Plant Calcium Content: Ready to Remodel

By identifying the relationship between calcium location in the plant cell and nutrient bioavailability, the plant characteristics leading to maximal calcium absorption by humans can be identified. Knowledge of plant cellular and molecular targets controlling calcium location in plants is emerging....

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Main Authors: Mary Lou Guerinot, Kendal D. Hirschi, Jian Yang, Tracy Punshon
Format: Article
Language:English
Published: MDPI AG 2012-08-01
Series:Nutrients
Subjects:
Online Access:http://www.mdpi.com/2072-6643/4/8/1120
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spelling doaj-ede75eb8f6e64fb8b0dfba97326e886c2020-11-24T21:41:21ZengMDPI AGNutrients2072-66432012-08-01481120113610.3390/nu4081120Plant Calcium Content: Ready to RemodelMary Lou GuerinotKendal D. HirschiJian YangTracy PunshonBy identifying the relationship between calcium location in the plant cell and nutrient bioavailability, the plant characteristics leading to maximal calcium absorption by humans can be identified. Knowledge of plant cellular and molecular targets controlling calcium location in plants is emerging. These insights should allow for better strategies for increasing the nutritional content of foods. In particular, the use of preparation-free elemental imaging technologies such as synchrotron X-ray fluorescence (SXRF) microscopy in plant biology may allow researchers to understand the relationship between subcellular location and nutrient bioavailability. These approaches may lead to better strategies for altering the location of calcium within the plant to maximize its absorption from fruits and vegetables. These modified foods could be part of a diet for children and adults identified as at-risk for low calcium intake or absorption with the ultimate goal of decreasing the incidence and severity of inadequate bone mineralization.http://www.mdpi.com/2072-6643/4/8/1120calciumbioavailabilitybiofortificationbone mineralizationsynchrotron X-ray fluorescence (SXRF)oxalateantinutrient
collection DOAJ
language English
format Article
sources DOAJ
author Mary Lou Guerinot
Kendal D. Hirschi
Jian Yang
Tracy Punshon
spellingShingle Mary Lou Guerinot
Kendal D. Hirschi
Jian Yang
Tracy Punshon
Plant Calcium Content: Ready to Remodel
Nutrients
calcium
bioavailability
biofortification
bone mineralization
synchrotron X-ray fluorescence (SXRF)
oxalate
antinutrient
author_facet Mary Lou Guerinot
Kendal D. Hirschi
Jian Yang
Tracy Punshon
author_sort Mary Lou Guerinot
title Plant Calcium Content: Ready to Remodel
title_short Plant Calcium Content: Ready to Remodel
title_full Plant Calcium Content: Ready to Remodel
title_fullStr Plant Calcium Content: Ready to Remodel
title_full_unstemmed Plant Calcium Content: Ready to Remodel
title_sort plant calcium content: ready to remodel
publisher MDPI AG
series Nutrients
issn 2072-6643
publishDate 2012-08-01
description By identifying the relationship between calcium location in the plant cell and nutrient bioavailability, the plant characteristics leading to maximal calcium absorption by humans can be identified. Knowledge of plant cellular and molecular targets controlling calcium location in plants is emerging. These insights should allow for better strategies for increasing the nutritional content of foods. In particular, the use of preparation-free elemental imaging technologies such as synchrotron X-ray fluorescence (SXRF) microscopy in plant biology may allow researchers to understand the relationship between subcellular location and nutrient bioavailability. These approaches may lead to better strategies for altering the location of calcium within the plant to maximize its absorption from fruits and vegetables. These modified foods could be part of a diet for children and adults identified as at-risk for low calcium intake or absorption with the ultimate goal of decreasing the incidence and severity of inadequate bone mineralization.
topic calcium
bioavailability
biofortification
bone mineralization
synchrotron X-ray fluorescence (SXRF)
oxalate
antinutrient
url http://www.mdpi.com/2072-6643/4/8/1120
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AT kendaldhirschi plantcalciumcontentreadytoremodel
AT jianyang plantcalciumcontentreadytoremodel
AT tracypunshon plantcalciumcontentreadytoremodel
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