine Drugs. 9:586–602.PDF icon Reid et al_2011_Coccolithophores.pdf (369.69 KB)
Reid EL, Worthy CA, Probert I, Ali ST, Love J, Napier J, Littlechild JA, Somerfield PJ, Allen MJ.  2011.  Coccolithophores: Functional biodiversity, enzymes and bioprospecting. Marine Drugs. 9:586–602.PDF icon Reid et al_2011_Coccolithophores.pdf (369.69 KB)
Guyon J-baptiste, Schatt P, Lozano J-C, Liennard M, Bouget F-Y.  2018.  Comparative analysis of culture conditions for the optimization of carotenoid production in several strains of the picoeukaryote ostreococcus. Marine Drugs. 16:76.PDF icon Guyon et al_2018_Comparative analysis of culture conditions for the optimization of carotenoid.pdf (1.45 MB)
Guyon J-baptiste, Schatt P, Lozano J-C, Liennard M, Bouget F-Y.  2018.  Comparative analysis of culture conditions for the optimization of carotenoid production in several strains of the picoeukaryote ostreococcus. Marine Drugs. 16:76.PDF icon Guyon et al_2018_Comparative analysis of culture conditions for the optimization of carotenoid.pdf (1.45 MB)
Ferrieux M, Dufour L, Doré H, Ratin M, Guéneuguès A, Chasselin L, Marie D, Rigaut-jalabert F, Le Gall F, Sciandra T et al..  2022.  Comparative Thermophysiology of Marine Synechococcus CRD1 Strains Isolated From Different Thermal Niches in Iron-Depleted Areas. Frontiers in Microbiology. 13PDF icon Ferrieux et al_2022_Comparative Thermophysiology of Marine Synechococcus CRD1 Strains Isolated From.pdf (2.17 MB)
Ferrieux M, Dufour L, Doré H, Ratin M, Guéneuguès A, Chasselin L, Marie D, Rigaut-jalabert F, Le Gall F, Sciandra T et al..  2022.  Comparative Thermophysiology of Marine Synechococcus CRD1 Strains Isolated From Different Thermal Niches in Iron-Depleted Areas. Frontiers in Microbiology. 13PDF icon Ferrieux et al_2022_Comparative Thermophysiology of Marine Synechococcus CRD1 Strains Isolated From.pdf (2.17 MB)
Farhat S, Florent I, Noel B, Kayal E, Da Silva C, Bigeard E, Alberti A, Labadie K, Corre E, Aury J-M et al..  2018.  Comparative time-scale gene expression analysis highlights the infection processes of two amoebophrya strains. Frontiers in Microbiology. 9:1–19.PDF icon Farhat et al_2018_Comparative time-scale gene expression analysis highlights the infection.pdf (2.61 MB)
Kenworthy JM, Davoult D, Lejeusne C.  2018.  Compared stress tolerance to short-term exposure in native and invasive tunicates from the NE Atlantic: when the invader performs better. Marine Biology. 165:164.PDF icon Kenworthy et al_2018_Compared stress tolerance to short-term exposure in native and invasive.pdf (949.42 KB)
Edullantes B, Low-Decarie E, Steinke M, Cameron T.  2023.  Comparison of thermal traits between non-toxic and potentially toxic marine phytoplankton: Implications to their responses to ocean warming. Journal of Experimental Marine Biology and Ecology. 562:151883.PDF icon Edullantes et al. - 2023 - Comparison of thermal traits between non-toxic and.pdf (6.9 MB)
Graeff JE, Leblond JD.  2023.  Composition of galactolipids, betaine lipids and triglyceride-associated fatty acids of the symbiotic dinoflagellate Zooxanthella (Brandtodinium) nutricula: A glimpse into polyunsaturated fatty acids available to its polycystine radiolarian host. Phycological Research. n/aPDF icon Graeff_Leblond_Composition of galactolipids, betaine lipids and triglyceride-associated fatty.pdf (437.41 KB)
Croteau D, Guérin S, Bruyant F, Ferland J, Campbell DA, Babin M, Lavaud J.  2021.  Contrasting nonphotochemical quenching patterns under high light and darkness aligns with light niche occupancy in Arctic diatoms. Limnology and Oceanography. 66:S231–S245.PDF icon Croteau et al. - 2021 - Contrasting nonphotochemical quenching patterns un.pdf (1.19 MB)
De Vries J, Monteiro F, Langer G, Brownlee C, Wheeler G.  2023.  A critical trade-off between nitrogen quota and growth allows Coccolithus braarudii life cycle phases’ to exploit varying environment. PDF icon De Vries et al. - 2023 - A critical trade-off between nitrogen quota and gr.pdf (3.33 MB)
Ben-Joseph O, de Haan D, Rechav K, Shimoni E, Levin-Zaidman S, Langer G, Probert I, Wheeler GL, Gal A.  2023.  Crystallization of Coccolith Calcite at Different Life-Cycle Phases Exhibits Distinct Degrees of Cellular Confinement. Small Structures. n/a:2200353.PDF icon Ben-Joseph et al. - Crystallization of Coccolith Calcite at Different .pdf (1.8 MB)
Ben-Joseph O, de Haan D, Rechav K, Shimoni E, Levin-Zaidman S, Langer G, Probert I, Wheeler GL, Gal A.  2023.  Crystallization of Coccolith Calcite at Different Life-Cycle Phases Exhibits Distinct Degrees of Cellular Confinement. Small Structures. n/a:2200353.PDF icon Ben-Joseph et al. - Crystallization of Coccolith Calcite at Different .pdf (1.8 MB)
Ribeiro CGérikas, Santos ALopes dos, Gourvil P, Le Gall F, Marie D, Tragin M, Probert I, Vaulot D.  2020.  Culturable diversity of Arctic phytoplankton during pack ice melting. Elementa: Science of the Anthropocene. 8:6.PDF icon Ribeiro et al_2020_Culturable diversity of Arctic phytoplankton during pack ice melting.pdf (6.82 MB)
Uwizeye C, Brisbin MMars, Gallet B, Chevalier F, LeKieffre C, Schieber NL, Falconet D, Wangpraseurt D, Schertel L, Stryhanyuk H et al..  2021.  Cytoklepty in the plankton: A host strategy to optimize the bioenergetic machinery of endosymbiotic algae. Proceedings of the National Academy of Sciences. 118PDF icon Uwizeye et al. - 2021 - Cytoklepty in the plankton A host strategy to opt.pdf (3.9 MB)

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