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《时空动态:4米深养殖池中环境参数相关性研究》

Temporal and Spatial Dynamics of : An Environmental Parameter Correlation Investigation in a 4-Metre-Deep Aquaculture Tank.

作者信息

Da Fonseca Ferreira Alix, Roquigny Roxane, Grard Thierry, Le Bris Cédric

机构信息

Université du Littoral Côte d'Opale, UMRt 1158 BioEcoAgro, USC ANSES, INRAe, Université d'Artois, Université de Lille, Université Picardie Jules Verne, Université de Liège, Junia, 62200 Boulogne-sur-Mer, France.

出版信息

Microorganisms. 2024 May 29;12(6):1104. doi: 10.3390/microorganisms12061104.

Abstract

Nowadays, European seabass () aquaculture is undergoing a significant expansion. Nevertheless, the aquaculture industry is plagued by vibriosis. The spatial and temporal dynamics of were studied on a European seabass farm in northern France during seven months of 2022. Concrete specimens were suspended and water was pumped from different depths (0.3 m, 2.15 m and 4 m deep), providing insights into the biofilm and planktonic dynamics. The abundances of , in the biofilm and free-living forms, were positively correlated. The water parameters revealed seasonal fluctuations in temperature, pH, and salinity, with no significant differences observed across the water column. Quantification of revealed no significant differences between depths, but seasonality, with peak abundances observed in August, correlated with temperature increases. Principal component analysis identified temperature as a primary driver, but also additional parameters, such as salinity and pH. Vibriosis occurred during the sampling period, providing valuable insights into the conditions before, during, and after the outbreaks. This study underscores the importance of understanding behaviour in aquaculture, particularly in the context of global warming, for effective disease management and sustainable practices.

摘要

如今,欧洲鲈鱼()养殖业正在经历显著扩张。然而,水产养殖业却饱受弧菌病困扰。2022年的七个月期间,在法国北部的一个欧洲鲈鱼养殖场对弧菌的时空动态进行了研究。将混凝土样本悬浮起来,并从不同深度(0.3米、2.15米和4米深)抽水,从而深入了解生物膜和浮游弧菌的动态。生物膜中和自由生活形式的弧菌丰度呈正相关。水参数显示温度、pH值和盐度存在季节性波动,在水柱中未观察到显著差异。弧菌定量分析表明不同深度之间没有显著差异,但存在季节性变化,8月份丰度峰值与温度升高相关。主成分分析确定温度是主要驱动因素,但盐度和pH值等其他参数也有影响。在采样期间发生了弧菌病,为疫情爆发前、期间和之后的情况提供了宝贵见解。这项研究强调了了解水产养殖中弧菌行为的重要性,特别是在全球变暖背景下,对于有效的疾病管理和可持续做法而言。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dfe9/11205727/60019a68e873/microorganisms-12-01104-g001.jpg

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