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Island restoration to rebuild seabird populations and amplify coral reef functioning

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Island restoration to rebuild seabird populations and amplify coral reef functioning. / Dunn, Ruth E.; Benkwitt, Cassandra E.; Maury, Olivier et al.
In: Conservation Biology, Vol. 39, No. 1, 01.02.2025, p. e14313.

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Dunn RE, Benkwitt CE, Maury O, Barrier N, Carr P, Graham NAJ. Island restoration to rebuild seabird populations and amplify coral reef functioning. Conservation Biology. 2025 Feb 1;39(1):e14313. Epub 2024 Jun 18. doi: 10.1111/cobi.14313

Author

Dunn, Ruth E. ; Benkwitt, Cassandra E. ; Maury, Olivier et al. / Island restoration to rebuild seabird populations and amplify coral reef functioning. In: Conservation Biology. 2025 ; Vol. 39, No. 1. pp. e14313.

Bibtex

@article{8162e58d6e5543de955f5bf80ad5dfbc,
title = "Island restoration to rebuild seabird populations and amplify coral reef functioning",
abstract = "Mobile organisms like seabirds can provide important nutrient flows between ecosystems, but this connectivity has been interrupted by the degradation of island ecosystems. Island restoration (via invasive species eradications and the restoration of native vegetation) can reestablish seabird populations and their nutrient transfers between their foraging areas, breeding colonies, and adjacent nearshore habitats. Its diverse benefits are making island restoration increasingly common and scalable to larger islands and whole archipelagos. We identified the factors that influence breeding seabird abundances throughout the Chagos Archipelago in the Indian Ocean and conducted predictive modeling to estimate the abundances of seabirds that the archipelago could support under invasive predator eradication and native vegetation restoration scenarios. We explored whether the prey base exists to support restored seabird populations across the archipelago, calculated the nitrogen that restored populations of seabirds might produce via their guano, and modeled the cascading conservation gains that island restoration could provide. Restoration was predicted to increase breeding pairs of seabirds to over 280,000, and prey was predicted to be ample to support the revived seabird populations. Restored nutrient fluxes were predicted to result in increases in coral growth rates, reef fish biomasses, and parrotfish grazing and bioerosion rates. Given these potential cross-ecosystem benefits, our results support island restoration as a conservation priority that could enhance resilience to climatic change effects, such as sea-level rise and coral bleaching. We encourage the incorporation of our estimates of cross-ecosystem benefits in prioritization exercises for island restoration. [Abstract copyright: {\textcopyright} 2024 The Author(s). Conservation Biology published by Wiley Periodicals LLC on behalf of Society for Conservation Biology.]",
keywords = "cross-ecosystem nutrients, ecological process, energetics, habitat restoration, invasive species, resilience, tropics",
author = "Dunn, {Ruth E.} and Benkwitt, {Cassandra E.} and Olivier Maury and Nicolas Barrier and Peter Carr and Graham, {Nicholas A. J.}",
year = "2025",
month = feb,
day = "1",
doi = "10.1111/cobi.14313",
language = "English",
volume = "39",
pages = "e14313",
journal = "Conservation Biology",
issn = "0888-8892",
publisher = "Blackwell-Wiley",
number = "1",

}

RIS

TY - JOUR

T1 - Island restoration to rebuild seabird populations and amplify coral reef functioning

AU - Dunn, Ruth E.

AU - Benkwitt, Cassandra E.

AU - Maury, Olivier

AU - Barrier, Nicolas

AU - Carr, Peter

AU - Graham, Nicholas A. J.

PY - 2025/2/1

Y1 - 2025/2/1

N2 - Mobile organisms like seabirds can provide important nutrient flows between ecosystems, but this connectivity has been interrupted by the degradation of island ecosystems. Island restoration (via invasive species eradications and the restoration of native vegetation) can reestablish seabird populations and their nutrient transfers between their foraging areas, breeding colonies, and adjacent nearshore habitats. Its diverse benefits are making island restoration increasingly common and scalable to larger islands and whole archipelagos. We identified the factors that influence breeding seabird abundances throughout the Chagos Archipelago in the Indian Ocean and conducted predictive modeling to estimate the abundances of seabirds that the archipelago could support under invasive predator eradication and native vegetation restoration scenarios. We explored whether the prey base exists to support restored seabird populations across the archipelago, calculated the nitrogen that restored populations of seabirds might produce via their guano, and modeled the cascading conservation gains that island restoration could provide. Restoration was predicted to increase breeding pairs of seabirds to over 280,000, and prey was predicted to be ample to support the revived seabird populations. Restored nutrient fluxes were predicted to result in increases in coral growth rates, reef fish biomasses, and parrotfish grazing and bioerosion rates. Given these potential cross-ecosystem benefits, our results support island restoration as a conservation priority that could enhance resilience to climatic change effects, such as sea-level rise and coral bleaching. We encourage the incorporation of our estimates of cross-ecosystem benefits in prioritization exercises for island restoration. [Abstract copyright: © 2024 The Author(s). Conservation Biology published by Wiley Periodicals LLC on behalf of Society for Conservation Biology.]

AB - Mobile organisms like seabirds can provide important nutrient flows between ecosystems, but this connectivity has been interrupted by the degradation of island ecosystems. Island restoration (via invasive species eradications and the restoration of native vegetation) can reestablish seabird populations and their nutrient transfers between their foraging areas, breeding colonies, and adjacent nearshore habitats. Its diverse benefits are making island restoration increasingly common and scalable to larger islands and whole archipelagos. We identified the factors that influence breeding seabird abundances throughout the Chagos Archipelago in the Indian Ocean and conducted predictive modeling to estimate the abundances of seabirds that the archipelago could support under invasive predator eradication and native vegetation restoration scenarios. We explored whether the prey base exists to support restored seabird populations across the archipelago, calculated the nitrogen that restored populations of seabirds might produce via their guano, and modeled the cascading conservation gains that island restoration could provide. Restoration was predicted to increase breeding pairs of seabirds to over 280,000, and prey was predicted to be ample to support the revived seabird populations. Restored nutrient fluxes were predicted to result in increases in coral growth rates, reef fish biomasses, and parrotfish grazing and bioerosion rates. Given these potential cross-ecosystem benefits, our results support island restoration as a conservation priority that could enhance resilience to climatic change effects, such as sea-level rise and coral bleaching. We encourage the incorporation of our estimates of cross-ecosystem benefits in prioritization exercises for island restoration. [Abstract copyright: © 2024 The Author(s). Conservation Biology published by Wiley Periodicals LLC on behalf of Society for Conservation Biology.]

KW - cross-ecosystem nutrients

KW - ecological process

KW - energetics

KW - habitat restoration

KW - invasive species

KW - resilience

KW - tropics

U2 - 10.1111/cobi.14313

DO - 10.1111/cobi.14313

M3 - Journal article

C2 - 38887868

VL - 39

SP - e14313

JO - Conservation Biology

JF - Conservation Biology

SN - 0888-8892

IS - 1

ER -