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Extensive bacterial diversity indicates the potential operation of a dynamic micro-ecology within domestic rainwater storage systems

机译:广泛的细菌多样性表明,家用雨水存储系统中动态微生态的潜在运行

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The concept that domestic rainwater storage tanks may host sustainable microbial ecosystems has not previously been addressed. The bacterial diversity, cultivated from more than 80 samples from 22 tanks at various locations across eastern Australia, is presented here as prima facie evidence for the potential operation of a functional micro-ecology within rainwater storage systems. Cultivated isolates were found to comprise members of four major bacterial divisions; Proteobacteria, Firmicutes, Actinobacteria and Bacteroidetes, including more than 200 species from 80 different genera. The pattern of abundance distribution was typical of that observed in most natural communities, comprising a small number of abundant taxa and a multitude of rare taxa, while the specific composition resembled that previously described in a number of natural aquatic systems. Although Proteobacteria from α, β and γ sub-classes were dominant, a set of core taxa comprising representative genera from all four phyla could be identified. Coliform and other species specifically associated with faecal material comprised <15% of the species identified, and represented <1.5% of total average abundance. The composition of the cultivated populations and scope of diversity present, suggested that rainwater tanks may support functional ecosystems comprising complex communities of environmental bacteria, which may have beneficial implications for the quality of harvested rainwater.
机译:家用雨水储水罐可以容纳可持续的微生物生态系统的概念以前尚未得到解决。细菌多样性是从澳大利亚东部各地不同地点的22个水箱中的80多个样本中培养出来的,在这里提供了初步的证据,证明了雨水存储系统中功能微生态的潜在作用。发现培养的分离株包含四个主要细菌科的成员;变形杆菌,硬毛菌,放线菌和拟杆菌,包括来自80个不同属的200多个物种。丰度分布的模式是在大多数自然群落中观察到的典型模式,包括少量的丰富的分类单元和大量的稀有分类单元,而其具体组成类似于先前在许多自然水生系统中描述的组成。尽管来自α,β和γ亚类的变形杆菌占主导地位,但可以鉴定出一组核心类群,包括所有四个门的代表性属。大肠菌群和其他与粪便物质特别相关的物种占所鉴定物种的<15%,占总平均丰度的<1.5%。目前耕种人口的构成和多样性范围表明,雨水罐可以支持由复杂的环境细菌群落组成的功能性生态系统,这可能对收获的雨水质量产生有益的影响。

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