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Functional connectivity of coral reef fishes in a tropical seascape assessed by compound-specific stable isotope analyses

机译:通过化合物特异性稳定同位素分析评估热带海景中珊瑚礁鱼类的功能连通性

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摘要

The ecological integrity of tropical habitats, including mangroves, seagrass beds and coral reefs, is coming under increasing pressure from human activities. Many coral reef fish species are thought to use mangroves and seagrass beds as juvenile nurseries before migrating to coral reefs as adults. Identifying essential habitats and preserving functional linkages among these habitats is likely necessary to promote ecosystem health and sustainable fisheries on coral reefs. This necessitates quantitative assessment of functional connectivity among essential habitats at the seascape level. This thesis presents the development and first application of a method for tracking fish migration using amino acid (AA) 13C analysis in otoliths. In a controlled feeding experiment with fish reared on isotopically distinct diets, we showed that essential AAs exhibited minimal trophic fractionation between consumer and diet, providing a 513C record of the baseline isoscape. We explored the potential for geochemical signatures in otoliths of snapper to act as natural tags of residency in seagrass beds, mangroves and coral reefs in the Red Sea, Caribbean Sea and Eastern Pacific Ocean. The 13C values of otolith essential AAs varied as a function of habitat type and provided a better tracer of residence in juvenile nursery habitats than conventional bulk stable isotope analyses (SIA). Using our otolith AA SIA approach, we quantified the relative contribution of coastal wetlands and reef habitats to Lutjanus ehrenbergii populations on coastal, shelf and oceanic coral reefs in the Red Sea. L. ehrenbergii made significant ontogenetic migrations, traveling more than 30 km from juvenile nurseries to coral reefs and across deep open water. Coastal wetlands were important nurseries for L. ehrenbergii; however, there was significant plasticity in L. ehrenbergii juvenile habitat requirements. Seascape configuration played an important role in determining the functional connectivity of L. ehrenbergii populations in the Red Sea. The compound-specific SIA approach presented in this thesis will be particularly valuable for tracking the movement of species and life-stages not amenable to conventional tagging techniques. This thesis provides quantitative scientific support for establishing realistic population connectivity models that can be used to design effective marine reserve networks.
机译:包括红树林,海草床和珊瑚礁在内的热带生境的生态完整性正受到人类活动日益增加的压力。人们认为许多珊瑚礁鱼类在成年后迁移到珊瑚礁之前,将红树林和海草床用作幼稚园。确定必要的栖息地并保持这些栖息地之间的功能联系对于促进生态系统健康和珊瑚礁的可持续渔业可能是必要的。这就需要对海景一级基本生境之间的功能连通性进行定量评估。本文提出了一种利用耳石中氨基酸(AA)13C分析跟踪鱼类迁移的方法的开发和首次应用。在一项以同位素不同饮食饲养鱼的对照喂养实验中,我们表明必需氨基酸在消费者和饮食之间表现出最小的营养级分,提供了基线等值线的513C记录。我们探索了鲷鱼耳石中地球化学特征的潜力,以作为在红海,加勒比海和东太平洋海草床,红树林和珊瑚礁中驻留的天然标签。耳石必需氨基酸的13 C值随生境类型的变化而变化,与常规的整体稳定同位素分析(SIA)相比,它在幼稚园生境中的居住情况更好。使用我们的耳石AA SIA方法,我们量化了红海沿岸,陆架和海洋珊瑚礁上沿海湿地和珊瑚礁栖息地对Lutjanus ehrenbergii种群的相对贡献。埃伦贝格氏菌(L. ehrenbergii)发生了显着的自体迁徙,从幼稚园到珊瑚礁以及深深的开阔水域旅行了30多公里。沿海湿地是埃伦贝格氏菌的重要苗圃。但是,艾伦伯格氏菌的幼体栖息地需求具有显着的可塑性。海景构型在确定红海艾伦伯格菌种群的功能连通性中起着重要作用。本文提出的化合物特异性SIA方法对于跟踪传统标签技术不适合的物种运动和生命阶段特别有价值。本文为建立现实的人口连通性模型提供了定量的科学支持,可用于设计有效的海洋保护区网络。

著录项

  • 作者

    McMahon, Kelton Wells;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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