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Nitrogen cycling players and processes in green roof ecosystems

机译:绿色屋顶生态系统中的氮循环球员和过程

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摘要

Green roofs typically consist of an engineered soil paired with drought-tolerant plants installed on a rooftop. These emerging ecosystems are installed for the services they provide, which in many cases depend on plant performance. In terrestrial ecosystems, nitrogen (N) is most often the limiting nutrient for plant productivity and its availability is heavily influenced by soil microorganisms. However, little is known about the green roof microbiome or their influence on N availability. We employed 16S rRNA and nifH gene sequencing to assess the presence of nitrifying and nitrogen-fixing prokaryotes and their relationships to evidence of nitrification (runoff fluxes of nitrate and gaseous fluxes of nitrous oxide) and N fixation (presence of plants with symbiotic nitrogen-fixers) on 6 green roofs near Cincinnati, Ohio, USA. Our data indicate that green roofs in this region are a net source of reactive N: the majority of roofs released elevated nitrate levels in runoff relative to precipitation inputs, and also emitted N2O, although at low rates comparable to those in natural ecosystems. We also recovered abundant nifH genes affiliated with Rhizobiales and observed root nodules on leguminous plants on 5 of the 6 studied roofs, together indicating active N fixation. Our findings suggest N loss from green roofs could be alleviated by applying nitrification inhibitors, and that fostering plant-microbe N fixing communities could reduce the need for fertilizer amendments. Our data also highlight the role of microbial N cycling on green roofs and underscore the need for further work to quantify N-processing rates.
机译:绿色屋顶通常包括与安装在屋顶上的耐旱植物配对的工程土壤。这些新兴生态系统是为他们提供的服务安装的,这在许多情况下取决于植物性能。在陆地生态系统中,氮气(n)最常为植物生产率的限制营养素,其可用性受土壤微生物的严重影响。然而,关于绿色屋顶微生物组或其对N可用性的影响很少。我们使用16S rRNA和NiFH基因测序来评估硝化和氮气固定的原核生物的存在及其与硝化的证据的关系(硝酸氮渗透氧化物的氮酸盐和气态助熔剂)和N固定(具有共生氮气 - 固定剂的植物的存在)在美国辛辛那提附近的6个绿色屋顶上。我们的数据表明该区域中的绿色屋顶是反应性的净源N:大多数屋顶相对于降水输入的径流释放了硝酸盐水平升高,并且还发射了N2O,尽管在与天然生态系统中的低速率下降。我们还回复了隶属于性的尼接种基因,并在6所研究的屋顶中的5个中观察到豆科植物的根结节,在一起表明有源N固定。我们的研究结果表明,通过施用硝化抑制剂可以缓解来自绿色屋顶的N损失,培养植物微生物N固定社区可以降低肥料修正的需求。我们的数据还突出了微生物N骑自行车在绿色屋顶上的作用,并且强调需要进一步的工作来量化N处理率。

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