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Eradications du rat - Fiche finale de capitalisation - PROTEGE
SPREP Publications, Biodiversity Conservation, BRB
Available Online

PROE / SPREP

2025
Des opérations d’éradication du rat ont été mises en œuvre sur des îlots de Polynésie française et à Wallis et Futuna pour préserver les espèces et les écosystèmes natifs menacés par ces rongeurs. Les principaux objectifs sont de renforcer la résilience des communautés d’Ua Pou et de Wallis et de préserver les populations d’espèces natives. Parmi celles-ci figurent des oiseaux marins qui nichent sur les îlots de l’archipel des Marquises ainsi que des oiseaux, des tortues, des crabes et des végétaux qui composent les écosystèmes des îlots du lagon de Wallis. Au-delà de la protection des espèces directement menacées, les objectifs ont été de restaurer les équilibres et les services écosystémiques auxquels ces espèces participent, notamment par la fertilisation des récifs coralliens et des eaux côtières. Le projet a visé l’amélioration de la sécurité alimentaire, en réduisant les dommages causés aux cultures vivrières, ainsi que la diminution de risques de maladies véhiculées par les rats, telle la leptospirose. Grâce à la formation et l’implication des acteurs locaux, ainsi qu’au recours à des techniques innovantes, trois îlots de l’archipel des Marquises et 13 îlots du lagon de Wallis sont désormais exempts de la présence du rat. Bien que tous les bénéfices écologiques de ces opérations ne soient pas encore pleinement connus, une recrudescence des populations de tortues et de crabes a déjà été observée sur les îlots de Wallis. FICHE FINALE DE CAPITALISATION DU PROJET PROTEGE, financé par l'Union Européenne.
Ua Pou Islets Pacific Rat Eradication - PROTEGE Final Monitoring and Biosecurity Report
SPREP Publications, Biodiversity Conservation, BRB
Available Online

Cranwell, S. (Birdlife International)

,

Withers, T. (SOP Manu)

2024
The Ua Pou islets Pacific rat eradication operation was undertaken in August-September 2023. It attempted a global first of aerially broadcasting rodent bait by drone from a small ship in open sea across the islets of Motu Tākaè, Motu Oa, and Motu Mokohe, at Ua Pou in the Marquesas Islands. The aerial bait application resulted in only two of the three islands having bait successfully applied across their entirety, nonetheless, monitoring 12 months later has confirmed Motu Oa and Motu Tākaè are rat free as is the partially isolated section of Motu Mokohe that was also baited. The eradication success is supported by the establishment of biosecurity knowledge and practices throughout the Ua Pou communities. The results of the seabird and other environmental monitoring will help sustain a commitment over time, as well as benefiting the wider conservation community. The operation demonstrated that drones could be operated off a boat for rodent eradication purposes but was constrained by the consistently strong winds and swell conditions. A larger vessel with a deeper draught is recommended for similar operations in the future and would likely increase the number of flyable days and improve the ease with which take-offs and landings are undertaken by the drone pilots.
Canna seabird recovery project: 10 years on
Biodiversity Conservation, BRB
Available Online
2019
Rats were eradicated in 2005–2006 from the islands of Canna and Sanday, Scotland (total area 1,320 ha). Poison bait was laid from December 2005 onwards and the last rat was killed in February 2006. An intensive period of monitoring over the next two years con?rmed that no rats remained on the islands. Seabirds have been monitored on Canna for nearly 50 years and some species have shown good evidence of recovery since the eradication. Other species have not recovered and this may have been due to mortality caused by food shortages or storm events which have been impacting seabirds in the region. These regional changes in pressures affecting the seabird populations make the interpretation of the impacts of the rat eradication programme much more difficult. Atlantic puffins, formerly con?ned to off shore stacks, have recolonised sites on the mainland of Canna and a count of over 2,000 was recorded in 2016. Manx shearwaters, which had ceased nesting in the monitored colony have made a slow recovery to one or two pairs in 2016. Productivity has also increased from a low of 0.2 chicks per nest in the 1990s to 0.74 in 2017. European shags nesting in boulder colonies were most susceptible to rat predation. One such colony has recovered from 45 nests in 2005 to 75 in 2016 and productivity increased from less than 0.7 chicks per nest to an average of 1.6 following eradication. Populations of shags nesting in cliff locations have shown no recovery or have declined. Mew gulls, which nest along the shoreline, have increased from ?ve to over 30 pairs. Other seabirds, such as common guillemots and black-legged kittiwakes, have shown no clear trends and are probably affected by other factors. Rabbit populations have increased on both islands, reaching an estimated 15,500 animals in 2013 that were causing considerable damage through grazing, erosion, and disturbance of archaeological remains. It is unclear whether the increase in rabbit numbers can be attributed to rat eradication. An intensive control programme has brought the rabbit population under control. While some seabirds have responded positively to the rat eradication, the response of some has been slow and others have not responded, probably as a result of regional pressures on their survival. It is important that monitoring of both seabirds and rabbits continues to track the success of this important seabird colony.
The impacts of introduced house mice on the breeding success of nesting seabirds on Gough Island
BRB
Available Online

Bond, Alexander L.

,

Caravaggi, Anthony

,

Cooper, John

,

Cuthber, Richard J.

,

Ryan, Peter G.

2018
Invasive species are the main threat to island biodiversity; seabirds are particularly vulnerable and are one of the most threatened groups of birds. Gough Island, a UNESCO World Heritage Site in the South Atlantic Ocean, is an Important Bird and Biodiversity Area, and one of the most important seabird colonies globally. Invasive House Mice Mus musculus depredate eggs and chicks of most seabird species on the island, but the extent of their impact has not been quantified. We used field data and bootstrapped normal distributions to estimate breeding success and the number of surviving chicks for 10 seabird species on Gough Island, and compared estimates with those of analogous species from predator-free islands. We examined the effects of season and nest-site location on the breeding success of populations on Gough Island, predicting that the breeding success of Gough birds would be lower than that of analogues, particularly among small burrownesting species. We also predicted that winter-breeding species would exhibit lower breeding success than summer-breeding species, because mice have fewer alternative food sources in winter; and below-ground nesters would have lower breeding success than surface nesters, as below-ground species are smaller so their chicks are easier prey for mice. We did indeed find that seabirds on Gough Island had low breeding success compared with analogues, losing an estimated 1 739 000 (1 467 000–2 116 000) eggs/ chicks annually. Seven of the 10 focal species on Gough Island had particularly high chick mortality and may have been subject to intense mouse predation. Below-ground and winter breeders had lower breeding success than surface- and summer-breeders. MacGillivray’s Prion Pachyptila macgillivrayi, Atlantic Petrel Pterodroma incerta and Tristan Albatross Diomedea dabbenena are endemic or near-endemic to Gough Island and are likely to be driven to extinction if invasive mice are not removed.
The history of the aerial application of rodenticide in New Zealand
Biodiversity Conservation, BRB
Available Online

Broome, K.

,

Garden, P.

,

McClelland, P.

2019
Following the incursion of rats (Rattus rattus) on Taukihepa (Big South Cape Island; 93.9 km²) off southern New Zealand in 1963, and the subsequent extirpation of several endemic species, the New Zealand Wildlife Service realised that, contrary to general belief at the time, introduced predators do not reach a natural balance with native species and that a safe breeding habitat for an increasing number of ‘at risk’ species was urgently needed. Off shore islands offered the best option for providing predator free habitat but there was a limited number of predator-free islands available and most were very small. Eradicating rodents on larger islands to provide a wider range and greater area of habitats was required and hand treating these larger areas using trapping and hand application of toxicants, the only methods available at the time, proved problematic and often impossible. Helicopters had been used to distribute bait for the control of rabbits and brushtail possums in the past but eradication of any particular predator species was considered ‘not feasible’. The development of a GPS-based aircraft guidance system, a suitable bait product, specialised bait delivery systems and second-generation anti-coagulant toxicants changed that. Now islands as large as South Georgia (3,900 km²) have been treated using this method