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首页> 外文期刊>G3: Genes, Genomes, Genetics >ChloroSeq, an Optimized Chloroplast RNA-Seq Bioinformatic Pipeline, Reveals Remodeling of the Organellar Transcriptome Under Heat Stress
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ChloroSeq, an Optimized Chloroplast RNA-Seq Bioinformatic Pipeline, Reveals Remodeling of the Organellar Transcriptome Under Heat Stress

机译:ChloroSeq,一种优化的叶绿体RNA-Seq生物信息学管道,揭示了热胁迫下细胞器转录组的重塑

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摘要

Although RNA-Seq has revolutionized transcript analysis, organellar transcriptomes are rarely assessed even when present in published datasets. Here, we describe the development and application of a rapid and convenient method, ChloroSeq, to delineate qualitative and quantitative features of chloroplast RNA metabolism from strand-specific RNA-Seq datasets, including processing, editing, splicing, and relative transcript abundance. The use of a single experiment to analyze systematically chloroplast transcript maturation and abundance is of particular interest due to frequent pleiotropic effects observed in mutants that affect chloroplast gene expression and/or photosynthesis. To illustrate its utility, ChloroSeq was applied to published RNA-Seq datasets derived from Arabidopsis thaliana grown under control and abiotic stress conditions, where the organellar transcriptome had not been examined. The most appreciable effects were found for heat stress, which induces a global reduction in splicing and editing efficiency, and leads to increased abundance of chloroplast transcripts, including genic, intergenic, and antisense transcripts. Moreover, by concomitantly analyzing nuclear transcripts that encode chloroplast gene expression regulators from the same libraries, we demonstrate the possibility of achieving a holistic understanding of the nucleus-organelle system. ChloroSeq thus represents a unique method for streamlining RNA-Seq data interpretation of the chloroplast transcriptome and its regulators.
机译:尽管RNA-Seq彻底革新了转录本分析方法,但即使存在于已公开的数据集中,也很少评估细胞器转录组。在这里,我们描述了一种快速便捷的方法ChloroSeq的开发和应用,该方法可从特定于链的RNA-Seq数据集中描绘叶绿体RNA代谢的定性和定量特征,包括处理,编辑,剪接和相对转录本丰度。由于在影响叶绿体基因表达和/或光合作用的突变体中观察到频繁的多效作用,因此使用单个实验来系统地分析叶绿体转录物的成熟度和丰度尤其令人感兴趣。为了说明其实用性,将ChloroSeq应用于已公开的RNA-Seq数据集,该数据集源自在对照和非生物胁迫条件下生长的拟南芥,其中未检查细胞器转录组。发现对热胁迫最明显的作用,其引起剪接和编辑效率的整体降低,并导致叶绿体转录物,包括基因,基因间和反义转录物的丰度增加。此外,通过同时分析来自同一文库的编码叶绿体基因表达调节子的核转录本,我们证明了实现对细胞器-细胞器系统的全面理解的可能性。因此,ChloroSeq代表了一种独特的方法,可简化叶绿体转录组及其调节剂的RNA-Seq数据解释。

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