RCC references

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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)
Kessenich CR, Ruck EC, Schurko AM, Wickett NJ, Alverson AJ.  2014.  Transcriptomic insights into the life history of bolidophytes , the sister lineage to diatoms. Journal of Phycology. 983:977–983.PDF icon Kessenich et al_2014_Transcriptomic insights into the life history of bolidophytes , the sister.pdf (16 KB)
von Dassow P, Ogata H, Probert I, Wincker P, Da Silva C, Audic S, Claverie J-M, de Vargas C.  2009.  Transcriptome analysis of functional differentiation between haploid and diploid cells of Emiliania huxleyi, a globally significant photosynthetic calcifying cell. Genome Biology. 10:R114.PDF icon von Dassow et al_2009_Transcriptome analysis of functional differentiation between haploid and.pdf (1.19 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)
Chisholm SW, Frankel SL, Goericke R, Olson RJ, Palenik B, Waterbury JB, West-Johnsrud L, Zettler ER.  1992.  \textit{Prochlorococcus marinus nov. gen. nov. sp.: an oxyphototrophic marine prokaryote containing divinyl chlorophyll a and b. Archives of Microbiology. 157:297–300.
Chisholm SW, Frankel SL, Goericke R, Olson RJ, Palenik B, Waterbury JB, West-Johnsrud L, Zettler ER.  1992.  \textit{Prochlorococcus marinus nov. gen. nov. sp.: an oxyphototrophic marine prokaryote containing divinyl chlorophyll a and b. Archives of Microbiology. 157:297–300.
Kashiyama Y, Yokoyama A, Shiratori T, Hess S, Not F, Bachy C, Gutierrez-Rodriguez A, Kawahara J, Suzaki T, Nakazawa M et al..  2019.  Taming chlorophylls by early eukaryotes underpinned algal interactions and the diversification of the eukaryotes on the oxygenated Earth. The ISME Journal. :1.PDF icon Kashiyama et al_2019_Taming chlorophylls by early eukaryotes underpinned algal interactions and the.pdf (2.78 MB)
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Wilson W, Zhang Q, Rickaby REM.  2019.  Susceptibility of algae to Cr toxicity reveals contrasting metal management strategies. Limnology and Oceanography. 64:2271–2282.PDF icon Wilson et al_2019_Susceptibility of algae to Cr toxicity reveals contrasting metal management.pdf (1.9 MB)
Vannier T, Leconte J, Seeleuthner Y, Mondy S, Pelletier E, Aury J-M, de Vargas C, Sieracki M, Iudicone D, Vaulot D et al..  2016.  Survey of the green picoalga Bathycoccus genomes in the global ocean. Scientific Reports. 6:37900.PDF icon Vannier et al_2016_Survey of the green picoalga Bathycoccus genomes in the global ocean.pdf (2.44 MB)
Ral JP, Derelle E, Ferraz C, Wattebled F, Farinas B, Corellou F, Buleon A, Slomianny MC, Delvalle D, D HC et al..  2004.  Starch division and partitioning. A mechanism for granule propagation and maintenance in the picophytoplanktonic green alga Ostreococcus tauri. Plant Physiology. 136:3333–3340.PDF icon Ral et al_2004_Starch division and partitioning.pdf (257.21 KB)
Klintzsch T, Geisinger H, Wieland A, Langer G, Nehrke G, Bizic M, Greule M, Lenhart K, Borsch C, Schroll M et al..  2023.  Stable Carbon Isotope Signature of Methane Released from Phytoplankton. Geophysical Research Letters. PDF icon Klintzsch et al. - 2023 - Stable Carbon Isotope Signature of Methane Release.pdf (3.63 MB)
Meyer EM, Langer G, Brownlee C, Wheeler GL, Taylor AR.  2020.  Sr in coccoliths of Scyphosphaera apsteinii: Partitioning behavior and role in coccolith morphogenesis. Geochimica et Cosmochimica Acta. 285:41–54.
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Langer G, Taylor AR, Walker CE, Meyer EM, Ben Joseph O, Gal A, Harper GM, Probert I, Brownlee C, Wheeler GL.  2021.  Role of silicon in the development of complex crystal shapes in coccolithophores. New Phytologist. 231:1845–1857.PDF icon Langer et al. - 2021 - Role of silicon in the development of complex crys.pdf (2.03 MB)
Langer G, Taylor AR, Walker CE, Meyer EM, Ben Joseph O, Gal A, Harper GM, Probert I, Brownlee C, Wheeler GL.  2021.  Role of silicon in the development of complex crystal shapes in coccolithophores. New Phytologist. 231:1845–1857.PDF icon Langer et al. - 2021 - Role of silicon in the development of complex crys.pdf (2.03 MB)
Durak GM, Taylor AR, Probert I, de Vargas C, Audic S, Schroeder DC, Brownlee C, Wheeler GL.  2016.  A role for diatom-like silicon transporters in calcifying coccolithophores. Nature Communications. 7:10543.PDF icon Durak et al_2016_A role for diatom-like silicon transporters in calcifying coccolithophores.pdf (1.95 MB)
Cuvelier ML, Guo J, Ortiz AC, van Baren MJ, Tariq MAkram, Partensky F, Worden AZ.  2017.  Responses of the picoprasinophyte Micromonas commoda to light and ultraviolet stress. PLOS ONE. 12:e0172135.PDF icon Cuvelier et al_2017_Responses of the picoprasinophyte Micromonas commoda to light and ultraviolet.pdf (3.4 MB)
Rocap G, Distel DL, Waterbury JB, Chisholm SW.  2002.  Resolution of Prochlorococcus and Synechococcus ecotypes by using 16S-23S ribosomal DNA internal transcribed spacer sequences. Applied and Environmental Microbiology. 68:1180–1191.PDF icon Rocap et al_2002_Resolution of Prochlorococcus and Synechococcus ecotypes by using 16S-23S.pdf (360.24 KB)
Walker CE, Taylor AR, Langer G, Durak GM, Heath S, Probert I, Tyrrell T, Brownlee C, Wheeler GL.  2018.  The requirement for calcification differs between ecologically important coccolithophore species. New Phytologist. in pressPDF icon Walker et al_2018_The requirement for calcification differs between ecologically important.pdf (1.97 MB)
Walker CE, Taylor AR, Langer G, Durak GM, Heath S, Probert I, Tyrrell T, Brownlee C, Wheeler GL.  2018.  The requirement for calcification differs between ecologically important coccolithophore species. New Phytologist. in pressPDF icon Walker et al_2018_The requirement for calcification differs between ecologically important.pdf (1.97 MB)
Bendif EMahdi, Nevado B, Wong ELY, Hagino K, Probert I, Young JR, Rickaby REM, Filatov DA.  2019.  Repeated species radiations in the recent evolution of the key marine phytoplankton lineage Gephyrocapsa. Nature Communications. 10:4234.PDF icon Bendif et al. - 2019 - Repeated species radiations in the recent evolutio.pdf (830.15 KB)
Farhat S, Le P, Kayal E, Noel B, Bigeard E, Corre E, Maumus F, Florent I, Alberti A, Aury J-M et al..  2021.  Rapid protein evolution, organellar reductions, and invasive intronic elements in the marine aerobic parasite dinoflagellate Amoebophrya spp.. BMC Biology. :1–21.PDF icon Farhat et al_2021_Rapid protein evolution, organellar reductions, and invasive intronic elements.pdf (2.01 MB)

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