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Novel Insights on the Bacterial and Archaeal Diversity of the Panarea Shallow-Water Hydrothermal Vent Field

Current knowledge of the microbial diversity of shallow-water hydrothermal vents is still limited. Recent evidence suggests that these peculiar and heterogeneous systems might host highly diversified microbial assemblages with novel or poorly characterized lineages. In the present work, we used 16S...

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Autores principales: Arcadi, Erika, Buschi, Emanuela, Rastelli, Eugenio, Tangherlini, Michael, De Luca, Pasquale, Esposito, Valentina, Calogero, Rosario, Andaloro, Franco, Romeo, Teresa, Danovaro, Roberto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10608945/
https://www.ncbi.nlm.nih.gov/pubmed/37894122
http://dx.doi.org/10.3390/microorganisms11102464
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author Arcadi, Erika
Buschi, Emanuela
Rastelli, Eugenio
Tangherlini, Michael
De Luca, Pasquale
Esposito, Valentina
Calogero, Rosario
Andaloro, Franco
Romeo, Teresa
Danovaro, Roberto
author_facet Arcadi, Erika
Buschi, Emanuela
Rastelli, Eugenio
Tangherlini, Michael
De Luca, Pasquale
Esposito, Valentina
Calogero, Rosario
Andaloro, Franco
Romeo, Teresa
Danovaro, Roberto
author_sort Arcadi, Erika
collection PubMed
description Current knowledge of the microbial diversity of shallow-water hydrothermal vents is still limited. Recent evidence suggests that these peculiar and heterogeneous systems might host highly diversified microbial assemblages with novel or poorly characterized lineages. In the present work, we used 16S rRNA gene metabarcoding to provide novel insights into the diversity of the bacterial and archaeal assemblages in seawater and sediments of three shallow-water hydrothermal systems of Panarea Island (Tyrrhenian Sea). The three areas were characterized by hot, cold, or intermediate temperatures and related venting activities. Microbial biodiversity in seawater largely differed from the benthic one, both in α-diversity (i.e., richness of amplicon sequence variants—ASVs) and in prokaryotic assemblage composition. Furthermore, at the class level, the pelagic prokaryotic assemblages were very similar among sites, whereas the benthic microbial assemblages differed markedly, reflecting the distinct features of the hydrothermal activities at the three sites we investigated. Our results show that ongoing high-temperature emissions can influence prokaryotic α-diversity at the seafloor, increasing turnover (β-)diversity, and that the intermediate-temperature-venting spot that experienced a violent gas explosion 20 years ago now displays the highest benthic prokaryotic diversity. Overall, our results suggest that hydrothermal vent dynamics around Panarea Island can contribute to an increase in the local heterogeneity of physical–chemical conditions, especially at the seafloor, in turn boosting the overall microbial (γ-)diversity of this peculiar hydrothermal system.
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spelling pubmed-106089452023-10-28 Novel Insights on the Bacterial and Archaeal Diversity of the Panarea Shallow-Water Hydrothermal Vent Field Arcadi, Erika Buschi, Emanuela Rastelli, Eugenio Tangherlini, Michael De Luca, Pasquale Esposito, Valentina Calogero, Rosario Andaloro, Franco Romeo, Teresa Danovaro, Roberto Microorganisms Article Current knowledge of the microbial diversity of shallow-water hydrothermal vents is still limited. Recent evidence suggests that these peculiar and heterogeneous systems might host highly diversified microbial assemblages with novel or poorly characterized lineages. In the present work, we used 16S rRNA gene metabarcoding to provide novel insights into the diversity of the bacterial and archaeal assemblages in seawater and sediments of three shallow-water hydrothermal systems of Panarea Island (Tyrrhenian Sea). The three areas were characterized by hot, cold, or intermediate temperatures and related venting activities. Microbial biodiversity in seawater largely differed from the benthic one, both in α-diversity (i.e., richness of amplicon sequence variants—ASVs) and in prokaryotic assemblage composition. Furthermore, at the class level, the pelagic prokaryotic assemblages were very similar among sites, whereas the benthic microbial assemblages differed markedly, reflecting the distinct features of the hydrothermal activities at the three sites we investigated. Our results show that ongoing high-temperature emissions can influence prokaryotic α-diversity at the seafloor, increasing turnover (β-)diversity, and that the intermediate-temperature-venting spot that experienced a violent gas explosion 20 years ago now displays the highest benthic prokaryotic diversity. Overall, our results suggest that hydrothermal vent dynamics around Panarea Island can contribute to an increase in the local heterogeneity of physical–chemical conditions, especially at the seafloor, in turn boosting the overall microbial (γ-)diversity of this peculiar hydrothermal system. MDPI 2023-09-30 /pmc/articles/PMC10608945/ /pubmed/37894122 http://dx.doi.org/10.3390/microorganisms11102464 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 Article
Arcadi, Erika
Buschi, Emanuela
Rastelli, Eugenio
Tangherlini, Michael
De Luca, Pasquale
Esposito, Valentina
Calogero, Rosario
Andaloro, Franco
Romeo, Teresa
Danovaro, Roberto
Novel Insights on the Bacterial and Archaeal Diversity of the Panarea Shallow-Water Hydrothermal Vent Field
title Novel Insights on the Bacterial and Archaeal Diversity of the Panarea Shallow-Water Hydrothermal Vent Field
title_full Novel Insights on the Bacterial and Archaeal Diversity of the Panarea Shallow-Water Hydrothermal Vent Field
title_fullStr Novel Insights on the Bacterial and Archaeal Diversity of the Panarea Shallow-Water Hydrothermal Vent Field
title_full_unstemmed Novel Insights on the Bacterial and Archaeal Diversity of the Panarea Shallow-Water Hydrothermal Vent Field
title_short Novel Insights on the Bacterial and Archaeal Diversity of the Panarea Shallow-Water Hydrothermal Vent Field
title_sort novel insights on the bacterial and archaeal diversity of the panarea shallow-water hydrothermal vent field
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10608945/
https://www.ncbi.nlm.nih.gov/pubmed/37894122
http://dx.doi.org/10.3390/microorganisms11102464
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