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A Recent Update on the Impact of Nano-Selenium on Plant Growth, Metabolism, and Stress Tolerance

Selenium (Se) is a microelement that plays an important nutrient role by influencing various physiological and biochemical traits in plants. It has been shown to stimulate plant metabolism, enhancing secondary metabolites and lowering abiotic and biotic stress in plants. Globally, the enormous appli...

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Autores principales: Samynathan, Ramkumar, Venkidasamy, Baskar, Ramya, Karthikeyan, Muthuramalingam, Pandiyan, Shin, Hyunsuk, Kumari, Pandy Saravana, Thangavel, Sivakumar, Sivanesan, Iyyakkannu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9964709/
https://www.ncbi.nlm.nih.gov/pubmed/36840201
http://dx.doi.org/10.3390/plants12040853
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author Samynathan, Ramkumar
Venkidasamy, Baskar
Ramya, Karthikeyan
Muthuramalingam, Pandiyan
Shin, Hyunsuk
Kumari, Pandy Saravana
Thangavel, Sivakumar
Sivanesan, Iyyakkannu
author_facet Samynathan, Ramkumar
Venkidasamy, Baskar
Ramya, Karthikeyan
Muthuramalingam, Pandiyan
Shin, Hyunsuk
Kumari, Pandy Saravana
Thangavel, Sivakumar
Sivanesan, Iyyakkannu
author_sort Samynathan, Ramkumar
collection PubMed
description Selenium (Se) is a microelement that plays an important nutrient role by influencing various physiological and biochemical traits in plants. It has been shown to stimulate plant metabolism, enhancing secondary metabolites and lowering abiotic and biotic stress in plants. Globally, the enormous applications of nanotechnology in the food and agricultural sectors have vastly expanded. Nanoselenium is more active than bulk materials, and various routes of synthesis of Se nanoparticles (Se-NPs) have been reported in which green synthesis using plants is more attractive due to a reduction in ecological issues and an increase in biological activities. The Se-NP-based biofortification is more significant because it increases plant stress tolerance and positively impacts their metabolism. Se-NPs can enhance plant resistance to various oxidative stresses, promote growth, enhance soil nutrient status, enhance plant antioxidant levels, and participate in the transpiration process. Additionally, they use a readily available, biodegradable reducing agent and are ecologically friendly. This review concentrates on notable information on the different modes of Se-NPs’ synthesis and characterization, their applications in plant growth, yield, and stress tolerance, and their influence on the metabolic process.
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spelling pubmed-99647092023-02-26 A Recent Update on the Impact of Nano-Selenium on Plant Growth, Metabolism, and Stress Tolerance Samynathan, Ramkumar Venkidasamy, Baskar Ramya, Karthikeyan Muthuramalingam, Pandiyan Shin, Hyunsuk Kumari, Pandy Saravana Thangavel, Sivakumar Sivanesan, Iyyakkannu Plants (Basel) Review Selenium (Se) is a microelement that plays an important nutrient role by influencing various physiological and biochemical traits in plants. It has been shown to stimulate plant metabolism, enhancing secondary metabolites and lowering abiotic and biotic stress in plants. Globally, the enormous applications of nanotechnology in the food and agricultural sectors have vastly expanded. Nanoselenium is more active than bulk materials, and various routes of synthesis of Se nanoparticles (Se-NPs) have been reported in which green synthesis using plants is more attractive due to a reduction in ecological issues and an increase in biological activities. The Se-NP-based biofortification is more significant because it increases plant stress tolerance and positively impacts their metabolism. Se-NPs can enhance plant resistance to various oxidative stresses, promote growth, enhance soil nutrient status, enhance plant antioxidant levels, and participate in the transpiration process. Additionally, they use a readily available, biodegradable reducing agent and are ecologically friendly. This review concentrates on notable information on the different modes of Se-NPs’ synthesis and characterization, their applications in plant growth, yield, and stress tolerance, and their influence on the metabolic process. MDPI 2023-02-14 /pmc/articles/PMC9964709/ /pubmed/36840201 http://dx.doi.org/10.3390/plants12040853 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 Review
Samynathan, Ramkumar
Venkidasamy, Baskar
Ramya, Karthikeyan
Muthuramalingam, Pandiyan
Shin, Hyunsuk
Kumari, Pandy Saravana
Thangavel, Sivakumar
Sivanesan, Iyyakkannu
A Recent Update on the Impact of Nano-Selenium on Plant Growth, Metabolism, and Stress Tolerance
title A Recent Update on the Impact of Nano-Selenium on Plant Growth, Metabolism, and Stress Tolerance
title_full A Recent Update on the Impact of Nano-Selenium on Plant Growth, Metabolism, and Stress Tolerance
title_fullStr A Recent Update on the Impact of Nano-Selenium on Plant Growth, Metabolism, and Stress Tolerance
title_full_unstemmed A Recent Update on the Impact of Nano-Selenium on Plant Growth, Metabolism, and Stress Tolerance
title_short A Recent Update on the Impact of Nano-Selenium on Plant Growth, Metabolism, and Stress Tolerance
title_sort recent update on the impact of nano-selenium on plant growth, metabolism, and stress tolerance
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9964709/
https://www.ncbi.nlm.nih.gov/pubmed/36840201
http://dx.doi.org/10.3390/plants12040853
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