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Rice Genotype Differences in Tolerance of Zinc-Deficient Soils: Evidence for the Importance of Root-Induced Changes in the Rhizosphere

Zinc (Zn) deficiency is a major constraint to rice production and Zn is also often deficient in humans with rice-based diets. Efforts to breed more Zn-efficient rice are constrained by poor understanding of the mechanisms of tolerance to deficiency. Here we assess the contributions of root growth an...

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Autores principales: Mori, Asako, Kirk, Guy J. D., Lee, Jae-Sung, Morete, Mark J., Nanda, Amrit K., Johnson-Beebout, Sarah E., Wissuwa, Matthias
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4707259/
https://www.ncbi.nlm.nih.gov/pubmed/26793198
http://dx.doi.org/10.3389/fpls.2015.01160
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author Mori, Asako
Kirk, Guy J. D.
Lee, Jae-Sung
Morete, Mark J.
Nanda, Amrit K.
Johnson-Beebout, Sarah E.
Wissuwa, Matthias
author_facet Mori, Asako
Kirk, Guy J. D.
Lee, Jae-Sung
Morete, Mark J.
Nanda, Amrit K.
Johnson-Beebout, Sarah E.
Wissuwa, Matthias
author_sort Mori, Asako
collection PubMed
description Zinc (Zn) deficiency is a major constraint to rice production and Zn is also often deficient in humans with rice-based diets. Efforts to breed more Zn-efficient rice are constrained by poor understanding of the mechanisms of tolerance to deficiency. Here we assess the contributions of root growth and root Zn uptake efficiency, and we seek to explain the results in terms of specific mechanisms. We made a field experiment in a highly Zn-deficient rice soil in the Philippines with deficiency-tolerant and -sensitive genotypes, and measured growth, Zn uptake and root development. We also measured the effect of planting density. Tolerant genotypes produced more crown roots per plant and had greater uptake rates per unit root surface area; the latter was at least as important as root number to overall tolerance. Tolerant and sensitive genotypes took up more Zn per plant at greater planting densities. The greater uptake per unit root surface area, and the planting density effect can only be explained by root-induced changes in the rhizosphere, either solubilizing Zn, or neutralizing a toxin that impedes Zn uptake (possibly [Formula: see text] or Fe(2+)), or both. Traits for these and crown root number are potential breeding targets.
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spelling pubmed-47072592016-01-20 Rice Genotype Differences in Tolerance of Zinc-Deficient Soils: Evidence for the Importance of Root-Induced Changes in the Rhizosphere Mori, Asako Kirk, Guy J. D. Lee, Jae-Sung Morete, Mark J. Nanda, Amrit K. Johnson-Beebout, Sarah E. Wissuwa, Matthias Front Plant Sci Plant Science Zinc (Zn) deficiency is a major constraint to rice production and Zn is also often deficient in humans with rice-based diets. Efforts to breed more Zn-efficient rice are constrained by poor understanding of the mechanisms of tolerance to deficiency. Here we assess the contributions of root growth and root Zn uptake efficiency, and we seek to explain the results in terms of specific mechanisms. We made a field experiment in a highly Zn-deficient rice soil in the Philippines with deficiency-tolerant and -sensitive genotypes, and measured growth, Zn uptake and root development. We also measured the effect of planting density. Tolerant genotypes produced more crown roots per plant and had greater uptake rates per unit root surface area; the latter was at least as important as root number to overall tolerance. Tolerant and sensitive genotypes took up more Zn per plant at greater planting densities. The greater uptake per unit root surface area, and the planting density effect can only be explained by root-induced changes in the rhizosphere, either solubilizing Zn, or neutralizing a toxin that impedes Zn uptake (possibly [Formula: see text] or Fe(2+)), or both. Traits for these and crown root number are potential breeding targets. Frontiers Media S.A. 2016-01-11 /pmc/articles/PMC4707259/ /pubmed/26793198 http://dx.doi.org/10.3389/fpls.2015.01160 Text en Copyright © 2016 Mori, Kirk, Lee, Morete, Nanda, Johnson-Beebout and Wissuwa. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Mori, Asako
Kirk, Guy J. D.
Lee, Jae-Sung
Morete, Mark J.
Nanda, Amrit K.
Johnson-Beebout, Sarah E.
Wissuwa, Matthias
Rice Genotype Differences in Tolerance of Zinc-Deficient Soils: Evidence for the Importance of Root-Induced Changes in the Rhizosphere
title Rice Genotype Differences in Tolerance of Zinc-Deficient Soils: Evidence for the Importance of Root-Induced Changes in the Rhizosphere
title_full Rice Genotype Differences in Tolerance of Zinc-Deficient Soils: Evidence for the Importance of Root-Induced Changes in the Rhizosphere
title_fullStr Rice Genotype Differences in Tolerance of Zinc-Deficient Soils: Evidence for the Importance of Root-Induced Changes in the Rhizosphere
title_full_unstemmed Rice Genotype Differences in Tolerance of Zinc-Deficient Soils: Evidence for the Importance of Root-Induced Changes in the Rhizosphere
title_short Rice Genotype Differences in Tolerance of Zinc-Deficient Soils: Evidence for the Importance of Root-Induced Changes in the Rhizosphere
title_sort rice genotype differences in tolerance of zinc-deficient soils: evidence for the importance of root-induced changes in the rhizosphere
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4707259/
https://www.ncbi.nlm.nih.gov/pubmed/26793198
http://dx.doi.org/10.3389/fpls.2015.01160
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