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Integration of Vibrio vulnificus into Marine Aggregates and Its Subsequent Uptake by Crassostrea virginica Oysters

机译:创伤弧菌整合到海洋聚集体中,随后被牡蛎牡蛎摄取

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Marine aggregates are naturally forming conglomerations of larvacean houses, phytoplankton, microbes, and inorganics adhered together by exocellular polymers. In this study, we show in vitro that the bacterial pathogen Vibrio vulnificus can be concentrated into laboratory-generated aggregates from surrounding water. We further show that environmental (E-genotype) strains exhibit significantly more integration into these aggregates than clinical (C-genotype) strains. Experiments where marine aggregates with attached V. vulnificus cells were fed to oysters ( Crassostrea virginica ) resulted in greater uptake of both C and E types than nonaggregated controls. When C- and E-genotype strains were cocultured in competitive experiments, the aggregated E-genotype strains exhibited significantly greater uptake by oyster than the C-genotype strains.
机译:海洋聚集体自然地形成了幼虫房屋,浮游植物,微生物和通过细胞外聚合物粘附在一起的无机物的聚集体。在这项研究中,我们在体外显示细菌病原体弧菌可以从周围水集中到实验室产生的聚集体中。我们进一步表明,与临床(C基因型)菌株相比,环境(E基因型)菌株在这些聚集体中表现出明显更多的整合。将附有V. vulnificus细胞的海洋聚集体饲喂牡蛎的实验(Crassostrea virginica)比未聚集的对照组吸收了更多的C型和E型。当在竞争实验中共培养C基因型和E基因型菌株时,聚集的E基因型菌株比C基因型菌株表现出明显更多的牡蛎摄取。

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