首页> 外文期刊>Turkish Journal of Botany >Site conditions and functional traits affect regeneration dynamics of European hornbeam ( iCarpinus betulus/i L.) in forest canopy gaps
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Site conditions and functional traits affect regeneration dynamics of European hornbeam ( iCarpinus betulus/i L.) in forest canopy gaps

机译:立地条件和功能性状影响林冠间隙中欧洲鹅耳regeneration(Carpinus betulus L.)的更新动态

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European hornbeam is a deciduous tree in mixed forest ecosystems, making a valuable contribution to species richness at a community level. We investigated early-phase regeneration of saplings in canopy gaps under contrasting ecological conditions by analyzing relationships between site parameters, leaf nutrients, and light-regulated carbon and water exchange functions at ecosystem and forest levels. Using plant response variables, we also detected functional soft traits and trade-offs. Species abundance proved to be affected by the elevation and slope of the sites, air humidity, precipitation during the growing period, as well as light-dependent and light-saturated rate of the assimilation function. Relationship between leaf potassium and transpiration proved to be the most effective plant functional trait across the sites. Under seasonally fluctuating, warm-dry and cold-semidry climate conditions with limited light availability, nutrient-gas exchange trade-offs modulated sapling development. Specifically during autumn, we detected extended leaf phenology in gas exchange functions under light-amplified warm and humid climate conditions. Our results suggest that natural regeneration of European hornbeam can be improved by lower and higher irradiation adjusted by plant functional traits, depending on site-specific and climate-related ecological parameters. These conclusions can provide a scientific basis for decision-making and practical implementations in forest management.
机译:欧洲角树是混合森林生态系统中的落叶乔木,为社区一级的物种丰富做出了宝贵的贡献。通过分析生态系统和森林水平上的立地参数,叶片养分以及光调节的碳和水交换功能之间的关系,我们研究了在生态条件不同的情况下树冠间隙中树苗的早期再生。使用植物反应变量,我们还检测了功能性状和权衡。物种的丰富度受场地的海拔和坡度,空气湿度,生长期内的降水以及同化功能的光依赖和光饱和速率的影响。叶钾与蒸腾作用之间的关系被证明是跨这些部位最有效的植物功能性状。在季节性波动,温暖干燥和寒冷半干燥的气候条件下,光的可用性有限,营养气体交换的权衡调节了幼树的发育。特别是在秋季,在光放大的温暖和潮湿的气候条件下,我们检测到气体交换功能中叶片的物候期延长。我们的结果表明,取决于植物部位特性和与气候相关的生态参数,通过植物功能性状调节较低和较高的辐射,可以改善欧洲角树的自然再生。这些结论可以为森林经营决策和实际实施提供科学依据。

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