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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Identifying multiple coral reef regimes and their drivers across the Hawaiian archipelago
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Identifying multiple coral reef regimes and their drivers across the Hawaiian archipelago

机译:确定整个夏威夷群岛的多种珊瑚礁制度及其驱动因素

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Loss of coral reef resilience can lead to dramatic changes in benthic structure, often called regime shifts, which significantly alter ecosystem processes and functioning. In the face of global change and increasing direct human impacts, there is an urgent need to anticipate and prevent undesirable regime shifts and, conversely, to reverse shifts in already degraded reef systems. Such challenges require a better understanding of the human and natural drivers that support or undermine different reef regimes. The Hawaiian archipelago extends across a wide gradient of natural and anthropogenic conditions and provides us a unique opportunity to investigate the relationships between multiple reef regimes, their dynamics and potential drivers. We applied a combination of exploratory ordination methods and inferential statistics to one of the most comprehensive coral reef datasets available in order to detect, visualize and define potential multiple ecosystem regimes. This study demonstrates the existence of three distinct reef regimes dominated by hard corals, turf algae or macroalgae. Results from boosted regression trees show nonlinear patterns among predictors that help to explain the occurrence of these regimes, and highlight herbivore biomass as the key driver in addition to effluent, latitude and depth.
机译:珊瑚礁复原力的丧失会导致底栖结构发生巨大变化,通常被称为政权转移,这会大大改变生态系统的过程和功能。面对全球变化和日益增加的直接人类影响,迫切需要预见并防止不希望有的政权转移,相反,是要扭转已经退化的珊瑚礁系统的转移。这些挑战需要更好地了解支持或破坏不同珊瑚礁制度的人类和自然驱动力。夏威夷群岛的自然和人为条件范围广,为我们提供了一个独特的机会来研究多种珊瑚礁类型,它们的动力和潜在驱动因素之间的关系。我们将探索性排序方法和推论统计方法相结合,应用于最全面的珊瑚礁数据集之一,以检测,可视化和定义潜在的多种生态系统状况。这项研究表明存在以硬质珊瑚,草皮藻类或大型藻类为主的三种不同的礁区。增强型回归树的结果显示了预测变量之间的非线性模式,有助于解释这些情况的发生,并突出了草食动物生物量作为除废水,纬度和深度之外的主要驱动力。

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