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Network analysis of sea turtle movements and connectivity: A tool for conservation prioritization

  • Connie Y. Kot
    ,
  • Susanne Åkesson
    ,
  • ,
  • Diego Fernando Amorocho Llanos
    ,
  • Marina Antonopoulou
    ,
  • George H. Balazs
Research Output: Contribution to journal Article Peer-review

Open access

Publication Information

Output type

Research Output: Contribution to journal Article Peer-review

Original language

English

Pages from-to (Number of pages)

Pages 810-829 (20 pages)

Journal (Volume, Issue Number)

Diversity and Distributions (Volume 28, Issue 4)

Publication milestones

  • Accepted/In press - 2022
  • Published - 04/2022

Publication status

Published - 04/2022

ISSN

1366-9516

Publication IDs

  • Scopus: 85125069791

Abstract

Aim: Understanding the spatial ecology of animal movements is a critical element in conserving long-lived, highly mobile marine species. Analyzing networks developed from movements of six sea turtle species reveals marine connectivity and can help prioritize conservation efforts. Location: Global. Methods: We collated telemetry data from 1235 individuals and reviewed the literature to determine our dataset's representativeness. We used the telemetry data to develop spatial networks at different scales to examine areas, connections, and their geographic arrangement. We used graph theory metrics to compare networks across regions and species and to identify the role of important areas and connections. Results: Relevant literature and citations for data used in this study had very little overlap. Network analysis showed that sampling effort influenced network structure, and the arrangement of areas and connections for most networks was complex. However, important areas and connections identified by graph theory metrics can be different than areas of high data density. For the global network, marine regions in the Mediterranean had high closeness, while links with high betweenness among marine regions in the South Atlantic were critical for maintaining connectivity. Comparisons among species-specific networks showed that functional connectivity was related to movement ecology, resulting in networks composed of different areas and links. Main conclusions: Network analysis identified the structure and functional connectivity of the sea turtles in our sample at multiple scales. These network characteristics could help guide the coordination of management strategies for wide-ranging animals throughout their geographic extent. Most networks had complex structures that can contribute to greater robustness but may be more difficult to manage changes when compared to simpler forms. Area-based conservation measures would benefit sea turtle populations when directed toward areas with high closeness dominating network function. Promoting seascape connectivity of links with high betweenness would decrease network vulnerability.

Funding Details

Primary support was from the Global Ocean Biodiversity Initiative (GOBI) grant from the International Climate Initiative (IKI). The German Federal Ministry for the Environment, Nature Conservation and Nuclear Safety (BMU) supports this initiative based on a decision adopted by the German Bundestag. The authors thank the Migratory Connectivity in the Ocean (MiCO) project team, partners, collaborators, advisory board members, and data providers for their valuable contributions. Much gratitude is given to those that funded the individual research projects, helped collect information, organized efforts, and shared data for this study. All animal research was conducted under applicable federal and IACUC permits. Discussions with Ben Donnelly, Janil Miller, and Robert Schick and feedback from external reviewers greatly helped improve this study. Primary support was from the Global Ocean Biodiversity Initiative (GOBI) grant from the International Climate Initiative (IKI). The German Federal Ministry for the Environment, Nature Conservation and Nuclear Safety (BMU) supports this initiative based on a decision adopted by the German Bundestag. The authors thank the Migratory Connectivity in the Ocean (MiCO) project team, partners, collaborators, advisory board members, and data providers for their valuable contributions. Much gratitude is given to those that funded the individual research projects, helped collect information, organized efforts, and shared data for this study. All animal research was conducted under applicable federal and IACUC permits. Discussions with Ben Donnelly, Janil Miller, and Robert Schick and feedback from external reviewers greatly helped improve this study.
FundersFunding numbers
Global Ocean Biodiversity Initiative
-
IKI
-
International Climate Initiative
-
MiCO
-
BMU
-
BMUV
-

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  • SDG 14 - Life Below Water
    SDG 14 Life Below Water