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ORIGINAL ARTICLES

Growth and survivorship of juvenile corals outplanted to degraded reef areas in Bolinao-Anda Reef Complex, Philippines

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Pages 877-884 | Received 29 Aug 2011, Accepted 08 Mar 2012, Published online: 15 Aug 2012
 

Abstract

The worldwide decline of coral reefs due to natural and anthropogenic disturbances necessitates the development of techniques to restore damaged reefs. The potential use of sexually derived coral propagules as a tool in coral reef restoration has recently been actively investigated. This study was conducted to determine growth and survivorship of juveniles of the reef-building coral Acropora valida, outplanted at a degraded reef. These juveniles were products of sexual propagation, i.e. involving coral spawning, gamete fertilization, larval rearing and settlement, and juvenile rearing, at an outdoor hatchery facility. Six-month-old juvenile corals attached to rubble inserted into plastic masonry wall plugs (‘tox’) were outplanted to three experimental bommies at the Bolinao-Anda Reef Complex, northwestern Philippines. Cumulative survival of outplants was 67.5±7.6% during a study period of 183–190 days, with no apparent difference among bommies. The juveniles grew with a 37-fold increase in ecological volume – from 1.25±0.97 cm3 (1.1±0.3 cm mean diameter) at outplantation to 46.19±35.49 cm3 (3.8±1.1 cm mean diameter) at approximately 6 months. The results of this study substantiate the use of sexually derived coral propagules for reef restoration. Cost analysis revealed sexually produced corals to be more expensive than asexual counterparts. Further developments or refinements in the culture technology for sexually derived corals for reef restoration are needed to enhance cost-effectiveness.

Published in collaboration with the University of Bergen and the Institute of Marine Research, Norway, and the Marine Biological Laboratory, University of Copenhagen, Denmark

Published in collaboration with the University of Bergen and the Institute of Marine Research, Norway, and the Marine Biological Laboratory, University of Copenhagen, Denmark

Acknowledgements

We thank M. Ponce, F. Castrence Jr, R. de Guzman, and C. Angelito for technical support, and Drs R. Dizon, E. Gomez and H. Yap for logistical support. This study was supported by the Office of the Vice Chancellor for Research and Development (University of the Philippines Diliman) and the Philippine Department of Science and Technology (through PCAARRD). This is UP-MSI contribution number 409.

Notes

Published in collaboration with the University of Bergen and the Institute of Marine Research, Norway, and the Marine Biological Laboratory, University of Copenhagen, Denmark

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