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Assessment of microRNA differential expression and detection in multiplexed small RNA sequencing data

机译:多重小RNA测序数据中microRNA差异表达的评估和检测

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摘要

Small RNA sequencing can be used to gain an unprecedented amount of detail into the microRNA transcriptome. The relatively high cost and low throughput of sequencing bases technologies can potentially be offset by the use of multiplexing. However, multiplexing involves a trade-off between increased number of sequenced samples and reduced number of reads per sample (i.e., lower depth of coverage). To assess the effect of different sequencing depths owing to multiplexing on microRNA differential expression and detection, we sequenced the small RNA of lung tissue samples collected in a clinical setting by multiplexing one, three, six, nine, or 12 samples per lane using the Illumina HiSeq 2000. As expected, the numbers of reads obtained per sample decreased as the number of samples in a multiplex increased. Furthermore, after normalization, replicate samples included in distinct multiplexes were highly correlated (R > 0.97). When detecting differential microRNA expression between groups of samples, microRNAs with average expression >1 reads per million (RPM) had reproducible fold change estimates (signal to noise) independent of the degree of multiplexing. The number of microRNAs detected was strongly correlated with the log2 number of reads aligning to microRNA loci (R = 0.96). However, most additional microRNAs detected in samples with greater sequencing depth were in the range of expression which had lower fold change reproducibility. These findings elucidate the trade-off between increasing the number of samples in a multiplex with decreasing sequencing depth and will aid in the design of large-scale clinical studies exploring microRNA expression and its role in disease.
机译:小RNA测序可用于在microRNA转录组中获得前所未有的详细信息。测序基础技术的相对较高的成本和较低的吞吐量可能会因使用多路复用而被抵消。但是,多路复用需要在增加数量的测序样本和减少每个样本的读取数目之间进行权衡(即,较低的覆盖深度)。为了评估由于多重操作而引起的不同测序深度对microRNA差异表达和检测的影响,我们通过使用Illumina对每个泳道中的1、3、6、9或12个样品进行多重化,对临床环境中收集的肺组织样品的小RNA进行了测序。 HiSeq2000。正如预期的那样,每个样品获得的读数数量随着多重分析中样品数量的增加而减少。此外,归一化后,包含在不同多重样本中的重复样本高度相关(R> 0.97)。当检测样品组之间不同的microRNA表达时,平均表达> 1读/百万(RPM)的microRNA具有可重复的倍数变化估计值(信噪比),与多路复用的程度无关。检测到的microRNA的数量与与microRNA基因座对齐的读数的log2数量密切相关(R = 0.96)。但是,在具有更大测序深度的样品中检测到的大多数其他microRNA在表达范围内,其折叠变化的重现性较低。这些发现阐明了在增加多重样品的数量与降低测序深度之间的权衡,并将有助于设计大规模临床研究,探索microRNA表达及其在疾病中的作用。

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