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Genome-wide analysis of alternative pre-mRNA splicing in Arabidopsis thaliana based on full-length cDNA sequences

机译:基于全长cDNA序列的拟南芥备选mRNA剪接的全基因组分析

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摘要

We mapped RIKEN Arabidopsis full-length (RAFL) cDNAs to the Arabidopsis thaliana genome to search for alternative splicing events. We used 278?734 full-length and 3′/5′ terminal reads of the sequences of 220?214 RAFL cDNA clones for the analysis. Eighty-nine percent of the cDNA sequences could be mapped to the genome and were clustered in 17?130 transcription units (TUs). Alternative splicing events were found in 1764 out of 15?214 TUs (11.6%) with multiple sequences. We collected full-length cDNA clones from plants grown under various environmental conditions or from various organs. We then analyzed the correlation between alternative splicing events and environmental stress conditions. Alternative splicing profiles changed according to environmental stress conditions and the various developmental stages of plant organs. In particular, cold-stress conditions affected alternative splicing profiles. The change in alternative splicing profiles under cold stress may be mediated by alternative splicing and transcriptional regulation of splicing factors.
机译:我们将RIKEN拟南芥全长(RAFL)cDNA映射到拟南芥基因组,以寻找替代的剪接事件。我们使用220?214 RAFL cDNA克隆的序列的278?734全长和3'/ 5'末端读数进行分析。百分之八十九的cDNA序列可以定位到基因组,并聚集在17-130个转录单位(TUs)中。 1764年,在15?214 TU(11.6%)中,发现具有多个序列的其他剪接事件。我们从在各种环境条件下或从各个器官生长的植物中收集了全长cDNA克隆。然后,我们分析了可变剪接事件与环境胁迫条件之间的相关性。替代剪接模式根据环境胁迫条件和植物器官的各个发育阶段而改变。特别地,冷应力条件影响了可替代的剪接轮廓。在冷胁迫下替代剪接图谱的变化可以通过剪接因子的替代剪接和转录调控来介导。

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