Long term relationship between farming damselfish, predators, competitors and benthic habitat on coral reefs of Moorea Island

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作者
William E. Feeney
Frédéric Bertucci
Emma Gairin
Gilles Siu
Viliame Waqalevu
Morgan Antoine
Thierry Lison de Loma
Serge Planes
René Galzin
David Lecchini
机构
[1] Max Planck Institute for Ornithology,Department of Behavioural Ecology and Evolutionary Genetics
[2] PSL Research University: EPHE-UPVD-CNRS,Functional and Evolutionary Morphology Laboratory
[3] USR 3278 CRIOBE BP 1013,Laboratoire de Biologie Des Organismes Et Ecosystèmes Aquatiques (BOREA)
[4] University of Liege,Laboratory of Larval Rearing Management, United Graduate School of Agricultural Sciences
[5] Université Des Antilles,School of Marine Studies
[6] MNHN,undefined
[7] CNRS 8067,undefined
[8] SU,undefined
[9] IRD 207,undefined
[10] UCN,undefined
[11] Laboratoire D’Excellence “CORAIL”,undefined
[12] Kagoshima University,undefined
[13] University of the South Pacific,undefined
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摘要
Understanding the processes that shape biodiversity is essential for effective environmental management. Across the world’s coral reefs, algal farming damselfish (Stegastes sp.) modify the surrounding benthic community through their creation of algae “farms”. Using a long-term monitoring dataset (2005–2019) from Moorea Island, French Polynesia, we investigated whether the density of dusky damselfish (Stegastes nigricans) is associated with benthic habitat composition, the density of predators and/or competitors, and whether the survey area was inside or outside of a Marine Protected Area (MPA). We found no evidence that benthic cover or number of competitors were associated with dusky damselfish densities, both inside and outside MPAs. In contrast, fluctuations in dusky damselfish densities were negatively associated with the density of predators (e.g. Serranidae, Muraenidae and Scorpaenidae) in the preceding year in non-MPA areas, and both within and outside of MPAs when predator densities were high (2005–2010). These results suggest that healthy predator populations may be important for regulating the abundances of keystone species, such as algal farming damselfish, especially when predator densities are high.
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