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Responses of Rhizosphere Fungal Communities to the Sewage Sludge Application into the Soil

Due to the increasing sewage sludge production in the world and problems with its disposal, an application of sludge to the soil appears to be a suitable solution considering its fertilizer properties and ability to improve the soil physical conditions. On the other hand, the sludge may also contain...

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Autores principales: Ondreičková, Katarína, Gubišová, Marcela, Piliarová, Michaela, Horník, Miroslav, Matušinský, Pavel, Gubiš, Jozef, Klčová, Lenka, Hudcovicová, Martina, Kraic, Ján
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6920848/
https://www.ncbi.nlm.nih.gov/pubmed/31671795
http://dx.doi.org/10.3390/microorganisms7110505
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author Ondreičková, Katarína
Gubišová, Marcela
Piliarová, Michaela
Horník, Miroslav
Matušinský, Pavel
Gubiš, Jozef
Klčová, Lenka
Hudcovicová, Martina
Kraic, Ján
author_facet Ondreičková, Katarína
Gubišová, Marcela
Piliarová, Michaela
Horník, Miroslav
Matušinský, Pavel
Gubiš, Jozef
Klčová, Lenka
Hudcovicová, Martina
Kraic, Ján
author_sort Ondreičková, Katarína
collection PubMed
description Due to the increasing sewage sludge production in the world and problems with its disposal, an application of sludge to the soil appears to be a suitable solution considering its fertilizer properties and ability to improve the soil physical conditions. On the other hand, the sludge may also contain undesirable and toxic substances. Since soil microorganisms are sensitive to environmental changes, they can be used as indicators of soil quality. In this study, we used sewage sludge (SS) from two municipal wastewater treatment plants (SS-A and SS-B) in the dose of 5 t/ha and 15 t/ha in order to determine possible changes in the fungal community diversity, especially arbuscular mycorrhizal fungi (AMF), in the rhizosphere of Arundo donax L. Rhizosphere samples were collected in summer and autumn for two consecutive years and the fungal diversity was examined using terminal restriction fragment length polymorphism and 18S rDNA sequencing. Fungal alpha diversity was more affected by SS-A than SS-B probably due to the higher heavy metal content. However, based on principal component analysis and ANOSIM, significant changes in overall fungal diversity were not observed. Simultaneously, 18S rDNA sequencing showed that more various fungal taxa were detected in the sample with sewage sludge than in the control. Glomus sp. as a representative of AMF was the most represented. Moreover, Funneliformis in both samples and Rhizophagus in control with Septoglomus in the sludge sample were other representatives of AMF. Our results indicate that the short-term sewage sludge application into the soil does not cause a shift in the fungal community composition.
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spelling pubmed-69208482019-12-24 Responses of Rhizosphere Fungal Communities to the Sewage Sludge Application into the Soil Ondreičková, Katarína Gubišová, Marcela Piliarová, Michaela Horník, Miroslav Matušinský, Pavel Gubiš, Jozef Klčová, Lenka Hudcovicová, Martina Kraic, Ján Microorganisms Article Due to the increasing sewage sludge production in the world and problems with its disposal, an application of sludge to the soil appears to be a suitable solution considering its fertilizer properties and ability to improve the soil physical conditions. On the other hand, the sludge may also contain undesirable and toxic substances. Since soil microorganisms are sensitive to environmental changes, they can be used as indicators of soil quality. In this study, we used sewage sludge (SS) from two municipal wastewater treatment plants (SS-A and SS-B) in the dose of 5 t/ha and 15 t/ha in order to determine possible changes in the fungal community diversity, especially arbuscular mycorrhizal fungi (AMF), in the rhizosphere of Arundo donax L. Rhizosphere samples were collected in summer and autumn for two consecutive years and the fungal diversity was examined using terminal restriction fragment length polymorphism and 18S rDNA sequencing. Fungal alpha diversity was more affected by SS-A than SS-B probably due to the higher heavy metal content. However, based on principal component analysis and ANOSIM, significant changes in overall fungal diversity were not observed. Simultaneously, 18S rDNA sequencing showed that more various fungal taxa were detected in the sample with sewage sludge than in the control. Glomus sp. as a representative of AMF was the most represented. Moreover, Funneliformis in both samples and Rhizophagus in control with Septoglomus in the sludge sample were other representatives of AMF. Our results indicate that the short-term sewage sludge application into the soil does not cause a shift in the fungal community composition. MDPI 2019-10-29 /pmc/articles/PMC6920848/ /pubmed/31671795 http://dx.doi.org/10.3390/microorganisms7110505 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ondreičková, Katarína
Gubišová, Marcela
Piliarová, Michaela
Horník, Miroslav
Matušinský, Pavel
Gubiš, Jozef
Klčová, Lenka
Hudcovicová, Martina
Kraic, Ján
Responses of Rhizosphere Fungal Communities to the Sewage Sludge Application into the Soil
title Responses of Rhizosphere Fungal Communities to the Sewage Sludge Application into the Soil
title_full Responses of Rhizosphere Fungal Communities to the Sewage Sludge Application into the Soil
title_fullStr Responses of Rhizosphere Fungal Communities to the Sewage Sludge Application into the Soil
title_full_unstemmed Responses of Rhizosphere Fungal Communities to the Sewage Sludge Application into the Soil
title_short Responses of Rhizosphere Fungal Communities to the Sewage Sludge Application into the Soil
title_sort responses of rhizosphere fungal communities to the sewage sludge application into the soil
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6920848/
https://www.ncbi.nlm.nih.gov/pubmed/31671795
http://dx.doi.org/10.3390/microorganisms7110505
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