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首页> 外文期刊>The Journal of Applied Ecology >Connecting variation in vegetation and stream flow: the role of geomorphic context in vegetation response to large floods along boreal rivers
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Connecting variation in vegetation and stream flow: the role of geomorphic context in vegetation response to large floods along boreal rivers

机译:连接植被的变化和流流:地貌环境的作用沿着北方植被响应大洪水河流

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1. Flooding governs riparian plant diversity along boreal rivers but the ecological role of extreme floods is only partly understood. We studied the dynamics of riparian plant composition and richness in the free-flowing Vindel River in northern Sweden, and the importance of reach type in sustaining high species richness. 2. We conducted three surveys of riparian plant species richness over a period of two decades. The first and last of these surveys were conducted 1-3 years after significant flooding and the second was carried out after a period of more moderate flooding. 3. Our results suggest that extreme floods reduce riparian plant species richness in tranquil (slow-flowing) reaches but that a subsequent period of less extreme flood events facilitates recovery. Tranquil river reaches were also more prone to invasion by ruderal species following major floods. Species richness in turbulent reaches (rapids and runs) remained constant during all surveys. One possible explanation for this pattern is that tranquil reaches become more anoxic during floods because they have more fine-grade soils with lower hydraulic conductivity than turbulent reaches. Anoxic conditions may cause stress and plant death, opening up space for colonization. Turbulent reaches maintain a better oxygenation in the root zone of plants through high groundwater turnover, reducing negative effects of prolonged floods. 4. The fact that turbulent reaches preserved species richness regardless of flood magnitude suggests that they are important for the resistance of riparian ecosystems to prolonged inundation. In contrast, tranquil reaches, with a higher water-holding capacity, might instead maintain their species richness during drought periods. 5. Synthesis and applications. Our findings highlight the importance of spatial and temporal variation in riverine plant species richness and composition. To conserve these habitats at a landscape scale, a full range of reach types is necessary to allow for recovery in reaches where species richness has declined. To maintain healthy riparian zones, river managers should focus restoration efforts on interactions between hydrology, geomorphology and biota.
机译:1. 北方河流但极端的生态作用洪水只是部分理解。河岸植物成分和动力学丰富的自由流动Vindel河瑞典北部,到达类型的重要性在维持物种丰富度高。开展了三项河岸植物种类的调查丰富的二十年。最后的这些调查进行1 - 3年之后重要的洪水和第二个进行了一段时间后更温和洪水。洪水减少河岸植物物种丰富度宁静的缓慢流动达到但随后一段那么极端洪水事件促进经济复苏。也更容易入侵杂草物种大洪水。湍流到达(急流和运行)依然存在在所有调查常数。解释这个现象的是宁静的因为洪水期间达到更加缺氧他们有更多的高级土壤较低渗透系数比动荡。缺氧条件下可能会导致压力和植物死亡,为殖民开放空间。动荡达到维持更好的氧化在植物的根区高地下水流动,减少负面影响长时间的洪水。达到保存物种丰富度无关洪水大小表明他们是重要的河岸生态系统的阻力长时间的洪水。达到更高的持水能力,反而维持物种丰富度在干旱时期。应用程序。空间和时间变化的重要性河边的植物物种丰富度和组成。在景观尺度来保存这些栖息地,全方位的类型是必要的允许达到恢复的物种丰富度的地方已经拒绝了。经理应该集中修复工作之间的交互水文地貌和生物群。

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