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A molecular and multivariate approach to the microbial community of a commercial shallow raceway marine recirculation system operating with a Moving Bed Biofilter

机译:使用移动床生物滤池的商业浅跑道海洋再循环系统的微生物群落的分子和多元方法

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摘要

Information on commercial aquaculture systems bacterial communities is scarce. The present study was performed in a turbot shallow raceway recirculating aquaculture system throughout 221 days after initial fish stocking. The dynamics of bacteria attached to a Moving Bed Biofilm Reactor and the distribution of the system culturable planktonic heterotrophic bacteria were assessed. Different levels of free heterotrophic bacteria were found over time: <= 2.6 x 10(4) CFU mL(-1) in incoming and ozonated water and >= 1.5 x 10(6) CFU mL(-1) in raceway and biofilter water. 16S rRNA gene sequencing of nine strains persistently isolated from the system affiliated with Bacteroidetes, alpha-Proteobacteria or gamma-Proteobacteria. Polymerase chain reaction-denaturating gradient gel electrophoresis (PCR-DGGE) data showed temporal and spatial segregation of attached biofilter community. The first 32 days were the most important for bacterial establishment with higher culturable bacteria biomass loadings and higher community diversity. Multivariate canonical correspondence analysis of PCR-DGGE showed that the most common aquaculture water quality descriptors explained 70% of the DGGE pattern variability.
机译:关于商业水产养殖系统细菌群落的信息很少。在最初放养鱼类后的整整221天,在大菱形浅水道循环水产养殖系统中进行了本研究。评估了附着在移动床生物膜反应器上的细菌的动力学以及系统可培养浮游异养细菌的分布。随着时间的推移,发现了不同水平的游离异养细菌:进水和臭氧水中的<= 2.6 x 10(4)CFU mL(-1),在水道和生物滤池水中的> = 1.5 x 10(6)CFU mL(-1) 。从拟杆菌,α-Proteobacteria或gamma-Proteobacteria的系统持续分离的九个菌株的16S rRNA基因测序。聚合酶链反应-变性梯度凝胶电泳(PCR-DGGE)数据显示连接的生物滤池群落的时间和空间隔离。前32天对于细菌的建立最为重要,因为可培养细菌的生物量更高,群落多样性更高。 PCR-DGGE的多变量典范对应分析表明,最常见的水产养殖水质描述符解释了DGGE模式变异的70%。

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