城市树(Tabebuia argentea)对环境条件的敏感性高于生长在同一屋顶花园的城市棕榈(Ptychosperma macarthurii):对城市可持续用水的启示

Q3 Environmental Science
Ratchanon Ampornpitak, Prangwilai Khobpee, Weerapong Unawong, N. Leksungnoen, P. Tor-ngern
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引用次数: 0

摘要

由于城市地区的限制,屋顶园艺是增加城市绿地的流行方法。然而,在为屋顶花园的植物浇水时,应考虑屋顶的承载能力,这可能会限制屋顶植物的供水量。为了提高屋顶花园中树木的灌溉效率,我们评估了植物的水分状况,以正午叶片水势(ΨL)为代表,以及叶片气体交换参数,包括气孔导度(gs)和净光合作用(An),其中树(Tabebuia argentea, Ta)和棕榈(Ptychosperma macarthurii, Pm),主要是花园。ΨL介导调节植物水分利用和生长的gs和An对土壤水分的响应。结果表明:在不同土壤湿度条件下,Ta的ΨL随土壤湿度的变化有显著的差异,在土壤湿度低和土壤湿度高时表现为低。然而,当ΨL增加时,Ta的gs呈线性下降,表明gs对大气需求的响应更强。相比之下,在Pm中没有观察到研究变量之间的显着反应。两种植物的a均随gs值的增加而增加,当gs值达到200 mmol m-2 s-1时达到饱和,表明气孔对大气二氧化碳吸收的调节相似。有限的根系生长空间和被建筑围墙包围的地理位置导致了塔中不同寻常的响应模式。然而,我们的结果表明,Ta比Pm对环境变化更敏感,特别是大气需求的变化。此外,在白天和大气蒸汽压差小于2.6 kPa时灌溉Ta,有利于光合作用和蒸发冷却;Pm可减少灌溉频率,减少屋顶负荷,节约用水。这一初步调查表明,利用适当的灌溉方法来维护城市树木是实现城市树木效益最大化和优化城市水资源利用的关键。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Urban Tree (Tabebuia argentea) Exhibits Higher Sensitivity to Environmental Conditions than an Urban Palm (Ptychosperma macarthurii) Growing in the Same Roof Garden: An Implication for Sustainable Urban Water Use
Roof gardening is popular for increasing green space in cities due to the restricted urban areas. However, when watering plants on a roof garden, one should consider loading capacity of the roof, which may limit water supply to the plants therein. To improve the efficiency in irrigating trees in a roof garden, we evaluated plant water status, represented by midday leaf water potential (ΨL), and leaf gas exchange parameters including stomatal conductance (gs) and net photosynthesis (An) of a tree (Tabebuia argentea, Ta) and a palm (Ptychosperma macarthurii, Pm) species, which dominate the garden. The ΨL mediated responses of gs and An, regulating plant water use and growth, to soil moisture. Results showed that ΨL of Ta significantly varied with changes in soil moisture, being low at low and high soil moisture. Nevertheless, gs of Ta linearly decreased when ΨL increased, suggesting a stronger response of gs to atmospheric demand. In contrast, no significant responses among the study variables were observed in Pm. For both species, An initially increased with gs and saturated after gs reached 200 mmol m-2 s-1, indicating similar stomatal regulation on atmospheric carbon dioxide absorption. The limited space for root growth and the location with surrounded building walls contributed to unconventional response patterns observed in Ta. Nonetheless, our results suggested that Ta was more sensitive to changing environments, especially the atmospheric demand, than Pm. Additionally, Ta should be irrigated during daytime and when atmospheric vapor pressure deficit is less than 2.6 kPa to allow high photosynthesis and evaporative cooling while Pm may be watered less frequently to reduce the roof’s loading and save water. This initial investigation implied that maintaining urban trees using appropriate irrigation that is specific to tree species is the key to maximize benefits from urban trees and optimize urban water use.
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来源期刊
Applied Environmental Research
Applied Environmental Research Environmental Science-Environmental Science (all)
CiteScore
2.00
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