RCC references

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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)
Breton S, Jouhet J, Guyet U, Gros V, Pittera J, Demory D, Partensky F, Doré H, Ratin M, Maréchal É et al..  2019.  Unveiling membrane thermoregulation strategies in marine picocyanobacteria. New Phytologist. :nph.16239.PDF icon Breton et al_2019_Unveiling membrane thermoregulation strategies in marine picocyanobacteria.pdf (16.94 MB)
Bordiga M., Lupi C., Langer G., Gianoncelli A., Birarda G., Pollastri S., Bonanni V., Bedolla D.E, Vaccari L., Gariani G. et al..  2023.  Unexpected silicon localization in calcium carbonate exoskeleton of cultured and fossil coccolithophores. Scientific Reports. 13:7417.PDF icon Bordiga et al_2023_Unexpected silicon localization in calcium carbonate exoskeleton of cultured.pdf (2.76 MB)
Bordiga M., Lupi C., Langer G., Gianoncelli A., Birarda G., Pollastri S., Bonanni V., Bedolla D.E, Vaccari L., Gariani G. et al..  2023.  Unexpected silicon localization in calcium carbonate exoskeleton of cultured and fossil coccolithophores. Scientific Reports. 13:7417.PDF icon Bordiga et al_2023_Unexpected silicon localization in calcium carbonate exoskeleton of cultured.pdf (2.76 MB)
Bordiga M., Lupi C., Langer G., Gianoncelli A., Birarda G., Pollastri S., Bonanni V., Bedolla D.E, Vaccari L., Gariani G. et al..  2023.  Unexpected silicon localization in calcium carbonate exoskeleton of cultured and fossil coccolithophores. Scientific Reports. 13:7417.PDF icon Bordiga et al_2023_Unexpected silicon localization in calcium carbonate exoskeleton of cultured.pdf (2.76 MB)
Bordiga M., Lupi C., Langer G., Gianoncelli A., Birarda G., Pollastri S., Bonanni V., Bedolla D.E, Vaccari L., Gariani G. et al..  2023.  Unexpected silicon localization in calcium carbonate exoskeleton of cultured and fossil coccolithophores. Scientific Reports. 13:7417.PDF icon Bordiga et al_2023_Unexpected silicon localization in calcium carbonate exoskeleton of cultured.pdf (2.76 MB)
Bordiga M., Lupi C., Langer G., Gianoncelli A., Birarda G., Pollastri S., Bonanni V., Bedolla D.E, Vaccari L., Gariani G. et al..  2023.  Unexpected silicon localization in calcium carbonate exoskeleton of cultured and fossil coccolithophores. Scientific Reports. 13:7417.PDF icon Bordiga et al_2023_Unexpected silicon localization in calcium carbonate exoskeleton of cultured.pdf (2.76 MB)
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Bouget FYves.  2019.  Transient transformation of ostreococcus species (OTTH595, RCC809 and RCC802) and bathycoccus. PDF icon Bouget_2019_Transient transformation of ostreococcus species (OTTH595, RCC809 and RCC802).pdf (152.75 KB)
Kamakura S, Bilcke G, Sato S.  2024.  Transcriptional responses to salinity-induced changes in cell wall morphology of the euryhaline diatom Pleurosira laevis. Journal of Phycology. n/aPDF icon Kamakura et al. - Transcriptional responses to salinity-induced chan.pdf (6.74 MB)
Bretherton L, Hillhouse J, Kamalanathan M, Finkel ZV, Irwin AJ, Quigg A.  2020.  Trait-dependent variability of the response of marine phytoplankton to oil and dispersant exposure. Marine Pollution Bulletin. 153:110906.PDF icon Bretherton et al_2020_Trait-dependent variability of the response of marine phytoplankton to oil and.pdf (1.12 MB)
Palenik B, Grimwood J, Aerts A, Rouzé P, Salamov A, Putnam N, Dupont C, Jorgensen R, Derelle E, Rombauts S et al..  2007.  The tiny eukaryote \textit{Ostreococcus provides genomic insights into the paradox of plankton speciation. Proceedings of the National Academy of Sciences of the United States of America. 104:7705–7710.
Demory D, Weitz JS, Baudoux A-claire, Touzeau S, Simon N, Rabouille S, Sciandra A, Bernard O.  2020.  A thermal trade-off between viral production and degradation drives phytoplankton-virus population dynamics. bioRxiv. :2020.08.18.256156.PDF icon Demory et al_2020_A thermal trade-off between viral production and degradation drives.pdf (5.32 MB)
Demory D, Weitz JS, Baudoux A-claire, Touzeau S, Simon N, Rabouille S, Sciandra A, Bernard O.  2020.  A thermal trade-off between viral production and degradation drives phytoplankton-virus population dynamics. bioRxiv. :2020.08.18.256156.PDF icon Demory et al_2020_A thermal trade-off between viral production and degradation drives.pdf (5.32 MB)
Barbeyron T, Le Duff N, Duchaud E, Thomas F.  2023.  \textit{Zobellia alginiliquefaciens sp. nov., a novel member of the flavobacteria isolated from the epibiota of the brown alga Ericaria zosteroides (C. Agardh) Molinari & Guiry 2020. International Journal of Systematic and Evolutionary Microbiology. 73:005924.PDF icon Barbeyron et al_2023_Zobellia alginiliquefaciens sp.pdf (1.01 MB)
Kulk G, De Vries P, Van De Poll WH, Visser RJW, Buma AGJ.  2012.  Temperature-dependent growth and photophysiology of prokaryotic and eukaryotic oceanic picophytoplankton. Marine Ecology Progress Series. 466:43–55.PDF icon Kulk et al_2012_Temperature-dependent growth and photophysiology of prokaryotic and eukaryotic.pdf (506.33 KB)
Demory D, Arsenieff L, Simon N, Six C, Rigaut-jalabert F, Marie D, Ge P, Bigeard E, Jacquet S, Sciandra A et al..  2017.  Temperature is a key factor in Micromonas–virus interactions. The ISME Journal. 11:601–612.PDF icon Demory et al_2017_Temperature is a key factor in Micromonas–virus interactions.pdf (694.6 KB)
Demory D, Arsenieff L, Simon N, Six C, Rigaut-jalabert F, Marie D, Ge P, Bigeard E, Jacquet S, Sciandra A et al..  2017.  Temperature is a key factor in Micromonas–virus interactions. The ISME Journal. 11:601–612.PDF icon Demory et al_2017_Temperature is a key factor in Micromonas–virus interactions.pdf (694.6 KB)
Demory D, Arsenieff L, Simon N, Six C, Rigaut-jalabert F, Marie D, Ge P, Bigeard E, Jacquet S, Sciandra A et al..  2017.  Temperature is a key factor in Micromonas–virus interactions. The ISME Journal. 11:601–612.PDF icon Demory et al_2017_Temperature is a key factor in Micromonas–virus interactions.pdf (694.6 KB)

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