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Functional Plant Biology : FPB|July 22, 2020
Freshwater angiosperm carbon concentrating mechanisms: processes and patternsStephen C Maberly, Tom V MadsenPhotosynthesis Research|October 18, 2005
High internal resistance to CO(2) uptake by submerged macrophytes that use HCO(3) (-): measurements in air, nitrogen and heliumTom V Madsen, Stephen C MaberlyPhotosynthesis Research|February 11, 2011
Crassulacean acid metabolism in the context of other carbon-concentrating mechanisms in freshwater plants: a reviewSigne Koch Klavsen, Tom V Madsen, Stephen C MaberlyJournal of Experimental Botany|June 25, 2017
Ecological imperatives for aquatic CO2-concentrating mechanismsStephen C Maberly, Brigitte GonteroBiochemical Society Transactions|September 20, 2012
An intrinsically disordered protein, CP12: jack of all trades and master of the Calvin cycleBrigitte Gontero, Stephen C MaberlyJournal of Phycology|April 5, 2016
SPECIFICITY AND FUNCTION OF GLYCERALDEHYDE-3-PHOSPHATE DEHYDROGENASE IN A FRESHWATER DIATOM, ASTERIONELLA FORMOSA (BACILLARIOPHYCEAE)(1)Jenny Erales, Brigitte Gontero, Stephen C MaberlyInternational Journal of Molecular Sciences|April 26, 2020
Insights on the Functions and Ecophysiological Relevance of the Diverse Carbonic Anhydrases in MicroalgaeErik L Jensen, Stephen C Maberly, Brigitte GonteroJournal of Phycology|September 15, 2016
Ecophysiology matters: linking inorganic carbon acquisition to ecological preference in four species of microalgae (Chlorophyceae)Sabrina C Lachmann, Stephen C Maberly, Elly SpijkermanProtist|November 7, 2022
Seasonal Patterns of Phytoplankton Taxon Richness in Lakes: Effects of Temperature, Turnover and AbundanceStephen C Maberly, Anne Chao, Bland J FinlayThe New Phytologist|April 20, 2021
Light regulation of root and leaf NO3 - uptake and reduction in the floating macrophyte Lemna minorNina Cedergreen, Tom V MadsenPageof 6