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Implications of Macroalgal Isolation by Distance for Networks of Marine Protected Areas

HALLEY M. S. DURRANT; CHRISTOPHER P. BURRIDGE; BRENDAN P. KELAHER; NEVILLE S. BARRETT; GRAHAM J. EDGAR; MELINDA A. COLEMAN
Conservation Biology · Vol. 28, Issue 2 · pp. 438-445 · 2014

Abstract

The global extent of macroalgal forests is declining, greatly affecting marine biodiversity at broad scales through the effects macroalgae have on ecosystem processes, habitat provision, and food web support. Networks of marine protected areas comprise one potential tool that may safeguard gene flow among macroalgal populations in the face of increasing population fragmentation caused by pollution, habitat modification, climate change, algal harvesting, trophic cascades, and other anthropogenic stressors. Optimal design of protected area networks requires knowledge of effective dispersal distances for a range of macroalgae. We conducted a global meta‐analysis based on data in the published literature to determine the generality of relation between genetic differentiation and geographic distance among macroalgal populations. We also examined whether spatial genetic variation differed significantly with respect to higher taxon, life history, and habitat characteristics. We found clear evidence of population isolation by distance across a multitude of macroalgal species. Genetic and geographic distance were positively correlated across 49 studies; a modal distance of 50–100 km maintained F ST Implicaciones del Aislamiento por Distancia de Macroalgas para Redes de Áreas Marinas Protegidas

Bibliographic Information

JournalConservation Biology
PublisherWiley
Publication Date2014-04-01
Publication Year2014
Volume28
Issue2
Pages438-445
Document TypeJournal Article
Print ISSN0888-8892
eISSN1523-1739
DOI10.1111/cobi.12203
SubjectConservation Science

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://conbio.onlinelibrary.wiley.com/loi/15231739
Publisher PageOpen Publisher Page
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