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The New Phytologist|August 25, 2010
Regulation and mechanism of potassium release from barley roots: an in planta 42K+ analysisDevrim Coskun, Dev T Britto, Herbert J KronzuckerPlant, Cell & Environment|November 3, 2015
The nitrogen-potassium intersection: membranes, metabolism, and mechanismDevrim Coskun, Dev T Britto, Herbert J KronzuckerJournal of Plant Physiology|May 25, 2021
Potassium physiology from Archean to Holocene: A higher-plant perspectiveDev T Britto, Devrim Coskun, Herbert J KronzuckerPhysiologia Plantarum|April 5, 2014
The physiology of channel-mediated K+ acquisition in roots of higher plantsDevrim Coskun, Dev T Britto, Herbert J KronzuckerJournal of Plant Physiology|June 20, 2016
Nutrient constraints on terrestrial carbon fixation: The role of nitrogenDevrim Coskun, Dev T Britto, Herbert J KronzuckerPlant Physiology|July 4, 2006
Rapid, futile K+ cycling and pool-size dynamics define low-affinity potassium transport in barleyMark W Szczerba, Dev T Britto, Herbert J KronzuckerJournal of Experimental Botany|March 23, 2006
A new, non-perturbing, sampling procedure in tracer exchange measurementsDev T Britto, Mark W Szczerba, Herbert J KronzuckerPlanta|May 3, 2003
Cytosolic potassium homeostasis revisited: 42K-tracer analysis in Hordeum vulgare L. reveals set-point variations in [K+]Herbert J Kronzucker, Mark W Szczerba, Dev T BrittoJournal of Plant Physiology|February 17, 2009
K+ transport in plants: physiology and molecular biologyMark W Szczerba, Dev T Britto, Herbert J KronzuckerPlant, Cell & Environment|September 29, 2009
Optimization of ammonium acquisition and metabolism by potassium in rice (Oryza sativa L. cv. IR-72)Konstantine D Balkos, Dev T Britto, Herbert J KronzuckerPageof 5