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Arabidopsis Glutaredoxin S17 Contributes to Vegetative Growth, Mineral Accumulation, and Redox Balance during Iron Deficiency

Iron (Fe) is an essential mineral nutrient and a metal cofactor required for many proteins and enzymes involved in the processes of DNA synthesis, respiration, and photosynthesis. Iron limitation can have detrimental effects on plant growth and development. Such effects are mediated, at least in par...

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Autores principales: Yu, Han, Yang, Jian, Shi, Yafei, Donelson, Jimmonique, Thompson, Sean M., Sprague, Stuart, Roshan, Tony, Wang, Da-Li, Liu, Jianzhong, Park, Sunghun, Nakata, Paul A., Connolly, Erin L., Hirschi, Kendal D., Grusak, Michael A., Cheng, Ninghui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5474874/
https://www.ncbi.nlm.nih.gov/pubmed/28674546
http://dx.doi.org/10.3389/fpls.2017.01045
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author Yu, Han
Yang, Jian
Shi, Yafei
Donelson, Jimmonique
Thompson, Sean M.
Sprague, Stuart
Roshan, Tony
Wang, Da-Li
Liu, Jianzhong
Park, Sunghun
Nakata, Paul A.
Connolly, Erin L.
Hirschi, Kendal D.
Grusak, Michael A.
Cheng, Ninghui
author_facet Yu, Han
Yang, Jian
Shi, Yafei
Donelson, Jimmonique
Thompson, Sean M.
Sprague, Stuart
Roshan, Tony
Wang, Da-Li
Liu, Jianzhong
Park, Sunghun
Nakata, Paul A.
Connolly, Erin L.
Hirschi, Kendal D.
Grusak, Michael A.
Cheng, Ninghui
author_sort Yu, Han
collection PubMed
description Iron (Fe) is an essential mineral nutrient and a metal cofactor required for many proteins and enzymes involved in the processes of DNA synthesis, respiration, and photosynthesis. Iron limitation can have detrimental effects on plant growth and development. Such effects are mediated, at least in part, through the generation of reactive oxygen species (ROS). Thus, plants have evolved a complex regulatory network to respond to conditions of iron limitations. However, the mechanisms that couple iron deficiency and oxidative stress responses are not fully understood. Here, we report the discovery that an Arabidopsis thaliana monothiol glutaredoxin S17 (AtGRXS17) plays a critical role in the plants ability to respond to iron deficiency stress and maintain redox homeostasis. In a yeast expression assay, AtGRXS17 was able to suppress the iron accumulation in yeast ScGrx3/ScGrx4 mutant cells. Genetic analysis indicated that plants with reduced AtGRXS17 expression were hypersensitive to iron deficiency and showed increased iron concentrations in mature seeds. Disruption of AtGRXS17 caused plant sensitivity to exogenous oxidants and increased ROS production under iron deficiency. Addition of reduced glutathione rescued the growth and alleviates the sensitivity of atgrxs17 mutants to iron deficiency. These findings suggest AtGRXS17 helps integrate redox homeostasis and iron deficiency responses.
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spelling pubmed-54748742017-07-03 Arabidopsis Glutaredoxin S17 Contributes to Vegetative Growth, Mineral Accumulation, and Redox Balance during Iron Deficiency Yu, Han Yang, Jian Shi, Yafei Donelson, Jimmonique Thompson, Sean M. Sprague, Stuart Roshan, Tony Wang, Da-Li Liu, Jianzhong Park, Sunghun Nakata, Paul A. Connolly, Erin L. Hirschi, Kendal D. Grusak, Michael A. Cheng, Ninghui Front Plant Sci Plant Science Iron (Fe) is an essential mineral nutrient and a metal cofactor required for many proteins and enzymes involved in the processes of DNA synthesis, respiration, and photosynthesis. Iron limitation can have detrimental effects on plant growth and development. Such effects are mediated, at least in part, through the generation of reactive oxygen species (ROS). Thus, plants have evolved a complex regulatory network to respond to conditions of iron limitations. However, the mechanisms that couple iron deficiency and oxidative stress responses are not fully understood. Here, we report the discovery that an Arabidopsis thaliana monothiol glutaredoxin S17 (AtGRXS17) plays a critical role in the plants ability to respond to iron deficiency stress and maintain redox homeostasis. In a yeast expression assay, AtGRXS17 was able to suppress the iron accumulation in yeast ScGrx3/ScGrx4 mutant cells. Genetic analysis indicated that plants with reduced AtGRXS17 expression were hypersensitive to iron deficiency and showed increased iron concentrations in mature seeds. Disruption of AtGRXS17 caused plant sensitivity to exogenous oxidants and increased ROS production under iron deficiency. Addition of reduced glutathione rescued the growth and alleviates the sensitivity of atgrxs17 mutants to iron deficiency. These findings suggest AtGRXS17 helps integrate redox homeostasis and iron deficiency responses. Frontiers Media S.A. 2017-06-19 /pmc/articles/PMC5474874/ /pubmed/28674546 http://dx.doi.org/10.3389/fpls.2017.01045 Text en Copyright © 2017 Yu, Yang, Shi, Donelson, Thompson, Sprague, Roshan, Wang, Liu, Park, Nakata, Connolly, Hirschi, Grusak and Cheng. 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
Yu, Han
Yang, Jian
Shi, Yafei
Donelson, Jimmonique
Thompson, Sean M.
Sprague, Stuart
Roshan, Tony
Wang, Da-Li
Liu, Jianzhong
Park, Sunghun
Nakata, Paul A.
Connolly, Erin L.
Hirschi, Kendal D.
Grusak, Michael A.
Cheng, Ninghui
Arabidopsis Glutaredoxin S17 Contributes to Vegetative Growth, Mineral Accumulation, and Redox Balance during Iron Deficiency
title Arabidopsis Glutaredoxin S17 Contributes to Vegetative Growth, Mineral Accumulation, and Redox Balance during Iron Deficiency
title_full Arabidopsis Glutaredoxin S17 Contributes to Vegetative Growth, Mineral Accumulation, and Redox Balance during Iron Deficiency
title_fullStr Arabidopsis Glutaredoxin S17 Contributes to Vegetative Growth, Mineral Accumulation, and Redox Balance during Iron Deficiency
title_full_unstemmed Arabidopsis Glutaredoxin S17 Contributes to Vegetative Growth, Mineral Accumulation, and Redox Balance during Iron Deficiency
title_short Arabidopsis Glutaredoxin S17 Contributes to Vegetative Growth, Mineral Accumulation, and Redox Balance during Iron Deficiency
title_sort arabidopsis glutaredoxin s17 contributes to vegetative growth, mineral accumulation, and redox balance during iron deficiency
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5474874/
https://www.ncbi.nlm.nih.gov/pubmed/28674546
http://dx.doi.org/10.3389/fpls.2017.01045
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