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Influence of Molecular Resolution on Sequence-Based Discovery of Ecological Diversity among Synechococcus Populations in an Alkaline Siliceous Hot Spring Microbial Mat

机译:分子分辨率对碱性硅质温泉微生物垫中球菌群体中基于序列的生态多样性发现的影响

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Previous research has shown that sequences of 16S rRNA genes and 16S-23S rRNA internal transcribed spacer regions may not have enough genetic resolution to define all ecologically distinct Synechococcus populations (ecotypes) inhabiting alkaline, siliceous hot spring microbial mats. To achieve higher molecular resolution, we studied sequence variation in three protein-encoding loci sampled by PCR from 60°C and 65°C sites in the Mushroom Spring mat (Yellowstone National Park, WY). Sequences were analyzed using the ecotype simulation (ES) and AdaptML algorithms to identify putative ecotypes. Between 4 and 14 times more putative ecotypes were predicted from variation in protein-encoding locus sequences than from variation in 16S rRNA and 16S-23S rRNA internal transcribed spacer sequences. The number of putative ecotypes predicted depended on the number of sequences sampled and the molecular resolution of the locus. Chao estimates of diversity indicated that few rare ecotypes were missed. Many ecotypes hypothesized by sequence analyses were different in their habitat specificities, suggesting different adaptations to temperature or other parameters that vary along the flow channel.
机译:先前的研究表明,16S rRNA基因和16S-23S rRNA内部转录间隔区的序列可能没有足够的遗传分辨率来定义居住在碱性,硅质温泉微生物垫上的所有生态上不同的Synechococcus种群(生态型)。为了获得更高的分子分辨率,我们研究了在蘑菇弹簧垫(黄石国家公园,怀俄明州)中通过PCR采样从60°C和65°C的三个蛋白质编码基因座中的序列变异。使用生态型模拟(ES)和AdaptML算法分析序列,以识别推定的生态型。与编码16S rRNA和16S-23S rRNA内部转录间隔区序列的变异相比,预测蛋白质编码基因座序列的变异估计的推定生态型多4到14倍。预测的假定生态型的数量取决于采样序列的数量和基因座的分子分辨率。 Chao对多样性的估计表明,很少有稀有的生态类型被遗漏。通过序列分析假设的许多生态型在其栖息地特异性上是不同的,表明对温度或沿流动通道变化的其他参数的适应性不同。

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