地中海循环水养殖系统水体和生物膜细菌群落组成动态

Q4 Environmental Science Indonesian Aquaculture Journal Pub Date : 2022-05-18 DOI:10.3390/aquacj2020008
Eirini Schoina, Agapi I. Doulgeraki, H. Miliou, G. Nychas
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引用次数: 6

摘要

在海洋养殖业中,循环水技术已逐渐兴起。在循环水养殖系统(RASs)中形成的微生物群是这些系统优化运行和鱼类福利的重要因素。本研究对地中海鲷鱼和黑鲈的水体微生物群落动态和生物膜进行了研究,并对其理化条件进行了监测。基于pcr -变性梯度凝胶电泳(PCR-DGGE)指纹图谱对不锈钢表面的水柱和生物膜进行微生物学、培养学和非培养学分析。根据所获得的结果,饲料添加似乎引起pH和TAN的变化,并驱动水柱中细菌丰度的变化。24 h内被测表面定植,6 d内无根细胞密度稳定。DGGE指纹图谱显示了水体微生物群落的稳定性和生物膜群落的动态演替。发现鱼病原体变色腱杆菌在生物膜和水柱上定植。主要研究结果证实了RAS技术可以作为水体微生物群落稳定的控制策略,生物膜群落中存在优势种的动态演替,病原菌在生物膜群落中具有优势。
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Dynamics of Water and Biofilm Bacterial Community Composition in a Mediterranean Recirculation Aquaculture System
Recirculation technology has been emerging in the marine aquaculture industry. The microbiome developed in recirculation aquaculture systems (RASs) is an important factor for the optimal operation of these systems and fish welfare. In this study, the microbial community dynamics in the water column and the biofilms of a marine RAS with Mediterranean species of gilthead sea bream and sea bass were investigated, while physicochemical conditions were also monitored. Microbiological, culture, and non-culture analyses based on PCR-Denaturing Gradient Gel Electrophoresis (PCR-DGGE) fingerprints were performed on the water column and biofilm developed on stainless-steel surfaces. According to the obtained results, feed administration seemed to cause changes in pH and TAN, as well as drive changes in the bacterial abundance in the water column. Tested surfaces were colonized within 24 h and sessile cells were stabilized in terms of density within 6 days. DGGE fingerprints indicated the stability of the microbial community in water and a dynamic succession in the community of the biofilms. The fish pathogen Tenacibaculum discolor was found to colonize the biofilm and the water column. The main findings confirmed that RAS technology can be used as a control strategy for the stability of the water microbial community, that there is a dynamic succession of the dominant species in the biofilm communities, and that pathogenic bacteria can be dominant in the latter.
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来源期刊
Indonesian Aquaculture Journal
Indonesian Aquaculture Journal Environmental Science-Water Science and Technology
CiteScore
0.50
自引率
0.00%
发文量
9
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