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Functional Plant Biology : FPB|July 22, 2020
Inorganic carbon acquisition and its energization in eustigmatophyte algaeI Emma Huertas, Brian Colman, George S EspiePlant Physiology|September 13, 2002
Mitochondrial-driven bicarbonate transport supports photosynthesis in a marine microalgaI Emma Huertas, Brian Colman, George S EspiePlanta|April 10, 2002
The energy source for CO2 transport in the marine microalga Nannochloris atomusI EmmaI Huertas, George S Espie, Brian ColmanFunctional Plant Biology : FPB|July 22, 2020
The diversity of inorganic carbon acquisition mechanisms in eukaryotic microalgaeBrian Colman, I Emma Huertas, Shabana Bhatti, et al.Photosynthesis Research|May 11, 2011
Carboxysomes: cyanobacterial RubisCO comes in small packagesGeorge S Espie, Matthew S KimberBioresource Technology|April 10, 2013
Algae biofilm growth and the potential to stimulate lipid accumulation through nutrient starvationPeter J Schnurr, George S Espie, D Grant AllenApplied Microbiology and Biotechnology|August 24, 2014
The effect of light direction and suspended cell concentrations on algal biofilm growth ratesPeter J Schnurr, George S Espie, D Grant AllenProgress in Oceanography|April 8, 2020
Non-Redfieldian dynamics driven by phytoplankton phosphate frugality explain nutrient and chlorophyll patterns in model simulations for the Mediterranean SeaDiego Macias, I Emma Huertas, Elisa Garcia-Gorriz, et al.Proceedings. Biological Sciences|April 22, 2011
Warming will affect phytoplankton differently: evidence through a mechanistic approachI Emma Huertas, Mónica Rouco, Victoria López-Rodas, et al.Planta|February 28, 2002
Characterization of a mutant lacking carboxysomal carbonic anhydrase from the cyanobacterium Synechocystis PCC6803Anthony K C So, Meryl John-McKay, George S EspiePageof 5