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首页> 外文期刊>The Journal of Applied Ecology >Synergistic effects of reserves and connectivity on ecological resilience
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Synergistic effects of reserves and connectivity on ecological resilience

机译:协同储备和连通性的影响生态恢复

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In light of the global extent and cascading effect of our impact on the environment, we design and manage reserves to restore biodiversity and the functioning of ecosystems. Mobile organisms link important processes across ecosystems, however, their roles in providing these services are often overlooked and we need to know how they influence ecosystem functions in reserves. Herbivorous fish play a key role in coral reef seascapes. By removing algae, they promote coral growth and recruitment, and help to increase resilience. We examined how connectivity with mangroves affected herbivore populations and benthic succession on reefs in eastern Australia. We surveyed fish assemblages, examined reef composition and characterised benthic recruitment on reefs at multiple levels of connectivity with mangroves, in a no-take reserve and areas open to fishing. Our results show that connectivity enhanced herbivore biomass and richness in reserves, and that these connectivity and reserve effects interacted to promote herbivory on protected reefs near mangroves. Connectivity and reserve protection combined to double the biomass of roving herbivorous fish on protected reefs near mangroves. The increase in grazing intensity drove a trophic cascade that reduced algal cover and enhanced coral recruitment and reef resilience. Synthesis and applications. Our findings demonstrate that ecosystem resilience can be improved by managing both reefs and adjacent habitats together as functional seascape units. By understanding how landscapes influence resilience, and explicitly incorporating these effects into conservation decision-making, we may have greater success with environmental restoration and preservation actions. Our findings demonstrate that ecosystem resilience can be improved by managing both reefs and adjacent habitats together as functional seascape units. By understanding how landscapes influence resilience, and explicitly incorporating these effects into conservation decision-making, we may have greater success with environmental restoration and preservation actions.
机译:鉴于全球范围和级联效应我们对环境的影响,我们设计和恢复生物多样性和管理储备生态系统的功能。在生态系统重要的进程,然而,他们的角色往往是在提供这些服务被忽略,我们需要知道他们的影响力生态系统功能储备。在珊瑚礁海景起到关键的作用。去除藻类,它们促进珊瑚生长招聘,帮助增加弹性。检查连接与红树林如何影响食草动物种群和底栖生物演替在澳大利亚东部珊瑚礁。组合,礁组成和检查底栖生物特征招聘在珊瑚礁上多级连接与红树林,在保护区和地区对捕鱼业的开放。我们的结果表明,连接增强食草动物生物量和丰富的外汇储备这些连接和储备的影响互动促进食草性保护红树林附近的珊瑚礁。保护生物的两倍粗纱食草鱼类保护珊瑚礁附近红树林。开一个营养级联,减少藻类覆盖和增强珊瑚招聘和珊瑚礁弹性。结果表明,生态系统弹性可以通过管理珊瑚礁和提高相邻的栖息地功能海景单位。韧性,显式地将这些影响到保护决策,我们可以有更大的成功与环境恢复和保护措施。结果表明,生态系统弹性可以通过管理珊瑚礁和提高相邻的栖息地功能海景单位。韧性,显式地将这些影响到保护决策,我们可以有更大的成功与环境恢复和保护措施。

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