Literature DB >> 20887361

Isolation by distance across the Hawaiian Archipelago in the reef-building coral Porites lobata.

Nicholas R Polato1, Gregory T Concepcion, Robert J Toonen, Iliana B Baums.   

Abstract

There is an ongoing debate on the scale of pelagic larval dispersal in promoting connectivity among populations of shallow, benthic marine organisms. The linearly arranged Hawaiian Islands are uniquely suited to study scales of population connectivity and have been used extensively as a natural laboratory in terrestrial systems. Here, we focus on Hawaiian populations of the lobe coral Porites lobata, an ecosystem engineer of shallow reefs throughout the Pacific. Patterns of recent gene flow and population structure in P. lobata samples (n = 318) from two regions, the Hawaiian Islands (n = 10 sites) and from their nearest neighbour Johnston Atoll, were analysed with nine microsatellite loci. Despite its massive growth form, ∼ 6% of the samples from both regions were the product of asexual reproduction via fragmentation. Cluster analysis and measures of genetic differentiation indicated that P. lobata from the Hawaiian Islands are strongly isolated from those on Johnston Atoll (F(ST)  = 0.311; P < 0.001), with the descendants of recent migrants (n = 6) being clearly identifiable. Within the Hawaiian Islands, P. lobata conforms to a pattern of isolation by distance. Here, over 37% (P = 0.001) of the variation in genetic distance was explained by geographical distance. This pattern indicates that while the majority of ongoing gene flow in Hawaiian P. lobata occurs among geographically proximate reefs, inter-island distances are insufficient to generate strong population structure across the archipelago.
© 2010 Blackwell Publishing Ltd.

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Year:  2010        PMID: 20887361     DOI: 10.1111/j.1365-294X.2010.04836.x

Source DB:  PubMed          Journal:  Mol Ecol        ISSN: 0962-1083            Impact factor:   6.185


  16 in total

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Review 2.  The Three Domains of Conservation Genetics: Case Histories from Hawaiian Waters.

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4.  Testing the consistency of connectivity patterns for a widely dispersing marine species.

Authors:  L Thomas; J J Bell
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5.  Escaping paradise: Larval export from Hawaii in an Indo-Pacific reef fish, the Yellow Tang (Zebrasoma flavescens).

Authors:  Jeff A Eble; Robert J Toonen; Laurie Sorenson; Larry V Basch; Yannis P Papastamatiou; Brian W Bowen
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7.  The extended phenotypes of marine symbioses: ecological and evolutionary consequences of intraspecific genetic diversity in coral-algal associations.

Authors:  John E Parkinson; Iliana B Baums
Journal:  Front Microbiol       Date:  2014-08-25       Impact factor: 5.640

8.  Defining Boundaries for Ecosystem-Based Management: A Multispecies Case Study of Marine Connectivity across the Hawaiian Archipelago.

Authors:  Robert J Toonen; Kimberly R Andrews; Iliana B Baums; Christopher E Bird; Gregory T Concepcion; Toby S Daly-Engel; Jeff A Eble; Anuschka Faucci; Michelle R Gaither; Matthew Iacchei; Jonathan B Puritz; Jennifer K Schultz; Derek J Skillings; Molly A Timmers; Brian W Bowen
Journal:  J Mar Biol       Date:  2011

9.  Rarity and genetic diversity in Indo-Pacific Acropora corals.

Authors:  Zoe T Richards; Madeleine J H Oppen
Journal:  Ecol Evol       Date:  2012-07-06       Impact factor: 2.912

10.  Intraspecific diversity among partners drives functional variation in coral symbioses.

Authors:  John Everett Parkinson; Anastazia T Banaszak; Naomi S Altman; Todd C LaJeunesse; Iliana B Baums
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