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Analysis of interdomain taxonomic patterns in urban street mats

机译:城市街道垫中跨域分类学模式分析

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摘要

Streets are constantly crossed by billions of vehicles and pedestrians. Their gutters, which convey stormwater and contribute to waste management, and are important for human health and well-being, probably play a number of ecological roles. Street surfaces may also represent an important part of city surface areas. To better characterize the ecology of this yet poorly explored compartment, we used filtration and DNA metabarcoding to address microbial community composition and assembly across the city of Paris, France. Diverse bacterial and eukaryotic taxonomic groups were identified, including members involved in key biogeochemical processes, along with a number of parasites and putative pathogens of human, animals and plants. We showed that the beta diversity patterns between bacterial and eukaryotic communities were correlated, suggesting interdomain associations. Beta diversity analyses revealed the significance of biotic factors (cohesion metrics) in shaping gutter microbial community assembly and, to a lesser extent, the contribution of abiotic factors (pH and conductivity). Co-occurrences analysis confirmed contrasting non-random patterns both within and between domains of life, specifically when comparing diatoms and fungi. Our results highlight microbial coexistence patterns in streets and reinforce the need to further explore biodiversity in urban ground transportation infrastructures.
机译:街道经常跨越数十亿的车辆和行人。他们的排水沟传达了雨水并有助于废物管理,对人类健康和幸福来说很重要,可能发挥了许多生态作用。街道表面还可以代表城市表面积的重要组成部分。为了更好地描述这一然而探索的隔间的生态,我们使用过滤和DNA地区来划分来解决法国巴黎市的微生物群落组成和组装。确定了各种细菌和真核分类群,包括参与关键生物地球化学过程的成员,以及许多寄生虫和人类,动物和植物的推定病原体。我们表明,细菌和真核社区之间的β多样性模式是相关的,表明跨域协会。 Beta多样性分析揭示了生物因子(凝聚度量)在成型沟槽微生物群落组装中的重要性,并在较小程度上进行了非生物因子的贡献(pH和电导率)。共发生分析证实了生命域内和在抗硅藻和真菌的域内和生命域之间的对比。我们的结果突出了街道上的微生物共存模式,加强了进一步探索城市地面运输基础设施中生物多样性的必要性。

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