RCC references

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2018
Trainic M, Koren I, Sharoni S, Frada M, Segev L, Rudich Y, Vardi A.  2018.  Infection dynamics of a bloom-forming alga and its virus determine airborne coccolith emission from seawater. iScience. PDF icon Trainic et al_2018_Infection dynamics of a bloom-forming alga and its virus determine airborne.pdf (3.32 MB)
Trainic M, Koren I, Sharoni S, Frada M, Segev L, Rudich Y, Vardi A.  2018.  Infection dynamics of a bloom-forming alga and its virus determine airborne coccolith emission from seawater. iScience. PDF icon Trainic et al_2018_Infection dynamics of a bloom-forming alga and its virus determine airborne.pdf (3.32 MB)
Smallwood AChuck R, Chen J-hua, Kumar N, Chrisler W, Samuel O, Kyle JE, Nicora CD, Boudreau R, Ekman A, Kim K et al..  2018.  Integrated systems biology and imaging of the smallest free-living eukaryote Ostreococcus tauri. bioRxiv. PDF icon Smallwood et al_2018_Integrated systems biology and imaging of the smallest free-living eukaryote.pdf (2.67 MB)
Smallwood AChuck R, Chen J-hua, Kumar N, Chrisler W, Samuel O, Kyle JE, Nicora CD, Boudreau R, Ekman A, Kim K et al..  2018.  Integrated systems biology and imaging of the smallest free-living eukaryote Ostreococcus tauri. bioRxiv. PDF icon Smallwood et al_2018_Integrated systems biology and imaging of the smallest free-living eukaryote.pdf (2.67 MB)
Grébert T, Doré H, Partensky F, Farrant GK, Boss ES, Picheral M, Guidi L, Pesant S, Scanlan DJ, Wincker P et al..  2018.  Light color acclimation is a key process in the global ocean distribution of Synechococcus cyanobacteria. Proceedings of the National Academy of Sciences. in press:201717069.PDF icon Grebert et al_2018_Light color acclimation is a key process in the global ocean distribution of.pdf (3.72 MB)
Partensky F, Six C, Ratin M, Garczarek L, Vaulot D, Probert I, Calteau A, Gourvil P, Marie D, Grébert T et al..  2018.  A novel species of the marine cyanobacterium Acaryochloris with a unique pigment content and lifestyle. Scientific Reports. 8:9142.PDF icon Partensky et al. - A novel species of the marine cyanobacterium Acaryochloris with a unique pigment content and lifestyle.pdf (5.32 MB)
Yamada K, Katsura H, Noël M-H, Ichinomiya M, Kuwata A, Sato S, Yoshikawa S.  2018.  Ontogenetic analysis of siliceous cell wall formation in Triparma laevis f. inornata (Parmales, Stramenopiles). Journal of Phycology. :0–2.PDF icon Yamada et al_2018_Ontogenetic analysis of siliceous cell wall formation in Triparma laevis f.pdf (1.61 MB)
Mizrachi A, Graff S, Creveld V, Shapiro OH, Rosenwasser S.  2018.  Phenotypic variability in chloroplast redox state predicts cell fate in a marine diatom. bioRxiv.
Fiore CL, Alexander H, Soule MCKido, Kujawinski EB.  2018.  A phosphate starvation response gene (psr1-like) is present and expressed in Micromonas pusilla and other marine algae. bioRxiv. PDF icon Fiore et al_2018_A phosphate starvation response gene (psr1-like) is present and expressed in.pdf (666.41 KB)
Perez-Sepulveda B, Pitt F, N'Guyen ANgoc, Ratin M, Garczarek L, Millard A, Scanlan DJ.  2018.  Relative stability of ploidy in a marine Synechococcus across various growth conditions. Environmental Microbiology Reports. :inpress.PDF icon Perez-Sepulveda et al_2018_Relative stability of ploidy in a marine Synechococcus across various growth.pdf (198.7 KB)
2017
Mahmoud RM, Sanfilippo JE, Nguyen AA, Strnat JA, Partensky F, Garczarek L, Kassem NAbo El, Kehoe DM, Schluchter WM.  2017.  Adaptation to blue light in marine synechococcus requires MpeU, an enzyme with similarity to phycoerythrobilin lyase isomerases. Frontiers in Microbiology. 8:243.PDF icon Mahmoud et al_2017_Adaptation to blue light in marine synechococcus requires MpeU, an enzyme with.pdf (1.96 MB)
Mahmoud RM, Sanfilippo JE, Nguyen AA, Strnat JA, Partensky F, Garczarek L, Kassem NAbo El, Kehoe DM, Schluchter WM.  2017.  Adaptation to blue light in marine synechococcus requires MpeU, an enzyme with similarity to phycoerythrobilin lyase isomerases. Frontiers in Microbiology. 8:243.PDF icon Mahmoud et al_2017_Adaptation to blue light in marine synechococcus requires MpeU, an enzyme with.pdf (1.96 MB)
Mahmoud RM, Sanfilippo JE, Nguyen AA, Strnat JA, Partensky F, Garczarek L, Kassem NAbo El, Kehoe DM, Schluchter WM.  2017.  Adaptation to blue light in marine synechococcus requires MpeU, an enzyme with similarity to phycoerythrobilin lyase isomerases. Frontiers in Microbiology. 8:243.PDF icon Mahmoud et al_2017_Adaptation to blue light in marine synechococcus requires MpeU, an enzyme with.pdf (1.96 MB)
Pittera J, Partensky F, Six C.  2017.  Adaptive thermostability of light-harvesting complexes in marine picocyanobacteria. The ISME Journal. 11:112–124.PDF icon Pittera et al_2017_Adaptive thermostability of light-harvesting complexes in marine.pdf (2.07 MB)
Gu H, Li X, Chomérat N, Luo Z, Sarno D, Gourvil P, Balzano S, Siano R.  2017.  Adenoides sinensis , a new sand-dwelling dinoflagellate species from China and reexamination of A. eludens from an Atlantic strain. Phycologia. 57:1–13.PDF icon Gu et al_2017_Adenoides sinensis , a new sand-dwelling dinoflagellate species from China and.pdf (1.97 MB)
Gu H, Li X, Chomérat N, Luo Z, Sarno D, Gourvil P, Balzano S, Siano R.  2017.  Adenoides sinensis , a new sand-dwelling dinoflagellate species from China and reexamination of A. eludens from an Atlantic strain. Phycologia. 57:1–13.PDF icon Gu et al_2017_Adenoides sinensis , a new sand-dwelling dinoflagellate species from China and.pdf (1.97 MB)
Gnouma A, Sadovskaya I, Souissi A, Sebai K, Medhioub A, Grard T, Souissi S.  2017.  Changes in fatty acids profile, monosaccharide profile and protein content during batch growth of Isochrysis galbana (T.iso). Aquaculture Research. 48:4982–4990.
Gnouma A, Sadovskaya I, Souissi A, Sebai K, Medhioub A, Grard T, Souissi S.  2017.  Changes in fatty acids profile, monosaccharide profile and protein content during batch growth of Isochrysis galbana (T.iso). Aquaculture Research. 48:4982–4990.
Gnouma A, Sadovskaya I, Souissi A, Sebai K, Medhioub A, Grard T, Souissi S.  2017.  Changes in fatty acids profile, monosaccharide profile and protein content during batch growth of Isochrysis galbana (T.iso). Aquaculture Research. 48:4982–4990.
Gnouma A, Sadovskaya I, Souissi A, Sebai K, Medhioub A, Grard T, Souissi S.  2017.  Changes in fatty acids profile, monosaccharide profile and protein content during batch growth of Isochrysis galbana (T.iso). Aquaculture Research. 48:4982–4990.
Santos ALopes dos, Pollina T, Gourvil P, Corre E, Marie D, Garrido JLuis, Rodríguez F, Noël M-H, Vaulot D, Eikrem W.  2017.  Chloropicophyceae, a new class of picophytoplanktonic prasinophytes. Scientific Reports. 7:14019.PDF icon Lopes dos Santos et al_2017_Chloropicophyceae, a new class of picophytoplanktonic prasinophytes.pdf (4.58 MB)
Satjarak A, Graham LE.  2017.  Comparative DNA sequence analyses of Pyramimonas parkeae (Prasinophyceae) chloroplast genomes. Journal of Phycology. 53:415–424.PDF icon Satjarak_Graham_2017_Comparative DNA sequence analyses of Pyramimonas parkeae (Prasinophyceae).pdf (762.37 KB)
Stuart RK, Bundy R, Buck K, Ghassemain M, Barbeau K, Palenik B.  2017.  Copper toxicity response influences mesotrophic S ynechococcus community structure. Environmental Microbiology. 19:756–769.PDF icon Stuart et al_2017_Copper toxicity response influences mesotrophic S ynechococcus community.pdf (1.37 MB)
Gutierrez-Rodriguez A, Pillet L, Biard T, Said-Ahmad W, Amrani A, Simó R, Not F.  2017.  Dimethylated sulfur compounds in symbiotic protists: A potentially significant source for marine DMS(P). Limnology and Oceanography. PDF icon Gutierrez-Rodriguez et al_2017_Dimethylated sulfur compounds in symbiotic protists.pdf (909.17 KB)
Gutierrez-Rodriguez A, Pillet L, Biard T, Said-Ahmad W, Amrani A, Simó R, Not F.  2017.  Dimethylated sulfur compounds in symbiotic protists: A potentially significant source for marine DMS(P). Limnology and Oceanography. PDF icon Gutierrez-Rodriguez et al_2017_Dimethylated sulfur compounds in symbiotic protists.pdf (909.17 KB)

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