RCC references

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Riou V, Périot M, Biegala IC.  2017.  Specificity re-evaluation of oligonucleotide probes for the detection of marine picoplankton by tyramide signal amplification-fluorescent in situ hybridization. Frontiers in Microbiology. 8:854.PDF icon Riou et al_2017_Specificity re-evaluation of oligonucleotide probes for the detection of marine.pdf (1.87 MB)
Dia A, Guillou L, Mauger S, Bigeard E, Marie D, Valero M, Destombe C.  2014.  Spatiotemporal changes in the genetic diversity of harmful algal blooms caused by the toxic dinoflagellate Alexandrium minutum. Molecular Ecology. 23:549–560.PDF icon Dia et al_2014_Spatiotemporal changes in the genetic diversity of harmful algal blooms caused.pdf (764.4 KB)
Chauhan N, Rickaby REM.  2024.  Size-dependent dynamics of the internal carbon pool drive isotopic vital effects in calcifying phytoplankton. Geochimica et Cosmochimica Acta. 373:35–51.PDF icon Chauhan et Rickaby - 2024 - Size-dependent dynamics of the internal carbon poo.pdf (5.79 MB)
Kashtan N, Roggensack SE, Rodrigue S, Thompson JW, Biller SJ, Coe A, Ding H, Marttinen P, Malmstrom RR, Stocker R et al..  2014.  Single-cell genomics reveals hundreds of coexisting subpopulations in wild prochlorococcus. Science. 344:416–420.PDF icon Kashtan et al. - Single-Cell Genomics Reveals Hundreds of Coexisting Subpopulations in Wild Prochlorococcus.pdf (2.15 MB)
Das S, Gevaert F, Ouddane B, Duong G, Souissi S.  2021.  Single toxicity of arsenic and combined trace metal exposure to a microalga of ecological and commercial interest: Diacronema lutheri. Chemosphere. :132949.PDF icon Das et al. - 2021 - Single toxicity of arsenic and combined trace meta.pdf (2.29 MB)
Sanchez F, Geffroy S, Norest M, Yau S, Moreau H, Grimsley N.  2019.  Simplified transformation of ostreococcus tauri using polyethylene glycol. Genes. 10:399.PDF icon Sanchez et al_2019_Simplified transformation of ostreococcus tauri using polyethylene glycol.pdf (1.93 MB)
Baines SB, Twining BS, Brzezinski Ma., Krause JW, Vogt S, Assael D, McDaniel H.  2012.  Significant silicon accumulation by marine picocyanobacteria. Nature Geoscience. 5:886–891.PDF icon Baines et al_2012_Significant silicon accumulation by marine picocyanobacteria.pdf (635.56 KB)
Jardillier L, Zubkov MV, Pearman J, Scanlan DJ.  2010.  Significant CO2 fixation by small prymnesiophytes in the subtropical and tropical northeast Atlantic Ocean. The ISME Journal. 4:1180–1192.PDF icon Jardillier et al_2010_Significant CO2 fixation by small prymnesiophytes in the subtropical and.pdf (669.17 KB)
Dedman CJ, Barton S, Fournier M, Rickaby REM.  2023.  Shotgun proteomics reveals temperature-dependent regulation of major nutrient metabolism in coastal Synechococcus sp. WH5701. Algal Research. :103279.
Sheward RM, Gebühr C, Bollmann J, Herrle JO.  2024.  Short-term response of Emiliania huxleyi growth and morphology to abrupt salinity stress. PDF icon Roux et al. - 2024 - Ecophysiological response of the cupped oyster Cra.pdf (2.32 MB)
Tsuboi S, Yamaguchi H, Fuchida S, Koshikawa H, Kawachi M.  2019.  Short-term changes in marine prokaryotic and eukaryotic microalgal communities exposed to the leachate of a seafloor hydrothermal sulfide. Water, Air, & Soil Pollution. 230:175.
Croteau D., Lacour T., Schiffrine N., Morin P.-I., Forget M.-H., Bruyant F., Ferland J., Lafond A., Campbell D.A, Tremblay J.-E. et al..  2022.  Shifts in growth light optima among diatom species support their succession during the spring bloom in the Arctic. Journal of Ecology. n/aPDF icon Croteau et al. - Shifts in growth light optima among diatom species.pdf (1.52 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)
Hepach H, Hughes C, Hogg K, Collings S, Chance R.  2020.  Senescence as the main driver of iodide release from a diverse range of marine phytoplankton. Biogeosciences. 17:2453–2471.PDF icon Hepach et al_2020_Senescence as the main driver of iodide release from a diverse range of marine.pdf (3.5 MB)
Parsy A, Sambusiti C, Baldoni-Andrey P, Périé F, Guyoneaud R.  2023.  Selection of photosynthetic microorganisms grown in artificial saline industrial effluents with liquid digestate: From screening to consortium cultures. Algal Research. :103061.PDF icon Parsy et al_2023_Selection of photosynthetic microorganisms grown in artificial saline.pdf (987.35 KB)
Sandaa R.-A., Larsen A.  2006.  Seasonal variations in virus-host populations in norwegian coastal waters: Focusing on the cyanophage community infecting marine synechococcus spp.. Applied and Environmental Microbiology. 72:4610–4618.PDF icon Sandaa_Larsen_2006_Seasonal variations in virus-host populations in norwegian coastal waters.pdf (316.97 KB)
Castillo YM, Forn I, Yau S, Morán XAnxelu G, Alonso-Sáez L, Arandia-Gorostidi N, Vaqué D, Sebastián M.  2021.  Seasonal dynamics of natural Ostreococcus viral infection at the single cell level using VirusFISH. Environmental Microbiology. n/aPDF icon Castillo et al_Seasonal dynamics of natural Ostreococcus viral infection at the single cell.pdf (3.15 MB)
Piganeau G, Moreau H.  2007.  Screening the Sargasso Sea metagenome for data to investigate genome evolution in Ostreococcus (Prasinophyceae, Chlorophyta). Gene. 406:184–190.
Gaignard C., Laroche C., Pierre G., Dubessay P., Delattre C., Gardarin C., Gourvil P., Probert I., Dubuffet A., Michaud P..  2019.  Screening of marine microalgae: Investigation of new exopolysaccharide producers. Algal Research. 44:101711.PDF icon Gaignard et al_2019_Screening of marine microalgae.pdf (2.59 MB)
Raghu-Kumar S..  1988.  Schizochytrium mangrovei sp. nov., a thraustochytrid from mangroves in India. Transactions of the British Mycological Society. 90:627–631.PDF icon Raghu-Kumar_1988_Schizochytrium mangrovei sp.pdf (989.12 KB)
de la Broise D, Ventura M, Chauchat L, Guerreiro M, Michez T, Vinet T, Gautron N, Le Grand F, Bideau A, Le Goïc N et al..  2022.  Scale-Up to Pilot of a Non-Axenic Culture of Thraustochytrids Using Digestate from Methanization as Nitrogen Source. Marine Drugs. 20:499.PDF icon de la Broise et al. - 2022 - Scale-Up to Pilot of a Non-Axenic Culture of Thrau.pdf (4.81 MB)

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