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Low-Temperature Plasma-Assisted Nitrogen Fixation for Corn Plant Growth and Development

Nitrogen fixation is crucial for plants as it is utilized for the biosynthesis of almost all biomolecules. Most of our atmosphere consists of nitrogen, but plants cannot straightforwardly assimilate this from the air, and natural nitrogen fixation is inadequate to meet the extreme necessities of glo...

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Autores principales: Lamichhane, Pradeep, Veerana, Mayura, Lim, Jun Sup, Mumtaz, Sohail, Shrestha, Bhanu, Kaushik, Nagendra Kumar, Park, Gyungsoon, Choi, Eun Ha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8161386/
https://www.ncbi.nlm.nih.gov/pubmed/34069725
http://dx.doi.org/10.3390/ijms22105360
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author Lamichhane, Pradeep
Veerana, Mayura
Lim, Jun Sup
Mumtaz, Sohail
Shrestha, Bhanu
Kaushik, Nagendra Kumar
Park, Gyungsoon
Choi, Eun Ha
author_facet Lamichhane, Pradeep
Veerana, Mayura
Lim, Jun Sup
Mumtaz, Sohail
Shrestha, Bhanu
Kaushik, Nagendra Kumar
Park, Gyungsoon
Choi, Eun Ha
author_sort Lamichhane, Pradeep
collection PubMed
description Nitrogen fixation is crucial for plants as it is utilized for the biosynthesis of almost all biomolecules. Most of our atmosphere consists of nitrogen, but plants cannot straightforwardly assimilate this from the air, and natural nitrogen fixation is inadequate to meet the extreme necessities of global nutrition. In this study, nitrogen fixation in water was achieved by an AC-driven non-thermal atmospheric pressure nitrogen plasma jet. In addition, Mg, Al, or Zn was immersed in the water, which neutralized the plasma-treated water and increased the rate of nitrogen reduction to ammonia due to the additional hydrogen generated by the reaction between the plasma-generated acid and metal. The effect of the plasma-activated water, with and without metal ions, on germination and growth in corn plants (Zea Mays) was investigated. The germination rate was found to be higher with plasma-treated water and more efficient in the presence of metal ions. Stem lengths and germination rates were significantly increased with respect to those produced by DI water irrigation. The plants responded to the abundance of nitrogen by producing intensely green leaves because of their increased chlorophyll and protein contents. Based on this report, non-thermal plasma reactors could be used to substantially enhance seed germination and seedling growth.
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spelling pubmed-81613862021-05-29 Low-Temperature Plasma-Assisted Nitrogen Fixation for Corn Plant Growth and Development Lamichhane, Pradeep Veerana, Mayura Lim, Jun Sup Mumtaz, Sohail Shrestha, Bhanu Kaushik, Nagendra Kumar Park, Gyungsoon Choi, Eun Ha Int J Mol Sci Article Nitrogen fixation is crucial for plants as it is utilized for the biosynthesis of almost all biomolecules. Most of our atmosphere consists of nitrogen, but plants cannot straightforwardly assimilate this from the air, and natural nitrogen fixation is inadequate to meet the extreme necessities of global nutrition. In this study, nitrogen fixation in water was achieved by an AC-driven non-thermal atmospheric pressure nitrogen plasma jet. In addition, Mg, Al, or Zn was immersed in the water, which neutralized the plasma-treated water and increased the rate of nitrogen reduction to ammonia due to the additional hydrogen generated by the reaction between the plasma-generated acid and metal. The effect of the plasma-activated water, with and without metal ions, on germination and growth in corn plants (Zea Mays) was investigated. The germination rate was found to be higher with plasma-treated water and more efficient in the presence of metal ions. Stem lengths and germination rates were significantly increased with respect to those produced by DI water irrigation. The plants responded to the abundance of nitrogen by producing intensely green leaves because of their increased chlorophyll and protein contents. Based on this report, non-thermal plasma reactors could be used to substantially enhance seed germination and seedling growth. MDPI 2021-05-19 /pmc/articles/PMC8161386/ /pubmed/34069725 http://dx.doi.org/10.3390/ijms22105360 Text en © 2021 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
Lamichhane, Pradeep
Veerana, Mayura
Lim, Jun Sup
Mumtaz, Sohail
Shrestha, Bhanu
Kaushik, Nagendra Kumar
Park, Gyungsoon
Choi, Eun Ha
Low-Temperature Plasma-Assisted Nitrogen Fixation for Corn Plant Growth and Development
title Low-Temperature Plasma-Assisted Nitrogen Fixation for Corn Plant Growth and Development
title_full Low-Temperature Plasma-Assisted Nitrogen Fixation for Corn Plant Growth and Development
title_fullStr Low-Temperature Plasma-Assisted Nitrogen Fixation for Corn Plant Growth and Development
title_full_unstemmed Low-Temperature Plasma-Assisted Nitrogen Fixation for Corn Plant Growth and Development
title_short Low-Temperature Plasma-Assisted Nitrogen Fixation for Corn Plant Growth and Development
title_sort low-temperature plasma-assisted nitrogen fixation for corn plant growth and development
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8161386/
https://www.ncbi.nlm.nih.gov/pubmed/34069725
http://dx.doi.org/10.3390/ijms22105360
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