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Interpreting the Climatic Effects on Xylem Functional Traits in Two Mediterranean Oak Species: The Role of Extreme Climatic Events

机译:解释气候变化对两种地中海栎树木质部功能性状的影响:极端气候事件的作用

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摘要

In the Mediterranean region, the widely predicted rise in temperature, change in the precipitation pattern, and increase in the frequency of extreme climatic events are expected to alter the shape of ecological communities and to affect plant physiological processes that regulate ecosystem functioning. Although change in the mean values are important, there is increasing evidence that plant distribution, survival, and productivity respond to extremes rather than to the average climatic condition. The present study aims to assess the effects of both mean and extreme climatic conditions on radial growth and functional anatomical traits using long-term tree-ring time series of two co-existing Quercus spp. from a drought-prone site in Southern Italy. In particular, this is the first attempt to apply the Generalized Additive Model for Location, Scale, and Shape (GAMLSS) technique and Bayesian modeling procedures to xylem traits data set, with the aim of (i) detecting non-linear long-term responses to climate and (ii) exploring relationships between climate extreme and xylem traits variability in terms of probability of occurrence. This study demonstrates the usefulness of long-term xylem trait chronologies as records of environmental conditions at annual resolution. Statistical analyses revealed that most of the variability in tree-ring width and specific hydraulic conductivity might be explained by cambial age. Additionally, results highlighted appreciable relationships between xylem traits and climate variability more than tree-ring width, supporting also the evidence that the plant hydraulic traits are closely linked to local climate extremes rather than average climatic conditions. We reported that the probability of extreme departure in specific hydraulic conductivity (Ks) rises at extreme values of Standardized Precipitation Index (SPI). Therefore, changing frequency or intensity of extreme events might overcome the adaptive limits of vascular transport, resulting in substantial reduction of hydraulic functionality and, hence increased incidence of xylem dysfunctions.
机译:在地中海地区,人们普遍预测温度升高,降水模式变化以及极端气候事件发生频率的增加将改变生态群落的形状并影响调节生态系统功能的植物生理过程。尽管平均值的变化很重要,但是越来越多的证据表明,植物的分布,生存和生产力是对极端情况的响应,而不是对平均气候条件的响应。本研究旨在利用两个并存的栎属物种的长期树轮时间序列,评估平均和极端气候条件对径向生长和功能解剖特征的影响。来自意大利南部干旱多发的地点。特别是,这是首次尝试将位置,比例和形状通用加法模型(GAMLSS)和贝叶斯建模程序应用于木质部特征数据集,目的是(i)检测非线性长期响应(ii)根据发生的可能性探索极端气候和木质部性状变异之间的关系。这项研究证明了长期木质部性状年表作为以年度分辨率记录环境状况的有用性。统计分析表明,树轮宽度和比水力传导率的大多数变化都可以由冈比亚年龄来解释。此外,研究结果还突出了木质部性状与气候变异之间的可观关系,而不仅仅是树环宽度,这也支持了植物水力性状与当地极端气候而不是平均气候条件紧密相关的证据。我们报告说,在标准降水指数(SPI)的极值下,比水导率(Ks)极端偏离的可能性增加。因此,改变极端事件的频率或强度可能会克服血管运输的适应性限制,从而导致液压功能的实质性降低,从而增加木质部功能障碍的发生率。

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