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Multifunctionality is affected by interactions between green roof plant species, substrate depth, and substrate type

机译:多功能性受屋顶绿化植物物种,基质深度和基质类型之间相互作用的影响

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Summary Green roofs provide ecosystem services through evapotranspiration and nutrient cycling that depend, among others, on plant species, substrate type, and substrate depth. However, no study has assessed thoroughly how interactions between these factors alter ecosystem functions and multifunctionality of green roofs. We simulated some green roof conditions in a pot experiment. We planted 20 plant species from 10 genera and five families (Asteraceae, Caryophyllaceae, Crassulaceae, Fabaceae, and Poaceae) on two substrate types (natural vs. artificial) and two substrate depths (10 cm vs. 30 cm). As indicators of major ecosystem functions, we measured aboveground and belowground biomasses, foliar nitrogen and carbon content, foliar transpiration, substrate water retention, and dissolved organic carbon and nitrates in leachates. Interactions between substrate type and depth strongly affected ecosystem functions. Biomass production was increased in the artificial substrate and deeper substrates, as was water retention in most cases. In contrast, dissolved organic carbon leaching was higher in the artificial substrates. Except for the Fabaceae species, nitrate leaching was reduced in deep, natural soils. The highest transpiration rates were associated with natural soils. All functions were modulated by plant families or species. Plant effects differed according to the observed function and the type and depth of the substrate. Fabaceae species grown on natural soils had the most noticeable patterns, allowing high biomass production and high water retention but also high nitrate leaching from deep pots. No single combination of factors enhanced simultaneously all studied ecosystem functions, highlighting that soil?¢????plant interactions induce trade-offs between ecosystem functions. Substrate type and depth interactions are major drivers for green roof multifunctionality.
机译:总结绿化屋顶通过蒸散和养分循环提供生态系统服务,这些因素尤其取决于植物种类,基质类型和基质深度。但是,尚无研究彻底评估这些因素之间的相互作用如何改变生态系统功能和绿色屋顶的多功能性。我们在盆栽实验中模拟了一些绿色屋顶条件。我们在两种基质类型(自然对人工)和两种基质深度(10厘米对30厘米)上种植了10个属和5个科(菊科,石竹科,景天科,豆科和禾本科)的20种植物。作为主要生态系统功能的指标,我们测量了地上和地下生物量,叶面氮和碳含量,叶面蒸腾作用,底物保水量以及渗滤液中溶解的有机碳和硝酸盐。基质类型和深度之间的相互作用强烈影响了生态系统功能。在大多数情况下,人工基质和更深基质中的生物量产量都增加了。相反,在人造基质中溶解的有机碳浸出较高。除了豆科物种以外,深层天然土壤中的硝酸盐淋失有所减少。最高的蒸腾速率与天然土壤有关。所有功能均由植物科或物种调节。植物效应根据观察到的功能以及基质的类型和深度而有所不同。在天然土壤上生长的豆科物种具有最明显的模式,可实现高生物量生产和高保水能力,而且还可以从深盆中浸出大量硝酸盐。没有一个因素的组合同时增强所有已研究的生态系统功能,从而突出表明土壤与植物的相互作用会引起生态系统功能之间的权衡。基材类型和深度的相互作用是屋顶绿化多功能性的主要驱动力。

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