RCC references

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A
Simmons MP, Sudek S, Monier A, Limardo AJ, Jimenez V, Perle CR, Elrod VA, J. Pennington T, Worden AZ.  2016.  Abundance and biogeography of picoprasinophyte ecotypes and other phytoplankton in the eastern north pacific ocean. Applied and Environmental Microbiology. 82:1693–1705.PDF icon Simmons et al_2016_Abundance and biogeography of picoprasinophyte ecotypes and other phytoplankton.pdf (2.44 MB)
Decelle J, Stryhanyuk H, Gallet B, Veronesi G, Schmidt M, Balzano S, Marro S, Uwizeye C, Jouneau P-H, Lupette J et al..  2019.  Algal remodeling in a ubiquitous planktonic photosymbiosis. Current Biology. 29:968–978.e4.PDF icon Decelle et al_2019_Algal remodeling in a ubiquitous planktonic photosymbiosis.pdf (5.3 MB)
Decelle J, Stryhanyuk H, Gallet B, Veronesi G, Schmidt M, Balzano S, Marro S, Uwizeye C, Jouneau P-H, Lupette J et al..  2019.  Algal remodeling in a ubiquitous planktonic photosymbiosis. Current Biology. 29:968–978.e4.PDF icon Decelle et al_2019_Algal remodeling in a ubiquitous planktonic photosymbiosis.pdf (5.3 MB)
Jang SHyeon.  2022.  Assessment of biodiversity, global distribution, and putative ecological niches of suessiacean dinoflagellates by DNA metabarcoding. Frontiers in Ecology and Evolution. 10PDF icon Jang_2022_Assessment of biodiversity, global distribution, and putative ecological niches.pdf (3.56 MB)
B
Crenn K, Duffieux D, Jeanthon C.  2018.  Bacterial epibiotic communities of ubiquitous and abundant marine diatoms are distinct in short- and long-term associations. Frontiers in Microbiology. 9:1–12.PDF icon Crenn et al_2018_Bacterial epibiotic communities of ubiquitous and abundant marine diatoms are.pdf (670.57 KB)
Kirkham AR, Jardillier LE, Tiganescu A, Pearman J, Zubkov MV, Scanlan DJ.  2011.  Basin-scale distribution patterns of photosynthetic picoeukaryotes along an Atlantic Meridional Transect. Environmental Microbiology. 13:975–990.PDF icon Kirkham et al_2011_Basin-scale distribution patterns of photosynthetic picoeukaryotes along an.pdf (2.5 MB)
Strauss J, Choi CJae, Grone J, Wittmers F, Jimenez V, Makareviciute-Fichtner K, Bachy C, Jaeger GSpiro, Poirier C, Eckmann C et al..  2023.  The Bay of Bengal exposes abundant photosynthetic picoplankton and newfound diversity along salinity-driven gradients. Environmental Microbiology. PDF icon Strauss et al_2023_The Bay of Bengal exposes abundant photosynthetic picoplankton and newfound.pdf (7.31 MB)
Strauss J, Choi CJae, Grone J, Wittmers F, Jimenez V, Makareviciute-Fichtner K, Bachy C, Jaeger GSpiro, Poirier C, Eckmann C et al..  2023.  The Bay of Bengal exposes abundant photosynthetic picoplankton and newfound diversity along salinity-driven gradients. Environmental Microbiology. PDF icon Strauss et al_2023_The Bay of Bengal exposes abundant photosynthetic picoplankton and newfound.pdf (7.31 MB)
Dennu L, Devic M, Rigonato J, Falciatore A, Lozano J-C, Vergé V, Mariac C, Jaillon O, Team TDark Edge, Sabot F et al..  2023.  Biological and genomic resources for the cosmopolitan phytoplankton Bathycoccus: Insights into genetic diversity and major structural variations. PDF icon Dennu et al_2023_Biological and genomic resources for the cosmopolitan phytoplankton Bathycoccus.pdf (7.52 MB)
Park SAh, Jeong HJin, Ok J, Kang H, You J, Eom S, Yoo Y, Lee MJoon.  2021.  Bioluminescence capability and intensity in the dinoflagellate Alexandrium species. ALGAE. 36PDF icon Park et al_2021_Bioluminescence capability and intensity in the dinoflagellate Alexandrium.pdf (6.4 MB)
C
Jacquet S, Partensky F, Marie D, Casotti R, Vaulot D.  2001.  Cell cycle regulation by light in Prochlorococcus strains. Applied and Environmental Microbiology. 67:782–790.PDF icon Jacquet et al_2001_Cell cycle regulation by light in Prochlorococcus strains.pdf (176.7 KB)
Jancek S, Gourbiere S, Moreau H, Piganeau G.  2008.  Clues about the genetic basis of adaptation emerge from comparing the proteomes of two Ostreococcus ecotypes (Chlorophyta, Prasinophyceae). Molecular Biology and Evolution. 25:2293–2300.PDF icon Jancek et al_2008_Clues about the genetic basis of adaptation emerge from comparing the proteomes.pdf (263.79 KB)
Clark AJ, Torres-Romero I, Jaggi M, Bernasconi SM, Stoll HM.  2023.  Coccolithophorids precipitate carbonate in clumped isotope equilibrium with seawater. PDF icon Clark et al. - 2023 - Coccolithophorids precipitate carbonate in clumped.pdf (1.42 MB)
Arnaldo MDianne Gra, Gamage NDehel, Jaffrenou A, Rabesaotra V, Mossion A, Wielgosz-Collin G, Méléder V.  2023.  Comparison of different small-scale cultivation methods towards the valorization of a marine benthic diatom strain for lipid production. Algal Research. :103327.PDF icon Arnaldo et al. - 2023 - Comparison of different small-scale cultivation me.pdf (1.37 MB)
Cai R, Kayal E, Alves-de-Souza C, Bigeard E, Corre E, Jeanthon C, Marie D, Porcel BM, Siano R, Szymczak J et al..  2020.  Cryptic species in the parasitic Amoebophrya species complex revealed by a polyphasic approach. Scientific Reports. 10:2531.PDF icon Cai et al. - Cryptic species in the parasitic Amoebophrya species complex revealed by a polyphasic approach.pdf (3.38 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)
Jacquet S, Partensky F, Lennon JF, Vaulot D.  2001.  Diel patterns of growth and division in marine picoplankton in culture. Journal of Phycology. 37:357–369.PDF icon Jacquet et al_2001_Diel patterns of growth and division in marine picoplankton in culture.pdf (707.85 KB)
Dadaglio L, Dinasquet J, Obernosterer I, Joux F.  2018.  Differential responses of bacteria to diatom-derived dissolved organic matter in the Arctic Ocean. Aquatic Microbial Ecology. 82:59–72.PDF icon Dadaglio et al_2018_Differential responses of bacteria to diatom-derived dissolved organic matter.pdf (254.5 KB)
Altenburger A, Blossom HE, Garcia-Cuetos L., Jakobsen HH, Carstensen J, Lundholm N., Hansen P.J, Moestrup Ø., Haraguchi L..  2020.  Dimorphism in cryptophytes—The case of Teleaulax amphioxeia / Plagioselmis prolonga and its ecological implications. Science Advances. 6:eabb1611.PDF icon Altenburger et al_2020_Dimorphism in cryptophytes—The case of Teleaulax amphioxeia - Plagioselmis.pdf (1.43 MB)
Lepelletier F, Karpov SA, Alacid E, Le Panse S, Bigeard E, Garcés E, Jeanthon C, Guillou L.  2014.  Dinomyces arenysensis gen. et sp. nov. (rhizophydiales, dinomycetaceae fam. nov.), a chytrid infecting marine dinoflagellates. Protist. 165:230–244.PDF icon Lepelletier et al_2014_Dinomyces arenysensis gen.pdf (16.28 MB)
Long M, Marie D, Szymczak J, Toullec J, Bigeard E, Sourisseau M, Le Gac M, Guillou L, Jauzein C.  2021.  Dinophyceae can use exudates as weapons against the parasite Amoebophrya sp. (Syndiniales). ISME Communications. 1:1–10.PDF icon Long et al. - 2021 - Dinophyceae can use exudates as weapons against th.pdf (1.72 MB)
Marc L, Dominique M, Jeremy S, Jordan T, Estelle B, Marc S, Mickael LGac, Laure G, Cécile J.  2021.  Dinophyceae use exudates as weapons against the parasite Amoebophrya sp. (Syndiniales). :2021.01.05.425281.PDF icon Marc et al. - 2021 - Dinophyceae use exudates as weapons against the pa.pdf (906.58 KB)
Marc L, Dominique M, Jeremy S, Jordan T, Estelle B, Marc S, Mickael LGac, Laure G, Cécile J.  2021.  Dinophyceae use exudates as weapons against the parasite Amoebophrya sp. (Syndiniales). :2021.01.05.425281.PDF icon Marc et al. - 2021 - Dinophyceae use exudates as weapons against the pa.pdf (906.58 KB)
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.pdf (1.95 MB)
Jeanthon C, Boeuf D, Dahan O, Le Gall F, Garczarek L, Bendif EMahdi, Lehours A-C.  2011.  Diversity of cultivated and metabolically active aerobic anoxygenic phototrophic bacteria along an oligotrophic gradient in the Mediterranean Sea. Biogeosciences. 8:1955–1970.PDF icon Jeanthon et al_2011_Diversity of cultivated and metabolically active aerobic anoxygenic.pdf (1.6 MB)

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