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Identification of bacterial community composition in freshwater aquaculture system farming of Litopenaeus vannamei reveals distinct temperature-driven patterns

机译:南美白对虾淡水养殖系统细菌群落组成的鉴定揭示了不同的温度驱动模式

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摘要

Change in temperature is often a major environmental factor in triggering waterborne disease outbreaks. Previous research has revealed temporal and spatial patterns of bacterial population in several aquatic ecosystems. To date, very little information is available on aquaculture environment. Here, we assessed environmental temperature effects on bacterial community composition in freshwater aquaculture system farming of (FASFL). Water samples were collected over a one-year period, and aquatic bacteria were characterized by polymerase chain reaction-denaturing gradient gel electrophoresis (PCR-DGGE) and 16S rDNA pyrosequencing. Resulting DGGE fingerprints revealed a specific and dynamic bacterial population structure with considerable variation over the seasonal change, suggesting that environmental temperature was a key driver of bacterial population in the FASFL. Pyrosequencing data further demonstrated substantial difference in bacterial community composition between the water at higher (WHT) and at lower (WLT) temperatures in the FASFL. were the highest abundant phyla in the FASFL, however, a large number of unclassified bacteria contributed the most to the observed variation in phylogenetic diversity. The WHT harbored remarkably higher diversity and richness in bacterial composition at genus and species levels when compared to the WLT. Some potential pathogenenic species were identified in both WHT and WLT, providing data in support of aquatic animal health management in the aquaculture industry.
机译:温度变化通常是引发水传疾病暴发的主要环境因素。先前的研究揭示了几种水生生态系统中细菌种群的时空格局。迄今为止,关于水产养殖环境的信息很少。在这里,我们评估了环境温度对(FASFL)淡水养殖系统养殖中细菌群落组成的影响。在一年的时间内收集水样品,并通过聚合酶链反应-变性梯度凝胶电泳(PCR-DGGE)和16S rDNA焦磷酸测序对水生细菌进行表征。所得的DGGE指纹显示出特定的动态细菌种群结构,该细菌种群结构随季节变化而变化很大,这表明环境温度是FASFL中细菌种群的关键驱动因素。焦磷酸测序数据进一步证明了FASFL中较高温度(WHT)和较低温度(WLT)的水之间细菌群落组成的显着差异。是FASFL中最高的丰富门,但是,大量未分类的细菌对观察到的系统发生多样性的变化贡献最大。与WLT相比,WHT在属和种水平上具有更高的细菌组成多样性和丰富性。在WHT和WLT中都发现了一些潜在的病原体物种,为水产养殖业中水生动物健康管理提供了支持。

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