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Deep RNA sequencing at single base-pair resolution reveals high complexity of the rice transcriptome

机译:单碱基对分辨率的深度RNA测序揭示了水稻转录组的高度复杂性

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摘要

Understanding the dynamics of eukaryotic transcriptome is essential for studying the complexity of transcriptional regulation and its impact on phenotype. However, comprehensive studies of transcriptomes at single base resolution are rare, even for modern organisms, and lacking for rice. Here, we present the first transcriptome atlas for eight organs of cultivated rice. Using high-throughput paired-end RNA-seq, we unambiguously detected transcripts expressing at an extremely low level, as well as a substantial number of novel transcripts, exons, and untranslated regions. An analysis of alternative splicing in the rice transcriptome revealed that alternative cis-splicing occurred in ∼33% of all rice genes. This is far more than previously reported. In addition, we also identified 234 putative chimeric transcripts that seem to be produced by trans-splicing, indicating that transcript fusion events are more common than expected. In-depth analysis revealed a multitude of fusion transcripts that might be by-products of alternative splicing. Validation and chimeric transcript structural analysis provided evidence that some of these transcripts are likely to be functional in the cell. Taken together, our data provide extensive evidence that transcriptional regulation in rice is vastly more complex than previously believed.
机译:了解真核转录组的动力学对于研究转录调控的复杂性及其对表型的影响至关重要。但是,即使对于现代生物,对水稻的单碱基分辨率转录组的全面研究也很少。在这里,我们介绍了栽培水稻的八个器官的第一个转录组图谱。使用高通量的双末端RNA-seq,我们可以清楚地检测到极低水平表达的转录本,以及大量的新颖转录本,外显子和非翻译区。水稻转录组中的选择性剪接分析表明,所有水稻基因中约有33%发生了顺式剪接。这远远超过了以前的报道。此外,我们还鉴定了234种似乎由反式剪接产生的嵌合转录本,表明转录本融合事件比预期的更为普遍。深入分析发现,许多融合转录本可能是选择性剪接的副产物。验证和嵌合转录本结构分析提供了证据,这些转录本中的某些可能在细胞中起作用。综上所述,我们的数据提供了广泛的证据,表明水稻的转录调控比以前认为的要复杂得多。

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