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Developing a shared understanding of the Upper Mississippi River: the foundation of an ecological resilience assessment

机译:发展对密西西比河上游的共识:生态复原力评估的基础

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The Upper Mississippi River System (UMRS) is a large and complex floodplain river ecosystem that spans the jurisdictions of multiple state and federal agencies. In support of ongoing ecosystem restoration and management by this broad partnership, we are undertaking a resilience assessment of the UMRS. We describe the UMRS in the context of an ecological resilience assessment. Our description articulates the temporal and spatial extent of our assessment of the UMRS, the relevant historical context, the valued services provided by the system, and the fundamental controlling variables that determine its structure and function. An important objective of developing the system description was to determine the simplest, adequate conceptual understanding of the UMRS. We conceptualize a simplified UMRS as three interconnected subsystems: lotic channels, lentic off-channel areas, and floodplains. By identifying controlling variables within each subsystem, we have developed a shared understanding of the basic structure and function of the UMRS, which will serve as the basis for ongoing quantitative evaluations of factors that likely contribute to the resilience of the UMRS. As we undertake the subsequent elements of a resilience assessment, we anticipate our improved understanding of interactions, feedbacks, and critical thresholds will assist natural resource managers to better recognize the systems ability to adapt to existing and new stresses.
机译:密西西比河上游河系(UMRS)是一个大型而复杂的洪泛区河流生态系统,横跨多个州和联邦机构的管辖范围。为了通过这种广泛的伙伴关系支持正在进行的生态系统恢复和管理,我们正在对UMRS进行复原力评估。我们在生态复原力评估的背景下描述UMRS。我们的描述阐明了我们对UMRS评估的时空范围,相关的历史背景,系统提供的有价值的服务以及确定其结构和功能的基本控制变量。开发系统描述的一个重要目标是确定对UMRS的最简单,充分的概念理解。我们将简化的UMRS概念化为三个相互联系的子系统:抽液通道,透镜外通道区域和洪泛区。通过识别每个子系统内的控制变量,我们对UMRS的基本结构和功能有了共识,这将成为正在进行的定量评估可能有助于UMRS弹性的因素的基础。当我们进行弹性评估的后续元素时,我们期望我们对相互作用,反馈和关键阈值的更好理解将帮助自然资源管理者更好地认识系统适应现有压力和新压力的能力。

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