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Molecular assessment of microbiota structure and dynamics along mixed olive oil and winery wastewaters biotreatment

机译:混合橄榄油和酿酒厂废水生物处理过程中微生物群落结构和动力学的分子评估

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The major parcel of the degradation occurring along wastewater biotreatments is performed either by the native microbiota or by added microbial inocula. The main aim of this study was to apply two fingerprinting methods, temperature gradient gel electrophoresis (TGGE) and length heterogeneity-PCR (LH-PCR) analysis of 16S rRNA gene fragments, in order to assess the microbiota structure and dynamics during mixed olive oil and winery wastewaters aerobic biotreatment performed in a jet-loop reactor (JLR). Sequence homology analysis showed the presence of bacterial genera Gluconacetobacter, Klebsiella, Lactobacillus, Novosphingobium, Pseudomonas, Prevotella, Ralstonia, Sphingobium and Sphingomonas affiliated with five main phylogenetic groups: alpha-, beta- and gamma-Proteobacteria, Firmicutes and Bacteroidetes. LH-PCR analysis distinguished eight predominant DNA fragments correlated with the samples showing highest performance (COD removal rates of 67 up to 75%). Cluster analysis of both TGGE and LH-PCR fingerprinting profiles established five main clusters, with similarity coefficients higher than 79% (TGGE) and 62% (LH-PCR), and related with hydraulic retention time, indicating that this was the main factor responsible for the shifts in the microbiota structure. Canonical correspondence analysis revealed that changes observed on temperature and O2 level were also responsible for shifts in microbiota composition. Community level metabolic profile analysis was used to test metabolic activities in samples. Integrated data revealed that the microbiota structure corresponds to bacterial groups with high degradative potential and good suitability for this type of effluents biotreatments.
机译:废水生物处理过程中降解的主要部分是通过天然微生物或添加的微生物接种物进行的。这项研究的主要目的是应用两种指纹图谱方法,即温度梯度凝胶电泳(TGGE)和长度异质性PCR(LH-PCR)分析16S rRNA基因片段,以评估混合橄榄油中的微生物群结构和动力学。喷射回路反应器(JLR)中进行的酿酒厂废水处理和酒厂废水好氧生物处理。序列同源性分析显示,存在细菌属糖尿杆菌,克雷伯菌,乳杆菌,新孢子虫,假单胞菌,普雷沃菌,雷氏菌,鞘氨醇和鞘氨醇单胞菌,它们与五个主要的系统发育组相关:α-,β-和γ-变形杆菌,硬毛细菌和细菌。 LH-PCR分析可区分与样品相关的八个主要DNA片段,表现出最高的性能(COD去除率为67,最高可达75%)。 TGGE和LH-PCR指纹图谱的聚类分析建立了五个主要聚类,相似系数分别高于79%(TGGE)和62%(LH-PCR),并且与水力停留时间有关,表明这是造成影响的主要因素微生物群结构的变化。典型的对应分析表明,温度和O 2 水平的变化也是微生物群落组成变化的原因。社区水平的代谢谱分析用于测试样品中的代谢活性。综合数据显示,微生物群结构对应于具有高降解潜能且对此类废水生物处理具有良好适应性的细菌群。

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