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Improving folate (vitamin B9) stability in biofortified rice through metabolic engineering
Dieter Blancquaert1, Jeroen Van Daele2, Simon Strobbe1
1Laboratory of Functional Plant Biology, Department of Physiology, Ghent University, Ghent, Belgium.
Abstract:
Biofortification of staple crops could help to alleviate micronutrient deficiencies in humans. We show that folates in stored rice grains are unstable, which reduces the potential benefits of folate biofortification. We obtain folate concentrations that are up to 150 fold higher than those of wild-type rice by complexing folate to folate-binding proteins to improve folate stability, thereby enabling long-term storage of biofortified high-folate rice grains.
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