RCC references

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Russo GL, Langellotti AL, Blasco T, Oliviero M, Sacchi R, Masi P.  2021.  Production of Omega-3 Oil by Aurantiochytrium mangrovei Using Spent Osmotic Solution from Candied Fruit Industry as Sole Organic Carbon Source. Processes. 9:1834.PDF icon Russo et al. - 2021 - Production of Omega-3 Oil by Aurantiochytrium mang.pdf (2.12 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)
Blanc-Mathieu R, Krasovec M, Hebrard M, Yau S, Desgranges E, Martin J, Schackwitz W, Kuo A, Salin G, Donnadieu C et al..  2017.  Population genomics of picophytoplankton unveils novel chromosome hypervariability. Science Advances. 3:e1700239.
Blanc-Mathieu R, Krasovec M, Hebrard M, Yau S, Desgranges E, Martin J, Schackwitz W, Kuo A, Salin G, Donnadieu C et al..  2017.  Population genomics of picophytoplankton unveils novel chromosome hypervariability. Science Advances. 3:e1700239.
Blanc-Mathieu R, Krasovec M, Hebrard M, Yau S, Desgranges E, Martin J, Schackwitz W, Kuo A, Salin G, Donnadieu C et al..  2017.  Population genomics of picophytoplankton unveils novel chromosome hypervariability. Science Advances. 3:e1700239.
Devic M, Mariac C, Vergé V, Schatt P, Dennu L, Lozano J-C, Bouget F-Y, Sabot F.  2023.  Population dynamics of the cosmopolitan eukaryotic picophytoplankton Bathycoccus during seasonal blooms in the bay of Banyuls sur Mer (North Western Mediterranean sea). PDF icon Devic et al. - 2023 - Population dynamics of the cosmopolitan eukaryotic.pdf (1.73 MB)
Devic M, Mariac C, Vergé V, Schatt P, Dennu L, Lozano J-C, Bouget F-Y, Sabot F.  2023.  Population dynamics of the cosmopolitan eukaryotic picophytoplankton Bathycoccus during seasonal blooms in the bay of Banyuls sur Mer (North Western Mediterranean sea). PDF icon Devic et al. - 2023 - Population dynamics of the cosmopolitan eukaryotic.pdf (1.73 MB)
Aveiro SS, Melo T, Figueiredo A, Domingues P, Pereira H, Maia IB, Silva J, M. Domingues R, Nunes C, Moreira ASP.  2020.  The polar lipidome of cultured emiliania huxleyi: A source of bioactive lipids with relevance for biotechnological applications. Biomolecules. 10:1434.PDF icon Aveiro et al_2020_The polar lipidome of cultured emiliania huxleyi.pdf (1.72 MB)
Latasa M, Scharek R, Le Gall F, Guillou L, Le Gall F.  2004.  Pigment suites and taxonomic groups in Prasinophyceae. Journal of Phycology. 40:1149–1155.PDF icon Latasa et al_2004_Pigment suites and taxonomic groups in Prasinophyceae.pdf (32 KB)
Demory D, Baudoux A-claire, Monier A, Simon N, Six C, Ge P, Rigaut-jalabert F, Marie D, Sciandra A, Bernard O et al..  2019.  Picoeukaryotes of the Micromonas genus: sentinels of a warming ocean. The ISME Journal. 13:132–146.PDF icon Demory et al_2019_Picoeukaryotes of the Micromonas genus.pdf (2.51 MB)
Demory D, Baudoux A-claire, Monier A, Simon N, Six C, Ge P, Rigaut-jalabert F, Marie D, Sciandra A, Bernard O et al..  2019.  Picoeukaryotes of the Micromonas genus: sentinels of a warming ocean. The ISME Journal. 13:132–146.PDF icon Demory et al_2019_Picoeukaryotes of the Micromonas genus.pdf (2.51 MB)
Demory D, Baudoux A-claire, Monier A, Simon N, Six C, Ge P, Rigaut-jalabert F, Marie D, Sciandra A, Bernard O et al..  2019.  Picoeukaryotes of the Micromonas genus: sentinels of a warming ocean. The ISME Journal. 13:132–146.PDF icon Demory et al_2019_Picoeukaryotes of the Micromonas genus.pdf (2.51 MB)
Decelle J, Romac S, Stern RF, Bendif EMahdi, Zingone A, Audic S, Guiry MD, Guillou L, Tessier D, Le Gall F et al..  2015.  PhytoREF: a reference database of the plastidial 16S rRNA gene of photosynthetic eukaryotes with curated taxonomy. Molecular Ecology Resources. 15:1435–1445.PDF icon Decelle et al_2015_PhytoREF.pdf (739.73 KB)
Decelle J, Romac S, Stern RF, Bendif EMahdi, Zingone A, Audic S, Guiry MD, Guillou L, Tessier D, Le Gall F et al..  2015.  PhytoREF: a reference database of the plastidial 16S rRNA gene of photosynthetic eukaryotes with curated taxonomy. Molecular Ecology Resources. 15:1435–1445.PDF icon Decelle et al_2015_PhytoREF.pdf (739.73 KB)
Gebser B, Thume K, Steinke M, Pohnert G.  2020.  Phytoplankton-derived zwitterionic gonyol and dimethylsulfonioacetate interfere with microbial dimethylsulfoniopropionate sulfur cycling. MicrobiologyOpen. :e1014.PDF icon Gebser et al_2020_Phytoplankton-derived zwitterionic gonyol and dimethylsulfonioacetate interfere.pdf (1.24 MB)
Marie D, Simon N, Vaulot D.  2005.  Phytoplankton cell counting by flow cytometry. Algal culturing techniques. :253–267.PDF icon Marie et al_2005_Phytoplankton cell counting by flow cytometry.pdf (518.75 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)
Mackey KRM, Post AF, McIlvin MR, Saito MA.  2017.  Physiological and proteomic characterization of light adaptations in marine Synechococcus. Environmental Microbiology. 19:2348–2365.PDF icon Mackey et al_2017_Physiological and proteomic characterization of light adaptations in marine.pdf (3.51 MB)
Minge MA, Shalchian-Tabrizi K, Torresen OK, Takishita K, Probert I, Inagaki Y, Klaveness D, Jakobsen KS.  2010.  A phylogenetic mosaic plastid proteome and unusual plastid-targeting signals in the green-colored dinoflagellate Lepidodinium chlorophorum. BMC Evolutionary Biology. 10:191.PDF icon Minge et al_2010_A phylogenetic mosaic plastid proteome and unusual plastid-targeting signals in.pdf (1.21 MB)
Tragin M, Santos ALopes dos, Christen R., Vaulot D..  2016.  Phylogenetic diversity and ecology of green micro algae in marine systems. Perspectives in Phycology. in pressPDF icon Tragin et al_2016_Phylogenetic diversity and ecology of green micro algae in marine systems.pdf (1.94 MB)
Liu F, Gledhill M, Tan Q-G, Zhu K, Zhang Q, Salaün P, Tagliabue A, Zhang Y, Weiss D, Achterberg EP et al..  2022.  Phycosphere pH of unicellular nano- and micro- phytoplankton cells and consequences for iron speciation. The ISME Journal. 16:2329–2336.PDF icon Liu et al_2022_Phycosphere pH of unicellular nano- and micro- phytoplankton cells and.pdf (1.5 MB)
Carrigee LA, Frick JP, Liu X, Karty JA, Trinidad JC, Tom IP, Yang X, Dufour L, Partensky F, Schluchter WM.  2022.  The phycoerythrobilin isomerization activity of MpeV in Synechococcus sp. WH8020 is prevented by the presence of a histidine at position 141 within its phycoerythrin-I β-subunit substrate. Frontiers in Microbiology. 13:1011189.PDF icon Carrigee et al_2022_The phycoerythrobilin isomerization activity of MpeV in Synechococcus sp.pdf (5.76 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)
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)
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)

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