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  4. Variations in microbial community compositions and processes imposed under contrast geochemical contexts in Sicilian mud volcanoes, Italy
 
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Variations in microbial community compositions and processes imposed under contrast geochemical contexts in Sicilian mud volcanoes, Italy

Journal
Frontiers in Microbiology
Journal Volume
15
ISSN
1664-302X
Date Issued
2024-09-20
Author(s)
Chen, Jhen-Nien
Chiu, Yi-Ping
Tu, Tzu-Hsuan
Italiano, Francesco
Wang, Pei-Ling  
Lin, Li-Hung  
DOI
10.3389/fmicb.2024.1461252
URI
https://www.scopus.com/pages/publications/85205843928?origin=resultslist
https://scholars.lib.ntu.edu.tw/handle/123456789/733027
Abstract
Terrestrial mud volcanoes represent surface features of channels for subsurface methane transport and, therefore, constitute an important source of methane emission from natural environments. How microbial processes regulate methane emissions in terrestrial mud volcanoes has yet to be fully addressed. This study demonstrated the geochemical characteristics and microbial communities of four mud volcano and seep sites in two geological settings of Sicily, Italy. At sites within the accretionary wedge that exhibited higher methane and sulfate concentrations, the communities were dominated by members capable of catalyzing methane and sulfate metabolisms and organic degradation. In particular, both anaerobic and aerobic methanotrophs were abundant and their abundance distribution coincided with the geochemical transition. In contrast, the sites near Mount Etna were characterized by high fluid salinity, CO2, and low methane and sulfate concentrations, with communities consisting of halophilic organic degraders and sulfur metabolizers, along with a minor presence of aerobic methanotrophs. Substantial variations in community composition and geochemistry across spatial and vertical redox gradients suggest that physicochemical contexts imposed by the geology, fluid path, and source characteristics play a vital role in shaping community composition and cycling of methane, sulfur and organic carbon in Sicily mud volcanoes.
Subjects
AOM
halophile
methane
microbial community
mud volcano
Sicily
SDGs

[SDGs]SDG13

Publisher
Frontiers Media SA
Type
journal article

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