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Stress-induced and epigenetic-mediated maize transcriptome regulation study by means of transcriptome reannotation and differential expression analysis

机译:通过转录组成果和差异表达分析来诱导应激诱导和表观致介导的玉米转录组调控

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摘要

Plant's response and adaptation to abiotic stresses involve sophisticated genetic and epigenetic regulatory systems. To obtain a global view of molecular response to osmotic stresses, including the non-coding portion of genome, we conducted a total leaf transcriptome analysis on maize plants subjected to prolonged drought and salt stresses. Stress application to both B73 wild type and the epiregulator mutant rpd1-1/rmr6 allowed dissection of the epigenetic component of stress response. Coupling total RNA-Seq and transcriptome re-assembly we annotated thousands of new maize transcripts, together with 13,387 lncRNAs that may play critical roles in regulating gene expression. Differential expression analysis revealed hundreds of genes modulated by long-term stress application, including also many lncRNAs and transposons specifically induced by stresses. The amplitude and dynamic of the stress-modulated gene sets are very different between B73 and rpd1-1/rmr6 mutant plants, as result of stress-like effect on genome regulation caused by the mutation itself, which activates many stress-related genes even in control condition. The analyzed extensive set of total RNA-Seq data, together with the improvement of the transcriptome and the identification of the non-coding portion of the transcriptome give a revealing insight into the genetic and epigenetic mechanism responsible for maize molecular response to abiotic stresses.
机译:植物的反应和对非生物胁迫的适应涉及复杂的遗传和表观遗传调节系统。为了获得对渗透胁迫的渗透胁迫的全球视图,包括基因组的非编码部分,我们对经受长期干旱和盐胁迫进行的玉米植物进行了总叶片转录组分析。 B73野生型和表达型突变体RPD1-1 / RMR6允许解剖应激反应的表观遗传成分的应力应用。偶联总RNA-SEQ和转录组重新组装我们注释了数千名新玉米转录物,以及13,387 LNCRNA,可在调节基因表达中发挥关键作用。差异表达分析揭示了通过长期应力施加调节的数百个基因,包括许多由应力诱导的LNCRNA和转座子。由于由突变本身引起的基因组调控的应激状效果,B73和RPD1-1 / RMR6突变植物之间的应力调制基因集的幅度和动态在突变本身引起的基因组调节的结果之间,即使在...中激活许多应激相关基因控制条件。分析的广泛的总RNA-SEQ数据集,以及转录组的改善以及转录组的非编码部分的鉴定揭示了对玉米分子反应对非生物胁迫的遗传和表观遗传机制的探讨。

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