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Effect of Foliar Spraying of Gibberellins and Brassinolide on Cadmium Accumulation in Rice

Cadmium (Cd) is one of the heavy metals that contaminate rice cultivation, and reducing Cd contamination in rice through agronomic measures is a hot research topic. In this study, foliar sprays of gibberellins (GA) and brassinolide (BR) were applied to rice under Cd stress in hydroponic and pot expe...

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Autores principales: Li, Bei, Wang, Song, You, Xiaoshuang, Wen, Zhenzhou, Huang, Guirong, Huang, Caicheng, Li, Qiaoxian, Chen, Kuiyuan, Zhao, Yihan, Gu, Minghua, Li, Xiaofeng, Wei, Yanyan, Qin, Yan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10145392/
https://www.ncbi.nlm.nih.gov/pubmed/37112591
http://dx.doi.org/10.3390/toxics11040364
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author Li, Bei
Wang, Song
You, Xiaoshuang
Wen, Zhenzhou
Huang, Guirong
Huang, Caicheng
Li, Qiaoxian
Chen, Kuiyuan
Zhao, Yihan
Gu, Minghua
Li, Xiaofeng
Wei, Yanyan
Qin, Yan
author_facet Li, Bei
Wang, Song
You, Xiaoshuang
Wen, Zhenzhou
Huang, Guirong
Huang, Caicheng
Li, Qiaoxian
Chen, Kuiyuan
Zhao, Yihan
Gu, Minghua
Li, Xiaofeng
Wei, Yanyan
Qin, Yan
author_sort Li, Bei
collection PubMed
description Cadmium (Cd) is one of the heavy metals that contaminate rice cultivation, and reducing Cd contamination in rice through agronomic measures is a hot research topic. In this study, foliar sprays of gibberellins (GA) and brassinolide (BR) were applied to rice under Cd stress in hydroponic and pot experiments. After foliar spraying of GR and BR, the biomass of rice plants grown in either hydroponics or soil culture was significantly higher or even exceeded that in the absence of Cd stress. In addition, photosynthetic parameters (maximum fluorescence values), root length and root surface area, and CAT, SOD and POD activities were significantly improved. The MDA content decreased in the shoots, suggesting that the application of GR and BA may have enhanced photosynthesis and antioxidant function to alleviate Cd stress. Furthermore, the BR and GA treatments decreased the Cd content of rice roots, shoots and grains as well as the Cd transfer coefficient. Cd chemical morphology analysis of rice roots and shoots showed that the proportion of soluble Cd (Ethanol-Cd and Water-Cd) decreased, whereas the proportion of NaCl-Cd increased. Analysis of the subcellular distribution of Cd in rice roots and above ground showed that the proportion of Cd in the cell wall increased after foliar spraying of GA and BR. The results indicate that after foliar application of GA and BR, more of the Cd in rice was transformed into immobile forms and was fixed in the cell wall, thus reducing the amount in the seeds. In summary, foliar sprays of GA and BR can reduce the toxic effects of Cd on rice plants and reduce the Cd content in rice grains, with GA being more effective.
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spelling pubmed-101453922023-04-29 Effect of Foliar Spraying of Gibberellins and Brassinolide on Cadmium Accumulation in Rice Li, Bei Wang, Song You, Xiaoshuang Wen, Zhenzhou Huang, Guirong Huang, Caicheng Li, Qiaoxian Chen, Kuiyuan Zhao, Yihan Gu, Minghua Li, Xiaofeng Wei, Yanyan Qin, Yan Toxics Article Cadmium (Cd) is one of the heavy metals that contaminate rice cultivation, and reducing Cd contamination in rice through agronomic measures is a hot research topic. In this study, foliar sprays of gibberellins (GA) and brassinolide (BR) were applied to rice under Cd stress in hydroponic and pot experiments. After foliar spraying of GR and BR, the biomass of rice plants grown in either hydroponics or soil culture was significantly higher or even exceeded that in the absence of Cd stress. In addition, photosynthetic parameters (maximum fluorescence values), root length and root surface area, and CAT, SOD and POD activities were significantly improved. The MDA content decreased in the shoots, suggesting that the application of GR and BA may have enhanced photosynthesis and antioxidant function to alleviate Cd stress. Furthermore, the BR and GA treatments decreased the Cd content of rice roots, shoots and grains as well as the Cd transfer coefficient. Cd chemical morphology analysis of rice roots and shoots showed that the proportion of soluble Cd (Ethanol-Cd and Water-Cd) decreased, whereas the proportion of NaCl-Cd increased. Analysis of the subcellular distribution of Cd in rice roots and above ground showed that the proportion of Cd in the cell wall increased after foliar spraying of GA and BR. The results indicate that after foliar application of GA and BR, more of the Cd in rice was transformed into immobile forms and was fixed in the cell wall, thus reducing the amount in the seeds. In summary, foliar sprays of GA and BR can reduce the toxic effects of Cd on rice plants and reduce the Cd content in rice grains, with GA being more effective. MDPI 2023-04-11 /pmc/articles/PMC10145392/ /pubmed/37112591 http://dx.doi.org/10.3390/toxics11040364 Text en © 2023 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
Li, Bei
Wang, Song
You, Xiaoshuang
Wen, Zhenzhou
Huang, Guirong
Huang, Caicheng
Li, Qiaoxian
Chen, Kuiyuan
Zhao, Yihan
Gu, Minghua
Li, Xiaofeng
Wei, Yanyan
Qin, Yan
Effect of Foliar Spraying of Gibberellins and Brassinolide on Cadmium Accumulation in Rice
title Effect of Foliar Spraying of Gibberellins and Brassinolide on Cadmium Accumulation in Rice
title_full Effect of Foliar Spraying of Gibberellins and Brassinolide on Cadmium Accumulation in Rice
title_fullStr Effect of Foliar Spraying of Gibberellins and Brassinolide on Cadmium Accumulation in Rice
title_full_unstemmed Effect of Foliar Spraying of Gibberellins and Brassinolide on Cadmium Accumulation in Rice
title_short Effect of Foliar Spraying of Gibberellins and Brassinolide on Cadmium Accumulation in Rice
title_sort effect of foliar spraying of gibberellins and brassinolide on cadmium accumulation in rice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10145392/
https://www.ncbi.nlm.nih.gov/pubmed/37112591
http://dx.doi.org/10.3390/toxics11040364
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