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Effect of overstorey trees on understorey vegetation in California (USA) ponderosa pine plantations

机译:加利福尼亚(美国)黄松林人工林中过高树木对低层植被的影响

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Understorey vegetation plays a significant role in the structure and function of forest ecosystems. Controlling understorey vegetation has proven to be an effective tool in increasing tree growth and overstorey development. However, a long-term consequence of the practice on plant diversity is not fully understood. Here, we analysed early development of overstorey and understorey vegetation of four ponderosa pine plantations established decades ago in northern California, USA. These experiments were intended to examine the effect of understorey control on tree growth, including additional effects of tree density or fertilization. Over the years, trees and understorey vegetation were measured repeatedly for height and crown width. We found that responses of understorey vegetation to overstorey varied at different developmental stages. First, understorey cover increased with overstorey cover until it peaked at a certain age or overstorey height and cover, which varied with site quality. Second, herbaceous species reached their peak earlier than shrubs; shrubs subsequently suppressed herbaceous species. Fertilizer effects on plant species diversity were site specific, and density effects were non-significant except at the highest density. These results demonstrate that both fertilization and density manipulation influenced understorey cover and diversity. Such differences are relevant in vegetation management planning efforts.
机译:底层植被在森林生态系统的结构和功能中起着重要作用。事实证明,控制林下植被是增加树木生长和过高发展的有效工具。但是,这种做法对植物多样性的长期后果尚不完全清楚。在这里,我们分析了数十年前在美国加利福尼亚州北部建立的四个美国黄松林的地上植被和下层植被的早期发育。这些实验旨在检查林下控制对树木生长的影响,包括树木密度或施肥的其他影响。多年来,反复测量树木和林下植被的高度和树冠宽度。我们发现,不同发育阶段下层植被对上层植被的反应不同。首先,下层覆盖物随着上层覆盖物的增加而增加,直到在某个年龄或上层覆盖物的高度和覆盖率达到顶峰为止,这随场地质量而变化。第二,草种比灌木更早达到高峰。灌木随后抑制了草本物种。肥料对植物物种多样性的影响是因地而异的,除了最高密度外,密度影响均不显着。这些结果表明,施肥和密度操纵都影响下层覆盖和多样性。这种差异与植被管理规划工作有关。

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