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首页> 外文期刊>Ecology: A Publication of the Ecological Society of America >High refuge availability on coral reefs increases the vulnerability of reef-associated predators to overexploitation
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High refuge availability on coral reefs increases the vulnerability of reef-associated predators to overexploitation

机译:珊瑚礁上的高避难所可用性会增加珊瑚礁相关捕食者对过度兴奋的脆弱性

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摘要

Refuge availability and fishing alter predator-prey interactions on coral reefs, but our understanding of how they interact to drive food web dynamics, community structure and vulnerability of different trophic groups is unclear. Here, we apply a size-based ecosystem model of coral reefs, parameterized with empirical measures of structural complexity, to predict fish biomass, productivity and community structure in reef ecosystems under a broad range of refuge availability and fishing regimes. In unfished ecosystems, the expected positive correlation between reef structural complexity and biomass emerges, but a non-linear effect of predation refuges is observed for the productivity of predatory fish. Reefs with intermediate complexity have the highest predator productivity, but when refuge availability is high and prey are less available, predator growth rates decrease, with significant implications for fisheries. Specifically, as fishing intensity increases, predators in habitats with high refuge availability exhibit vulnerability to overexploitation, resulting in communities dominated by herbivores. Our study reveals mechanisms for threshold dynamics in predators living in complex habitats and elucidates how predators can be food-limited when most of their prey are able to hide. We also highlight the importance of nutrient recycling via the detrital pathway, to support high predator biomasses on coral reefs.
机译:避难所的可用性和捕鱼改变珊瑚礁上的捕食者 - 猎物互动,但我们了解他们如何互动,以驱动食物Web动态,社区结构和不同营养群体的脆弱性尚不清楚。在这里,我们应用了基于珊瑚礁的尺寸的生态系统模型,参数化了结构复杂性的经验测量,在广泛的避难所的可用性和捕捞制度下预测珊瑚礁生态系统中的鱼生物量,生产力和群落结构。在无预测的生态系统中,珊瑚礁结构复杂性与生物量之间的预期正相关性出现,但是捕食性鱼的生产率观察到捕食性难量的非线性效果。具有中间复杂性的珊瑚礁具有最高的捕食者生产力,但是当避难所的可用性高并且猎物不太可用时,捕食者增长率降低,对渔业显着影响。具体而言,随着钓鱼强度的增加,具有高避难所可用性的栖息地的捕食者表现出对过度兴奋的脆弱性,导致由食草动物主导的社区。我们的研究揭示了生活在复杂栖息地的捕食者中的阈值动态的机制,并阐明了当大多数猎物能够隐藏时,捕食者如何有限。我们还突出了通过滴乳途径营养回收的重要性,以支持珊瑚礁上的高捕食者生物量。

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