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Winter precipitation effect in a mid-latitude temperature-limited environment: the case of common juniper at high elevation in the Alps

机译:中纬度温度限制环境中的冬季降水效应:以阿尔卑斯山常见的杜松为例

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Common juniper (Juniperus communis L.) is by far the most widespread conifer in the world. However, tree-ring research dealing with this species is still scarce, mainly due to the difficulty in crossdating associated with the irregular stem shape with strip-bark growth form in older individuals and the high number of missing and wedging rings. Given that many different species of the same genus have been successfully used in tree-ring investigations and proved to be reliable climate proxies, this study aims to (i) test the possibility to successfully apply dendrochronological techniques on common juniper growing above the treeline and (ii) verify the climate sensitivity of the species with special regard to winter precipitation, a climatic factor that generally does not affect tree-ring growth in all Alpine high-elevation tree species. Almost 90 samples have been collected in three sites in the central and eastern Alps, all between 2100 and 2400 m in elevation. Despite cross-dating difficulties, we were able to build a reliable chronology for each site, each spanning over 200 years. Climate-growth relationships computed over the last century highlight that juniper growth is mainly controlled by the amount of winter precipitation. The high variability of the climate-growth associations among sites, corresponds well to the low spatial dependence of this meteorological factor. Fairly long chronologies and the presence of a significant precipitation signal open up the possibility to reconstruct past winter precipitation.
机译:迄今为止,杜松(Juniperus communis L.)是世界上分布最广泛的针叶树。然而,针对该树种的树木年轮研究仍然很稀少,这主要是由于在老年人中,与具有带状树皮生长形式的不规则茎形相关的杂交困难,以及缺失和楔入环的数量很高。鉴于同属的许多不同物种已成功用于树木年轮研究并被证明是可靠的气候代理,因此本研究旨在(i)测试将树轮年代学技术成功应用于树线以上的普通杜松的可能性,以及( ii)检验物种对气候的敏感性,特别要注意冬季降水,这是一种气候因素,通常不会影响所有高山高海拔树木物种的年轮生长。在阿尔卑斯山中部和东部的三个地点收集了将近90个样本,高度都在2100至2400 m之间。尽管存在跨日期问题,但我们能够为每个站点建立可靠的时间顺序,每个站点跨越200年。上个世纪计算出的气候与增长的关系表明,杜松的生长主要受冬季降水量的控制。站点之间气候-增长关联的高变异性很好地对应于这种气象因素的低空间依赖性。相当长的年代和明显的降水信号的存在为重建过去的冬季降水提供了可能性。

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