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首页> 外文期刊>FEMS Microbiology Ecology >Spatial and temporal characterization of epiphytic microbial communities associated with Eurasian watermilfoil: a highly invasive macrophyte in North America
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Spatial and temporal characterization of epiphytic microbial communities associated with Eurasian watermilfoil: a highly invasive macrophyte in North America

机译:与欧亚水利伞有关的骨骺微生物社区的空间和时间特征:北美高度侵入性宏观物质

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摘要

Bacterial communities that inhabit the surface of aquatic plants are thought to play a critical role in relation to host fitness and function. However, little is known about their structure and dynamics in comparison with those of bacterioplankton. In this study, we performed a comprehensive spatial and temporal characterization of epibacterial communities associated with Eurasian watermilfoil (EWM; Myriophyllum spicatum), an invasive macrophyte, which has established itself in thousands of lakes across North America. EWM samples were collected from 10 lakes in Minnesota, once a month, for six consecutive months, along with surrounding water and sediment. High-throughput DNA sequencing analyses, performed on all samples (n = 522) using the Illumina platform, indicated that EWM-associated epibacterial communities were distinct from those found in water and sediment. EWM-specific microbiota was comprised of operational taxonomic units classified to the families Rhodobacteraceae, Comamonadaceae, Cyanobacteria Subsection I Family I, Aeromonadaceae, Planctomycetaceae, Sphingomonadaceae and Verrucomicrobiaceae. In addition, several identified taxa were overrepresented in EWM samples when compared to water and sediment. Amongst all the environmental factors examined, water temperature had the greatest influence on epibacterial community structure. Our findings suggest that EWM harbor specific, but temporally adapted, epibacterial communities that are potentially involved in host-microbe interactions.
机译:居住在水生植物表面的细菌群落被认为在与宿主健身和功能有关中发挥着关键作用。然而,与细菌血糖植物相比,对其结构和动力学知之甚少。在这项研究中,我们对与欧亚西方水利油(EWM; Myriophyllum Spicatum)相关的表现综合性空间和时间表征,一种侵入性宏观物质,这已经在北美的数千湖中建立了成千上万的羊肉。 EWM样品从明尼苏达州的10个湖泊收集,连续六个月六个月,以及周围的水和沉积物。在使用Illumina平台上对所有样品(n = 522)进行的高通量DNA测序分析表明EWM相关的表现群落与水和沉积物中的那些不同。特定于EWM的微生物群由分类为乳菌科的运营分类单位,Comamonadaceae,Cyanobacteria款I,AeroMonadaceae,Planctomycetaceae,Sphingomonadaceae和VerrucoMicrobiaceae。此外,与水和沉积物相比,在EWM样品中,几个鉴定的分类群是超越的。在所检查的所有环境因素中,水温对表位群落结构的影响最大。我们的研究结果表明,EWM港的特异性,但时间适应,有可能参与宿主微生物相互作用的表皮组织社区。

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