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首页> 外文期刊>Oikos: A Journal of Ecology >Contrasting tree-ring growth to climate responses of Abies alba toward the southern limit of its distribution area
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Contrasting tree-ring growth to climate responses of Abies alba toward the southern limit of its distribution area

机译:树木冷杉对分布区南部极限处冷杉的气候响应的影响

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Silver fir Abies alba is an indigenous tree species present in many southern European mountain forests. Its distribution area and its adaptive capacity to climate variability, expressed in tree-ring growth series, make it a very suitable target species for studying responses to climate particularly in a complex area like the Mediterranean basin where significant changes are expected.We used a set of 52 site chronologies (784 trees) in the Italian Alps and Apennines (38.1 degrees-46.6 degrees N and 6.7 degrees-16.3 degrees E) and temperature and precipitation monthly data for the period 1900-1995. Principal component analyses of the tree-ring site network was applied to extract common modes of variability in annual radial growth among the chronologies. Climate/growth relationships and their stationarity and consistency over time were computed by means of correlation and moving correlation functions.Tree-ring chronologies show a clear distinction between the Alpine and the Mediterranean sites and a further separation of the Alpine region in western and eastern sectors. Accordingly, we found different transient and contrasting regional responses in time with the trends found in the Mediterranean sites marking a relaxation of some of the major climate limiting factors recorded prior to the last decades.Species' sensitivity to global change may result in distinct spatial responses reflecting the complexity of the Mediterranean climate, with large differences between various areas of the basin. It is still unclear if these contrasting tree-ring growth to climate responses of Abies alba are due to the corresponding separation between the Alpine and Mediterranean climate modes, the atmospheric CO2 fertilization effect, the environmentally most fitted genetic pools of the southern fir ecotypes or a combination of all factors. Climate-growth analysis based on a wide site network and on long-term weather records confirmed to be excellent tools to detect spatial and temporal variability of species' responses to climate.
机译:银冷杉冷杉(Abies alba alba)是欧洲许多南部山区森林中的一种本土树种。以年轮增长系列表示的其分布区域及其对气候变化的适应能力,使其成为研究气候响应的非常合适的目标物种,特别是在预计发生重大变化的复杂地区(例如地中海盆地)中。意大利阿尔卑斯山和亚平宁山脉(北纬38.1度至46.6度,东经6.7度至16.3度)的52个站点年代(784棵树),以及1900-1995年的月度温度和降水数据。应用树环站点网络的主成分分析来提取年代学中年径增长的常见变化模式。通过相关和移动相关函数计算了气候/增长的关系及其平稳性和随时间的一致性。树年轮年表显示出阿尔卑斯山地区和地中海地区之间的明显区别,以及西部和东部地区阿尔卑斯山地区的进一步分离。因此,我们发现了不同的瞬时和对比区域响应,以及地中海地区发现的趋势,这标志着过去几十年之前记录的一些主要气候限制因素的放松。物种对全球变化的敏感性可能导致不同的空间响应反映了地中海气候的复杂性,流域各个区域之间的差异很大。尚不清楚这些与冷杉树的气候响应形成鲜明对比的树轮生长是否是由于高山和地中海气候模式之间的相应分离,大气CO2的施肥效应,南部冷杉生态型的环境最适合的遗传库或某种原因所致。综合所有因素。基于广泛站点网络和长期天气记录的气候增长分析被证明是检测物种对气候响应的时空变化的优秀工具。

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