RCC references

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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.
Mertens KNeil, M. Carbonell-Moore C, Chomérat N, Bilien G, Boulben S, Guillou L, Romac S, Probert I, Ishikawa A, Nézan E.  2023.  Morpho-molecular analysis of podolampadacean dinoflagellates (Dinophyceae), with the description of two new genera. Phycologia. :1–19.
Merritt KA, Richardson TL.  2024.  Variability in spectral absorption within cryptophyte phycobiliprotein types. Journal of Phycology. n/aPDF icon Merritt et Richardson - Variability in spectral absorption within cryptoph.pdf (1.71 MB)
Meng A, Corre E, Probert I, Gutierrez-Rodriguez A, Siano R, Annamale A, Alberti A, Da Silva C, Wincker P, Le Crom S et al..  2018.  Analysis of the genomic basis of functional diversity in dinoflagellates using a transcriptome-based sequence similarity network. Molecular Ecology. :0–2.PDF icon Meng et al_2018_Analysis of the genomic basis of functional diversity in dinoflagellates using.pdf (1.42 MB)
Medlin L, Zingone A.  2007.  A taxonomic review of the genus Phaeocystis. Biogeochemistry. 83:3–18.PDF icon Medlin_Zingone_2007_A taxonomic review of the genus Phaeocystis.pdf (720.21 KB)
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.pdf (2.97 MB)
McDonald SM, Plant JN, Worden AZ.  2010.  The mixed lineage nature of nitrogen transport and assimilation in marine eukaryotic phytoplankton: a case study of Micromonas. Molecular Biology and Evolution. 27:2268–2283.PDF icon McDonald et al_2010_The mixed lineage nature of nitrogen transport and assimilation in marine.pdf (1.23 MB)
Mauro N.  2024.  The influence of acclimation to density on organisms’ traits and population growth in \textit{Synechococcus sp. RS 9909. PDF icon Mauro et Laender - The influence of acclimation to density on organis.pdf (2.57 MB)
J Martínez M, Boere A, Gilg I, van Lent J, Witte H, van Bleijswijk J, Brussaard C.  2015.  New lipid envelope-containing dsDNA virus isolates infecting Micromonas pusilla reveal a separate phylogenetic group. Aquatic Microbial Ecology. 74:17–28.PDF icon Martinez Martinez et al_2015_New lipid envelope-containing dsDNA virus isolates infecting Micromonas pusilla.pdf (560.57 KB)
Marin B, Melkonian M.  2010.  Molecular phylogeny and classification of the Mamiellophyceae class. nov. (Chlorophyta) based on sequence comparisons of the nuclear- and plastid-encoded rRNA operons. Protist. 161:304–336.PDF icon Marin_Melkonian_2010_Molecular phylogeny and classification of the Mamiellophyceae class.pdf (5.1 MB)
Marie D, Rigaut-Jalabert F, Vaulot D.  2014.  An improved protocol for flow cytometry analysis of phytoplankton cultures and natural samples. Cytometry. 85:962–968.PDF icon Marie et al_2014_An improved protocol for flow cytometry analysis of phytoplankton cultures and.pdf (545.78 KB)
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)
Marie D, Le Gall F, Edern R, Gourvil P, Vaulot D.  2017.  Improvement of phytoplankton culture isolation using single cell sorting by flow cytometry. Journal of Phycology. 53:271–282.PDF icon Marie et al_2017_Improvement of phytoplankton culture isolation using single cell sorting by.pdf (267.95 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)
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)
Magalhães K, Santos ALopes dos, Vaulot D, de Oliveira MCabral.  2021.  Hemiselmis aquamarina sp . nov . (Cryptomonadales , Cryptophyceae), a cryptomonad with a novel phycobiliprotein type (Cr-PC 564). Protist. in pressPDF icon Magalhaes et al_2021_Hemiselmis aquamarina sp.pdf (3.8 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)

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