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Size mattersa comparison of three methods to assess age- and size-dependent climate sensitivity of trees

机译:三种方法评估树木和尺寸依赖性气候敏感性的三种方法的尺寸

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Key messageChanges in tree's climate sensitivity during their ontogenetic development is best assessed with stem diameter classes, which can be calculated retrospectively from the cumulative ring width.AbstractClimate affects tree growth but the effect size can be modulated by other variables, including tree's age and size. To assess how climate sensitivity changes over the life of a tree, previous studies mostly stratified trees into age classes, while cambial ring-age stratification (age-band decomposition) was less frequently used. However, trees do not age as other organisms and arguably age is mainly a proxy for size, which in contrast to age has been shown to affect wood anatomy and physiology. Stem diameter classes, calculated from cumulative ring width, could thus facilitate a more direct assessment of size effects. Here we compare these three methods, which differ regarding how they stratify data into age/size classes. We found that using age-band decomposition and cumulative ring-width classes had major advantages over the tree-age method: (a) age and size are decoupled from other temporal changes, like atmospheric CO2 concentration or nitrogen deposition, which excludes potential biases. (b) Shifts in climate sensitivity occur earlier than estimated by the tree-age method. (c) Younger/smaller classes can be assessed. Furthermore, direct comparison supports that size, rather than age, alters climate sensitivity. Therefore, the cumulative ring-width method appears to be the best approach to assess the effect of ontogenetic changes on a tree's climate sensitivity. Understanding how climate sensitivity changes when trees get older and larger is important for forest ecology and management, climate reconstructions, global carbon models and can help to study age and height limitations of trees.
机译:树木气候敏感度的关键MessageChanges最佳地评估阀杆直径等级,可以回顾性地从累积环宽度计算.Abstractcractclight影响树的生长,但效果大小可以由其他变量调制,包括树年龄和大小。为了评估气候敏感性如何变化在树的生命中,以前的研究大多数分层为年龄阶级,而剑髓铃声分层(年龄带分解)较少使用。然而,树木不会随着其他生物而年龄,可动性年龄主要是大小的代理,其与年龄相比已被证明会影响木材解剖学和生理学。从累积环宽度计算的茎直径类可以促进更直接的尺寸效应评估。在这里,我们比较这三种方法,这有关于它们如何将数据分为年龄/尺寸类。我们发现,使用年龄分解和累积环宽度等级优于树龄方法:(a)年龄和大小与其他时间变化分离,如大气CO2浓度或氮沉积,其排除潜在的偏差。 (b)气候敏感度的转变早于树龄方法估计。 (c)可以评估年轻/较小的课程。此外,直接比较支持该大小而不是年龄,改变气候敏感性。因此,累积环宽度法似乎是评估对植入变化对树的气候敏感性影响的最佳方法。了解如何在树木变老和更大时如何变化,对森林生态和管理,气候重建,全球碳模型来说很重要,并有助于研究树木的年龄和高度限制。

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