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Overexpression of a Plasma Membrane H(+)-ATPase Gene OSA1 Stimulates the Uptake of Primary Macronutrients in Rice Roots

Plasma membrane (PM) H(+)-ATPase is a master enzyme involved in various plant physiological processes, such as stomatal movements in leaves and nutrient uptake and transport in roots. Overexpression of Oryza sativa PM H(+)-ATPase 1 (OSA1) has been known to increase NH(4)(+) uptake in rice roots. Alt...

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Autores principales: Ding, Ming, Zhang, Maoxing, Wang, Zihui, Yu, Xin, Kinoshita, Toshinori, Zeng, Houqing, Zhu, Yiyong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9697395/
https://www.ncbi.nlm.nih.gov/pubmed/36430382
http://dx.doi.org/10.3390/ijms232213904
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author Ding, Ming
Zhang, Maoxing
Wang, Zihui
Yu, Xin
Kinoshita, Toshinori
Zeng, Houqing
Zhu, Yiyong
author_facet Ding, Ming
Zhang, Maoxing
Wang, Zihui
Yu, Xin
Kinoshita, Toshinori
Zeng, Houqing
Zhu, Yiyong
author_sort Ding, Ming
collection PubMed
description Plasma membrane (PM) H(+)-ATPase is a master enzyme involved in various plant physiological processes, such as stomatal movements in leaves and nutrient uptake and transport in roots. Overexpression of Oryza sativa PM H(+)-ATPase 1 (OSA1) has been known to increase NH(4)(+) uptake in rice roots. Although electrophysiological and pharmacological experiments have shown that the transport of many substances is dependent on the proton motive force provided by PM H(+)-ATPase, the exact role of PM H(+)-ATPase on the uptake of nutrients in plant roots, especially for the primary macronutrients N, P, and K, is still largely unknown. Here, we used OSA1 overexpression lines (OSA1-oxs) and gene-knockout osa1 mutants to investigate the effect of modulation of PM H(+)-ATPase on the absorption of N, P, and K nutrients through the use of a nutrient-exhaustive method and noninvasive microtest technology (NMT) in rice roots. Our results showed that under different concentrations of P and K, the uptake rates of P and K were enhanced in OSA1-oxs; by contrast, the uptake rates of P and K were significantly reduced in roots of osa1 mutants when compared with wild-type. In addition, the net influx rates of NH(4)(+) and K(+), as well as the efflux rate of H(+), were enhanced in OSA1-oxs and suppressed in osa1 mutants under low concentration conditions. In summary, this study indicated that overexpression of OSA1 stimulated the uptake rate of N, P, and K and promoted flux rates of cations (i.e., H(+), NH(4)(+), and K(+)) in rice roots. These results may provide a novel insight into improving the coordinated utilization of macronutrients in crop plants.
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spelling pubmed-96973952022-11-26 Overexpression of a Plasma Membrane H(+)-ATPase Gene OSA1 Stimulates the Uptake of Primary Macronutrients in Rice Roots Ding, Ming Zhang, Maoxing Wang, Zihui Yu, Xin Kinoshita, Toshinori Zeng, Houqing Zhu, Yiyong Int J Mol Sci Article Plasma membrane (PM) H(+)-ATPase is a master enzyme involved in various plant physiological processes, such as stomatal movements in leaves and nutrient uptake and transport in roots. Overexpression of Oryza sativa PM H(+)-ATPase 1 (OSA1) has been known to increase NH(4)(+) uptake in rice roots. Although electrophysiological and pharmacological experiments have shown that the transport of many substances is dependent on the proton motive force provided by PM H(+)-ATPase, the exact role of PM H(+)-ATPase on the uptake of nutrients in plant roots, especially for the primary macronutrients N, P, and K, is still largely unknown. Here, we used OSA1 overexpression lines (OSA1-oxs) and gene-knockout osa1 mutants to investigate the effect of modulation of PM H(+)-ATPase on the absorption of N, P, and K nutrients through the use of a nutrient-exhaustive method and noninvasive microtest technology (NMT) in rice roots. Our results showed that under different concentrations of P and K, the uptake rates of P and K were enhanced in OSA1-oxs; by contrast, the uptake rates of P and K were significantly reduced in roots of osa1 mutants when compared with wild-type. In addition, the net influx rates of NH(4)(+) and K(+), as well as the efflux rate of H(+), were enhanced in OSA1-oxs and suppressed in osa1 mutants under low concentration conditions. In summary, this study indicated that overexpression of OSA1 stimulated the uptake rate of N, P, and K and promoted flux rates of cations (i.e., H(+), NH(4)(+), and K(+)) in rice roots. These results may provide a novel insight into improving the coordinated utilization of macronutrients in crop plants. MDPI 2022-11-11 /pmc/articles/PMC9697395/ /pubmed/36430382 http://dx.doi.org/10.3390/ijms232213904 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ding, Ming
Zhang, Maoxing
Wang, Zihui
Yu, Xin
Kinoshita, Toshinori
Zeng, Houqing
Zhu, Yiyong
Overexpression of a Plasma Membrane H(+)-ATPase Gene OSA1 Stimulates the Uptake of Primary Macronutrients in Rice Roots
title Overexpression of a Plasma Membrane H(+)-ATPase Gene OSA1 Stimulates the Uptake of Primary Macronutrients in Rice Roots
title_full Overexpression of a Plasma Membrane H(+)-ATPase Gene OSA1 Stimulates the Uptake of Primary Macronutrients in Rice Roots
title_fullStr Overexpression of a Plasma Membrane H(+)-ATPase Gene OSA1 Stimulates the Uptake of Primary Macronutrients in Rice Roots
title_full_unstemmed Overexpression of a Plasma Membrane H(+)-ATPase Gene OSA1 Stimulates the Uptake of Primary Macronutrients in Rice Roots
title_short Overexpression of a Plasma Membrane H(+)-ATPase Gene OSA1 Stimulates the Uptake of Primary Macronutrients in Rice Roots
title_sort overexpression of a plasma membrane h(+)-atpase gene osa1 stimulates the uptake of primary macronutrients in rice roots
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9697395/
https://www.ncbi.nlm.nih.gov/pubmed/36430382
http://dx.doi.org/10.3390/ijms232213904
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