Cargando…

Ultra-diffuse hydrothermal venting supports Fe-oxidizing bacteria and massive umber deposition at 5000 m off Hawaii

A novel hydrothermal field has been discovered at the base of Lōihi Seamount, Hawaii, at 5000 mbsl. Geochemical analyses demonstrate that ‘FeMO Deep', while only 0.2 °C above ambient seawater temperature, derives from a distal, ultra-diffuse hydrothermal source. FeMO Deep is expressed as region...

Descripción completa

Detalles Bibliográficos
Autores principales: Edwards, Katrina J, Glazer, B T, Rouxel, O J, Bach, W, Emerson, D, Davis, R E, Toner, B M, Chan, C S, Tebo, B M, Staudigel, H, Moyer, C L
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3197161/
https://www.ncbi.nlm.nih.gov/pubmed/21544100
http://dx.doi.org/10.1038/ismej.2011.48
_version_ 1782214284536709120
author Edwards, Katrina J
Glazer, B T
Rouxel, O J
Bach, W
Emerson, D
Davis, R E
Toner, B M
Chan, C S
Tebo, B M
Staudigel, H
Moyer, C L
author_facet Edwards, Katrina J
Glazer, B T
Rouxel, O J
Bach, W
Emerson, D
Davis, R E
Toner, B M
Chan, C S
Tebo, B M
Staudigel, H
Moyer, C L
author_sort Edwards, Katrina J
collection PubMed
description A novel hydrothermal field has been discovered at the base of Lōihi Seamount, Hawaii, at 5000 mbsl. Geochemical analyses demonstrate that ‘FeMO Deep', while only 0.2 °C above ambient seawater temperature, derives from a distal, ultra-diffuse hydrothermal source. FeMO Deep is expressed as regional seafloor seepage of gelatinous iron- and silica-rich deposits, pooling between and over basalt pillows, in places over a meter thick. The system is capped by mm to cm thick hydrothermally derived iron-oxyhydroxide- and manganese-oxide-layered crusts. We use molecular analyses (16S rDNA-based) of extant communities combined with fluorescent in situ hybridizations to demonstrate that FeMO Deep deposits contain living iron-oxidizing Zetaproteobacteria related to the recently isolated strain Mariprofundus ferroxydans. Bioenergetic calculations, based on in-situ electrochemical measurements and cell counts, indicate that reactions between iron and oxygen are important in supporting chemosynthesis in the mats, which we infer forms a trophic base of the mat ecosystem. We suggest that the biogenic FeMO Deep hydrothermal deposit represents a modern analog for one class of geological iron deposits known as ‘umbers' (for example, Troodos ophilolites, Cyprus) because of striking similarities in size, setting and internal structures.
format Online
Article
Text
id pubmed-3197161
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-31971612011-12-07 Ultra-diffuse hydrothermal venting supports Fe-oxidizing bacteria and massive umber deposition at 5000 m off Hawaii Edwards, Katrina J Glazer, B T Rouxel, O J Bach, W Emerson, D Davis, R E Toner, B M Chan, C S Tebo, B M Staudigel, H Moyer, C L ISME J Original Article A novel hydrothermal field has been discovered at the base of Lōihi Seamount, Hawaii, at 5000 mbsl. Geochemical analyses demonstrate that ‘FeMO Deep', while only 0.2 °C above ambient seawater temperature, derives from a distal, ultra-diffuse hydrothermal source. FeMO Deep is expressed as regional seafloor seepage of gelatinous iron- and silica-rich deposits, pooling between and over basalt pillows, in places over a meter thick. The system is capped by mm to cm thick hydrothermally derived iron-oxyhydroxide- and manganese-oxide-layered crusts. We use molecular analyses (16S rDNA-based) of extant communities combined with fluorescent in situ hybridizations to demonstrate that FeMO Deep deposits contain living iron-oxidizing Zetaproteobacteria related to the recently isolated strain Mariprofundus ferroxydans. Bioenergetic calculations, based on in-situ electrochemical measurements and cell counts, indicate that reactions between iron and oxygen are important in supporting chemosynthesis in the mats, which we infer forms a trophic base of the mat ecosystem. We suggest that the biogenic FeMO Deep hydrothermal deposit represents a modern analog for one class of geological iron deposits known as ‘umbers' (for example, Troodos ophilolites, Cyprus) because of striking similarities in size, setting and internal structures. Nature Publishing Group 2011-11 2011-05-05 /pmc/articles/PMC3197161/ /pubmed/21544100 http://dx.doi.org/10.1038/ismej.2011.48 Text en Copyright © 2011 International Society for Microbial Ecology http://creativecommons.org/licenses/by-nc-nd/3.0/ This work is licensed under the Creative Commons Attribution-NonCommercial-No Derivative Works 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/3.0/
spellingShingle Original Article
Edwards, Katrina J
Glazer, B T
Rouxel, O J
Bach, W
Emerson, D
Davis, R E
Toner, B M
Chan, C S
Tebo, B M
Staudigel, H
Moyer, C L
Ultra-diffuse hydrothermal venting supports Fe-oxidizing bacteria and massive umber deposition at 5000 m off Hawaii
title Ultra-diffuse hydrothermal venting supports Fe-oxidizing bacteria and massive umber deposition at 5000 m off Hawaii
title_full Ultra-diffuse hydrothermal venting supports Fe-oxidizing bacteria and massive umber deposition at 5000 m off Hawaii
title_fullStr Ultra-diffuse hydrothermal venting supports Fe-oxidizing bacteria and massive umber deposition at 5000 m off Hawaii
title_full_unstemmed Ultra-diffuse hydrothermal venting supports Fe-oxidizing bacteria and massive umber deposition at 5000 m off Hawaii
title_short Ultra-diffuse hydrothermal venting supports Fe-oxidizing bacteria and massive umber deposition at 5000 m off Hawaii
title_sort ultra-diffuse hydrothermal venting supports fe-oxidizing bacteria and massive umber deposition at 5000 m off hawaii
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3197161/
https://www.ncbi.nlm.nih.gov/pubmed/21544100
http://dx.doi.org/10.1038/ismej.2011.48
work_keys_str_mv AT edwardskatrinaj ultradiffusehydrothermalventingsupportsfeoxidizingbacteriaandmassiveumberdepositionat5000moffhawaii
AT glazerbt ultradiffusehydrothermalventingsupportsfeoxidizingbacteriaandmassiveumberdepositionat5000moffhawaii
AT rouxeloj ultradiffusehydrothermalventingsupportsfeoxidizingbacteriaandmassiveumberdepositionat5000moffhawaii
AT bachw ultradiffusehydrothermalventingsupportsfeoxidizingbacteriaandmassiveumberdepositionat5000moffhawaii
AT emersond ultradiffusehydrothermalventingsupportsfeoxidizingbacteriaandmassiveumberdepositionat5000moffhawaii
AT davisre ultradiffusehydrothermalventingsupportsfeoxidizingbacteriaandmassiveumberdepositionat5000moffhawaii
AT tonerbm ultradiffusehydrothermalventingsupportsfeoxidizingbacteriaandmassiveumberdepositionat5000moffhawaii
AT chancs ultradiffusehydrothermalventingsupportsfeoxidizingbacteriaandmassiveumberdepositionat5000moffhawaii
AT tebobm ultradiffusehydrothermalventingsupportsfeoxidizingbacteriaandmassiveumberdepositionat5000moffhawaii
AT staudigelh ultradiffusehydrothermalventingsupportsfeoxidizingbacteriaandmassiveumberdepositionat5000moffhawaii
AT moyercl ultradiffusehydrothermalventingsupportsfeoxidizingbacteriaandmassiveumberdepositionat5000moffhawaii