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首页> 外文期刊>Environmental microbiology >Community analysis of high- and low-nucleic acid-containing bacteria in NW Mediterranean coastal waters using 16S rDNA pyrosequencing
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Community analysis of high- and low-nucleic acid-containing bacteria in NW Mediterranean coastal waters using 16S rDNA pyrosequencing

机译:使用16S rDNA焦磷酸测序技术对地中海西北地中海沿岸含高核酸和低核酸的细菌进行群落分析

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摘要

The ecological significance of the marine bacterial populations distinguishable by flow cytometry on the basis of the fluorescence (FL) of their nucleic acid (NA) content and proxies of cell size (such as side scatter, SSC) remains largely unknown. Some studies have suggested that cells with high NA (HNA) content and high SSC (HS) represent the active members of the community, while the low NA (LNA) cells are inactive members of the same phylogenetic groups. But group-specific activity measurements and phylogenetic assignment after cell sorting have suggested this is not be the case, particularly in open-ocean communities. To test the extent to which the different NA subgroups are similar, and consequently the extent to which they likely have similar ecological and biogeochemical roles in the environment, we analysed the phylogenetic composition of three populations after cell sorting [high NA-high SC (HNA-HS), high NA-low SC (HNA-LS), low NA (LNA)] by 454 pyrosequencing in two contrasting periods of the year in NW Mediterranean coastal waters (BBMO, Blanes Bay Microbial Observatory) where these three populations have recurrent seasonal patterns. Statistical analyses showed that summer and winter samples were significantly different and, importantly, the sorted populations within a sample were composed of different taxa. The majority of taxa were associated with one NA fraction only, and the degree of overlap (i.e. OTUs present simultaneously in 2 fractions) between HNA and LNA and between summer and winter communities was very small. Rhodobacterales, SAR116 and Bacteroidetes contributed primarily to the HNA fraction, whereas other groups such as SAR11 and SAR86 contributed largely to the LNA fractions. Gammaproteobacteria other than SAR86 showed less preference for one particular NA fraction. An increase in diversity was observed from the LNA to the HNA-HS fraction for both sample dates. Our results suggest that, in Blanes Bay, flow cytometric signatures of natural communities track their phylogenetic composition.
机译:基于其核酸(NA)含量的荧光(FL)和细胞大小的代理(如侧向散射,SSC),可通过流式细胞术区分的海洋细菌种群的生态学意义仍然未知。一些研究表明,具有高NA(HNA)含量和高SSC(HS)的细胞代表了社区的活跃成员,而低NA(LNA)的细胞却是同一系统发生群的非活跃成员。但是细胞分选后的群体特异性活性测量和系统发育分配表明情况并非如此,特别是在开放海洋社区中。为了测试不同NA子集的相似程度,以及因此它们在环境中可能具有相似的生态和生物地球化学作用的程度,我们分析了细胞分选后的三个种群的系统发育组成[高NA-高SC(HNA -HS),高NA-低SC(HNA-LS),低NA(LNA)]在一年中的两个对比期期间,在西北地中海沿岸水域(BBMO,布拉内斯湾微生物天文台)的这三个种群中,有454个焦磷酸测序季节模式。统计分析表明,夏季和冬季的样本明显不同,重要的是,样本中的排序种群由不同的分类单元组成。大多数分类单元仅与一个NA分数相关,并且HNA和LNA之间以及夏季和冬季社区之间的重叠程度(即OTU同时以2个分数存在)非常小。红细菌,SAR116和拟杆菌属主要贡献于HNA组分,而SAR11和SAR86等其他基团则主要贡献于LNA组分。除SAR86以外的γ-变形杆菌对一种特定NA的偏爱性较低。从两个样本日期的LNA到HNA-HS分数,多样性都有所提高。我们的结果表明,在布拉内斯湾,自然群落的流式细胞仪特征跟踪其系统发育组成。

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