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In Pursuit of Vitamin D in Plants

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Journal Nutrients
Date 2017 Feb 18
PMID 28208834
Citations 9
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Abstract

Vitamin D deficiency is a global concern. Much research has concentrated on the endogenous synthesis of vitamin D in human skin following exposure to ultraviolet-B radiation (UV-B, 280-315 nm). In many regions of the world there is insufficient UV-B radiation during winter months for adequate vitamin D production, and even when there is sufficient UV-B radiation, lifestyles and concerns about the risks of sun exposure may lead to insufficient exposure and to vitamin D deficiency. In these situations, dietary intake of vitamin D from foods or supplements is important for maintaining optimal vitamin D status. Some foods, such as fatty fish and fish liveroils, certain meats, eggs, mushrooms, dairy, and fortified foods, can provide significant amounts of vitamin D when considered cumulatively across the diet. However, little research has focussed on assessing edible plant foods for potential vitamin D content. The biosynthesis of vitamin D in animals, fungi and yeasts is well established; it is less well known that vitamin D is also biosynthesised in plants. Research dates back to the early 1900s, beginning with in vivo experiments showing the anti-rachitic activity of plants consumed by animals with induced rickets, and in vitro experiments using analytical methods with limited sensitivity. The most sensitive, specific and reliable method for measuring vitamin D and its metabolites is by liquid chromatography tandem mass spectrometry (LC-MS/MS). These assays have only recently been customised to allow measurement in foods, including plant materials. This commentary focuses on the current knowledge and research gaps around vitamin D in plants, and the potential of edible plants as an additional source of vitamin D for humans.

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References
1.
Stephensen C, Zerofsky M, Burnett D, Lin Y, Hammock B, Hall L . Ergocalciferol from mushrooms or supplements consumed with a standard meal increases 25-hydroxyergocalciferol but decreases 25-hydroxycholecalciferol in the serum of healthy adults. J Nutr. 2012; 142(7):1246-52. DOI: 10.3945/jn.112.159764. View

2.
Rambeck W, Weiser H, ZUCKER H . Biological activity of glycosides of vitamin D3 and 1 alpha-hydroxyvitamin D3. Int J Vitam Nutr Res. 1984; 54(1):25-34. View

3.
DARBY H, Clarke H . THE PLANT ORIGIN OF A VITAMIN D. Science. 1937; 85(2204):318-9. DOI: 10.1126/science.85.2204.318. View

4.
Cranney A, Horsley T, ODonnell S, Weiler H, Puil L, Ooi D . Effectiveness and safety of vitamin D in relation to bone health. Evid Rep Technol Assess (Full Rep). 2007; (158):1-235. PMC: 4781354. View

5.
Gonzaga L, Costa L, Santos T, Araujo E, Queiroz M . Endophytic fungi from the genus Colletotrichum are abundant in the Phaseolus vulgaris and have high genetic diversity. J Appl Microbiol. 2014; 118(2):485-96. DOI: 10.1111/jam.12696. View