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Diversity and Dynamics of a North Atlantic Coastal Vibrio Community

机译:北大西洋沿海弧菌群落的多样性和动力学

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Vibrios are ubiquitous marine bacteria that have long served as models for heterotrophic processes and have received renewed attention because of the discovery of increasing numbers of facultatively pathogenic strains. Because the occurrence of specific vibrios has frequently been linked to the temperature, salinity, and nutrient status of water, we hypothesized that seasonal changes in coastal water bodies lead to distinct vibrio communities and sought to characterize their level of differentiation. A novel technique was used to quantify shifts in 16S rRNA gene abundance in samples from Barnegat Bay, N.J., collected over a 15-month period. Quantitative PCR (QPCR) with primers specific for the genus Vibrio was combined with separation and quantification of amplicons by constant denaturant capillary electrophoresis (CDCE). Vibrio populations identified by QPCR-CDCE varied between summer and winter samples, suggesting distinct warm-water and year-round populations. Identification of the CDCE populations by cloning and sequencing of 16S rRNA genes from two summer and two winter samples confirmed this distinction. It further showed that CDCE populations corresponded in most cases to ~98% rRNA similarity groups and suggested that the abundance of these follows temperature trends. Phylogenetic comparison yielded closely related cultured and often pathogenic representatives for most sequences, and the temperature ranges of these isolates confirmed the trends seen in the environmental samples. Overall, this suggests that temperature is a good predictor of the occurrence of closely related vibrios but that considerable microdiversity of unknown significance coexists within this trend.
机译:弧菌是无处不在的海洋细菌,长期以来一直是异养过程的模型,并且由于发现了更多的兼性致病菌株而受到了新的关注。由于特定弧菌的发生经常与水的温度,盐度和营养状况有关,我们假设沿海水体的季节性变化会导致不同的弧菌群落,并试图表征其分化水平。一种新技术被用来量化从新泽西州Barnegat湾在15个月内收集的样品中16S rRNA基因丰度的变化。通过恒定变性毛细管电泳(CDCE),将具有弧菌属特异性引物的定量PCR(QPCR)与扩增子的分离和定量结合。通过QPCR-CDCE鉴定的弧菌种群在夏季和冬季样本之间有所不同,表明不同的温水种群和全年种群。通过克隆和测序两个夏季和两个冬季样品中的16S rRNA基因来鉴定CDCE种群,证实了这一区别。它进一步表明,CDCE群体在大多数情况下对应于约98%的rRNA相似性群体,并表明这些群体的丰度遵循温度趋势。系统发育比较产生了大多数序列的密切相关的培养且通常是致病的代表,并且这些分离物的温度范围证实了在环境样品中看到的趋势。总体而言,这表明温度可以很好地预测紧密相关的弧菌的发生,但是在这种趋势内并存着相当多的未知意义的微多样性。

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