RCC references

Export 31 results:
[ Author(Desc)] Title Year
Filters: First Letter Of Last Name is R  [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 
R
Raghu-Kumar S..  1988.  Schizochytrium mangrovei sp. nov., a thraustochytrid from mangroves in India. Transactions of the British Mycological Society. 90:627–631.PDF icon Raghu-Kumar_1988_Schizochytrium mangrovei sp.pdf (989.12 KB)
Ral JP, Derelle E, Ferraz C, Wattebled F, Farinas B, Corellou F, Buleon A, Slomianny MC, Delvalle D, D HC et al..  2004.  Starch division and partitioning. A mechanism for granule propagation and maintenance in the picophytoplanktonic green alga Ostreococcus tauri. Plant Physiology. 136:3333–3340.PDF icon Ral et al_2004_Starch division and partitioning.pdf (257.21 KB)
Rastogi A, Maheswari U, Dorrell RG, Vieira FRocha Jime, Maumus F, Kustka A, McCarthy J, Allen AE, Kersey P, Bowler C et al..  2018.  Integrative analysis of large scale transcriptome data draws a comprehensive landscape of Phaeodactylum tricornutum genome and evolutionary origin of diatoms. Scientific Reports. 8:4834.PDF icon Rastogi et al_2018_Integrative analysis of large scale transcriptome data draws a comprehensive.pdf (3.16 MB)
Reddy MM, Jennings L, Thomas OP.  2021.  Marine Biodiscovery in a Changing World. Progress in the Chemistry of Organic Natural Products 116. :1–36.PDF icon Reddy et al_2021_Marine Biodiscovery in a Changing World.pdf (685.24 KB)
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)
Ribeiro CGérikas, Santos ALopes dos, Probert I, Vaulot D, Edvardsen B.  2020.  Taxonomic reassignment of \textit{Pseudohaptolina birgeri comb. nov . (Haptophyta). Phycologia. in press:1–10.
Ribeiro CGérikas, Santos ALopes dos, Gourvil P, Le Gall F, Marie D, Tragin M, Probert I, Vaulot D.  2020.  Culturable diversity of Arctic phytoplankton during pack ice melting. Elementa: Science of the Anthropocene. 8:6.PDF icon Ribeiro et al_2020_Culturable diversity of Arctic phytoplankton during pack ice melting.pdf (6.82 MB)
Richier S, Kerros ME, de Vargas C, Haramaty L, Falkowski PG, Gattuso JP.  2009.  Light-dependent transcriptional regulation of genes of biogeochemical interest in the diploid and haploid life cycle stages of Emiliania huxleyi. Applied and Environmental Microbiology. 75:3366–3369.PDF icon Richier et al_2009_Light-dependent transcriptional regulation of genes of biogeochemical interest.pdf (272.41 KB)
Rihtman B, Torcello-Requena A, Mikhaylina A, Puxty RJ, Clokie MRJ, Millard AD, Scanlan DJ.  2024.  Coordinated transcriptional response to environmental stress by a \textit{Synechococcus virus. The ISME Journal. :wrae032.PDF icon Novak Vanclova et al_2024_New plastids, old proteins.pdf (7.01 MB)
Riou V, Périot M, Biegala IC.  2017.  Specificity re-evaluation of oligonucleotide probes for the detection of marine picoplankton by tyramide signal amplification-fluorescent in situ hybridization. Frontiers in Microbiology. 8:854.PDF icon Riou et al_2017_Specificity re-evaluation of oligonucleotide probes for the detection of marine.pdf (1.87 MB)
Robbens S, Khadaroo B, Camasses A, Derelle E, Ferraz C, Inze D, Peer Y Van de, Moreau H.  2005.  Genome-wide analysis of core cell cycle genes in the unicellular green alga Ostreococcus tauri. Molecular Biology and Evolution. 22:589–597.PDF icon Robbens et al_2005_Genome-wide analysis of core cell cycle genes in the unicellular green alga.pdf (527.35 KB)
Robbens S, Derelle E, Ferraz C, Wuyts J, Moreau H, Van de Peer Y.  2007.  The complete chloroplast and mitochondrial DNA sequence of Ostreococcus tauri: organelle genomes of the smallest eukaryote are examples of compaction. Molecular Biology and Evolution. 24:956–968.
Robla J., García-Hierrro J., Alguacil F.J, Dittami S.M, Marie D., Villa E., Deragon E., Guillebault D., Mengs G., Medlin L.K.  2021.  Determination of the efficiency of filtration of cultures from microalgae and bacteria using hollow fiber filters. Environmental Science: Water Research & Technology. 7:1230–1239.
Rocap G, Distel DL, Waterbury JB, Chisholm SW.  2002.  Resolution of Prochlorococcus and Synechococcus ecotypes by using 16S-23S ribosomal DNA internal transcribed spacer sequences. Applied and Environmental Microbiology. 68:1180–1191.PDF icon Rocap et al_2002_Resolution of Prochlorococcus and Synechococcus ecotypes by using 16S-23S.pdf (360.24 KB)
Rodriguez F, Feist SW, Guillou L, Harkestad LS, Bateman K, Renault T, Mortensen S.  2008.  Phylogenetic and morphological characterization of the green algae infesting blue mussel Mytilus edulis in the North and South Atlantic. Diseases of Aquatic Organisms. 81:231–240.
Rodriguez F, Derelle E, Guillou L, Le Gall F, Vaulot D, Moreau H.  2005.  Ecotype diversity in the marine picoeukaryote Ostreococcus (Chlorophyta, Prasinophyceae).. Environmental Microbiology. 7:853–859.PDF icon Rodriguez et al_2008_Phylogenetic and morphological characterization of the green algae infesting.pdf (1.2 MB)
Roesler C, Uitz J, Claustre H, Boss E, Xing X, Organelli E, Briggs N, Bricaud A, Schmechtig C, Poteau A et al..  2017.  Recommendations for obtaining unbiased chlorophyll estimates from in situ chlorophyll fluorometers: A global analysis of WET Labs ECO sensors. Limnology and Oceanography: Methods. 15:572–585.PDF icon Roesler et al_2017_Recommendations for obtaining unbiased chlorophyll estimates from in situ.pdf (686.25 KB)
Rokitta SD, de Nooijer LJ, Trimborn S, de Vargas C, Rost B, John U.  2011.  Transcriptome analyses reveal differential gene expression patterns between the life-cycle stages of Emiliania huxleyi (Haptophyta) and reflect specialization to different ecological niches. Journal of Phycology. 47:829–838.PDF icon Rokitta et al_2011_Transcriptome analyses reveal differential gene expression patterns between the.pdf (240 KB)
Rokitta SD, von Dassow P, Rost B, John U.  2016.  P- and n-depletion trigger similar cellular responses to promote senescence in eukaryotic phytoplankton. Frontiers in Marine Science. 3PDF icon Rokitta et al_2016_P- and n-depletion trigger similar cellular responses to promote senescence in.pdf (3.34 MB)
Romari K, Vaulot D.  2004.  Composition and temporal variability of picoeukaryote communities at a coastal site of the English Channel from 18S rDNA sequences. 49:784–798.PDF icon Romari_Vaulot_2004_Composition and temporal variability of picoeukaryote communities at a coastal.pdf (393.52 KB)
Roquis D, Cosseau C, Raffalli KBrener, Romans P, Masanet P, Mitta G, Grunau C, Vidal-Dupiol J.  2021.  The tropical coral Pocillopora acuta displays an unusual chromatin structure and shows histone H3 clipping plasticity upon bleaching. PDF icon Roquis et al. - 2021 - The tropical coral Pocillopora acuta displa.pdf (2.43 MB)
Rosas-Navarro A, Langer G, Ziveri P.  2016.  Temperature affects the morphology and calcification of Emiliania huxleyi strains. Biogeosciences. 13:2913–2926.PDF icon Rosas-Navarro et al_2016_Temperature affects the morphology and calcification of Emiliania huxleyi.pdf (8.45 MB)
Rosas-Navarro A, Langer G, Ziveri P.  2018.  Temperature effects on sinking velocity of different Emiliania huxleyi strains. PLOS ONE. 13:e0194386.PDF icon Rosas-Navarro et al_2018_Temperature effects on sinking velocity of different Emiliania huxleyi strains.pdf (2.23 MB)
Rousseau V, Lantoine F, Rodriguez F, Le Gall F, Chrétiennot-Dinet M.-J., Lancelot C.  2013.  Characterization of ¡i¿Phaeocystis globosa¡/i¿ (haptophyceae), the blooming species in the southern north sea. Journal of Sea Research. 76:105–113.PDF icon Rousseau et al_2013_Characterization of ¡i¿Phaeocystis globosa¡-i¿ (haptophyceae), the blooming.pdf (1.17 MB)
Roux P, Siano R, Collin K, Bilien G, Sinquin C, Marchand L, Zykwinska A, Delbarre-Ladrat C, Schapira M.  2021.  Bacteria enhance the production of extracellular polymeric substances by the green dinoflagellate Lepidodinium chlorophorum. Scientific Reports. 11:1–15.PDF icon Roux et al_2021_Bacteria enhance the production of extracellular polymeric substances by the.pdf (2.88 MB)

Pages