RCC references

Export 94 results:
Author [ Title(Desc)] Year
Filters: First Letter Of Last Name is N  [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 
A
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)
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)
Not F, Simon N, Biegala IC, Vaulot D.  2002.  Application of fluorescent in situ hybridization coupled with tyramide signal amplification (FISH-TSA) to assess eukaryotic picoplankton composition. 28:157–166.PDF icon Not et al_2002_Application of fluorescent in situ hybridization coupled with tyramide signal.pdf (16 KB)
Nissimov JI, Campbell CN, Probert I, Wilson WH.  2020.  Aquatic virus culture collection: an absent (but necessary) safety net for environmental microbiologists. Applied Phycology. 00:1–15.PDF icon Nissimov et al_2020_Aquatic virus culture collection.pdf (1.66 MB)
Ni G, Zimbalatti G, Murphy CD, Barnett AB, Arsenault CM, Li G, Cockshutt AM, Campbell DA.  2017.  Arctic Micromonas uses protein pools and non-photochemical quenching to cope with temperature restrictions on Photosystem II protein turnover. Photosynthesis Research. 131:203–220.PDF icon Ni et al_2017_Arctic Micromonas uses protein pools and non-photochemical quenching to cope.pdf (1.52 MB)
C
Paerl RW, Bertrand EM, Rowland E, Schatt P, Mehiri M, Niehaus TD, Hanson AD, Riemann L, Yves-Bouget F.  2018.  Carboxythiazole is a key microbial nutrient currency and critical component of thiamin biosynthesis. Scientific Reports. 8:5940.PDF icon Paerl et al_2018_Carboxythiazole is a key microbial nutrient currency and critical component of.pdf (1.9 MB)
Mucko M, Padisák J, Udovič MGligora, Pálmai T, Novak T, Medić N, Gašparović B, Štefanić PPeharec, Orlić S, Ljubešić Z.  2020.  Characterization of a lipid-producing thermotolerant marine photosynthetic pico-alga in the genus Picochlorum (Trebouxiophyceae). European Journal of Phycology. 00:1–16.PDF icon Mucko et al_2020_Characterization of a lipid-producing thermotolerant marine photosynthetic.pdf (3.24 MB)
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)
Reid EL, Worthy CA, Probert I, Ali ST, Love J, Napier J, Littlechild JA, Somerfield PJ, Allen MJ.  2011.  Coccolithophores: Functional biodiversity, enzymes and bioprospecting. Marine Drugs. 9:586–602.PDF icon Reid et al_2011_Coccolithophores.pdf (369.69 KB)
Farhat S, Florent I, Noel B, Kayal E, Da Silva C, Bigeard E, Alberti A, Labadie K, Corre E, Aury J-M et al..  2018.  Comparative time-scale gene expression analysis highlights the infection processes of two amoebophrya strains. Frontiers in Microbiology. 9:1–19.PDF icon Farhat et al_2018_Comparative time-scale gene expression analysis highlights the infection.pdf (2.61 MB)
Olusoji OD, Spaak JW, Holmes M, Neyens T, Aerts M, De Laender F.  2021.  cyanoFilter: An R package to identify phytoplankton populations from flow cytometry data using cell pigmentation and granularity. Ecological Modelling. 460:109743.PDF icon Olusoji et al_2021_cyanoFilter.pdf (1.29 MB)
D
Zhang Q, Niu Z, Wang J, Liu C, Kong F, Hu X, Zhao J, Yu R.  2021.  Development of high-resolution chloroplast markers for intraspecific phylogeographic studies of Phaeocystis globosa. Journal of Oceanology and Limnology. 39:508–524.PDF icon Zhang et al. - 2021 - Development of high-resolution chloroplast markers.pdf (3.14 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)
Kayal E, Alves-de-Souza C, Farhat S, Velo-Suarez L, Monjol J, Szymczak J, Bigeard E, Marie D, Noel B, Porcel BM et al..  2020.  Dinoflagellate host chloroplasts and mitochondria remain functional during amoebophrya infection. Frontiers in Microbiology. 11:1–11.PDF icon Kayal et al_2020_Dinoflagellate host chloroplasts and mitochondria remain functional during.pdf (2.37 MB)
Organelli E, Nuccio C, Lazzara L, Uitz J, Bricaud A, Massi L.  2017.  On the discrimination of multiple phytoplankton groups from light absorption spectra of assemblages with mixed taxonomic composition and variable light conditions. Applied Optics. 56:3952.PDF icon Organelli et al_2017_On the discrimination of multiple phytoplankton groups from light absorption.pdf (1.68 MB)
Santos ALopes dos, Gourvil P, Tragin M, Noël M-H, Decelle J, Romac S, Vaulot D.  2017.  Diversity and oceanic distribution of prasinophytes clade VII, the dominant group of green algae in oceanic waters. The ISME Journal. 11:512–528.PDF icon Lopes dos Santos et al_2017_Diversity and oceanic distribution of prasinophytes clade VII, the dominant.pdf (2.6 MB)
Kuwata A, Saitoh K, Nakamura Y, Ichinomiya M, Sato N.  2020.  Draft whole-genome sequence of triparma laevis f. inornata (parmales, bolidophyceae), isolated from the oyashio region, western north pacific ocean. Microbiology Resource Announcements. 9:13–14.PDF icon Kuwata et al_2020_Draft whole-genome sequence of triparma laevis f.pdf (16 KB)
E
Foulon E, Not F, Jalabert F, Cariou T, Massana R, Simon N.  2008.  Ecological niche partitioning in the picoplanktonic green alga Micromonas pusilla: evidence from environmental surveys using phylogenetic probes. Environmental Microbiology. 10:2433–2443.PDF icon Foulon et al_2008_Ecological niche partitioning in the picoplanktonic green alga Micromonas.pdf (2.02 MB)
M. Lorenzo R, Neale PJ, Sobrino C, León P, Vázquez V, Bresnan E, Segovia M.  2019.  Effects of elevated co 2 on growth, calcification and spectral dependence of photoinhibition in the coccolithophore Emiliania huxleyi (Prymnesiophyceae). Journal of Phycology. :jpy.12885.PDF icon Lorenzo et al_2019_Effects of elevated co 2 on growth, calcification and spectral dependence of.pdf (1.39 MB)
Klintzsch T., Langer G., Wieland A., Geisinger H., Lenhart K., Nehrke G., Keppler F..  2020.  Effects of temperature and light on methane production of widespread marine phytoplankton. Journal of Geophysical Research: Biogeosciences. 125PDF icon Klintzsch et al_2020_Effects of temperature and light on methane production of widespread marine.pdf (1.36 MB)
Doré H, Farrant GK, Guyet U, Haguait J, Humily F, Ratin M, Pitt FD, Ostrowski M, Six C, Brillet-Guéguen L et al..  2020.  Evolutionary mechanisms of long-term genome diversification associated with niche partitioning in marine picocyanobacteria. Frontiers in Microbiology. 11:1–23.PDF icon Dore et al_2020_Evolutionary mechanisms of long-term genome diversification associated with.pdf (13.44 MB)
Liao S, Novak J, Huang Y.  2023.  Exploring the theoretical upper temperature limit of alkenone unsaturation indices: Implications for paleotemperature reconstructions. Organic Geochemistry. 180:104606.PDF icon Liao et al_2023_Exploring the theoretical upper temperature limit of alkenone unsaturation.pdf (2.71 MB)

Pages