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Disturbance of deep-sea environments induced by the M9.0 Tohoku Earthquake

The impacts of the M9.0 Tohoku Earthquake on deep-sea environment were investigated 36 and 98 days after the event. The light transmission anomaly in the deep-sea water after 36 days became atypically greater (∼35%) and more extensive (thickness ∼1500 m) near the trench axis owing to the turbulent d...

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Autores principales: Kawagucci, Shinsuke, Yoshida, Yukari T., Noguchi, Takuroh, Honda, Makio C., Uchida, Hiroshi, Ishibashi, Hidenori, Nakagawa, Fumiko, Tsunogai, Urumu, Okamura, Kei, Takaki, Yoshihiro, Nunoura, Takuro, Miyazaki, Junichi, Hirai, Miho, Lin, Weiren, Kitazato, Hiroshi, Takai, Ken
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3280601/
https://www.ncbi.nlm.nih.gov/pubmed/22355782
http://dx.doi.org/10.1038/srep00270
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author Kawagucci, Shinsuke
Yoshida, Yukari T.
Noguchi, Takuroh
Honda, Makio C.
Uchida, Hiroshi
Ishibashi, Hidenori
Nakagawa, Fumiko
Tsunogai, Urumu
Okamura, Kei
Takaki, Yoshihiro
Nunoura, Takuro
Miyazaki, Junichi
Hirai, Miho
Lin, Weiren
Kitazato, Hiroshi
Takai, Ken
author_facet Kawagucci, Shinsuke
Yoshida, Yukari T.
Noguchi, Takuroh
Honda, Makio C.
Uchida, Hiroshi
Ishibashi, Hidenori
Nakagawa, Fumiko
Tsunogai, Urumu
Okamura, Kei
Takaki, Yoshihiro
Nunoura, Takuro
Miyazaki, Junichi
Hirai, Miho
Lin, Weiren
Kitazato, Hiroshi
Takai, Ken
author_sort Kawagucci, Shinsuke
collection PubMed
description The impacts of the M9.0 Tohoku Earthquake on deep-sea environment were investigated 36 and 98 days after the event. The light transmission anomaly in the deep-sea water after 36 days became atypically greater (∼35%) and more extensive (thickness ∼1500 m) near the trench axis owing to the turbulent diffusion of fresh seafloor sediment, coordinated with potential seafloor displacement. In addition to the chemical influx associated with sediment diffusion, an influx of (13)C-enriched methane from the deep sub-seafloor reservoirs was estimated. This isotopically unusual methane influx was possibly triggered by the earthquake and its aftershocks that subsequently induced changes in the sub-seafloor hydrogeologic structures. The whole prokaryotic biomass and the development of specific phylotypes in the deep-sea microbial communities could rise and fall at 36 and 98 days, respectively, after the event. We may capture the snap shots of post-earthquake disturbance in deep-sea chemistry and microbial community responses.
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spelling pubmed-32806012012-02-16 Disturbance of deep-sea environments induced by the M9.0 Tohoku Earthquake Kawagucci, Shinsuke Yoshida, Yukari T. Noguchi, Takuroh Honda, Makio C. Uchida, Hiroshi Ishibashi, Hidenori Nakagawa, Fumiko Tsunogai, Urumu Okamura, Kei Takaki, Yoshihiro Nunoura, Takuro Miyazaki, Junichi Hirai, Miho Lin, Weiren Kitazato, Hiroshi Takai, Ken Sci Rep Article The impacts of the M9.0 Tohoku Earthquake on deep-sea environment were investigated 36 and 98 days after the event. The light transmission anomaly in the deep-sea water after 36 days became atypically greater (∼35%) and more extensive (thickness ∼1500 m) near the trench axis owing to the turbulent diffusion of fresh seafloor sediment, coordinated with potential seafloor displacement. In addition to the chemical influx associated with sediment diffusion, an influx of (13)C-enriched methane from the deep sub-seafloor reservoirs was estimated. This isotopically unusual methane influx was possibly triggered by the earthquake and its aftershocks that subsequently induced changes in the sub-seafloor hydrogeologic structures. The whole prokaryotic biomass and the development of specific phylotypes in the deep-sea microbial communities could rise and fall at 36 and 98 days, respectively, after the event. We may capture the snap shots of post-earthquake disturbance in deep-sea chemistry and microbial community responses. Nature Publishing Group 2012-02-16 /pmc/articles/PMC3280601/ /pubmed/22355782 http://dx.doi.org/10.1038/srep00270 Text en Copyright © 2012, Macmillan Publishers Limited. All rights reserved http://creativecommons.org/licenses/by-nc-nd/3.0/ This work is licensed under a 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 Article
Kawagucci, Shinsuke
Yoshida, Yukari T.
Noguchi, Takuroh
Honda, Makio C.
Uchida, Hiroshi
Ishibashi, Hidenori
Nakagawa, Fumiko
Tsunogai, Urumu
Okamura, Kei
Takaki, Yoshihiro
Nunoura, Takuro
Miyazaki, Junichi
Hirai, Miho
Lin, Weiren
Kitazato, Hiroshi
Takai, Ken
Disturbance of deep-sea environments induced by the M9.0 Tohoku Earthquake
title Disturbance of deep-sea environments induced by the M9.0 Tohoku Earthquake
title_full Disturbance of deep-sea environments induced by the M9.0 Tohoku Earthquake
title_fullStr Disturbance of deep-sea environments induced by the M9.0 Tohoku Earthquake
title_full_unstemmed Disturbance of deep-sea environments induced by the M9.0 Tohoku Earthquake
title_short Disturbance of deep-sea environments induced by the M9.0 Tohoku Earthquake
title_sort disturbance of deep-sea environments induced by the m9.0 tohoku earthquake
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3280601/
https://www.ncbi.nlm.nih.gov/pubmed/22355782
http://dx.doi.org/10.1038/srep00270
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