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A Floodplain Continuum for Atlantic Coast Rivers of the Southeastern US: Predictable Changes in Floodplain Biota along a River's Length

机译:美国东南部大西洋沿岸河流的洪泛区连续体:沿河流长度的洪泛区生物区系可预测的变化

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摘要

Floodplains are among the world's economically-most-valuable, environmentally-most-threatened, and yet conceptually-least-understood ecosystems. Drawing on concepts from existing riverine and wetland models, and empirical data from floodplains of Atlantic Coast rivers in the Southeastern US (and elsewhere when possible), we introduce a conceptual model to explain a continuum of longitudinal variation in floodplain ecosystem functions with a particular focus on biotic change. Our hypothesis maintains that major controls on floodplain ecology are either external (ecotonal interactions with uplands or stream/river channels) or internal (wetland-specific functions), and the relative importance of these controls changes progressively from headwater to mid-river to lower-river floodplains. Inputs of water, sediments, nutrients, flora, and fauna from uplands-to-floodplains decrease, while the impacts of wetland biogeochemistry and obligate wetland plants and animals within-floodplains increase, along the length of a river floodplain. Inputs of water, sediment, nutrients, and fauna from river/stream channels to floodplains are greatest mid-river, and lower either up- or down-stream. While the floodplain continuum we develop is regional in scope, we review how aspects may apply more broadly. Management of coupled floodplain-river ecosystems would be improved by accounting for how factors controlling the floodplain ecosystem progressively change along longitudinal riverine gradients.
机译:洪泛区是世界上经济上最有价值,环境最受威胁,但概念上了解最少的生态系统之一。借鉴现有河流和湿地模型的概念以及美国东南部(以及可能的其他地方)大西洋沿岸河流漫滩的经验数据,我们引入概念模型来解释漫滩生态系统功能的纵向变化的连续性,并特别关注关于生物变化。我们的假设认为,对洪泛区生态的主要控制是外部的(与高地或溪流/河道的生态相互作用)或内部的(特定于湿地的功能),并且这些控制的相对重要性从上游水位到河中游逐渐降低。河漫滩。从高地到洪泛区的水,沉积物,养分,动植物的输入减少,而沿河洪泛区的长度,湿地生物地球化学和洪泛区内专性湿地动植物的影响增加。从河流/河道到洪泛区的水,沉积物,养分和动物群的输入是最大的中游河道,而上游或下游河道较低。虽然我们开发的洪泛区连续体是区域性的,但我们回顾了各个方面的应用方式。通过考虑控制洪泛区生态系统的因素如何沿河流纵向梯度逐渐变化,将改善洪泛区-河流耦合生态系统的管理。

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