RCC references

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Castillo YM, Sebastián M, Forn I, Grimsley N, Yau S, Moraru C, Vaqué D.  2020.  Visualization of viral infection dynamics in a unicellular eukaryote and quantification of viral production using virus fluorescence in situ hybridization. Frontiers in Microbiology. 11:1559.PDF icon Castillo et al_2020_Visualization of viral infection dynamics in a unicellular eukaryote and.pdf (1.93 MB)
Yau S, Krasovec M, L. Benites F, Rombauts S, Groussin M, Vancaester E, Aury J-M, Derelle E, Desdevises Y, Escande M-L et al..  2020.  Virus-host coexistence in phytoplankton through the genomic lens. Science Advances. 6:eaay2587.PDF icon Yau et al_2020_Virus-host coexistence in phytoplankton through the genomic lens.pdf (1.67 MB)
Yau S, Krasovec M, L. Benites F, Rombauts S, Groussin M, Vancaester E, Aury J-M, Derelle E, Desdevises Y, Escande M-L et al..  2020.  Virus-host coexistence in phytoplankton through the genomic lens. Science Advances. 6:eaay2587.PDF icon Yau et al_2020_Virus-host coexistence in phytoplankton through the genomic lens.pdf (1.67 MB)
Yau S, Krasovec M, L. Benites F, Rombauts S, Groussin M, Vancaester E, Aury J-M, Derelle E, Desdevises Y, Escande M-L et al..  2020.  Virus-host coexistence in phytoplankton through the genomic lens. Science Advances. 6:eaay2587.PDF icon Yau et al_2020_Virus-host coexistence in phytoplankton through the genomic lens.pdf (1.67 MB)
Yau S, Krasovec M, L. Benites F, Rombauts S, Groussin M, Vancaester E, Aury J-M, Derelle E, Desdevises Y, Escande M-L et al..  2020.  Virus-host coexistence in phytoplankton through the genomic lens. Science Advances. 6:eaay2587.PDF icon Yau et al_2020_Virus-host coexistence in phytoplankton through the genomic lens.pdf (1.67 MB)
Bachy C, Yung CCM, Needham DM, Gazitúa MConsuelo, Roux S, Limardo AJ, Choi CJae, Jorgens DM, Sullivan MB, Worden AZ.  2021.  Viruses infecting a warm water picoeukaryote shed light on spatial co-occurrence dynamics of marine viruses and their hosts. The ISME Journal. :1–19.PDF icon Bachy et al_2021_Viruses infecting a warm water picoeukaryote shed light on spatial.pdf (1.73 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)
Eyal Z, Krounbi L, Ben Joseph O, Avrahami EM, Pinkas I, Peled-Zehavi H, Gal A.  2022.  The variability in the structural and functional properties of coccolith base plates. Acta Biomaterialia. 148:336–344.
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Clerissi C, Grimsley N, Ogata H, Hingamp P, Poulain J, Desdevises Y.  2014.  Unveiling of the diversity of prasinoviruses (phycodnaviridae) in marine samples by using high-throughput sequencing analyses of PCR-Amplified DNA polymerase and major capsid protein genes. Applied and Environmental Microbiology. 80:3150–3160.PDF icon Clerissi et al_2014_Unveiling of the diversity of prasinoviruses (phycodnaviridae) in marine.pdf (1.24 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)
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)
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)
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Roquis D, Cosseau C, Raffalli KBrener, Romans P, Masanet P, Mitta G, Grunau C, Vidal-Dupiol J.  2021.  The tropical coral Pocillopora acuta displays an unusual chromatin structure and shows histone H3 clipping plasticity upon bleaching. PDF icon Roquis et al. - 2021 - The tropical coral Pocillopora acuta displa.pdf (2.43 MB)
Lu Y, Wohlrab S, Groth M, Glöckner G, Guillou L, John U.  2016.  Transcriptomic profiling of Alexandrium fundyense during physical interaction with or exposure to chemical signals from the parasite Amoebophrya.. Molecular ecology. 25:1294–307.PDF icon Lu et al_2016_Transcriptomic profiling of Alexandrium fundyense during physical interaction.pdf (1.12 MB)
Lu Y, Wohlrab S, Groth M, Glöckner G, Guillou L, John U.  2016.  Transcriptomic profiling of Alexandrium fundyense during physical interaction with or exposure to chemical signals from the parasite Amoebophrya.. Molecular ecology. 25:1294–307.PDF icon Lu et al_2016_Transcriptomic profiling of Alexandrium fundyense during physical interaction.pdf (1.12 MB)
Lu Y, Wohlrab S, Groth M, Glöckner G, Guillou L, John U.  2016.  Transcriptomic profiling of Alexandrium fundyense during physical interaction with or exposure to chemical signals from the parasite Amoebophrya.. Molecular ecology. 25:1294–307.PDF icon Lu et al_2016_Transcriptomic profiling of Alexandrium fundyense during physical interaction.pdf (1.12 MB)
Alonso-Sáez L, Palacio AS, Cabello AM, Robaina-Estévez S, González JM, Garczarek L, López-Urrutia Á.  2023.  Transcriptional Mechanisms of Thermal Acclimation in \textit{Prochlorococcus. mBio. :e03425–22.PDF icon Alonso-Sáez et al. - 2023 - Transcriptional Mechanisms of Thermal Acclimation .pdf (1.23 MB)
Alonso-Sáez L, Palacio AS, Cabello AM, Robaina-Estévez S, González JM, Garczarek L, López-Urrutia Á.  2023.  Transcriptional Mechanisms of Thermal Acclimation in \textit{Prochlorococcus. mBio. :e03425–22.PDF icon Alonso-Sáez et al. - 2023 - Transcriptional Mechanisms of Thermal Acclimation .pdf (1.23 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.
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.

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