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Diverse Environmental Microbiota as a Tool to Augment Biodiversity in Urban Landscaping Materials

机译:各种环境微生物群作为增强城市园林绿化材料的生物多样性的工具

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摘要

Human activities typically lead to simplified urban diversity, which in turn reduces microbial exposure and increases the risk to urban dwellers from non-communicable diseases. To overcome this, we developed a microbial inoculant from forest and agricultural materials that resembles microbiota in organic soils. Three different sand materials (sieved, safety, and sandbox) commonly used in playgrounds and other public spaces were enriched with 5% of the inoculant. Skin microbiota on fingers (identified from bacterial 16S rDNA determined using Illumina MiSeq sequencing) was compared after touching non-enriched and microbial inoculant-enriched sands. Exposure to the non-enriched materials changed the skin bacterial community composition in distinct ways. When the inoculant was added to the materials, the overall shift in community composition was larger and the differences between different sand materials almost disappeared. Inoculant-enriched sand materials increased bacterial diversity and richness but did not affect evenness at the OTU level on skin. The Firmicutes/Bacteroidetes ratio was higher after touching inoculant-enriched compared to non-enriched sand materials. The relative abundance of opportunistic pathogens on skin was 40–50% before touching sand materials, but dropped to 14 and 4% after touching standard and inoculant-enriched sand materials, respectively. When individual genera were analyzed, Pseudomonas sp. and Sphingomonas sp. were more abundant after touching standard, non-enriched sand materials, while only the relative abundance of Chryseobacterium sp. increased after touching the inoculant-enriched materials. As Chryseobacterium is harmless for healthy persons, and as standard landscaping materials and normal skin contain genera that include severe pathogens, the inoculant-enriched materials can be considered safe. Microbial inoculants could be specifically created to increase the proportion of non-pathogenic bacterial taxa and minimize the transfer of pathogenic taxa. We recommend further study into the usability of inoculant-enriched materials and their effects on the bacterial community composition of human skin and on the immune response.
机译:人类活动通常导致简化的城市多样性,这反过来减少了微生物暴露,并从非传染性疾病增加了城市居民的风险。为了克服这一点,我们开发了一种来自森林和农产品的微生物孕育剂,在有机土壤中类似于微生物群。常用于操场和其他公共场所的三种不同的砂材料(筛分,安全和沙箱)富含5%的孕育剂。在触摸非富集和微生物融合的含沙砂后比较皮肤上的皮肤微生物(从使用Illumina miseq测序测定的细菌16s rdna)。暴露于非富集的材料以明显的方式改变了皮肤细菌群落组成。当粉碎剂加入到材料中时,群落组合物的总转变较大,不同的砂材料之间几乎消失的差异。富含细菌多样性和丰富性的含有植物富含的砂材料,但在皮肤上的OTU水平上没有影响均匀性。与非富集的砂材料相比,富含富含烧结的富含烧制后,压制/杆菌的比例较高。在接触砂材料之前,皮肤上的机会主义病原体的相对丰富度为40-50%,但分别在接触标准和富含素的砂材料后降至14%和4%。当分析个体属,Pseudomonas sp。和鞘粉sp。在触摸标准的非富集的砂材料后更丰富,而只有蛹Sp的相对丰度。触及富含植物的材料后增加。由于克莱杆菌对健康人无害,并且作为标准的园林绿化材料和正常皮肤含有包括严重病原体的属,富含富含物质的材料可以被认为是安全的。可以特别地产生微生物孕育剂以增加非致病性细菌征集的比例,并最大限度地减少致病群的转移。我们建议进一步研究富含富含素的材料的可用性及其对人体皮肤细菌群落组成和免疫应答的影响。

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