Logo image
Persistence of a reef fish metapopulation via network connectivity: theory and data
Accepted manuscript   Open access   Peer reviewed

Persistence of a reef fish metapopulation via network connectivity: theory and data

Allison G. Dedrick, Katrina A. Catalano, Michelle R. Stuart, J. Wilson White, Humberto R. Montes and Malin L. Pinsky
Ecology letters, Vol.24(6), pp.1121-1132
06/01/2021
DOI:
https://doi.org/10.7282/00000225
PMID: 33750002

Abstract

Amphiprion clarkii connectivity dispersal kernel metapopulation dynamics network persistence self‐persistence
Determining metapopulation persistence requires understanding both demographic rates and patch connectivity. Persistence is well understood in theory but has proved challenging to test empirically for marine and other species with high connectivity that precludes classic colonisation–extinction dynamics. Here, we assessed persistence for a yellowtail anemonefish (Amphiprion clarkii) metapopulation using 7 years of annual sampling data along 30 km of coastline. We carefully accounted for uncertainty in demographic rates. Despite stable population abundances through time and sufficient production of surviving offspring for replacement, the pattern of connectivity made the metapopulation unlikely to persist in isolation and reliant on immigrants from outside habitat. To persist in isolation, the metapopulation would need higher fecundity or to retain essentially all recruits produced. This assessment of persistence in a marine metapopulation shows that stable abundance alone does not indicate persistence, emphasising the necessity of assessing both demographic and connectivity processes to understand metapopulation dynamics. We assessed persistence for a yellowtail anemonefish (Amphiprion clarkii) metapopulation using seven years of annual sampling data along 30 km of coastline. Despite stable population abundances through time and sufficient production of surviving offspring for replacement, the pattern of connectivity made the metapopulation unlikely to persist in isolation and reliant on immigrants from outside habitat. This assessment of persistence in a marine metapopulation shows that stable abundance alone does not indicate persistence, emphasizing the necessity of assessing both demographic and connectivity processes to understand metapopulation dynamics.
pdf
Dedrick_et_al_2021_Persistence_reef_fish - accepted manuscript7.61 MBDownloadView
Accepted Manuscript (AM) Main text and supplementary information. Open Access
url
https://doi.org/10.1111/ele.13721View
Version of Record (VoR) Ecology letters
url
Report an accessibility issueView
Please complete a content remediation request to report an accessibility issue with a library electronic resource, website, or service.

Metrics

335 File downloads
57 Record Views

Details

Logo image