首页> 外文期刊>Urban Forestry & Urban Greening >Leaf gas exchanges and photosystem efficiency of the holm oak in urban green areas of Florence, Italy.
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Leaf gas exchanges and photosystem efficiency of the holm oak in urban green areas of Florence, Italy.

机译:意大利佛罗伦萨城市绿地中圣栎的叶片气体交换和光系统效率。

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摘要

In urban environments, trees are often faced with limiting physical factors at above- and below-ground levels. These factors include poor air quality, and water and soil pollution that may differ substantially from the natural environment. While numerous studies on urban climate and floristic analyses have been published, studies on the physiological performance and growth of trees in urban sites are rather scarce. They are often in contradiction with the general opinion of the growth's constraint. Generally, it is recognized that urban soils are made of poor landfill materials hampering soil water retention. Often, the soil is sealed by asphalted surfaces that prevent rain infiltration. Nevertheless, there is a gap of information to support the hypothesis by which such conditions determine plant water stress. This study will analyze the water relations and the performance of photosynthesis of Quercus ilex exemplars growing in three different conditions of urban green areas (urban park, outskirt/countryside and urban road) in the city of Florence (Italy) conducted in the year 2002. Results have evidenced a decline in photosynthetic rate in all three sites but a certain capacity of Q. ilex to acclimate to the harsh conditions of urban roads in terms of water relations, tissue elasticity and in photosystem efficiency that was higher at the beginning of summer.
机译:在城市环境中,树木通常在地上和地下都面临有限的物理因素。这些因素包括空气质量差,水和土壤污染可能与自然环境大不相同。尽管发表了许多关于城市气候和植物区系分析的研究,但关于城市地区树木的生理性能和生长的研究却很少。他们通常与增长约束的一般观点相矛盾。通常,已经认识到城市土壤是由劣质的垃圾填埋材料制成的,从而阻碍了土壤保水。通常,土壤被沥青表面密封,以防止雨水渗透。然而,仍然有信息缺口可以支持这种条件决定植物水分胁迫的假设。这项研究将分析2002年在佛罗伦萨市(意大利)进行的三种不同条件下城市绿地(城市公园,郊区/乡村和城市道路)中生长的栎属树种的水分关系和光合作用表现。结果表明,这三个地点的光合速率均下降,但Q. ilex在水关系,组织弹性和光系统效率方面具有一定的适应城市道路恶劣条件的能力,夏季开始时较高。

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