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Environmental factors exert strong control over the climate-growth relationships of Picea abies in Central Europe

机译:环境因素对中欧云杉的气候-生长关系施加了强有力的控制

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The growth response of trees to changing climate is frequently discussed as increasing temperatures and more severe droughts become major risks for forest ecosystems. However, the ability of trees to cope with the changing climate and the effects of other environmental factors on climate-growth relationships are still poorly understood. There is thus an increasing need to understand the ability of individual trees to cope with changing climate in various environments. To improve the current understanding, a large tree-ring network covering the whole area of the Czech Republic (in 7 × 7 km grids) was utilized to investigate how the climate-growth relationships of Norway spruce are affected by 1) various geographical variables, 2) changing levels of acidic deposition, 3) soil characteristics and 4) age, tree diameter and neighbourhood competition. The period from 1930 to 2013 was divided into four, 21-year long intervals of differing levels of acidic deposition, which peaked in the 1972-1993 period. Our individual-based, spatiotemporal, multivariate analyses revealed that spruce growth was mostly affected by drought and warm summers. Drought plays the most important negative role at lower altitudes, while the positive effect of higher temperature was identified for trees at higher altitudes. Increased levels of acidic deposition, together with geographical variables, were identified as the most important factors affecting climate-growth association. Tree age, tree size and soil characteristics also significantly modulate climate-growth relationships. The importance of all environmental variables on climate-growth relationships was suppressed by acidic deposition during periods when this was at a high level; growth was significantly more enhanced by spring and summer temperatures during these periods. Our results suggest that spruce will undergo significant growth reduction under the predicted climate changes, especially at the lower altitudes which lie outside of its natural range.
机译:随着温度的升高和更严重的干旱成为森林生态系统的主要风险,人们经常讨论树木对气候变化的增长响应。但是,人们对树木应对气候变化的能力以及其他环境因素对气候-生长关系的影响的了解仍然很少。因此,越来越需要了解各个树木应对各种环境中气候变化的能力。为了增进当前的理解,我们利用覆盖整个捷克共和国整个区域(7×7 km的网格)的大型树轮网络来研究挪威云杉的气候-增长关系如何受到以下因素的影响:1)各种地理变量, 2)酸性沉积物水平的变化,3)土壤特征和4)年龄,树木直径和邻里竞争。从1930年到2013年,酸性沉积水平不同,分为四个21年的长间隔,此间隔在1972-1993年达到顶峰。我们基于个体的时空多变量分析表明,云杉的生长主要受干旱和夏季温暖的影响。在低海拔地区,干旱起着最重要的负面作用,而在高海拔地区,干旱对树木产生了积极的影响。酸性沉积物水平的增加以及地理变量被认为是影响气候与生长关联的最重要因素。树木的年龄,树木的大小和土壤特性也显着调节了气候与生长的关系。在高水平时期,酸性沉积抑制了所有环境变量对气候-增长关系的重要性。在此期间,春季和夏季的温度显着提高了生长速度。我们的结果表明,在预测的气候变化下,尤其是在自然范围以外的较低海拔地区,云杉将经历显着的生长减少。

著录项

  • 来源
    《The Science of the Total Environment》 |2017年第31期|506-516|共11页
  • 作者单位

    Institute of Botany, Czech Academy of Science, Pruhonice, Czech Republic;

    Institute of Botany, Czech Academy of Science, Pruhonice, Czech Republic,Faculty of Science, University of South Bohemia, Ceske Budijovice, Czech Republic;

    Faculty of Science, University of South Bohemia, Ceske Budijovice, Czech Republic;

    Institute of Botany, Czech Academy of Science, Pruhonice, Czech Republic,Faculty of Science, University of South Bohemia, Ceske Budijovice, Czech Republic;

    Global Change Research Institute CAS, Brno, Czech Republic;

    Biology Centre CAS, Institute of Hydrobiology, Ceske Budejovice, Czech Republic;

    Czech Hydrometeorological Institute, Prague, Czech Republic;

    Czech Geological Survey, Klarov 3,11821 Prague, Czech Republic;

    IFER - Institute of Forest Ecosystem Research, Jilove u Prahy, Czech Republic,Charles University, Faculty of Science, Department of Physical Geography and Geoecology, Albertov 6,12843 Prague, Czech Republic;

    IFER - Institute of Forest Ecosystem Research, Jilove u Prahy, Czech Republic;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Tree rings; Air pollution; Climate change; Individualistic approach; Altitude; Divergence problem;

    机译:年轮;空气污染;气候变化;个人主义的方法;高度;发散问题;

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