首页> 外文期刊>International Journal of Biometeorology: Journal of the International Society of Biometeorology >Patterns of leaf morphology and leaf N content in relation to winter temperatures in three evergreen tree species
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Patterns of leaf morphology and leaf N content in relation to winter temperatures in three evergreen tree species

机译:三种常绿乔木树种叶片形态和氮含量与冬季温度的关系

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The competitive equilibrium between deciduous and perennial species in a new scenario of climate change may depend closely on the productivity of leaves along the different seasons of the year and on the morphological and chemical adaptations required for leaf survival during the different seasons. The aim of the present work was to analyze such adaptations in the leaves of three evergreen species (Quercus ilex, Q. suber and Pinus pinaster) and their responses to between-site differences in the intensity of winter harshness. We explore the hypothesis that the harshness of winter would contribute to enhancing the leaf traits that allow them to persist under conditions of stress. The results revealed that as winter harshness increases a decrease in leaf size occurs in all three species, together with an increase in the content of nitrogen per unit leaf area and a greater leaf mass per unit area, which seems to be achieved only through increased thickness, with no associated changes in density. P. pinaster was the species with the most intense response to the harshening of winter conditions, undergoing a more marked thickening of its needles than the two Quercus species. Our findings thus suggest that lower winter temperatures involve an increase in the cost of leaf production of evergreen species, which must be taken into account in the estimation of the final cost and benefit balance of evergreens. Such cost increases would be more pronounced for those species that, like P. pinaster, show a stronger response to the winter cold.
机译:在新的气候变化情况下,落叶物种与多年生物种之间的竞争平衡可能紧密取决于一年中不同季节的叶片生产力以及不同季节叶片生存所需的形态和化学适应性。本工作的目的是分析三种常绿树种(栎树,Q和松树)叶片中的这种适应性,以及它们对冬季严酷程度之间站点间差异的响应。我们探讨了这样一个假说,即严酷的冬季将有助于增强叶片的性状,使它们在压力条件下持续存在。结果表明,随着冬季严酷性的提高,所有这三种物种的叶片尺寸都会减小,同时每单位叶面积的氮含量增加,每单位面积的叶重量更大,这似乎只能通过增加厚度来实现。 ,密度没有相关的变化。 P. pinaster是对冬季严酷条件反应最强烈的物种,其针叶比两个Quercus物种更明显。因此,我们的发现表明,较低的冬季温度会增加常绿树种的叶片生产成本,这在估算常绿树种的最终成本和收益平衡时必须加以考虑。对于像P. pinaster一样对冬季寒冷表现出较强反应的物种,这种成本增加将更为明显。

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