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Genomic Damage Induced in Nicotiana tabacum L. Plants by Colloidal Solution with Silver and Gold Nanoparticles

Tobacco seedlings (Nicotiana tabacum L cv. Wisconsin 38) were treated for 24 h with colloidal solution of silver and gold nanoparticles (AgNPs and AuNPs) of different size or cultivated for 8 weeks on soil polluted with these NPs. DNA damage in leaf and roots nuclei was evaluated by the comet assay....

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Autores principales: Lovecká, Petra, Macůrková, Anna, Záruba, Kamil, Hubáček, Tomáš, Siegel, Jakub, Valentová, Olga
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8234410/
https://www.ncbi.nlm.nih.gov/pubmed/34205810
http://dx.doi.org/10.3390/plants10061260
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author Lovecká, Petra
Macůrková, Anna
Záruba, Kamil
Hubáček, Tomáš
Siegel, Jakub
Valentová, Olga
author_facet Lovecká, Petra
Macůrková, Anna
Záruba, Kamil
Hubáček, Tomáš
Siegel, Jakub
Valentová, Olga
author_sort Lovecká, Petra
collection PubMed
description Tobacco seedlings (Nicotiana tabacum L cv. Wisconsin 38) were treated for 24 h with colloidal solution of silver and gold nanoparticles (AgNPs and AuNPs) of different size or cultivated for 8 weeks on soil polluted with these NPs. DNA damage in leaf and roots nuclei was evaluated by the comet assay. AgNPs of the size 22–25 nm at concentrations higher than 50 mg·L(−1) significantly increased the tail moments (TM) values in leaf nuclei compared to the negative control. Ag nanoparticles of smaller size 12–15 nm caused a slight increase in tail moment without significant difference from the negative control. The opposite effect of AgNPs was observed on roots. The increasing tail moment was registered for smaller NPs. Similar results were observed for AuNPs at a concentration of 100 mg·L(−1). DNA damaging effects after growing tobacco plants for 8 weeks in soil polluted with AgNPs and AuNPs of different size and concentrations were observed. While lower concentrations of both types of particles had no effect on the integrity of DNA, concentration of 30 mg·kg(−1) of AgNPs caused significant DNA damage in leaves of tobacco plants. AuNPs had no effect even at the highest concentration. The content of Ag was determined by ICP–MS in above-ground part of plants (leaves) after 8 weeks of growth in soil with 30 mg·kg(−1). AgNPs and was 2.720 ± 0.408 µg·g(−1). Long term effect is much less harmful probably due to the plant restoration capability.
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spelling pubmed-82344102021-06-27 Genomic Damage Induced in Nicotiana tabacum L. Plants by Colloidal Solution with Silver and Gold Nanoparticles Lovecká, Petra Macůrková, Anna Záruba, Kamil Hubáček, Tomáš Siegel, Jakub Valentová, Olga Plants (Basel) Article Tobacco seedlings (Nicotiana tabacum L cv. Wisconsin 38) were treated for 24 h with colloidal solution of silver and gold nanoparticles (AgNPs and AuNPs) of different size or cultivated for 8 weeks on soil polluted with these NPs. DNA damage in leaf and roots nuclei was evaluated by the comet assay. AgNPs of the size 22–25 nm at concentrations higher than 50 mg·L(−1) significantly increased the tail moments (TM) values in leaf nuclei compared to the negative control. Ag nanoparticles of smaller size 12–15 nm caused a slight increase in tail moment without significant difference from the negative control. The opposite effect of AgNPs was observed on roots. The increasing tail moment was registered for smaller NPs. Similar results were observed for AuNPs at a concentration of 100 mg·L(−1). DNA damaging effects after growing tobacco plants for 8 weeks in soil polluted with AgNPs and AuNPs of different size and concentrations were observed. While lower concentrations of both types of particles had no effect on the integrity of DNA, concentration of 30 mg·kg(−1) of AgNPs caused significant DNA damage in leaves of tobacco plants. AuNPs had no effect even at the highest concentration. The content of Ag was determined by ICP–MS in above-ground part of plants (leaves) after 8 weeks of growth in soil with 30 mg·kg(−1). AgNPs and was 2.720 ± 0.408 µg·g(−1). Long term effect is much less harmful probably due to the plant restoration capability. MDPI 2021-06-21 /pmc/articles/PMC8234410/ /pubmed/34205810 http://dx.doi.org/10.3390/plants10061260 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
Lovecká, Petra
Macůrková, Anna
Záruba, Kamil
Hubáček, Tomáš
Siegel, Jakub
Valentová, Olga
Genomic Damage Induced in Nicotiana tabacum L. Plants by Colloidal Solution with Silver and Gold Nanoparticles
title Genomic Damage Induced in Nicotiana tabacum L. Plants by Colloidal Solution with Silver and Gold Nanoparticles
title_full Genomic Damage Induced in Nicotiana tabacum L. Plants by Colloidal Solution with Silver and Gold Nanoparticles
title_fullStr Genomic Damage Induced in Nicotiana tabacum L. Plants by Colloidal Solution with Silver and Gold Nanoparticles
title_full_unstemmed Genomic Damage Induced in Nicotiana tabacum L. Plants by Colloidal Solution with Silver and Gold Nanoparticles
title_short Genomic Damage Induced in Nicotiana tabacum L. Plants by Colloidal Solution with Silver and Gold Nanoparticles
title_sort genomic damage induced in nicotiana tabacum l. plants by colloidal solution with silver and gold nanoparticles
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8234410/
https://www.ncbi.nlm.nih.gov/pubmed/34205810
http://dx.doi.org/10.3390/plants10061260
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