RCC references

Export 69 results:
[ Author(Asc)] Title Year
Filters: First Letter Of Title is P  [Clear All Filters]
A B C D E F G H I J K L M N O P Q R S T U V W X Y Z 
S
Stüken A, Riobó P, Franco J, Jakobsen KS, Guillou L, Figueroa RI.  2015.  Paralytic shellfish toxin content is related to genomic sxtA4 copy number in Alexandrium minutum strains. Frontiers in Microbiology. 6:1–10.PDF icon Stuken et al_2015_Paralytic shellfish toxin content is related to genomic sxtA4 copy number in.pdf (465.12 KB)
Stawiarski B, Buitenhuis ET, Le Quéré C.  2016.  The physiological response of picophytoplankton to temperature and its model representation. Fronitiers in Marine Science. 3:1–13.PDF icon Stawiarski et al_2016_The physiological response of picophytoplankton to temperature and its model.pdf (1.34 MB)
Soitamo A, Havurinne V, Tyystjärvi E.  2017.  Photoinhibition in marine picocyanobacteria. Physiologia Plantarum. 161:97–108.
Six C, Sherrard R, Lionard M, Roy S, Campbell DA.  2009.  Photosystem II and pigment dynamics among ecotypes of the green alga Ostreococcus. Plant Physiology. 151:379–390.PDF icon Six et al_2009_Photosystem II and pigment dynamics among ecotypes of the green alga.pdf (286.12 KB)
Siano R, Montresor M, Probert I, Not F, de Vargas C.  2010.  Pelagodinium gen. nov. and P. beii comb. nov., a dinoflagellate symbiont of planktonic foraminifera. Protist. 161:385–399.PDF icon Siano et al_2010_Pelagodinium gen.pdf (1.9 MB)
Shukla A, Biswas A, Blot N, Partensky F, Karty JA, Hammad LA, Garczarek L, Gutu A, Schluchter WM, Kehoe DM.  2013.  Phycoerythrin-specific bilin lyase–isomerase controls blue-green chromatic acclimation in marine Synechococcus. Proceedings of the National Academy of Sciences of the United States of America. 109:20136–20141.PDF icon Shukla et al_2013_Phycoerythrin-specific bilin lyase–isomerase controls blue-green chromatic.pdf (2.05 MB)
Sharon I, Alperovitch A, Rohwer F, Haynes M, Glaser F, Atamna-Ismaeel N, Pinter RY, Partensky F, Koonin EV, Wolf YI et al..  2009.  Photosystem I gene cassettes are present in marine virus genomes. Nature. 461:258–262.PDF icon Sharon et al_2009_Photosystem I gene cassettes are present in marine virus genomes.pdf (779.86 KB)
Santos ALopes dos, Gourvil P, Rodriguez-Hernandez F, Garrido JLuis, Vaulot D.  2016.  Photosynthetic pigments of oceanic Chlorophyta belonging to prasinophytes clade VII. Journal of Phycology. 52:148–155.PDF icon Lopes dos Santos et al_2016_Photosynthetic pigments of oceanic Chlorophyta belonging to prasinophytes clade.pdf (979.53 KB)
M
Morel A, Ahn Y.-W., Partensky F, Vaulot D, Claustre H.  1993.  Prochlorococcus and Synechococcus: a comparative study of their size, pigmentation and related optical properties. Journal of Marine Research. 51:617–649.PDF icon Morel et al_1993_Prochlorococcus and Synechococcus.pdf (3.66 MB)
Morales-Sánchez D, Schulze PSC, Kiron V, Wijffels RH.  2020.  Production of carbohydrates, lipids and polyunsaturated fatty acids (PUFA) by the polar marine microalga Chlamydomonas malina RCC2488. Algal Research. 50:102016.PDF icon Morales-Sanchez et al_2020_Production of carbohydrates, lipids and polyunsaturated fatty acids (PUFA) by.pdf (1.82 MB)
Monier A, Welsh RM, Gentemann C, Weinstock G, Sodergren E, E Armbrust V, Eisen JA, Worden AZ.  2012.  Phosphate transporters in marine phytoplankton and their viruses: cross-domain commonalities in viral-host gene exchanges. Environmental Microbiology. 14:162–176.PDF icon Monier et al. - Phosphate transporters in marine phytoplankton and their viruses Cross-domain commonalities in viral-host gene exchanges.pdf (4.82 MB)
Moldovan MA, Gelfand MS.  2018.  Pangenomic definition of prokaryotic species and the phylogenetic structure of prochlorococcus spp.. Frontiers in Microbiology. 9:1–11.PDF icon Moldovan_Gelfand_2018_Pangenomic definition of prokaryotic species and the phylogenetic structure of.pdf (1.4 MB)

Pages