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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.
Functional Plant Biology : FPB|July 22, 2020
Physiological responses of the green alga Dunaliella parva (Volvocales, Chlorophyta) to controlled incremental changes in the N sourceMario Giordano, Alessandra Norici, Daniel J Gilmour, et al.
Plant Physiology|July 24, 2007
C3 and C4 pathways of photosynthetic carbon assimilation in marine diatoms are under genetic, not environmental, controlKaren Roberts, Espen Granum, Richard C Leegood, et al.
Molecular Ecology|March 24, 2012
Protein elemental sparing and codon usage bias are correlated among bacteriaJason G Bragg, Antonietta Quigg, John A Raven, et al.
The New Phytologist|January 3, 2018
Costs of acquiring phosphorus by vascular land plants: patterns and implications for plant coexistenceJohn A Raven, Hans Lambers, Sally E Smith, et al.
Photosynthesis Research|May 15, 2007
Carbon acquisition by diatomsKaren Roberts, Espen Granum, Richard C Leegood, 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.
Plant, Cell & Environment|November 4, 2006
Homeostasis of cell composition during prolonged darknessFederico Montechiaro, Carol J Hirschmugl, John A Raven, et al.
Journal of the Royal Society, Interface|September 11, 2015
Aerobically respiring prokaryotic strains exhibit a broader temperature-pH-salinity space for cell division than anaerobically respiring and fermentative strainsJesse P Harrison, Luke Dobinson, Kenneth Freeman, et al.
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