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B
Binzer SBjørnholt, Svenssen DKillerup, Daugbjerg N, Alves-de-Souza C, Pinto E, Hansen PJuel, Larsen TOstenfeld, Varga E.  2019.  A-, B- and C-type prymnesins are clade specific compounds and chemotaxonomic markers in Prymnesium parvum. Harmful Algae. 81:10–17.PDF icon Binzer et al. - 2019 - A-, B- and C-type prymnesins are clade specific compounds and chemotaxonomic markers in Prymnesium parvum.pdf (1.09 MB)
Green DH, Echavarri-bravo V, Brennan D, Hart MC.  2015.  Bacterial diversity associated with the coccolithophorid algae Emiliania huxleyi and Coccolithus pelagicus f . braarudii Bacterial Diversity Associated with the Coccolithophorid Algae Emiliania huxleyi and Coccolithus pelagicus f . braarudii. BioMed Research International. 2015PDF icon Green et al. - 2015 - Bacterial diversity associated with the coccolithophorid algae Emiliania huxleyi and Coccolithus pelagicus f . bra.pdf (2.92 MB)
Annunziata R, Ritter A, Fortunato AEmidio, Cheminant-Navarro S, Agier N, Huysman MJJ, Winge P, Bones A, Bouget F-Y, Lagomarsino MCosentino et al..  2018.  A bHLH-PAS protein regulates light-dependent rhythmic processes in the marine diatom Phaeodactylum tricornutum. bioRxiv. :271445.PDF icon Annunziata et al. - 2018 - A bHLH-PAS protein regulates light-dependent rhythmic processes in the marine diatom Phaeodactylum tricornutu.pdf (2.83 MB)
Everroad C, Six C, Partensky F, Thomas JC, Holtzendorff J, Wood AM.  2006.  Biochemical bases of Type IV chromatic adaptation in marine Synechococcus spp.. Journal of Bacteriology. 188:3345–3356.PDF icon Everroad et al. - 2006 - Biochemical bases of Type IV chromatic adaptation in marine Synechococcus spp.pdf (559.03 KB)
Abida H, Ruchaud S, Rios L, Humeau A, Probert I, de Vargas C, Bach S, Bowler C.  2013.  Bioprospecting Marine Plankton. Marine Drugs. 11:4594–4611.
C
McClelland H.LO, Barbarin N., Beaufort L., Hermoso M., Ferretti P., Greaves M., Rickaby R.EM.  2016.  Calcification response of a key phytoplankton family to millennial-scale environmental change. Scientific Reports. 6:34263.PDF icon McClelland et al. - 2016 - Calcification response of a key phytoplankton family to millennial-scale environmental change.pdf (1.63 MB)
McQuaid JB, Kustka AB, Obornik M, Horak A, McCrow JP, Karas BJ, Zheng H, Kindeberg T, Andersson AJ, Barbeau KA et al..  2018.  Carbonate-sensitive phytotransferrin controls high-affinity iron uptake in diatoms. Nature. 555:534–537.PDF icon McQuaid et al. - 2018 - Carbonate-sensitive phytotransferrin controls high-affinity iron uptake in diatoms.pdf (2.97 MB)
Paerl RW, Bertrand EM, Rowland E, Schatt P, Mehiri M, Niehaus TD, Hanson AD, Riemann L, Yves-Bouget F.  2018.  Carboxythiazole is a key microbial nutrient currency and critical component of thiamin biosynthesis. Scientific Reports. 8:5940.PDF icon Paerl et al. - 2018 - Carboxythiazole is a key microbial nutrient currency and critical component of thiamin biosynthesis.pdf (1.9 MB)
Henshaw R, Roberts J, Polin M.  2019.  Cell explosions : single cell death triggers an avoidance response in local populations of the ecologically prominent phytoplankton genus Micromonas. bioRxiv. PDF icon Henshaw, Roberts, Polin - 2019 - Cell explosions single cell death triggers an avoidance response in local populations of the ecologica.pdf (3.89 MB)
Ulvskov P, Paiva DSoares, Domozych D, Harholt J.  2013.  Classification, Naming and Evolutionary History of Glycosyltransferases from Sequenced Green and Red Algal Genomes. PLoS ONE. 8:e76511.PDF icon Ulvskov et al. - 2013 - Classification, Naming and Evolutionary History of Glycosyltransferases from Sequenced Green and Red Algal Genom.pdf (1.37 MB)
Hepach H, Hughes C, Hogg K, Collings S, Chance R.  2019.  Common features of iodate to iodide reduction amongst a diverse range of marine phytoplankton. biogeosciences-discuss.net. PDF icon Hepach et al. - 2019 - Common features of iodate to iodide reduction amongst a diverse range of marine phytoplankton.pdf (1.14 MB)
Hepach H, Hughes C, Hogg K, Collings S, Chance R.  2019.  Common features of iodate to iodide reduction amongst a diverse range of marine phytoplankton. biogeosciences-discuss.net. PDF icon Hepach et al. - 2019 - Common features of iodate to iodide reduction amongst a diverse range of marine phytoplankton.pdf (1.14 MB)
Hepach H, Hughes C, Hogg K, Collings S, Chance R.  2019.  Common features of iodate to iodide reduction amongst a diverse range of marine phytoplankton. biogeosciences-discuss.net. PDF icon Hepach et al. - 2019 - Common features of iodate to iodide reduction amongst a diverse range of marine phytoplankton.pdf (1.14 MB)
Hoxha T, Crookes S, Lejeusne C, Dick JTA, Chang X, Bouchemousse S, Cuthbert RN, MacIsaac HJ.  2018.  Comparative feeding rates of native and invasive ascidians. Marine Pollution Bulletin. 135:1067–1071.PDF icon Hoxha et al. - 2018 - Comparative feeding rates of native and invasive ascidians.pdf (493.97 KB)
Bombar D, Heller P, Sanchez-Baracaldo P, Carter BJ, Zehr JP.  2014.  Comparative genomics reveals surprising divergence of two closely related strains of uncultivated UCYN-A cyanobacteria. The ISME Journal. 8:2530–2542.PDF icon Bombar et al. - 2014 - Comparative genomics reveals surprising divergence of two closely related strains of uncultivated UCYN-A cyanobac.pdf (1.84 MB)
Pittera J, Humily F, Thorel M, Grulois D, Garczarek L, Six C.  2014.  Connecting thermal physiology and latitudinal niche partitioning in marine Synechococcus. The ISME journal. 8:1221–1236.PDF icon Pittera et al. - 2014 - Connecting thermal physiology and latitudinal niche partitioning in marine Synechococcus.pdf (1.62 MB)
Blossom HE, Markussen B, Daugbjerg N, Krock B, Norlin A, Hansen PJuel.  2019.  The Cost of Toxicity in Microalgae: Direct Evidence From the Dinoflagellate Alexandrium.. Frontiers in microbiology. 10:1065.PDF icon Blossom et al. - 2019 - The Cost of Toxicity in Microalgae Direct Evidence From the Dinoflagellate Alexandrium.pdf (2.23 MB)
D
Bolton CT, Hernández-Sánchez MT, Fuertes M-Á, González-Lemos S, Abrevaya L, Méndez-Vicente A, Flores J-A, Probert I, Giosan L, Johnson J et al..  2016.  Decrease in coccolithophore calcification and CO2 since the middle Miocene. Nature Communications. 7:10284.PDF icon Bolton et al. - 2016 - Decrease in coccolithophore calcification and CO2 since the middle Miocene.pdf (9.1 MB)
Bruyant F, Babin M, Genty B, Prasil O, Behrenfeld MJ, Claustre H, Bricaud A, Holtzendorff J, Koblizek M, Garczareck L et al..  2005.  Diel variations in the photosynthetic parameters of Prochlorococcus strain PCC 9511: combined effects of light and cell cycle. Limnology and Oceanography. 50:850–863.PDF icon Bruyant et al. - 2005 - Diel variations in the photosynthetic parameters of Prochlorococcus strain PCC 9511 combined effects of light an.pdf (2.06 MB)
Hennon GMM, Limón MDHernán, Haley ST, Juhl AR, Dyhrman ST.  2017.  Diverse CO2-Induced Responses in Physiology and Gene Expression among Eukaryotic Phytoplankton. Frontiers in Microbiology. 8:1–14.PDF icon Hennon et al. - 2017 - Diverse CO2-Induced Responses in Physiology and Gene Expression among Eukaryotic Phytoplankton.pdf (1.95 MB)
Hennon GMM, Limón MDHernán, Haley ST, Juhl AR, Dyhrman ST.  2017.  Diverse CO2-Induced Responses in Physiology and Gene Expression among Eukaryotic Phytoplankton. Frontiers in Microbiology. 8:1–14.PDF icon Hennon et al. - 2017 - Diverse CO2-Induced Responses in Physiology and Gene Expression among Eukaryotic Phytoplankton.pdf (1.95 MB)
Meusnier I, Andersen RA, Stern R, Bertrand C, Kuepper F, Brand J, Friedl T, Blackburn S, Dinh D, Acreman J et al..  2009.  DNA Barcoding of Protists in Culture Collections. Third international barcode of life conference.