RCC references

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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.
Magalhães K, Santos ALopes dos, Vaulot D, de Oliveira MCabral.  2021.  Hemiselmis aquamarina sp . nov . (Cryptomonadales , Cryptophyceae), a cryptomonad with a novel phycobiliprotein type (Cr-PC 564). Protist. in pressPDF icon Magalhaes et al_2021_Hemiselmis aquamarina sp.pdf (3.8 MB)
Xu Y, Leung SKK, Li TMW, Yung CCM.  2024.  Hidden genomic diversity drives niche partitioning in a cosmopolitan eukaryotic picophytoplankton. The ISME Journal. :wrae163.PDF icon Xu et al_2024_Hidden genomic diversity drives niche partitioning in a cosmopolitan eukaryotic.pdf (2.44 MB)
Scanlan DJ, Hess WR, Partensky F, Newman J, Vaulot D.  1996.  High degree of genetic variation in Prochlorococcus (Prochlorophyta) revealed by RFLP analysis. European Journal of Phycology. 31:1–9.PDF icon Scanlan et al_1996_High degree of genetic variation in Prochlorococcus (Prochlorophyta) revealed.pdf (966.95 KB)
Bottini C, Dapiaggi M, Erba E, Faucher G, Rotiroti N.  2020.  High resolution spatial analyses of trace elements in coccoliths reveal new insights into element incorporation in coccolithophore calcite. Scientific Reports. 10:9825.PDF icon Bottini et al. - 2020 - High resolution spatial analyses of trace elements.pdf (9.04 MB)
Garcia NS, Sexton J, Riggins T, Brown J, Lomas MW, Martiny AC.  2018.  High variability in cellular stoichiometry of carbon, nitrogen, and phosphorus within classes of marine eukaryotic phytoplankton under sufficient nutrient conditions. Frontiers in Microbiology. 9:1–10.PDF icon Garcia et al_2018_High variability in cellular stoichiometry of carbon, nitrogen, and phosphorus.pdf (2.18 MB)
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)
Klouch KZ, Schmidt S, Andrieux-Loyer F, Le Gac M, Hervio-Heath D, Qui-Minet ZN, Quéré J, Bigeard E, Guillou L, Siano R.  2016.  Historical records from dated sediment cores reveal the multidecadal dynamic of the toxic dinoflagellate Alexandrium minutum in the Bay of Brest (France). FEMS Microbiology Ecology. 92:fiw101.PDF icon Klouch et al_2016_Historical records from dated sediment cores reveal the multidecadal dynamic of.pdf (4.25 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)
Torres-Romero I, Zhang H, Wijker RS, Clark AJ, McLeod RE, Jaggi M, Stoll HM.  2024.  Hydrogen isotope fractionation is controlled by CO $_\textrm2$ in coccolithophore lipids. Proceedings of the National Academy of Sciences. 121:e2318570121.PDF icon Torres-Romero et al. - 2024 - Hydrogen isotope fractionation is controlled by CO.pdf (1.17 MB)
Weiss GM, Roepert A, Middelburg JJ, Schouten S, Damsté JSSinning, van der Meer MTJ.  2019.  Hydrogen isotope fractionation response to salinity and alkalinity in a calcifying strain of Emiliania huxleyi. Organic Geochemistry. PDF icon Weiss et al_2019_Hydrogen isotope fractionation response to salinity and alkalinity in a.pdf (205.15 KB)
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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.
Maciel F, Berni P, Geada P, Teixeira J, Silva J, Vicente A.  2024.  Identification and optimization of the key growth parameters involved in carotenoids production of the marine microalga Pavlova gyrans. Scientific Reports. 14:17224.PDF icon Maciel et al_2024_Identification and optimization of the key growth parameters involved in.pdf (1.41 MB)
Baumeister TUH, Vallet M, Kaftan F, Guillou L, Svatoš A, Pohnert G.  2020.  Identification to species level of live single microalgal cells from plankton samples with matrix-free laser/desorption ionization mass spectrometry. Metabolomics. 16:28.
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)
Fischer R, HA G, Ptacnik R.  2017.  Identity of the limiting nutrient (N vs. P) affects the competitive success of mixotrophs. Marine Ecology Progress Series. 563:51–63.
Parsy A, Guyoneaud R, Lot M-C, Baldoni-Andrey P, Périé F, Sambusiti C.  2022.  Impact of salinities, metals and organic compounds found in saline oil & gas produced water on microalgae and cyanobacteria. Ecotoxicology and Environmental Safety. 234:113351.PDF icon Parsy et al. - 2022 - Impact of salinities, metals and organic compounds.pdf (1.49 MB)
Faucher G, Hoffmann L, Bach LT, Bottini C, Erba E, Riebesell U.  2017.  Impact of trace metal concentrations on coccolithophore growth and morphology: laboratory simulations of Cretaceous stress. Biogeosciences. 14:3603–3613.PDF icon Faucher et al. - 2017 - Impact of trace metal concentrations on coccolitho.pdf (13.72 MB)

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