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(00633)Water microbiota in a recirculating aquaculture system for environmental sustainability and fish welfare

机译:(00633)环境可持续性和鱼类福利循环水产养殖系统中的水微生物

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Recirculating aquaculture systems (RAS)are a promising technology of fish production to reduce aquaculture environmental impact. Water recirculation relies on the stability of physical, chemical and biological processes to increase biosecurity. Although, disruptions in RAS systems can cause fish disease outbreaks by opportunistic pathogenic bacteria with an economic impact. The aim of this study was to characterize the water microbiota across the different sectors of a flatfish (Solea senegalensis)RAS unit, and understand its relation with the water quality parameters. Analysis was focused on the beneficial microbial community for a better environmental sustainability, but also on the opportunistic agents that threaten the fish welfare. Water samples were collected from four sectors at different filtration stages. For microbial diversity, DNA was extracted from the water samples, sequenced by Illumina MiSeq? and sequences output analyzed by SilvaNGS. Results show that Proteobacteria and Bacteroidetes were the most abundant phyla, and potential pathogenic bacteria were detected. They also indicate that salinity shifts can affect the structure of the bacterial community.
机译:再循环水产养殖系统(RAS)是鱼类生产的有希望的技术,以减少水产养殖环境影响。水再循环依赖于物理,化学和生物过程的稳定性来增加生物安全性。虽然,RAS系统中断可能会因机遇主义致病细菌引起鱼类疾病爆发,具有经济影响。本研究的目的是在诸如扁平鱼(SOLEA Senegalensis)RAS单元的不同部门的水微生物,并了解其与水质参数的关系。分析专注于有益的微生物群落,以更好的环境可持续性,而且还涉及威胁鱼福利的机会性药剂。从不同过滤阶段的四个扇区收集水样。对于微生物多样性,从水样中提取DNA,由Illumina miseq测序? Silvangs分析的序列输出。结果表明,植物和细菌性是最丰富的植物,检测潜在的致病细菌。它们还表明盐度变化会影响细菌群落的结构。

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