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Effects of varying soil and atmospheric water deficit on water use characteristics of tropical street tree species

机译:不同土壤和大气水资源缺陷对热带街道树种的用水特性的影响

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Urban trees provide several ecosystem services, yet they are less studied compared to trees in natural ecosystems. Investigating ecophysiological responses of different tree species to seasonal conditions and drought will help determine which would succeed in urban conditions. Here, we examined water use characteristics of common species in Bangkok, Thailand: Pterocarpus indicus (Pi), Swietenia macrophylla (Sm) and Lagerstroemia speciosa (Ls), with different phenology, under seasonal variations and soil drying. Thirty small trees were potted and irrigated to &= 80% of the field capacity (theta(FC)) of the soil. Granier-type sensors were used to measure sap flux density from 23 August to 18 December 2017. Drought treatments were imposed on five trees of each species by withholding irrigation until theta reached similar to 50% theta(FC). Results suggested that water use patterns of semi-evergreen and evergreen species (Pi and Sm) were not sensitive to either seasonal or soil moisture variations while deciduous species (Ls) exhibited decreased water use and earlier stomatal closure upon soil drying in the dry season. These findings suggested that water use characteristics of the evergreen species may conserve water use regardless of atmospheric and soil moisture conditions while those of the deciduous species may result in high cost for irrigation in the wet season. Nevertheless, we believe that both evergreen and deciduous species may be selected for planting to maximize greening areas in cities throughout the year. However, knowledge of different water use characteristics of street tree species should be applied to devise strategic planning for optimized irrigation in urban greening.
机译:城市树木提供了几种生态系统服务,但与自然生态系统中的树木相比,它们的研究较少。调查不同树种对季节性条件和干旱的生态学反应将有助于确定哪些城市状况将成功。在这里,我们在曼谷,泰国的常见物种的用水特性:Pterocarpus Indicus(PI),Squietenia Macrophylla(SM)和Lagerstroemia Speciosa(LS),在季节性变化和土壤干燥中。盆栽三十只小树木并灌溉到& =土壤的现场容量(θ(fc))的80%。准备型传感器用于测量从2017年8月23日至18日到2017年12月18日的SAP助焊密度。通过扣留灌溉直至每种物种的五棵树施加干旱治疗,直至其达到类似于50%(FC)。结果表明,半常绿和常绿物种(PI和SM)的水使用模式对季节性或土壤湿度变化不敏感,而落叶物种(LS)在干燥季节的土壤干燥时表现出降低和早期的气孔闭合。这些研究结果表明,无论大气和土壤水分条件如何,常绿物种的用水特性可能会使水使用,而致命种类可能导致潮湿季节的灌溉成本高。尽管如此,我们认为可以选择常绿和落叶物种,以便在全年中种植城市的绿化区域。然而,应适用于街道种类的不同用水特征的知识,以设计对城市绿化优化灌溉的战略规划。

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