Langenberger D, Bermudez-Santana C I, Stadler P F, Hoffmann S
University Leipzig, Interdisciplinary Center for Bioinformatics, Haertelstrasse 16-18, D-04107 Leipzig, Germany.
Pac Symp Biocomput. 2010:80-7. doi: 10.1142/9789814295291_0010.
Current methods for high throughput sequencing (HTS) for the first time offer the opportunity to investigate the entire transcriptome in an essentially unbiased way. In many species, small non-coding RNAs with specific secondary structures constitute a significant part of the transcriptome. Some of these RNA classes, in particular microRNAs and snoRNAs, undergo maturation processes that lead to the production of shorter RNAs. After mapping the sequences to the reference genome specific patterns of short reads can be observed. These read patterns seem to reflect the processing and thus are specific for the RNA transcripts of which they are derived from. We explore here the potential of short read sequence data in the classification and identification of non-coding RNAs.
当前的高通量测序(HTS)方法首次提供了以基本无偏差的方式研究整个转录组的机会。在许多物种中,具有特定二级结构的小非编码RNA构成了转录组的重要组成部分。其中一些RNA类别,特别是微小RNA和核仁小RNA,会经历成熟过程,从而产生更短的RNA。将序列映射到参考基因组后,可以观察到短读段的特定模式。这些读段模式似乎反映了加工过程,因此对于它们所源自的RNA转录本具有特异性。我们在此探索短读段序列数据在非编码RNA分类和鉴定中的潜力。