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Sensitivity of black alder (Alnus glutinosa [L.] Gaertn.) growth to hydrological changes in wetland forests at the rear edge of the species distribution

机译:黑al木(Alnus glutinosa [L.] Gaertn。)生长对物种分布后缘湿地森林水文变化的敏感性

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摘要

Functional responses of riparian species can be used as surrogates for their vulnerability to climate-driven changes. In particular, black alder (Alnus glutinosa [L.] Gaertn.) might be highly susceptible to changes in habitat at the southern limit of its biogeographical distribution in the Mediterranean Basin. In this study, the long-term environmental signal of black alder on a river system in southern Portugal was determined on trees located in different geomorphological position across the floodplain. For all sampled trees, we related radial growth to monthly precipitation, temperature and streamflow. Tree growth responded to some degree to climatic variables, while a marked reduction of tree-ring growth was observed after extreme hydrologic events leading to mechanical damage and uprooting, especially when located near and downstream on the active channel. Similarly, during the first years of life, tree-ring width tended to be narrower near to the active channel, whereas trees at far and less disturbed sites grew faster and, therefore, showed wider rings. Our results confirm the potential of black alder growth as a proxy for hydrologic conditions in a semi-arid basin, and the possibility of using the response of this species to track environmental changes. Given the ecological and economic importance of black alder, and the potential for rapid changes in its distribution, the identification of those areas the most at risk of flood damage, and the adequate management of high priority alder populations will become progressively more important over coming years.
机译:河岸物种的功能性反应可作为其易受气候变化影响的替代指标。特别是,黑Basin鱼(Alnus glutinosa [L.] Gaertn。)在地中海盆地生物地理分布的南端可能对栖息地的变化非常敏感。在这项研究中,葡萄牙南部河流系统上的黑der鱼的长期环境信号是通过洪泛区不同地貌位置的树木确定的。对于所有采样树木,我们将径向生长与月降水量,温度和水流量相关。树木的生长对气候变量有一定程度的响应,而极端的水文事件导致机械损伤和连根拔起后,尤其是当位于活动河道附近和下游时,树木的年轮生长明显减少。同样,在生命的最初几年中,活动通道附近的树木年轮宽度趋于变窄,而受干扰程度越来越低的树木生长得更快,因此显示出较宽的年轮。我们的结果证实了黑al木潜在的增长潜力,可以代替半干旱盆地的水文条件,并有可能利用该物种的反应来追踪环境变化。鉴于黑al木的生态和经济重要性以及其分布可能迅速变化的可能性,在未来几年中,确定最容易遭受洪灾破坏的地区以及对高优先级der木种群的适当管理将变得越来越重要。

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