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  4. Fast growth may impair regeneration capacity in the branching coral Acropora muricata
 
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Fast growth may impair regeneration capacity in the branching coral Acropora muricata

Journal
PloS one
Journal Volume
8
Journal Issue
8
Date Issued
2013-08-30
Author(s)
VIANNEY DENIS  
Guillaume, Mireille M M
Goutx, Madeleine
de Palmas, Stéphane
Debreuil, Julien
Baker, Andrew C
Boonstra, Roxane K
Bruggemann, J Henrich
DOI
10.1371/journal.pone.0072618
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/629652
URL
https://api.elsevier.com/content/abstract/scopus_id/84883323618
Abstract
Regeneration of artificially induced lesions was monitored in nubbins of the branching coral Acropora muricata at two reef-flat sites representing contrasting environments at Réunion Island (21°07'S, 55°32'E). Growth of these injured nubbins was examined in parallel, and compared to controls. Biochemical compositions of the holobiont and the zooxanthellae density were determined at the onset of the experiment, and the photosynthetic efficiency (Fv/Fm ) of zooxanthellae was monitored during the experiment. Acropora muricata rapidly regenerated small lesions, but regeneration rates significantly differed between sites. At the sheltered site characterized by high temperatures, temperature variations, and irradiance levels, regeneration took 192 days on average. At the exposed site, characterized by steadier temperatures and lower irradiation, nubbins demonstrated fast lesion repair (81 days), slower growth, lower zooxanthellae density, chlorophyll a concentration and lipid content than at the former site. A trade-off between growth and regeneration rates was evident here. High growth rates seem to impair regeneration capacity. We show that environmental conditions conducive to high zooxanthellae densities in corals are related to fast skeletal growth but also to reduced lesion regeneration rates. We hypothesize that a lowered regenerative capacity may be related to limited availability of energetic and cellular resources, consequences of coral holobionts operating at high levels of photosynthesis and associated growth.
Subjects
REEF-BUILDING CORALS; ENVIRONMENTAL CONTROLS; LESION REGENERATION; PARTIAL MORTALITY; REUNION-ISLAND; DAMAGE; RATES; SPP.; SIZE; POPULATIONS
Publisher
PUBLIC LIBRARY SCIENCE
Type
journal article

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