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Physiologia Plantarum|April 15, 2008
Insights into the evolution of CCMs from comparisons with other resource acquisition and assimilation processesJohn A Raven, Mario Giordano, John BeardallPhotosynthesis Research|January 7, 2014
Energy costs of carbon dioxide concentrating mechanisms in aquatic organismsJohn A Raven, John Beardall, Mario GiordanoAnnual Review of Plant Biology|May 3, 2005
CO2 concentrating mechanisms in algae: mechanisms, environmental modulation, and evolutionMario Giordano, John Beardall, John A RavenJournal of Experimental Botany|May 16, 2017
The possible evolution and future of CO2-concentrating mechanismsJohn A Raven, John Beardall, Patricia Sánchez-BaracaldoPhotosynthesis Research|May 13, 2006
Limitations on microalgal growth at very low photon fluence rates: the role of energy slippageAntonietta Quigg, Karen Kevekordes, John A Raven, et al.Photosynthesis Research|February 18, 2011
Algal and aquatic plant carbon concentrating mechanisms in relation to environmental changeJohn A Raven, Mario Giordano, John Beardall, et al.Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences|January 11, 2012
Algal evolution in relation to atmospheric CO2: carboxylases, carbon-concentrating mechanisms and carbon oxidation cyclesJohn A Raven, Mario Giordano, John Beardall, et al.Journal of Experimental Botany|September 22, 2009
Phagotrophy in the origins of photosynthesis in eukaryotes and as a complementary mode of nutrition in phototrophs: relation to Darwin's insectivorous plantsJohn A Raven, John Beardall, Kevin J Flynn, et al.Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences|June 12, 2013
Interactions of photosynthesis with genome size and functionJohn A Raven, John Beardall, Anthony W D Larkum, et al.Pageof 24