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首页> 外文期刊>The American Naturalist: Devoted to the Conceptual Unification of the Biological Sciences >How Vegetation and Sediment Transport Feedbacks Drive Landscape Change in the Everglades and Wetlands Worldwide
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How Vegetation and Sediment Transport Feedbacks Drive Landscape Change in the Everglades and Wetlands Worldwide

机译:植被和沉积物运输反馈如何驱动全球大沼泽地和湿地的景观变化

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Mechanisms reported to promote landscape self-organization cannot explain vegetation patterning oriented parallel to flow. Recent catastrophic shifts in Everglades landscape pattern and ecological function highlight the need to understand the feedbacks governing these ecosystems. We modeled feedback between vegetation, hydrology, and sediment transport on the basis of a decade of experimentation. Results from more than 100 simulations showed that flows just sufficient to redistribute sediment from sparsely vegetated sloughs to dense ridges were needed for an equilibrium patterned landscape oriented parallel to flow. Surprisingly, although vegetation heterogeneity typically conveys resilience, in wetlands governed by flow/sediment feedbacks it indicates metastability, whereby the landscape is prone to catastrophic shifts. Substantial increases or decreases in flow relative to the equilibrium condition caused an expansion of emergent vegetation and loss of open-water areas that was unlikely to revert upon restoration of the equilibrium hydrology. Understanding these feedbacks is critical in forecasting wetland responses to changing conditions and designing management strategies that optimize ecosystem services, such as carbon sequestration or habitat provision. Our model and new sensitivity analysis techniques address these issues and make it newly apparent that simply returning flow to predrainage conditions in the Everglades may not be sufficient to restore historic landscape patterns and processes.
机译:据报道,促进景观自组织的机制无法解释平行于水流定向的植被格局。大沼泽地地区景观格局和生态功能的近期灾难性变化凸显了对理解控制这些生态系统的反馈的需求。在十年的实验基础上,我们对植被,水文和泥沙输送之间的反馈进行了建模。来自100多个模拟的结果表明,要使平行于水流定向的平衡格局景观需要足够的水流,以将沉积物从稀疏的泥沼重新分配到茂密的山脊。出人意料的是,尽管植被异质性通常会传递复原力,但在受流量/泥沙反馈控制的湿地中,它表明亚稳态,因此景观易于发生灾难性的变化。相对于平衡条件而言,流量的显着增加或减少导致了新兴植被的扩大和开阔水域的丧失,这在恢复平衡水文学后不太可能恢复。了解这些反馈对于预测湿地对变化的条件的响应以及设计优化生态系统服务(例如碳固存或栖息地提供)的管理策略至关重要。我们的模型和新的敏感性分析技术解决了这些问题,并且使我们很明显地发现,仅仅使大沼泽地的水流恢复到排水前的状态可能不足以恢复历史景观格局和过程。

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