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Comparative Analysis of Lactobacillus plantarum WCFS1 Transcriptomes by Using DNA Microarray and Next-Generation Sequencing Technologies

机译:利用DNA芯片和下一代测序技术对植物乳杆菌WCFS1转录组进行比较分析

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摘要

RNA sequencing is starting to compete with the use of DNA microarrays for transcription analysis in eukaryotes as well as in prokaryotes. The application of RNA sequencing in prokaryotes requires additional steps in the RNA preparation procedure to increase the relative abundance of mRNA and cannot employ the poly(T)-primed approach in cDNA synthesis. In this study, we aimed to validate the use of RNA sequencing (direct cDNA sequencing and 3′-untranslated region [UTR] sequencing) using Lactobacillus plantarum WCFS1 as a model organism, employing its established microarray platform as a reference. A limited effect of mRNA enrichment on genome-wide transcript quantification was observed, and comparative transcriptome analyses were performed for L. plantarum WCFS1 grown in two different laboratory media. Microarray analyses and both RNA sequencing methods resulted in similar depths of analysis and generated similar fold-change ratios of differentially expressed genes. The highest overall correlation was found between microarray and direct cDNA sequencing-derived transcriptomes, while the 3′-UTR sequencing-derived transcriptome appeared to deviate the most. Overall, a high similarity between patterns of transcript abundance and fold-change levels of differentially expressed genes was detected by all three methods, indicating that the biological conclusions drawn from the transcriptome data were consistent among the three technologies.
机译:RNA测序开始与使用DNA微阵列在真核生物和原核生物中进行转录分析竞争。 RNA测序在原核生物中的应用需要RNA制备过程中的其他步骤,以增加mRNA的相对丰度,并且不能在cDNA合成中采用poly(T)引发的方法。在这项研究中,我们旨在验证使用植物乳杆菌WCFS1作为模型生物的RNA测序(直接cDNA测序和3'-非翻译区[UTR]测序)的使用,并使用其已建立的微阵列平台作为参考。观察到mRNA富集对全基因组转录本定量的有限影响,并对在两种不同实验室培养基中生长的植物乳杆菌WCFS1进行了比较转录组分析。微阵列分析和两种RNA测序方法均导致相似的分析深度,并产生差异表达基因的相似倍数变化率。在微阵列和直接cDNA测序来源的转录组之间发现最高的总体相关性,而3'-UTR测序来源的转录组似乎偏差最大。总体而言,这三种方法均检测到转录丰度模式与差异表达基因的倍数变化水平之间的高度相似性,这表明从转录组数据得出的生物学结论在这三种技术之间是一致的。

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