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首页> 外文期刊>Rangeland Ecology & Management >State-and-Transition Models, Thresholds, and Rangeland Health: ASynthesis of Ecological Concepts and Perspectives
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State-and-Transition Models, Thresholds, and Rangeland Health: ASynthesis of Ecological Concepts and Perspectives

机译:状态和过渡模型,阈值和牧场健康:生态概念和观点的综合

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This article synthesizes the ecological concepts and perspectives underpinning the development and application of state-and-transition models, thresholds, and rangeland health. Introduction of the multiple stable state concept paved the way for the development of these alternative evaluation procedures by hypothesizing that multiple stable plant communities can potentially occupy individual ecological sites. Vegetation evaluation procedures must be able to assess continuous and reversible as well as discontinuous and nonreversible vegetation dynamics because both patterns occur and neither pattern alone provides a complete assessment of vegetation dynamics on all rangelands. Continuous and reversible vegetation dynamics prevail within stable vegetation states, whereas discontinuous and nonreversible dynamics occur when thresholds are surpassed and one stable state replaces another. State-and-transition models can accommodate both categories of vegetation dynamics because they represent vegetation change along several axes, including fire regimes, weather variability, and management prescriptions, in addition to the succession-grazing axis associated with the traditional range model. Ecological thresholds have become a focal point of state-and-transition models because threshold identification is necessary for recognition of the various stable plant communities than can potentially occupy an ecological site. Thresholds are difficult to define and quantify because they represent a complex series of interacting components, rather than discrete boundaries in time and space. Threshold components can be categorized broadly as structural and functional based on compositional and spatial vegetation attributes, and on modification of ecosystem processes, respectively. State-and-transition models and rangeland health procedures have developed in parallel, rather than as components of an integrated framework, because the two procedures primarily rely on structural and functional thresholds, respectively. It may be prudent for rangeland professionals to consider the introduction of these alternative evaluation procedures as the beginning of a long-term developmental process, rather than as an end point marked by the adoption of an alternative set of standardized evaluation procedures.
机译:本文综合了支持状态转换模型,阈值和牧场健康发展和应用的生态概念和观点。多重稳定状态概念的引入通过假设多个稳定植物群落可能占据单个生态位点,为开发这些替代评估程序铺平了道路。植被评估程序必须能够评估连续的和可逆的以及不连续的和不可逆的植被动态,因为这两种模式都会发生,而且任何一种模式都无法完全评估所有牧场的植被动态。连续和可逆的植被动力学在稳定的植被状态中占主导地位,而当阈值被超过并且一个稳定的状态替代了另一个稳定状态时,就会出现不连续和不可逆的动力学。状态和过渡模型可以适应两种类型的植被动态,因为它们代表着沿多个轴的植被变化,除了与传统范围模型相关的连续掠食轴外,还包括火灾,气候变化和管理规定。生态阈值已成为状态转换模型的焦点,因为阈值识别对于识别各种稳定植物群落是必不可少的,而不是可能占据一个生态场所。阈值很难定义和量化,因为它们代表了一系列复杂的交互组件,而不是时间和空间上的离散边界。可根据成分和空间植被属性以及生态系统过程的修改,将阈值成分大致分为结构和功能两类。状态转换模型和牧场卫生程序是并行开发的,而不是作为集成框架的组成部分,因为这两个程序分别主要依赖于结构和功能阈值。对于牧场专业人士而言,考虑将这些替代评估程序的引入视为长期发展过程的开始,而不是以采用另一套标准化评估程序为标志的终点考虑为谨慎。

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