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Planta|December 7, 2013
A rapid method for isolation of purified, physiologically active chloroplasts, used to study the intracellular distribution of amino acids in pea leavesW R Mills, K W JoyPlant Physiology|September 1, 1981
Use of Phloem exudate technique in the study of amino Acid transport in pea plantsA A Urquhart, K W JoyPlant Physiology|May 1, 1977
Amino Acid metabolism of pea leaves: diurnal changes and amino Acid synthesis from N-nitrateA Bauer, A A Urquhart, K W JoyPlant Physiology|May 1, 1977
Amino Acid metabolism of pea leaves: labeling studies on utilization of amidesA Bauer, K W Joy, A A UrquhartPlant Physiology|February 1, 1985
Diurnal variation of asparaginase in developing pea leavesK Sieciechowicz, R J Ireland, K W JoyPlant Physiology|July 1, 1984
Utilization of the amide groups of asparagine and 2-hydroxysuccinamic Acid by young pea leavesT C Ta, K W Joy, R J IrelandPlant Physiology|June 1, 1985
Role of asparagine in the photorespiratory nitrogen metabolism of pea leavesT C Ta, K W Joy, R J IrelandPlant Physiology|February 1, 1991
Anaerobic Metabolism in the N-Limited Green Alga Selenastrum minutum: III. Alanine Is the Product of Anaerobic Ammonium AssimilationG C Vanlerberghe, K W Joy, D H TurpinPlant Physiology|September 1, 1983
Asparagine synthesis in pea leaves, and the occurrence of an asparagine synthetase inhibitorK W Joy, R J Ireland, P J LeaPlant Physiology|January 1, 1989
Effect of methionine sulfoximine on asparaginase activity and ammonium levels in pea leavesK A Sieciechowicz, K W Joy, R J IrelandPageof 3