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Contrasting trait syndromes in angiosperms and conifers are associated with different responses of tree growth to temperature on a large scale

机译:被子植物和针叶树的相反性状综合症与树木生长对温度的不同反应相关

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摘要

Recent large-scale studies of tree growth in the Iberian Peninsula reported contrasting positive and negative effects of temperature in Mediterranean angiosperms and conifers. Here we review the different hypotheses that may explain these trends and propose that the observed contrasting responses of tree growth to temperature in this region could be associated with a continuum of trait differences between angiosperms and conifers. Angiosperm and conifer trees differ in the effects of phenology in their productivity, in their growth allometry, and in their sensitivity to competition. Moreover, angiosperms and conifers significantly differ in hydraulic safety margins, sensitivity of stomatal conductance to vapor-pressure deficit (VPD), xylem recovery capacity or the rate of carbon transfer. These differences could be explained by key features of the xylem such as non-structural carbohydrate content (NSC), wood parenchymal fraction or wood capacitance. We suggest that the reviewed trait differences define two contrasting ecophysiological strategies that may determine qualitatively different growth responses to increased temperature and drought. Improved reciprocal common garden experiments along altitudinal or latitudinal gradients would be key to quantify the relative importance of the different hypotheses reviewed. Finally, we show that warming impacts in this area occur in an ecological context characterized by the advance of forest succession and increased dominance of angiosperm trees over extensive areas. In this context, we examined the empirical relationships between the responses of tree growth to temperature and hydraulic safety margins in angiosperm and coniferous trees. Our findings suggest a future scenario in Mediterranean forests characterized by contrasting demographic responses in conifer and angiosperm trees to both temperature and forest succession, with increased dominance of angiosperm trees, and particularly negative impacts in pines.
机译:最近对伊比利亚半岛树木生长的大规模研究报告了温度对地中海被子植物和针叶树的正反作用的影响。在这里,我们回顾了可以解释这些趋势的不同假设,并提出观察到的该区域树木生长对温度的对比响应可能与被子植物和针叶树之间性状差异的连续性有关。被子植物和针叶树在物候方面的影响在生产力,生长异度和对竞争的敏感性方面都不同。此外,被子植物和针叶树在水力安全系数,气孔导度对蒸气压亏缺(VPD),木质部恢复能力或碳转移速率方面有显着差异。这些差异可以通过木质部的关键特征来解释,例如非结构性碳水化合物含量(NSC),木材实质部分或木材电容。我们建议,所审查的性状差异定义两种相反的生态生理策略,这些策略可以确定对温度升高和干旱的定性不同生长反应。沿高度或纬度梯度改进的对等公共花园实验将是量化所审查的不同假设的相对重要性的关键。最后,我们表明该地区的变暖影响发生在生态环境中,其特征是森林演替的发展和被子植物在大面积区域上的优势地位增加。在这种情况下,我们研究了被子植物和针叶树的树木生长对温度和水力安全裕度的响应之间的经验关系。我们的发现表明,地中海森林的未来前景将以针叶树和被子植物对温度和森林演替的人口响应形成鲜明对比,被子植物的优势度增加,尤其是对松树的负面影响。

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