Mapping the resilience of chemosynthetic communities in hydrothermal vent fields

Hydrothermal vent fields are vulnerable to natural disturbances, such as volcanic activity, and are currently being considered as targets for mineral mining. Local vent communities are linked by pelagic larval dispersal and form regional metacommunities, nested within a number of biogeographic provi...

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Published in:Scientific reports Vol. 8; no. 1; pp. 9364 - 8
Main Authors: Suzuki, Kenta, Yoshida, Katsuhiko, Watanabe, Hiromi, Yamamoto, Hiroyuki
Format: Journal Article
Language:English
Published: London Nature Publishing Group UK 19-06-2018
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Abstract Hydrothermal vent fields are vulnerable to natural disturbances, such as volcanic activity, and are currently being considered as targets for mineral mining. Local vent communities are linked by pelagic larval dispersal and form regional metacommunities, nested within a number of biogeographic provinces. Larval supply depends on the connectivity of the dispersal networks, and affects recoverability of communities from disturbances. However, it is unclear how the dispersal networks contribute to recoverability of local communities. Here, we integrated a population dynamics model and estimation of large scale dispersal networks. By simulating disturbances to vent fields, we mapped recoverability of communities in 131 hydrothermal vent fields in the western Pacific Ocean. Our analysis showed substantial variation in recovery time due to variation in regional connectivity between known vent fields, and was not qualitatively affected by potential larval recruitment from unknown vent fields. In certain cases, simultaneous disturbance of a series of vent fields either delayed or wholly prevented recovery. Our approach is applicable to a dispersal network estimated from genetic diversity. Our method not only reveals distribution of recoverability of chemosynthetic communities in hydrothermal vent fields, but is also a practical tool for planning conservation strategies.
AbstractList Hydrothermal vent fields are vulnerable to natural disturbances, such as volcanic activity, and are currently being considered as targets for mineral mining. Local vent communities are linked by pelagic larval dispersal and form regional metacommunities, nested within a number of biogeographic provinces. Larval supply depends on the connectivity of the dispersal networks, and affects recoverability of communities from disturbances. However, it is unclear how the dispersal networks contribute to recoverability of local communities. Here, we integrated a population dynamics model and estimation of large scale dispersal networks. By simulating disturbances to vent fields, we mapped recoverability of communities in 131 hydrothermal vent fields in the western Pacific Ocean. Our analysis showed substantial variation in recovery time due to variation in regional connectivity between known vent fields, and was not qualitatively affected by potential larval recruitment from unknown vent fields. In certain cases, simultaneous disturbance of a series of vent fields either delayed or wholly prevented recovery. Our approach is applicable to a dispersal network estimated from genetic diversity. Our method not only reveals distribution of recoverability of chemosynthetic communities in hydrothermal vent fields, but is also a practical tool for planning conservation strategies.
ArticleNumber 9364
Author Watanabe, Hiromi
Yoshida, Katsuhiko
Yamamoto, Hiroyuki
Suzuki, Kenta
Author_xml – sequence: 1
  givenname: Kenta
  surname: Suzuki
  fullname: Suzuki, Kenta
  email: suzuki.kenta@nies.go.jp
  organization: Center for Environmental Biology and Ecosystem Studies, National Institute for Environmental Studies
– sequence: 2
  givenname: Katsuhiko
  surname: Yoshida
  fullname: Yoshida, Katsuhiko
  organization: Center for Environmental Biology and Ecosystem Studies, National Institute for Environmental Studies
– sequence: 3
  givenname: Hiromi
  surname: Watanabe
  fullname: Watanabe, Hiromi
  organization: Research and Development (R&D) Center for Submarine Resources, Japan Agency for Marine-Earth Science and Technology
– sequence: 4
  givenname: Hiroyuki
  surname: Yamamoto
  fullname: Yamamoto, Hiroyuki
  organization: Research and Development (R&D) Center for Submarine Resources, Japan Agency for Marine-Earth Science and Technology
BackLink https://www.ncbi.nlm.nih.gov/pubmed/29921902$$D View this record in MEDLINE/PubMed
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Snippet Hydrothermal vent fields are vulnerable to natural disturbances, such as volcanic activity, and are currently being considered as targets for mineral mining....
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Gene mapping
Genetic diversity
Humanities and Social Sciences
Local communities
multidisciplinary
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Science (multidisciplinary)
Title Mapping the resilience of chemosynthetic communities in hydrothermal vent fields
URI https://link.springer.com/article/10.1038/s41598-018-27596-7
https://www.ncbi.nlm.nih.gov/pubmed/29921902
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