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Tree Growth and Gas Exchange Response of Ficus benjamina 'Evergreen' Cultivated in Compacted and Remediated Urban Soils Under Water Deficit Conditions

机译:在水资源赤字条件下在压缩和修复城市土壤中栽培的榕树本杰明纳常青树的树木增长和煤气交换反应

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Trees growing in the urban environment are often subject to a variety of edaphic stressors that can lead to premature decline. As a result, soil restoration methods are required. The scoop and dump (S&D) technique of soil remediation is the practice of incorporating large volumes of organic matter (33% v/v) into the soil profile. A controlled greenhouse experiment was conducted to determine if S&D soils affected growth of Weeping Fig {Ficus benjamina 'Evergreen') trees during establishment (fourteenweeks) and gas exchange during a twenty-six-day water deficit period. S&D soils displayed decreased mean bulk density, increased accumulative gravimetric water holding capacity, and increased mean organic matter compared to unamended soils. In the remediated soils, Ficus benjamina 'Evergreen' showed a significant increase in the growth of roots, shoots, and leaf area. The increased leaf area of trees in the S&D soils caused greater transpiration on a whole-plant basis. As a result, the increased water-holding capacity in S&D soils were utilized at a statistically equal rate as the trees in unamended soils. Trees growing in both soil treatments displayed statistically equal reductions in gas exchange during the water deficit period. This study finds that urban soils treated with the S&D technique significantly reduces root-limiting compaction and increases tree biomass growth.
机译:在城市环境中生长的树木往往受各种仿拭子压力源,这可能导致过早下降。结果,需要土壤恢复方法。土壤修复的铲斗和转储(S&D)技术是将大量的有机物质(33%v / v)掺入土壤剖面的实践。进行了受控的温室实验,以确定S&D土壤是否影响了在2六天的水资源赤字期间(十四周)和天然气交换期间淋巴{Ficus Benamina'Vexgreen')树的生长。 S&D土壤显示出平均堆积密度下降,增加累积重量水持续容量,而且与未来未加工的土壤相比增加了平均有机物。在修复的土壤中,Ficus Benjamina'Evergreen'表现出根,芽和叶面积的生长显着增加。 S&D土壤中树木的增加的叶片面积导致全工厂的蒸腾。结果,S&D土壤中的水持量增加,以统计学上的平衡率利用了未来终原的土壤中的树木。两种土壤处理中生长的树木在水资源赤字期间显示出统计上的天然气交换等于降低。本研究发现,随着S&D技术治疗的城市土壤显着降低了根本限制压实并增加了树生物质生长。

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