Extreme drought triggers parallel shifts in wood anatomical and physiological traits in upper treeline of the Mediterranean Andes

IF 4.6 2区 环境科学与生态学 Q1 ECOLOGY Ecological Processes Pub Date : 2024-02-09 DOI:10.1186/s13717-024-00486-9
Luiz Santini, Dylan Craven, Daigard Ricardo Ortega Rodriguez, Manolo Trindade Quintilhan, Stephanie Gibson-Carpintero, Cristina Aravena Torres, Fidel A. Roig, Ariel A. Muñoz, Alejandro Venegas-Gonzalez
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Abstract

Treeline ecotones of Mediterranean ecoregions have been affected by the increasing intensity and severity of droughts. Even though the effect of droughts on forest dynamics has been widely documented, knowledge is relatively scarce of how extreme climate episodes affect the hydraulic structure and, therefore, the physiology of woody plants. The Mediterranean Andes have experienced an uninterrupted period of drought since 2010, including an extremely dry year in 2019 with approximately 80% rainfall deficit. Here, we investigated shifts in wood anatomical and physiological traits of Kageneckia angustifolia, an endemic treeline species, in response to this drought period. We evaluated the xylem plasticity of three K. angustifolia populations across their natural distribution (31–35° SL) based on anatomical (vessel structure and distribution) and physiological (intrinsic water-use efficiency) variables in the tree rings. We focused on the period 2000–2020 that corresponds to before the megadrought (2000–2007), (ii) megadrought (2008–2018) and (iii) hyperdrought (2019–2020). The variables were annualized and analyzed by linear mixed-effects models. Our results provide insights to the anatomical and physiological mechanisms underlying the resilience of treeline forests to persistent droughts in central Chile. We found that the extreme drought in 2019–2020 triggered shifts in vessel size and frequency that increased hydraulic safety. These significant shifts in vessel traits occurred in parallel with a decrease in pit aperture area and an increase in water-use efficiency, further increasing the resilience of K. angustifolia to extreme drought stress. Our results revealed coordinated shifts in vessel size and frequency and water-use efficiency in response to the megadrought, thereby reducing vulnerability to hydraulic failure. The apparent resilience of K. angustifolia to extreme droughts suggests that this adaptation to drought stress may increase its ability to tolerate novel climatic conditions of treeline environments of the Mediterranean Andes, although it is not clear whether these adaptations will be sufficient to persist in scenarios that predict intensification of climate stress. Finally, our results provide empirical evidence that integrating wood anatomical and physiological traits facilitates the understanding of resilience mechanisms that treeline forests develop in the face of increasing drought stress.
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极端干旱引发地中海安第斯山脉上层林木解剖和生理特征的平行变化
地中海生态区的树线生态带受到了强度和严重程度不断增加的干旱的影响。尽管干旱对森林动态的影响已被广泛记录,但关于极端气候如何影响水力结构,进而影响木本植物生理机能的知识却相对匮乏。地中海安第斯山脉自 2010 年以来经历了一段不间断的干旱期,其中 2019 年是极端干旱的一年,降雨量不足约 80%。在这里,我们研究了一种特有的树木物种 Kageneckia angustifolia 的木材解剖和生理特征在干旱期的变化。我们根据树木年轮中的解剖(血管结构和分布)和生理(内在水分利用效率)变量,评估了三个K. angustifolia种群在其自然分布区(31-35° SL)内的木质部可塑性。我们重点研究了 2000-2020 年这一时期,这一时期对应于特大干旱之前(2000-2007 年)、(ii) 特大干旱(2008-2018 年)和 (iii) 超干旱(2019-2020 年)。变量均按年计算,并通过线性混合效应模型进行分析。我们的研究结果为了解智利中部森林对持续干旱的恢复能力提供了解剖学和生理学机制。我们发现,2019-2020 年的极端干旱引发了血管大小和频率的变化,增加了水力安全性。容器特征的这些重大变化与坑孔面积的减少和水分利用效率的提高同时发生,进一步提高了 K. angustifolia 对极端干旱胁迫的适应能力。我们的研究结果表明,在应对特大干旱的过程中,容器的大小、频率和水分利用效率发生了协调变化,从而降低了对水力破坏的脆弱性。K. angustifolia对极端干旱的明显恢复能力表明,这种对干旱胁迫的适应能力可能会提高其对地中海安第斯山脉树线环境中新奇气候条件的耐受能力,尽管目前还不清楚这些适应能力是否足以在预测气候胁迫加剧的情况下持续存在。最后,我们的研究结果提供了实证证据,证明将木材解剖学和生理学特征结合起来,有助于了解树线森林在面对日益严重的干旱压力时所形成的恢复机制。
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来源期刊
Ecological Processes
Ecological Processes Environmental Science-Ecological Modeling
CiteScore
8.50
自引率
4.20%
发文量
64
审稿时长
13 weeks
期刊介绍: Ecological Processes is an international, peer-reviewed, open access journal devoted to quality publications in ecological studies with a focus on the underlying processes responsible for the dynamics and functions of ecological systems at multiple spatial and temporal scales. The journal welcomes manuscripts on techniques, approaches, concepts, models, reviews, syntheses, short communications and applied research for advancing our knowledge and capability toward sustainability of ecosystems and the environment. Integrations of ecological and socio-economic processes are strongly encouraged.
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