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Alteration of forest structure and ecosystem function along the Yampa River, Colorado.

机译:科罗拉多州扬帕河沿岸森林结构和生态系统功能的变化。

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The hydrologic regime of the Yampa River remains relatively unaltered, supporting some of the finest examples of riparian community types left in the Upper Colorado River Basin. However, GIS analyses suggest that the existing stands of riparian vegetation represent only a fraction of that which likely spread across the Yampa's floodplain only a century before, Anglo settlement has resulted in clearing of riparian plant communities for agricultural uses, and in extensive thinning and fragmentation of the remaining stands of forest. Previously thinned forests were found to exhibit a mixed-age stand structure as a result of subsequent asexual reproduction by Populus angustifolia.; This research examines the complex interactions between natural hydrologic and geomorphic processes and vegetation patterns within the floodplain ecosystem through the use of an ecological model, To effectively conserve the biodiversity represented within particular ecosystems, ecologists need to develop a better understanding of natural ecosystem function and the ways in which human-induced stresses have altered these systems. The model provided a tool by which biotic, hydrologic, and geomorphic data could be integrated to create testable hypotheses regarding ecosystem dynamics. Interpretation of modeling results suggests that in the vicinity of the study site, the Yampa River may be especially vulnerable to human alteration due to its geomorphic and hydrologic characteristics. In recent decades, both increases in floodpeak variability, and human clearing of riparian forest cover that has decreased streambank stability, have likely contributed toward changing trends in ecosystem function and the regeneration of riparian communities.; Model development not only led to the formation of hypotheses regarding the complex interactions between ecosystem structure and function (including complex feedback mechanisms), but also helped to define preliminary site conservation goals. An adaptive management approach will be used to test the hypotheses suggested by this model in the future. Finally, a strategy for maximizing the asexual reproduction of Populus angustifolia along the Yampa River was developed as a critical first step toward the development of a larger ecosystem restoration program.
机译:扬帕河的水文状况仍然相对未变,支持了科罗拉多河上游流域留下的河岸群落类型的一些最好的例子。但是,GIS分析表明,现有的河岸植被林分仅占一个世纪前可能扩散到扬帕河漫滩的林分的一小部分。盎格鲁定居导致人们将河岸植物群落清理为农业用途,并导致广泛的间伐和破碎化森林的其余林分。后来,由于 Angustifolia 的无性繁殖,发现先前稀疏的森林表现出混合年龄的林分结构。这项研究通过使用生态模型研究了洪泛平原生态系统中自然水文和地貌过程与植被格局之间的复杂相互作用。为了有效保护特定生态系统中所代表的生物多样性,生态学家需要对自然生态系统的功能和生态系统有一个更好的了解。人为压力改变这些系统的方式。该模型提供了一种工具,通过该工具可以整合生物,水文和地貌数据,以创建有关生态系统动态的可检验假设。对模型结果的解释表明,在研究地点附近,扬帕河由于其地貌和水文特征而特别容易受到人类的改造。在最近的几十年中,洪峰变化的增加和人类对河岸森林覆盖的清除降低了河岸的稳定性,都可能有助于改变生态系统功能的趋势和河岸社区的再生。模型开发不仅导致有关生态系统结构与功能之间复杂相互作用(包括复杂反馈机制)的假设的形成,而且还有助于确定初步的保护地目标。未来将使用一种自适应管理方法来检验该模型建议的假设。最后,制定了一项最大化扬巴河沿岸无性繁殖的策略,这是迈向更大的生态系统恢复计划的关键第一步。

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