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Depicting more accurate pictures of protistan community complexity using pyrosequencing of hypervariable SSU rRNA gene regions

机译:使用高变SSU rRNA基因区域的焦磷酸测序来描述更准确的原生动物群落复杂性图片

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Initial environmental pyrosequencing studies suggested highly complex protistan communities with phylotype richness decisively higher than previously estimated. However, recent studies on individual bacteria or artificial bacterial communities evidenced that pyrosequencing errors may skew our view of the true complexity of microbial communities. We pyrosequenced two diversity markers (hypervariable regions V4 and V9 of the small-subunit rDNA) of an intertidal protistan model community, using the Roche GS-FLX and the most recent GS-FLX Titanium sequencing systems. After pyrosequencing 24 reference sequences we obtained up to 2039 unique tags (from 3879 V4 GS-FLX Titanium reads), 77% of which were singletons. Even binning sequences that share 97% similarity still emulated a pseudodiversity exceeding the true complexity of the model community up to three times (V9 GS-FLX). Pyrosequencing error rates were higher for V4 fragments compared with the V9 domain and for the GS-FLX Titanium compared with the GS-FLX system. Furthermore, this experiment revealed that error rates are taxon-specific. As an outcome of this study we suggest a fast and efficient strategy to discriminate pyrosequencing signals from noise in order to more realistically depict the structure of protistan communities using simple tools that are implemented in standard tag data-processing pipelines.
机译:最初的环境焦磷酸测序研究表明,高度复杂的protistan群落具有丰富的系统型丰富性,比先前估计的要高得多。但是,最近对单个细菌或人工细菌群落的研究表明,焦磷酸测序错误可能会使我们对微生物群落真正复杂性的看法歪曲。我们使用罗氏(Roche)GS-FLX和最新的GS-FLX Titanium测序系统对潮间质模型社区的两个多样性标记(小亚基rDNA的高变区V4和V9)进行了测序。在对24个参考序列进行焦磷酸测序后,我们获得了多达2039个唯一标签(来自3879 V4 GS-FLX Titanium读物),其中77%是单例。甚至具有97%相似度的装箱序列仍可模拟出伪多样性,其超出了模型社区的真实复杂性的三倍(V9 GS-FLX)。与V9域相比,V4片段的焦磷酸测序错误率更高,而与GS-FLX系统相比,GS-FLX Titanium的焦磷酸测序错误率更高。此外,该实验表明错误率是特定分类群的。作为这项研究的结果,我们提出了一种快速有效的策略,以区分焦磷酸测序信号与噪声,以便使用在标准标签数据处理管道中实现的简单工具更真实地描绘出前列腺素群落的结构。

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