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How the bacterial community of a tannery effluent responds to bioaugmentation with the consortium SFC 500-1. Impact of environmental variables

机译:制革厂废水的细菌群落如何对财团SFC 500-1进行生物强化反应。环境变量的影响

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Bioaugmentation with the consortium SFC 500-1 is a promising alternative to remediate wastewaters, such as tannery effluents. With the aim of assessing the changes produced in response to bioaugmentation, bacterial 16S rDNA genes were sequenced with Mwnina MiSeq Platform. Additionally, bacterial and fungal groups were analyzed through standard culture dependent methods. The impact of diverse physico-chemical and microbiological parameters on the prokaryotic diversity was also evaluated throughout. Bacteroidetes, Firmicutes and Proteobacteria, represented together up to 91% of the total number of sequences obtained from the tannery effluent. Diversity decreased immediately after inoculation, due to an increase in the representation of the taxa to which the added consortium belongs. However, bioaugmentation produced no greater variations since only a 10% of unique operational taxonomic units were found in the inoculated treatment. An increase in the abundance of Myroides and a reduction in the representation of Proteiniclasticum and Halomonas were major observed variations. On the other hand, pH and dissolved oxygen constituted main environmental factors affecting the structure of the prokaryotic communities. In all treatments yeasts increased over time, to the detriment of filamentous fungi. Together, data from this report may contribute to the development of improved bioremediation strategies of industrial wastewaters.
机译:与财团SFC 500-1一起进行生物强化是一种有前途的替代方法,可用于补救制革厂废水等废水。为了评估响应生物增强产生的变化,使用Mwnina MiSeq平台对细菌16S rDNA基因进行了测序。另外,通过标准培养依赖性方法分析细菌和真菌组。整个过程中,还评估了各种理化和微生物参数对原核生物多样性的影响。拟杆菌,硬菌和变形杆菌共同占制革厂废水总序列的91%。接种后多样性立即下降,这是由于添加的财团所属的分类单元的代表数量增加。但是,生物强化不会产生更大的变化,因为在接种的处理中仅发现了10%的独特操作分类单位。观察到的主要变化是Myroides的丰度增加和Proteiniclasticum和Halomonas的代表性减少。另一方面,pH和溶解氧是影响原核生物群落结构的主要环境因素。在所有处理中,酵母都随时间增加,从而损害丝状真菌。总之,本报告中的数据可能有助于改进工业废水的生物修复策略。

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