RCC references

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2011
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)
Blot N, Mella-Flores D, Six C, Lecorguille G, Boutte C, Peyrat A, Monnier A, Ratin M, Gourvil P, Campbell DA et al..  2011.  Light history influences the response of the marine cyanobacterium Synechococcus sp. WH7803 to oxidative stress. Plant Physiology. 156:1934–1954.PDF icon Blot et al_2011_Light history influences the response of the marine cyanobacterium.pdf (1.37 MB)
Beaufort L, Probert I, de Garidel-Thoron T, Bendif EM, Ruiz-Pino D, Metzl N, Goyet C, Buchet N, Coupel P, Grelaud M et al..  2011.  Sensitivity of coccolithophores to carbonate chemistry and ocean acidification. Nature. 476:80–83.PDF icon Beaufort et al_2011_Sensitivity of coccolithophores to carbonate chemistry and ocean acidification.pdf (621.83 KB)
Beaufort L, Probert I, de Garidel-Thoron T, Bendif EM, Ruiz-Pino D, Metzl N, Goyet C, Buchet N, Coupel P, Grelaud M et al..  2011.  Sensitivity of coccolithophores to carbonate chemistry and ocean acidification. Nature. 476:80–83.PDF icon Beaufort et al_2011_Sensitivity of coccolithophores to carbonate chemistry and ocean acidification.pdf (621.83 KB)
Beaufort L, Probert I, de Garidel-Thoron T, Bendif EM, Ruiz-Pino D, Metzl N, Goyet C, Buchet N, Coupel P, Grelaud M et al..  2011.  Sensitivity of coccolithophores to carbonate chemistry and ocean acidification. Nature. 476:80–83.PDF icon Beaufort et al_2011_Sensitivity of coccolithophores to carbonate chemistry and ocean acidification.pdf (621.83 KB)
Rokitta SD, de Nooijer LJ, Trimborn S, de Vargas C, Rost B, John U.  2011.  Transcriptome analyses reveal differential gene expression patterns between the life-cycle stages of Emiliania huxleyi (Haptophyta) and reflect specialization to different ecological niches. Journal of Phycology. 47:829–838.PDF icon Rokitta et al_2011_Transcriptome analyses reveal differential gene expression patterns between the.pdf (240 KB)
Rokitta SD, de Nooijer LJ, Trimborn S, de Vargas C, Rost B, John U.  2011.  Transcriptome analyses reveal differential gene expression patterns between the life-cycle stages of Emiliania huxleyi (Haptophyta) and reflect specialization to different ecological niches. Journal of Phycology. 47:829–838.PDF icon Rokitta et al_2011_Transcriptome analyses reveal differential gene expression patterns between the.pdf (240 KB)
Lepere C, Demura M, Kawachi M, Romac S, Probert I, Vaulot D.  2011.  Whole Genome Amplification (WGA) of marine photosynthetic eukaryote populations. FEMS Microbiology Ecology. 76:516–523.PDF icon Lepere et al_2011_Whole Genome Amplification (WGA) of marine photosynthetic eukaryote populations.pdf (522.37 KB)
2009
Gadler P, Reiter TC, Hoelsch K, Weuster-Botz D, Fabe K.  2009.  Enantiocomplementary inverting sec-alkylsulfatase activity in cyano- and thio-bacteria Synechococcus and Paracoccus spp.: selectivity enhancement by medium engineering. Tetrahedron: Asymmetry. 20:115–118.
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.
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.
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)
Richier S, Kerros ME, de Vargas C, Haramaty L, Falkowski PG, Gattuso JP.  2009.  Light-dependent transcriptional regulation of genes of biogeochemical interest in the diploid and haploid life cycle stages of Emiliania huxleyi. Applied and Environmental Microbiology. 75:3366–3369.PDF icon Richier et al_2009_Light-dependent transcriptional regulation of genes of biogeochemical interest.pdf (272.41 KB)
Sharon I, Alperovitch A, Rohwer F, Haynes M, Glaser F, Atamna-Ismaeel N, Pinter RY, Partensky F, Koonin EV, Wolf YI et al..  2009.  Photosystem I gene cassettes are present in marine virus genomes. Nature. 461:258–262.PDF icon Sharon et al_2009_Photosystem I gene cassettes are present in marine virus genomes.pdf (779.86 KB)
Six C, Sherrard R, Lionard M, Roy S, Campbell DA.  2009.  Photosystem II and pigment dynamics among ecotypes of the green alga Ostreococcus. Plant Physiology. 151:379–390.PDF icon Six et al_2009_Photosystem II and pigment dynamics among ecotypes of the green alga.pdf (286.12 KB)
2008
Six C, Finkel ZV, Rodriguez F, Marie D, Partensky F, Campbell DA.  2008.  Contrasting photoacclimation strategies in ecotypes of the eukayotic picoplankter ¡i¿Ostreococcus¡/i¿. Limnology and Oceanography. 53:255–265.PDF icon Six et al_2008_Contrasting photoacclimation strategies in ecotypes of the eukayotic.pdf (486.58 KB)
Cardol P, Bailleul B, Rappaport F, Derelle E, Baal D, Breyton C, Bailey S, Wollman FAndré, Grossman A, Moreau H et al..  2008.  An original adaptation of photosynthesis in the marine green alga Ostreococcus. Proceedings of the National Academy of Sciences of the United States of America. 105:7881–7886.PDF icon Cardol et al_2008_An original adaptation of photosynthesis in the marine green alga Ostreococcus.pdf (636.13 KB)
Bowler C, Allen AE, Badger JH, Grimwood J, Jabbari K, Kuo A, Maheswari U, Martens C, Maumus F, Otillar RP et al..  2008.  The Phaeodactylum genome reveals the evolutionary history of diatom genomes. Nature. 456:239–244.PDF icon Bowler et al_2008_The Phaeodactylum genome reveals the evolutionary history of diatom genomes.pdf (436.19 KB)
Bowler C, Allen AE, Badger JH, Grimwood J, Jabbari K, Kuo A, Maheswari U, Martens C, Maumus F, Otillar RP et al..  2008.  The Phaeodactylum genome reveals the evolutionary history of diatom genomes. Nature. 456:239–244.PDF icon Bowler et al_2008_The Phaeodactylum genome reveals the evolutionary history of diatom genomes.pdf (436.19 KB)
Bowler C, Allen AE, Badger JH, Grimwood J, Jabbari K, Kuo A, Maheswari U, Martens C, Maumus F, Otillar RP et al..  2008.  The Phaeodactylum genome reveals the evolutionary history of diatom genomes. Nature. 456:239–244.PDF icon Bowler et al_2008_The Phaeodactylum genome reveals the evolutionary history of diatom genomes.pdf (436.19 KB)
Bowler C, Allen AE, Badger JH, Grimwood J, Jabbari K, Kuo A, Maheswari U, Martens C, Maumus F, Otillar RP et al..  2008.  The Phaeodactylum genome reveals the evolutionary history of diatom genomes. Nature. 456:239–244.PDF icon Bowler et al_2008_The Phaeodactylum genome reveals the evolutionary history of diatom genomes.pdf (436.19 KB)
Bowler C, Allen AE, Badger JH, Grimwood J, Jabbari K, Kuo A, Maheswari U, Martens C, Maumus F, Otillar RP et al..  2008.  The Phaeodactylum genome reveals the evolutionary history of diatom genomes. Nature. 456:239–244.PDF icon Bowler et al_2008_The Phaeodactylum genome reveals the evolutionary history of diatom genomes.pdf (436.19 KB)

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