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Nitrogen supply affects ion homeostasis by modifying root Casparian strip formation through the miR528-LAC3 module in maize

Although nitrogen (N) is known to affect mineral element homeostasis in plants, the molecular mechanisms of interactions between N and other nutrients remain largely unclear. We report here that N supply affects ion homeostasis in maize. Berberine hemisulfate staining and a propidium iodide penetrat...

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Detalles Bibliográficos
Autores principales: Guo, Yu, Wang, Yafei, Chen, Huan, Du, Qingguo, Wang, Zhonghua, Gong, Xiaoping, Sun, Qing, Li, Wen-Xue
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10363476/
https://www.ncbi.nlm.nih.gov/pubmed/36681862
http://dx.doi.org/10.1016/j.xplc.2023.100553
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author Guo, Yu
Wang, Yafei
Chen, Huan
Du, Qingguo
Wang, Zhonghua
Gong, Xiaoping
Sun, Qing
Li, Wen-Xue
author_facet Guo, Yu
Wang, Yafei
Chen, Huan
Du, Qingguo
Wang, Zhonghua
Gong, Xiaoping
Sun, Qing
Li, Wen-Xue
author_sort Guo, Yu
collection PubMed
description Although nitrogen (N) is known to affect mineral element homeostasis in plants, the molecular mechanisms of interactions between N and other nutrients remain largely unclear. We report here that N supply affects ion homeostasis in maize. Berberine hemisulfate staining and a propidium iodide penetration assay showed that N luxury significantly delayed Casparian strip (CS) formation in maize roots. We further demonstrated that N-mediated CS formation in maize was independent of RBOHF-activated H(2)O(2) production. N luxury induced the expression of ZmmiR528 in whole roots and root tips. Knockdown and loss-of-function of ZmmiR528 promoted CS formation under both N-luxury and N-deficient conditions. Both ZmMIR528a and ZmMIR528b contribute to early CS formation under different N conditions. RNA-seq and real-time RT-PCR analysis demonstrated that ZmLAC3, but not ZmLAC5, responded to N treatments. Consistent with results obtained with ZmmiR528 TM transgenic maize and mir528a/b loss-of-function mutants, transgenic maize overexpressing ZmLAC3 displayed early CS formation under different N conditions. Under field conditions, K, Ca, Mn, Cu, Mg, and Zn concentrations were greater in the ear leaf of ZmLAC3-overexpressing transgenic maize than in the wild type. These results indicate that ZmmiR528 affects CS formation in maize by regulating the expression of ZmLAC3, and modification of CS formation has the potential to improve maize quality.
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spelling pubmed-103634762023-07-25 Nitrogen supply affects ion homeostasis by modifying root Casparian strip formation through the miR528-LAC3 module in maize Guo, Yu Wang, Yafei Chen, Huan Du, Qingguo Wang, Zhonghua Gong, Xiaoping Sun, Qing Li, Wen-Xue Plant Commun Research Article Although nitrogen (N) is known to affect mineral element homeostasis in plants, the molecular mechanisms of interactions between N and other nutrients remain largely unclear. We report here that N supply affects ion homeostasis in maize. Berberine hemisulfate staining and a propidium iodide penetration assay showed that N luxury significantly delayed Casparian strip (CS) formation in maize roots. We further demonstrated that N-mediated CS formation in maize was independent of RBOHF-activated H(2)O(2) production. N luxury induced the expression of ZmmiR528 in whole roots and root tips. Knockdown and loss-of-function of ZmmiR528 promoted CS formation under both N-luxury and N-deficient conditions. Both ZmMIR528a and ZmMIR528b contribute to early CS formation under different N conditions. RNA-seq and real-time RT-PCR analysis demonstrated that ZmLAC3, but not ZmLAC5, responded to N treatments. Consistent with results obtained with ZmmiR528 TM transgenic maize and mir528a/b loss-of-function mutants, transgenic maize overexpressing ZmLAC3 displayed early CS formation under different N conditions. Under field conditions, K, Ca, Mn, Cu, Mg, and Zn concentrations were greater in the ear leaf of ZmLAC3-overexpressing transgenic maize than in the wild type. These results indicate that ZmmiR528 affects CS formation in maize by regulating the expression of ZmLAC3, and modification of CS formation has the potential to improve maize quality. Elsevier 2023-01-21 /pmc/articles/PMC10363476/ /pubmed/36681862 http://dx.doi.org/10.1016/j.xplc.2023.100553 Text en © 2023 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Guo, Yu
Wang, Yafei
Chen, Huan
Du, Qingguo
Wang, Zhonghua
Gong, Xiaoping
Sun, Qing
Li, Wen-Xue
Nitrogen supply affects ion homeostasis by modifying root Casparian strip formation through the miR528-LAC3 module in maize
title Nitrogen supply affects ion homeostasis by modifying root Casparian strip formation through the miR528-LAC3 module in maize
title_full Nitrogen supply affects ion homeostasis by modifying root Casparian strip formation through the miR528-LAC3 module in maize
title_fullStr Nitrogen supply affects ion homeostasis by modifying root Casparian strip formation through the miR528-LAC3 module in maize
title_full_unstemmed Nitrogen supply affects ion homeostasis by modifying root Casparian strip formation through the miR528-LAC3 module in maize
title_short Nitrogen supply affects ion homeostasis by modifying root Casparian strip formation through the miR528-LAC3 module in maize
title_sort nitrogen supply affects ion homeostasis by modifying root casparian strip formation through the mir528-lac3 module in maize
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10363476/
https://www.ncbi.nlm.nih.gov/pubmed/36681862
http://dx.doi.org/10.1016/j.xplc.2023.100553
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