...
首页> 外文期刊>Global change biology >Hydrologic effects on riparian vegetation in a boreal river: an experiment testing climate change predictions
【24h】

Hydrologic effects on riparian vegetation in a boreal river: an experiment testing climate change predictions

机译:水文对北方河流河岸植被的影响:测试气候变化预测的实验

获取原文
获取原文并翻译 | 示例
           

摘要

Climate change is expected to alter the magnitude and variation of flow in streams and rivers, hence providing new conditions for riverine communities. We evaluated plant ecological responses to climate change by transplanting turfs of riparian vegetation to new elevations in the riparian zone, thus simulating expected changes in water-level variation, and monitored the results over 6 years. Turfs moved to higher elevations decreased in biomass and increased in species richness, whereas turfs transplanted to lower elevations gained biomass but lost species. Transplanted plant communities responded slowly to the new hydrologic conditions. After 6 years, biomass of transplanted turfs was statistically indistinguishable from target level controls, but species richness and species composition of transplants were intermediate between original and target levels. By using projections of future stream flow according to IPCC climate change scenarios, we predict likely changes to riparian vegetation in boreal rivers. Climate-driven hydrologic changes are predicted to result in narrower riparian zones along the studied Vindel River in northern Sweden towards the end of the 21st century. Present riparian plant communities are projected to be replaced by terrestrial communities at high elevations as a result of lower-magnitude spring floods, and by amphibious or aquatic communities at low elevations as a result of higher autumn and winter flows. Changes to riparian vegetation may be larger in other boreal climate regions: snow melt fed spring floods are predicted to disappear in southern parts of the boreal zone, which would result in considerable loss of riparian habitat. Our study emphasizes the importance of long-term ecological field experiments given that plant communities often respond slowly and in a nonlinear fashion to external pressures.
机译:预期气候变化将改变溪流和河流的流量和变化,从而为河流社区提供新的条件。我们通过将河岸植被草皮移植到河岸地区的新海拔中来评估植物对气候变化的生态响应,从而模拟预期的水位变化,并监测了6年的结果。迁移到较高海拔的草皮减少了生物量,增加了物种丰富度,而移植到较低海拔的草皮则增加了生物量,但失去了物种。移植的植物群落对新的水文条件的反应缓慢。 6年后,移植草皮的生物量与目标水平对照在统计学上没有区别,但移植物的物种丰富度和物种组成介于原始水平和目标水平之间。通过根据IPCC气候变化情景使用未来流量预测,我们预测了北方河流中河岸植被的可能变化。预计到21世纪末,由气候驱动的水文变化将导致沿瑞典北部研究的Vindel河沿河带狭窄。预计,由于春季低水位洪水,高海拔的陆地群落将取代现有的河岸植物群落;由于秋季和冬季流量增加,低海拔的两栖或水生群落将被现有的河岸植物群落所取代。在其他北方气候地区,河岸植被的变化可能更大:预计在北方地区的南部,融雪喂养的春季洪水将消失,这将导致河岸生境的大量丧失。我们的研究强调了长期生态田间试验的重要性,因为植物群落通常对外部压力反应缓慢且非线性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号