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Plant function and evolutionary biology

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A genetic mutation that reduces calcium oxalate content increases calcium availability in Medicago truncatula

Paul A. Nakata A B and Michele M. McConn A
+ Author Affiliations
- Author Affiliations

A USDA / ARS Children’s Nutrition Research Center, Department of Pediatrics, Baylor College of Medicine, Houston, TX 77030-2600, USA.

B Corresponding author. Email: pnakata@bcm.tmc.edu

Functional Plant Biology 33(7) 703-706 https://doi.org/10.1071/FP06068
Submitted: 30 March 2006  Accepted: 10 May 2006   Published: 3 July 2006



11 articles found in Crossref database.

A conserved oxalyl-coenzyme A decarboxylase in oxalate catabolism
Cheng Ninghui, Paris Vincent, Rao Xiaolan, Wang Xiaoqiang, Nakata Paul A.
Plant Signaling & Behavior. 2022 17(1).
Variation in Oxalic Acid Content among Commercial Table Beet Cultivars and Related Crops
Freidig Amy K., Goldman Irwin L.
Journal of the American Society for Horticultural Science. 2011 136(1). p.54
Contrasting calcium localization and speciation in leaves of the Medicago truncatula mutant cod5 analyzed via synchrotron X–ray techniques
Punshon Tracy, Tappero Ryan, Ricachenevsky Felipe K., Hirschi Kendal, Nakata Paul A.
The Plant Journal. 2013 76(4). p.627
Biofortification of crops with seven mineral elements often lacking in human diets – iron, zinc, copper, calcium, magnesium, selenium and iodine
White Philip J., Broadley Martin R.
New Phytologist. 2009 182(1). p.49
Plant calcium oxalate crystal formation, function, and its impact on human health
Nakata Paul A.
Frontiers in Biology. 2012 7(3). p.254
Plant Calcium Content: Ready to Remodel
Yang Jian, Punshon Tracy, Guerinot Mary Lou, Hirschi Kendal D.
Nutrients. 2012 4(8). p.1120
Genetic evidence for differences in the pathways of druse and prismatic calcium oxalate crystal formation in Medicago truncatula
Nakata Paul A., McConn Michele M.
Functional Plant Biology. 2007 34(4). p.332
Increased calcium bioavailability in mice fed genetically engineered plants lacking calcium oxalate
Morris Jay, Nakata Paul A., McConn Michele, Brock Amanda, Hirschi Kendal D.
Plant Molecular Biology. 2007 64(5). p.613
An Oxalyl-CoA Dependent Pathway of Oxalate Catabolism Plays a Role in Regulating Calcium Oxalate Crystal Accumulation and Defending against Oxalate-Secreting Phytopathogens in Medicago truncatula
Foster Justin, Luo Bin, Nakata Paul A., Gijzen Mark
PLOS ONE. 2016 11(2). p.e0149850
Isolated Medicago truncatula mutants with increased calcium oxalate crystal accumulation have decreased ascorbic acid levels
Nakata Paul A., McConn Michele
Plant Physiology and Biochemistry. 2007 45(3-4). p.216
Calcium oxalate content affects the nutritional availability of calcium from Medicago truncatula leaves
Nakata Paul A., McConn Michele M.
Plant Science. 2007 172(5). p.958

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