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Combined Analyses of the ITS Loci and the Corresponding 16S rRNA Genes Reveal High Micro- and Macrodiversity of SAR11 Populations in the Red Sea

机译:结合位点ITs的分析和相应的16s rRNa基因显示高微型和saR11种群宏分集在红海

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摘要

Bacteria belonging to the SAR11 clade are among the most abundant prokaryotes in the pelagic zone of the ocean. 16S rRNA gene-based analyses indicate that they constitute up to 60% of the bacterioplankton community in the surface waters of the Red Sea. This extremely oligotrophic water body is further characterized by an epipelagic zone, which has a temperature above 24°C throughout the year, and a remarkable uniform temperature (∼22°C) and salinity (∼41 psu) from the mixed layer (∼200 m) to the bottom at over 2000 m depth. Despite these conditions that set it apart from other marine environments, the microbiology of this ecosystem is still vastly understudied. Prompted by the limited phylogenetic resolution of the 16S rRNA gene, we extended our previous study by sequencing the internal transcribed spacer (ITS) region of SAR11 in different depths of the Red Sea’s water column together with the respective 16S fragment. The overall diversity captured by the ITS loci was ten times higher than that of the corresponding 16S rRNA genes. Moreover, species estimates based on the ITS showed a highly diverse population of SAR11 in the mixed layer that became diminished in deep isothermal waters, which was in contrast to results of the related 16S rRNA genes. While the 16S rRNA gene-based sequences clustered into three phylogenetic subgroups, the related ITS fragments fell into several phylotypes that showed clear depth-dependent shifts in relative abundances. Blast-based analyses not only documented the observed vertical partitioning and universal co-occurrence of specific phylotypes in five other distinct oceanic provinces, but also highlighted the influence of ecosystem-specific traits (e.g., temperature, nutrient availability, and concentration of dissolved oxygen) on the population dynamics of this ubiquitous marine bacterium.
机译:属于SAR11进化枝的细菌是海洋中上层带中最丰富的原核生物。基于16S rRNA基因的分析表明,它们构成红海表层水域浮游细菌群落的60%。这种极富营养性的水体的特征还在于上表层带,全年温度高于24°C,混合层的平均温度(〜22 pC)和盐度(〜41 psu)显着(〜200 pC) m)超过2000 m深度的底部。尽管有这些条件使它与其他海洋环境区分开来,但仍未充分研究该生态系统的微生物学。由于16S rRNA基因的系统发育分辨率有限,我们通过对红海水柱不同深度的SAR11的内部转录间隔区(ITS)区域以及相应的16S片段进行测序,扩展了我们先前的研究。 ITS基因座捕获的总体多样性比相应的16S rRNA基因高十倍。此外,基于ITS的物种估计显示,混合层中SAR11的种群高度多样化,在深等温水域中已逐渐减少,这与相关的16S rRNA基因的结果相反。虽然基于16S rRNA基因的序列分为三个系统发生亚组,但相关的ITS片段却落入了几种系统表型,这些系统表型显示出相对丰度明显的深度依赖性变化。基于冲击波的分析不仅记录了在其他五个不同海洋省份中观察到的垂直划分和特定系统型的普遍共存,而且还强调了生态系统特定特征(例如温度,养分可利用性和溶解氧浓度)的影响这种无处不在的海洋细菌的种群动态。

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  • 期刊名称 other
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  • 年(卷),期 -1(7),11
  • 年度 -1
  • 页码 e50274
  • 总页数 13
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