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The combined effect of graphene oxide and elemental nano-sulfur on soil biological properties and lettuce plant biomass

The impact of graphene oxide (GO) nanocarbon on soil properties is mixed, with both negative and positive effects. Although it decreases the viability of some microbes, there are few studies on how its single amendment to soil or in combination with nanosized sulfur benefits soil microorganisms and...

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Autores principales: Hammerschmiedt, Tereza, Holatko, Jiri, Zelinka, Radim, Kintl, Antonin, Skarpa, Petr, Bytesnikova, Zuzana, Richtera, Lukas, Mustafa, Adnan, Malicek, Ondrej, Brtnicky, Martin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10043190/
https://www.ncbi.nlm.nih.gov/pubmed/36998685
http://dx.doi.org/10.3389/fpls.2023.1057133
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author Hammerschmiedt, Tereza
Holatko, Jiri
Zelinka, Radim
Kintl, Antonin
Skarpa, Petr
Bytesnikova, Zuzana
Richtera, Lukas
Mustafa, Adnan
Malicek, Ondrej
Brtnicky, Martin
author_facet Hammerschmiedt, Tereza
Holatko, Jiri
Zelinka, Radim
Kintl, Antonin
Skarpa, Petr
Bytesnikova, Zuzana
Richtera, Lukas
Mustafa, Adnan
Malicek, Ondrej
Brtnicky, Martin
author_sort Hammerschmiedt, Tereza
collection PubMed
description The impact of graphene oxide (GO) nanocarbon on soil properties is mixed, with both negative and positive effects. Although it decreases the viability of some microbes, there are few studies on how its single amendment to soil or in combination with nanosized sulfur benefits soil microorganisms and nutrient transformation. Therefore, an eight-week pot experiment was carried out under controlled conditions (growth chamber with artificial light) in soil seeded with lettuce (Lactuca sativa) and amended with GO or nano-sulfur on their own or their several combinations. The following variants were tested: (I) Control, (II) GO, (III) Low nano-S + GO, (IV) High nano-S + GO, (V) Low nano-S, (VI) High nano-S. Results revealed no significant differences in soil pH, dry plant aboveground, and root biomass among all five amended variants and the control group. The greatest positive effect on soil respiration was observed when GO was used alone, and this effect remained significant even when it was combined with high nano-S. Low nano-S plus a GO dose negatively affected some of the soil respiration types: NAG_SIR, Tre_SIR, Ala_SIR, and Arg_SIR. Single GO application was found to enhance arylsulfatase activity, while the combination of high nano-S and GO not only enhanced arylsulfatase but also urease and phosphatase activity in the soil. The elemental nano-S probably counteracted the GO-mediated effect on organic carbon oxidation. We partially proved the hypothesis that GO-enhanced nano-S oxidation increases phosphatase activity.
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spelling pubmed-100431902023-03-29 The combined effect of graphene oxide and elemental nano-sulfur on soil biological properties and lettuce plant biomass Hammerschmiedt, Tereza Holatko, Jiri Zelinka, Radim Kintl, Antonin Skarpa, Petr Bytesnikova, Zuzana Richtera, Lukas Mustafa, Adnan Malicek, Ondrej Brtnicky, Martin Front Plant Sci Plant Science The impact of graphene oxide (GO) nanocarbon on soil properties is mixed, with both negative and positive effects. Although it decreases the viability of some microbes, there are few studies on how its single amendment to soil or in combination with nanosized sulfur benefits soil microorganisms and nutrient transformation. Therefore, an eight-week pot experiment was carried out under controlled conditions (growth chamber with artificial light) in soil seeded with lettuce (Lactuca sativa) and amended with GO or nano-sulfur on their own or their several combinations. The following variants were tested: (I) Control, (II) GO, (III) Low nano-S + GO, (IV) High nano-S + GO, (V) Low nano-S, (VI) High nano-S. Results revealed no significant differences in soil pH, dry plant aboveground, and root biomass among all five amended variants and the control group. The greatest positive effect on soil respiration was observed when GO was used alone, and this effect remained significant even when it was combined with high nano-S. Low nano-S plus a GO dose negatively affected some of the soil respiration types: NAG_SIR, Tre_SIR, Ala_SIR, and Arg_SIR. Single GO application was found to enhance arylsulfatase activity, while the combination of high nano-S and GO not only enhanced arylsulfatase but also urease and phosphatase activity in the soil. The elemental nano-S probably counteracted the GO-mediated effect on organic carbon oxidation. We partially proved the hypothesis that GO-enhanced nano-S oxidation increases phosphatase activity. Frontiers Media S.A. 2023-03-14 /pmc/articles/PMC10043190/ /pubmed/36998685 http://dx.doi.org/10.3389/fpls.2023.1057133 Text en Copyright © 2023 Hammerschmiedt, Holatko, Zelinka, Kintl, Skarpa, Bytesnikova, Richtera, Mustafa, Malicek and Brtnicky https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Hammerschmiedt, Tereza
Holatko, Jiri
Zelinka, Radim
Kintl, Antonin
Skarpa, Petr
Bytesnikova, Zuzana
Richtera, Lukas
Mustafa, Adnan
Malicek, Ondrej
Brtnicky, Martin
The combined effect of graphene oxide and elemental nano-sulfur on soil biological properties and lettuce plant biomass
title The combined effect of graphene oxide and elemental nano-sulfur on soil biological properties and lettuce plant biomass
title_full The combined effect of graphene oxide and elemental nano-sulfur on soil biological properties and lettuce plant biomass
title_fullStr The combined effect of graphene oxide and elemental nano-sulfur on soil biological properties and lettuce plant biomass
title_full_unstemmed The combined effect of graphene oxide and elemental nano-sulfur on soil biological properties and lettuce plant biomass
title_short The combined effect of graphene oxide and elemental nano-sulfur on soil biological properties and lettuce plant biomass
title_sort combined effect of graphene oxide and elemental nano-sulfur on soil biological properties and lettuce plant biomass
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10043190/
https://www.ncbi.nlm.nih.gov/pubmed/36998685
http://dx.doi.org/10.3389/fpls.2023.1057133
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