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Activity of abundant and rare bacteria in a coastal ocean

机译:沿海海洋中丰富而稀有细菌的活动

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The surface layer of the oceans and other aquatic environments contains many bacteria that range in activity, from dormant cells to those with high rates of metabolism. However, little experimental evidence exists about the activity of specific bacterial taxa, especially rare ones. Here we explore the relationship between abundance and activity by documenting changes in abundance over time and by examining the ratio of 16S rRNA to rRNA genes (rDNA) of individual bacterial taxa. The V1-V2 region of 16S rRNA and rDNA was analyzed by tag pyrosequencing in a 3-y study of surface waters off the Delaware coast. Over half of the bacterial taxa actively cycled between abundant and rare, whereas about 12% always remained rare and potentially inactive. There was a significant correlation between the relative abundance of 16S rRNA and the relative abundance of 16S rDNA for most individual taxa. However, 16S rRNA:rDNA ratios were significantly higher in about 20% of the taxa when they were rare than when abundant. Relationships between 16S rRNA and rDNA frequencies were confirmed for five taxa by quantitative PCR. Our findings suggest that though abundance follows activity in the majority of the taxa, a significant portion of the rare community is active, with growth rates that decrease as abundance increases.
机译:海洋和其他水生环境的表层包含许多活动范围广泛的细菌,从休眠细胞到代谢率高的细胞。但是,关于特定细菌类群(尤其是稀有类群)活性的实验证据很少。在这里,我们通过记录丰度随时间的变化并检查单个细菌类群的16S rRNA与rRNA基因(rDNA)的比率来探索丰度与活性之间的关系。在特拉华河沿岸的地表水的3年研究中,通过标签焦磷酸测序对16S rRNA和rDNA的V1-V2区域进行了分析。超过一半的细菌类群活跃地在丰富和稀有之间循环,而大约12%的细菌类群始终保持稀有且可能不活跃。在大多数个体分类中,16S rRNA的相对丰度与16S rDNA的相对丰度之间存在显着相关性。但是,当它们稀少时,16S rRNA:rDNA的比例在稀少的分类单元中比在丰富的分类单元中高得多。通过定量PCR确认了五个分类单元的16S rRNA和rDNA频率之间的关系。我们的研究结果表明,尽管大多数种类群的活动都伴随着丰度,但是稀有群落中有相当一部分是活跃的,其增长率随着丰度的增加而降低。

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