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Research Project: PHYTONUTRIENT BIOCHEMISTRY, PHYSIOLOGY, AND TRANSPORT

Location: Children Nutrition Research Center (Houston, Tx)

Title: A GENETIC MUTATION THAT REDUCES CALCIUM OXALATE CONTENT INCREASES CALCIUM AVAILABILITY IN MEDICAGO TRUNCATULA

Authors
item Nakata, Paul
item Mc Conn, Michelle - BAYLOR COLLEGE MED

Submitted to: Meeting Abstract
Publication Type: Abstract Only
Publication Acceptance Date: August 9, 2006
Publication Date: August 9, 2006
Citation: Nakata, P.A., Mc Conn, M. 2006. A genetic mutation that reduces calcium oxalate content increases calcium availability in medicago truncatula [abstract]. Plant Biology. p.303.

Technical Abstract: Oxalate is considered an antinutrient that renders calcium unavailable for nutritional absorption by humans. Efforts have been made to generate and identify edible plants with decreased levels of this antinutrient. The extent to which a food can be nutritionally improved through genetic alterations in calcium oxalate content, however, has not been determined. The recent identification of near isogenic lines of the forage legume Medicago truncatula that differ in calcium oxalate content aids in filling this gap in our knowledge. In this study, we show, using an in vitro dialysis system, that the decrease in calcium oxalate results in an enhancement in calcium availability. By comparing virtually identical plants a more direct assignment of the calcium availability to the presence or absence of oxalate was made. In addition, this study shows, for the first time, the feasibility of improving plant foods through the genetic manipulation of its oxalate content.

   

 
Project Team
Upchurch, Dan
Grusak, Michael - Mike
Nakata, Paul
 
Publications
   Publications
 
Related National Programs
  Plant Biological and Molecular Processes (302)
  Human Nutrition (107)
 
 
Last Modified: 06/20/2013
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