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Spatial heterogeneity of mesopredator release within an oceanic island system

机译:海洋岛屿系统中中子释放的空间异质性

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摘要

Predator–prey communities are ubiquitous in ecology, but introduced predators can drive native species to extinction within island systems, prompting the eradication of such exotics. Ecological theory predicts that elimination of top-introduced predators from islands can lead to the counterintuitive decline of native prey populations through the ecological release of smaller introduced species in a process termed “mesopredator release.” We show, in accordance with mesopredator release theory and counter to conservation goals for a New Zealand island reserve, that initial eradication of cats on Little Barrier Island led to reduced breeding success of Cook's petrels, which also are vulnerable to predation by a mesopredator, the Pacific rat. The rat's impact on prey productivity varied with elevation within the island. Rat eradication was followed by a rise in petrel productivity, in support of both ecological theory and practical conservation management goals. It appears that interactions among introduced predators, native prey, and environmental gradients can drive counterintuitive and spatially heterogeneous responses to predator eradications from islands. Location-specific, ecosystem-level understanding is essential for predicting the outcomes of such restoration management techniques.
机译:捕食者-被捕食者群落在生态学中无处不在,但是引入的捕食者可以驱使本地物种在岛屿系统内灭绝,从而促使消灭这种外来物种。生态学理论预测,从岛屿中淘汰顶级引进的捕食者,可以通过在称为“中观者释放”的过程中较小的引进物种的生态释放而导致本土猎物种群的反直觉下降。根据中子释放理论并与新西兰岛屿保护区的保护目标背道而驰,我们发现,在小堡礁岛上初步消灭猫群会降低库克海燕的繁殖成功率,这也容易受到中子捕食者捕食的影响。太平洋老鼠。老鼠对猎物生产力的影响随岛内海拔的升高而变化。根除大鼠后,海燕的生产力提高,同时支持生态学理论和实际的养护管理目标。看来,引入的捕食者,本地猎物和环境梯度之间的相互作用可以驱使对从岛屿上消灭捕食者产生反直觉和空间异质性反应。特定于位置的生态系统级别的理解对于预测此类恢复管理技术的结果至关重要。

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