Response of bacterial soil communities to a small diesel-spill at the Argentine station Carlini on King George Island (Antarctica)

In October 2009, a diesel pipe connecting two storage tanks at Carlini station (Antarctica) cracked, leaking fuel and contaminating the surrounding soil which, at that time, was covered by a thick snow layer. Three months later, the snow began to melt and the diesel moved with runoff water from the...

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Main Authors: Vázquez, Susana, Jürgens, Jutta, Monien, Patrick, Minetti, Roberto Pepino, MacCormack, Walter P., Helmke, Elisabeth
Format: Conference Object
Language:unknown
Published: 2012
Subjects:
Online Access:https://epic.awi.de/id/eprint/33601/
https://hdl.handle.net/10013/epic.42051
id ftawi:oai:epic.awi.de:33601
record_format openpolar
institution Open Polar
collection Alfred Wegener Institute for Polar- and Marine Research (AWI): ePIC (electronic Publication Information Center)
op_collection_id ftawi
language unknown
description In October 2009, a diesel pipe connecting two storage tanks at Carlini station (Antarctica) cracked, leaking fuel and contaminating the surrounding soil which, at that time, was covered by a thick snow layer. Three months later, the snow began to melt and the diesel moved with runoff water from the fuel tanks through the residential and laboratory area, towards the Potter Cove. Five months after the spill, soil samples were taken at 10 sites close to, as well as further away, from the spill site. Marine sediment samples were also taken from Potter Cove basin, with the aim to monitor the bacterial communities in relation to the presence of hydrocarbons. One year later, in January 2011, sampling was repeated at approximately the same sites and additional sites that could not be sampled before due to the snow cover. At this time, neither smell nor visual appearance of diesel residues were noticeable on the surface or at 30 cm-depth soil, and measured total petroleum hydrocarbons decreased in the most affected sites, except in front of the pool containing the tanks where the spill originated. At this site, an underground leaking pipe had caused a more recent small event of acute contamination that is being used as a proxy to better understand the effect of the main spill on bacterial communities at Carlini station area. The impact of the spill on soils and sediments was monitored by total carbon and nitrogen content, C/N ratio, presence of hydrocarbons and differences in bacterial community structure. DGGE based on the 16S rRNA gene was used to identify the main changes in community composition over the 14-months period. Most samples showed a quite high diversity few months after the spill, as well as one year later, and only marginal changes in the taxonomic structure were observed during the study period. However, the bacterial community composition in the samples taken near the cracked underground pipe, which experienced a larger input of diesel and less time between impact and sampling, showed clear changes. The DGGE gels exhibited a reduction in diversity and an enrichment of specific bacterial groups. Clone libraries revealed enrichment in Actinobacteria and one Betaproteobacterium closely related to Polaromonas napthalenivorans, indicating an actively growing hydrocarbon-degrading community. After one more year (January 2012), there was no visual presence or smell of hydrocarbons at this site, the same that had been observed after the main spill. Our results show that in Potter peninsula the bacterial communities undergo a fast shift to lower diversity and higher dominance when a sudden spill occurs on a soil with certain history of exposure to hydrocarbons. The unusually fast disappearance of the spilled diesel in such a cold habitat is favoured by the kind of diesel used (containing mostly light aliphatic hydrocarbons), the sandy texture of soil, snowmelt runoff, summer rains and a well adapted microbiota, with a promising oil-bioremediation potential
format Conference Object
author Vázquez, Susana
Jürgens, Jutta
Monien, Patrick
Minetti, Roberto Pepino
MacCormack, Walter P.
Helmke, Elisabeth
spellingShingle Vázquez, Susana
Jürgens, Jutta
Monien, Patrick
Minetti, Roberto Pepino
MacCormack, Walter P.
Helmke, Elisabeth
Response of bacterial soil communities to a small diesel-spill at the Argentine station Carlini on King George Island (Antarctica)
author_facet Vázquez, Susana
Jürgens, Jutta
Monien, Patrick
Minetti, Roberto Pepino
MacCormack, Walter P.
Helmke, Elisabeth
author_sort Vázquez, Susana
title Response of bacterial soil communities to a small diesel-spill at the Argentine station Carlini on King George Island (Antarctica)
title_short Response of bacterial soil communities to a small diesel-spill at the Argentine station Carlini on King George Island (Antarctica)
title_full Response of bacterial soil communities to a small diesel-spill at the Argentine station Carlini on King George Island (Antarctica)
title_fullStr Response of bacterial soil communities to a small diesel-spill at the Argentine station Carlini on King George Island (Antarctica)
title_full_unstemmed Response of bacterial soil communities to a small diesel-spill at the Argentine station Carlini on King George Island (Antarctica)
title_sort response of bacterial soil communities to a small diesel-spill at the argentine station carlini on king george island (antarctica)
publishDate 2012
url https://epic.awi.de/id/eprint/33601/
https://hdl.handle.net/10013/epic.42051
long_lat ENVELOPE(-58.664,-58.664,-62.238,-62.238)
ENVELOPE(-58.658,-58.658,-62.246,-62.246)
geographic Argentine
Carlini Station
King George Island
Potter Cove
Potter Peninsula
geographic_facet Argentine
Carlini Station
King George Island
Potter Cove
Potter Peninsula
genre Antarc*
Antarctica
King George Island
genre_facet Antarc*
Antarctica
King George Island
op_source EPIC314th Int. Symposium on Microbial Ecology,, Copenhaven, Denmark
op_relation Vázquez, S. , Jürgens, J. , Monien, P. , Minetti, R. P. , MacCormack, W. P. and Helmke, E. (2012) Response of bacterial soil communities to a small diesel-spill at the Argentine station Carlini on King George Island (Antarctica) , 14th Int. Symposium on Microbial Ecology,, Copenhaven, Denmark . hdl:10013/epic.42051
_version_ 1766133593197772800
spelling ftawi:oai:epic.awi.de:33601 2023-05-15T13:40:26+02:00 Response of bacterial soil communities to a small diesel-spill at the Argentine station Carlini on King George Island (Antarctica) Vázquez, Susana Jürgens, Jutta Monien, Patrick Minetti, Roberto Pepino MacCormack, Walter P. Helmke, Elisabeth 2012-08 https://epic.awi.de/id/eprint/33601/ https://hdl.handle.net/10013/epic.42051 unknown Vázquez, S. , Jürgens, J. , Monien, P. , Minetti, R. P. , MacCormack, W. P. and Helmke, E. (2012) Response of bacterial soil communities to a small diesel-spill at the Argentine station Carlini on King George Island (Antarctica) , 14th Int. Symposium on Microbial Ecology,, Copenhaven, Denmark . hdl:10013/epic.42051 EPIC314th Int. Symposium on Microbial Ecology,, Copenhaven, Denmark Conference notRev 2012 ftawi 2021-12-24T15:38:50Z In October 2009, a diesel pipe connecting two storage tanks at Carlini station (Antarctica) cracked, leaking fuel and contaminating the surrounding soil which, at that time, was covered by a thick snow layer. Three months later, the snow began to melt and the diesel moved with runoff water from the fuel tanks through the residential and laboratory area, towards the Potter Cove. Five months after the spill, soil samples were taken at 10 sites close to, as well as further away, from the spill site. Marine sediment samples were also taken from Potter Cove basin, with the aim to monitor the bacterial communities in relation to the presence of hydrocarbons. One year later, in January 2011, sampling was repeated at approximately the same sites and additional sites that could not be sampled before due to the snow cover. At this time, neither smell nor visual appearance of diesel residues were noticeable on the surface or at 30 cm-depth soil, and measured total petroleum hydrocarbons decreased in the most affected sites, except in front of the pool containing the tanks where the spill originated. At this site, an underground leaking pipe had caused a more recent small event of acute contamination that is being used as a proxy to better understand the effect of the main spill on bacterial communities at Carlini station area. The impact of the spill on soils and sediments was monitored by total carbon and nitrogen content, C/N ratio, presence of hydrocarbons and differences in bacterial community structure. DGGE based on the 16S rRNA gene was used to identify the main changes in community composition over the 14-months period. Most samples showed a quite high diversity few months after the spill, as well as one year later, and only marginal changes in the taxonomic structure were observed during the study period. However, the bacterial community composition in the samples taken near the cracked underground pipe, which experienced a larger input of diesel and less time between impact and sampling, showed clear changes. The DGGE gels exhibited a reduction in diversity and an enrichment of specific bacterial groups. Clone libraries revealed enrichment in Actinobacteria and one Betaproteobacterium closely related to Polaromonas napthalenivorans, indicating an actively growing hydrocarbon-degrading community. After one more year (January 2012), there was no visual presence or smell of hydrocarbons at this site, the same that had been observed after the main spill. Our results show that in Potter peninsula the bacterial communities undergo a fast shift to lower diversity and higher dominance when a sudden spill occurs on a soil with certain history of exposure to hydrocarbons. The unusually fast disappearance of the spilled diesel in such a cold habitat is favoured by the kind of diesel used (containing mostly light aliphatic hydrocarbons), the sandy texture of soil, snowmelt runoff, summer rains and a well adapted microbiota, with a promising oil-bioremediation potential Conference Object Antarc* Antarctica King George Island Alfred Wegener Institute for Polar- and Marine Research (AWI): ePIC (electronic Publication Information Center) Argentine Carlini Station ENVELOPE(-58.664,-58.664,-62.238,-62.238) King George Island Potter Cove Potter Peninsula ENVELOPE(-58.658,-58.658,-62.246,-62.246)