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Properties of bacterial communities attached to artificial substrates in a hypereutrophic urban river

机译:富营养化城市河流中附着在人工基质上的细菌群落的特性

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Bacterial communities of biofilms growing on artificial substrates were examined at two time periods (7 and 14?days) and two locations (lentic and lotic areas) in a hypereutrophic urban river of eastern China. Previous studies in this river network indicated that variations of microbial communities were the major factor affecting the distribution of antibiotic resistant genes highlighting the importance of understanding controls of microbial communities. Bacterial communities associated with biofilms were determined using epifluorescence microscopy and high-throughput sequencing. Results showed that sampling time and site had significant effects on the abundances of surface-associated bacteria. No significant differences were found in the number of surface-associated bacteria between two substrate types (filament vs. slide). Sequencing revealed microbial communities attached to artificial substrates in a hypereutrophic urban river were composed of 80,375 OTUs, and distributed in 47 phyla. Proteobacteria and Cyanobacteria / Chloroplast were the two dominant phyla, followed by Planctomycetes , Actinobacteria , Verrucomicrobia , Firmicutes and Bacteroidetes . Taxonomic composition showed ammonia-oxidizing microorganisms, fecal indicator bacteria and pathogens enriched in attached microbial communities, especially the ammonia-oxidizing Nitrosomonas bacteria. These results indicated that there were significant temporal and intra-river heterogeneity of attached microbial community structure, but no significant difference in community composition was detected between the two substrate types.
机译:在中国东部的富营养化城市河流中,在两个时间段(7天和14天)和两个位置(透镜和抽液区域)检查了在人造基质上生长的生物膜细菌群落。对该河流网络的先前研究表明,微生物群落的变化是影响抗生素抗性基因分布的主要因素,突显了了解微生物群落控制的重要性。使用落射荧光显微镜和高通量测序确定与生物膜相关的细菌群落。结果表明,采样时间和采样点对表面相关细菌的丰度有显着影响。两种底物类型(细丝与玻片)之间的表面相关细菌数量没有发现显着差异。测序显示,在富营养化的城市河流中,附着在人工基质上的微生物群落由80,375个OTU组成,并分布在47个门中。变形杆菌和蓝细菌/叶绿体是两个优势种,其次是扁平菌,放线菌,疣状微生物,菌毛和拟杆菌。分类学组成表明,氨氧化微生物,粪便指示菌和病原体富含附着的微生物群落,尤其是氨氧化硝化单胞菌。这些结果表明,附着的微生物群落结构存在明显的时间和河内异质性,但是在两种底物类型之间未检测到群落组成的显着差异。

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