Culture-Independent Characterization of Bacterial Communities Associated with the Cold-Water Coral Lophelia pertusa in the Northeastern Gulf of Mexico

ABSTRACT Bacteria are recognized as an important part of the total biology of shallow-water corals. Studies of shallow-water corals suggest that associated bacteria may benefit the corals by cycling carbon, fixing nitrogen, chelating iron, and producing antibiotics that protect the coral from other...

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Published in:Applied and Environmental Microbiology
Main Authors: Kellogg, Christina A., Lisle, John T., Galkiewicz, Julia P.
Format: Article in Journal/Newspaper
Language:English
Published: American Society for Microbiology 2009
Subjects:
Online Access:http://dx.doi.org/10.1128/aem.02357-08
https://journals.asm.org/doi/pdf/10.1128/AEM.02357-08
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spelling crasmicro:10.1128/aem.02357-08 2024-09-15T18:18:01+00:00 Culture-Independent Characterization of Bacterial Communities Associated with the Cold-Water Coral Lophelia pertusa in the Northeastern Gulf of Mexico Kellogg, Christina A. Lisle, John T. Galkiewicz, Julia P. 2009 http://dx.doi.org/10.1128/aem.02357-08 https://journals.asm.org/doi/pdf/10.1128/AEM.02357-08 en eng American Society for Microbiology https://journals.asm.org/non-commercial-tdm-license Applied and Environmental Microbiology volume 75, issue 8, page 2294-2303 ISSN 0099-2240 1098-5336 journal-article 2009 crasmicro https://doi.org/10.1128/aem.02357-08 2024-08-26T04:06:23Z ABSTRACT Bacteria are recognized as an important part of the total biology of shallow-water corals. Studies of shallow-water corals suggest that associated bacteria may benefit the corals by cycling carbon, fixing nitrogen, chelating iron, and producing antibiotics that protect the coral from other microbes. Cold-water or deep-sea corals have a fundamentally different ecology due to their adaptation to cold, dark, high-pressure environments and as such have novel microbiota. The goal of this study was to characterize the microbial associates of Lophelia pertusa in the northeastern Gulf of Mexico. This is the first study to collect the coral samples in individual insulated containers and to preserve coral samples at depth in an effort to minimize thermal shock and evaluate the effects of environmental gradients on the microbial diversity of samples. Molecular analysis of bacterial diversity showed a marked difference between the two study sites, Viosca Knoll 906/862 (VK906/862) and Viosca Knoll 826 (VK826). The bacterial communities from VK826 were dominated by a variety of unknown mycoplasmal members of the Tenericutes and Bacteroidetes , whereas the libraries from VK906/862 were dominated by members of the Proteobacteria . In addition to novel sequences, the 16S rRNA gene clone libraries revealed many bacterial sequences in common between Gulf of Mexico Lophelia corals and Norwegian fjord Lophelia corals, as well as shallow-water corals. Two Lophelia -specific bacterial groups were identified: a cluster of gammaproteobacteria related to sulfide-oxidizing gill symbionts of seep clams and a group of Mycoplasma spp. The presence of these groups in both Gulf and Norwegian Lophelia corals indicates that in spite of the geographic heterogeneity observed in Lophelia -associated bacterial communities, there are Lophelia -specific microbes. Article in Journal/Newspaper Lophelia pertusa ASM Journals (American Society for Microbiology) Applied and Environmental Microbiology 75 8 2294 2303
institution Open Polar
collection ASM Journals (American Society for Microbiology)
op_collection_id crasmicro
language English
description ABSTRACT Bacteria are recognized as an important part of the total biology of shallow-water corals. Studies of shallow-water corals suggest that associated bacteria may benefit the corals by cycling carbon, fixing nitrogen, chelating iron, and producing antibiotics that protect the coral from other microbes. Cold-water or deep-sea corals have a fundamentally different ecology due to their adaptation to cold, dark, high-pressure environments and as such have novel microbiota. The goal of this study was to characterize the microbial associates of Lophelia pertusa in the northeastern Gulf of Mexico. This is the first study to collect the coral samples in individual insulated containers and to preserve coral samples at depth in an effort to minimize thermal shock and evaluate the effects of environmental gradients on the microbial diversity of samples. Molecular analysis of bacterial diversity showed a marked difference between the two study sites, Viosca Knoll 906/862 (VK906/862) and Viosca Knoll 826 (VK826). The bacterial communities from VK826 were dominated by a variety of unknown mycoplasmal members of the Tenericutes and Bacteroidetes , whereas the libraries from VK906/862 were dominated by members of the Proteobacteria . In addition to novel sequences, the 16S rRNA gene clone libraries revealed many bacterial sequences in common between Gulf of Mexico Lophelia corals and Norwegian fjord Lophelia corals, as well as shallow-water corals. Two Lophelia -specific bacterial groups were identified: a cluster of gammaproteobacteria related to sulfide-oxidizing gill symbionts of seep clams and a group of Mycoplasma spp. The presence of these groups in both Gulf and Norwegian Lophelia corals indicates that in spite of the geographic heterogeneity observed in Lophelia -associated bacterial communities, there are Lophelia -specific microbes.
format Article in Journal/Newspaper
author Kellogg, Christina A.
Lisle, John T.
Galkiewicz, Julia P.
spellingShingle Kellogg, Christina A.
Lisle, John T.
Galkiewicz, Julia P.
Culture-Independent Characterization of Bacterial Communities Associated with the Cold-Water Coral Lophelia pertusa in the Northeastern Gulf of Mexico
author_facet Kellogg, Christina A.
Lisle, John T.
Galkiewicz, Julia P.
author_sort Kellogg, Christina A.
title Culture-Independent Characterization of Bacterial Communities Associated with the Cold-Water Coral Lophelia pertusa in the Northeastern Gulf of Mexico
title_short Culture-Independent Characterization of Bacterial Communities Associated with the Cold-Water Coral Lophelia pertusa in the Northeastern Gulf of Mexico
title_full Culture-Independent Characterization of Bacterial Communities Associated with the Cold-Water Coral Lophelia pertusa in the Northeastern Gulf of Mexico
title_fullStr Culture-Independent Characterization of Bacterial Communities Associated with the Cold-Water Coral Lophelia pertusa in the Northeastern Gulf of Mexico
title_full_unstemmed Culture-Independent Characterization of Bacterial Communities Associated with the Cold-Water Coral Lophelia pertusa in the Northeastern Gulf of Mexico
title_sort culture-independent characterization of bacterial communities associated with the cold-water coral lophelia pertusa in the northeastern gulf of mexico
publisher American Society for Microbiology
publishDate 2009
url http://dx.doi.org/10.1128/aem.02357-08
https://journals.asm.org/doi/pdf/10.1128/AEM.02357-08
genre Lophelia pertusa
genre_facet Lophelia pertusa
op_source Applied and Environmental Microbiology
volume 75, issue 8, page 2294-2303
ISSN 0099-2240 1098-5336
op_rights https://journals.asm.org/non-commercial-tdm-license
op_doi https://doi.org/10.1128/aem.02357-08
container_title Applied and Environmental Microbiology
container_volume 75
container_issue 8
container_start_page 2294
op_container_end_page 2303
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