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Transition of microbial community structures after development of membrane fouling in membrane bioreactors (MBRs)

机译:微生物群落结构在膜生物反应器中膜污垢发展后的转变(MBRS)

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Although membrane fouling is a major issue when operating membrane bioreactors (MBRs), information regarding MBR performance and the sludge microbiome after the development of fouling remains limited. For the present study, two MBRs were operated for approximately 1?month under conditions of membrane fouling to investigate the effects of highly stressed environments on the sludge microbiome. After the development of fouling, a Collimonas -related operational taxonomic unit (OTU) was highly dominant in both reactors (relative abundances were ? 63%) and this predomination caused a precipitous decline in the diversity indices of the sludge microbiomes. Because the excessive predomination by limited numbers of OTUs can lead to reductions in the adaptability to environmental changes, monitoring microbial diversity may be a valuable indicator for maintaining the robustness of a sludge microbiome. While, the decrease in the abundance of the Collimonas -related OTU resulted in the predomination of distinct microorganisms in each of the reactors despite being operated under the same conditions; this finding indicates existence of strong pressure to perturb the microbiomes. Detailed analyses suggested that the availability of terminal electron acceptors and competitive interactions between microbes via the secretion of extracellular proteins appeared to differentiate the structures of the respective microbial communities. During the extracellular proteins were secreted in the sludge, considerable portion of microbes were dead and large amounts of biomolecules seemed to be released; resultantly facilitated the predomination of fermentative anaerobes in one reactor as they use organic substances but not inorganic terminal electron acceptors to generate ATP under anaerobic conditions.
机译:虽然膜污染是在操作膜生物反应器(MBRS)的主要问题中,但在结垢的发展后,有关MBR性能和污泥微生物组的信息仍然有限。对于目前的研究,在膜污染条件下运行两种MBR约1?探讨高压环境对污泥微生物组的影响。在污垢发展之后,在两种反应器中,两位主链接的运营分类单位(OTU)在两个反应器中高度显着(相对丰富为63%),并且这种追踪导致污泥微生物的多样性指数急剧下降。由于通过数量有限的OTUS的过度占据可能导致对环境变化的适应性降低,因此监测微生物多样性可能是维持污泥微生物组的稳健性的有价值的指标。虽然,Conlimonas相关的OTU的丰度的降低导致每种反应器中的不同微生物的追踪性尽管在相同的条件下操作;这一发现表明存在强大的扰动微生物的压力。详细分析表明,通过细胞外蛋白质的分泌通过细胞外蛋白质的微生物之间的终端电子受体和竞争相互作用似乎分解了各个微生物群落的结构。在细胞外蛋白质在污泥中分泌,大部分微生物死亡,大量的生物分子似乎被释放;由于它们使用有机物质而不是无机末端电子受体,因此促进了一种反应器中的发酵厌氧体在一个反应​​器中的占优势率在厌氧条件下产生ATP。

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