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小支流对浅海沿岸地区水质和贝类质量的微生物影响。

Microbial impact of small tributaries on water and shellfish quality in shallow coastal areas.

作者信息

Riou P, Le Saux J C, Dumas F, Caprais M P, Le Guyader S F, Pommepuy M

机构信息

Ifremer, Port-en-Bessin, Avenue du Gal De Gaulle, 14520 Port-en-Bessin, France.

出版信息

Water Res. 2007 Jun;41(12):2774-86. doi: 10.1016/j.watres.2007.03.003. Epub 2007 Apr 18.

DOI:10.1016/j.watres.2007.03.003
PMID:17445860
Abstract

This study aimed to investigate the impact of small tributaries on seawater and shellfish quality in coastal area subjected to brief episodes leading to fecal contamination. Escherichia coli and F-RNA-specific bacteriophages were selected as fecal indicators and astroviruses were chosen as being representative of pathogens in the human population during winter viral epidemics. A two-dimensional hydrodynamic model was built to simulate the current and dispersion in the model domain, which includes areas uncovered at low tide. The model also includes decay rates to simulate microorganism behavior and assess the influence of fecal input on shellfish quality. The originality lies in the fact that specific features of the study area were considered. Modeling results indicate limited particle movements and long flushing times at the back of the bay, where shellfish are farmed. Computational results showed that under normal conditions, i.e. 94% of the time, when rainfall was less than 10 mm per day, the sector shows acceptable water quality. These results are in agreement with shellfish concentration measured in the field. Under high flow conditions, high concentrations of fecal indicators and astrovirus were measured in the river and tributaries. The corresponding fluxes were over 50 times higher than under normal weather conditions. The location of the shellfish beds near the coast makes them vulnerable and fecal indicators and viruses were detected in shellfish after short rainfall events. Our modeling approach makes a contribution to shellfish management and consumer protection, by indicating the "risk period" as defined by EU regulations. Molecular development such as viral quantification in conjunction with model developments will help to prevent shellfish contamination and thus provide safer products to consumers and an effective tool for shellfish producers.

摘要

本研究旨在调查在经历导致粪便污染的短暂事件的沿海地区,小支流对海水和贝类质量的影响。选择大肠杆菌和F - RNA特异性噬菌体作为粪便指示物,并选择星状病毒作为冬季病毒流行期间人群中病原体的代表。建立了二维水动力模型来模拟模型域内的水流和扩散情况,该模型域包括低潮时未被覆盖的区域。该模型还包括衰减率,以模拟微生物行为并评估粪便输入对贝类质量的影响。其独特之处在于考虑了研究区域的特定特征。建模结果表明,在养殖贝类的海湾后部,颗粒运动有限且冲洗时间较长。计算结果表明,在正常条件下,即94%的时间内,当每日降雨量小于10毫米时,该区域水质可接受。这些结果与实地测量的贝类浓度一致'。在高流量条件下,在河流和支流中检测到高浓度的粪便指示物和星状病毒。相应的通量比正常天气条件下高出50倍以上。贝类养殖场靠近海岸的位置使其易受影响,在短时间降雨事件后,在贝类中检测到了粪便指示物和病毒。我们的建模方法通过指出欧盟法规所定义的“风险期”,为贝类管理和消费者保护做出了贡献。诸如病毒定量等分子技术的发展与模型的发展相结合,将有助于防止贝类污染,从而为消费者提供更安全的产品,并为贝类生产者提供有效的工具。

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