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Spatio-temporal transcript profiling of rice roots and shoots in response to phosphate starvation and recovery.

机译:水稻根和芽响应磷饥饿和恢复的时空转录谱。

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摘要

Using rice (Oryza sativa) as a model crop species, we performed an in-depth temporal transcriptome analysis, covering the early and late stages of Pi deprivation as well as Pi recovery in roots and shoots, using next-generation sequencing. Analyses of 126 paired-end RNA sequencing libraries, spanning nine time points, provided a comprehensive overview of the dynamic responses of rice to Pi stress. Differentially expressed genes were grouped into eight sets based on their responses to Pi starvation and recovery, enabling the complex signaling pathways involved in Pi homeostasis to be untangled. A reference annotation-based transcript assembly was also generated, identifying 438 unannotated loci that were differentially expressed under Pi starvation. Several genes also showed induction of unannotated splice isoforms under Pi starvation. Among these, PHOSPHATE2 (PHO2), a key regulator of Pi homeostasis, displayed a Pi starvation-induced isoform, which was associated with increased translation activity. In addition, microRNA (miRNA) expression profiles after long-term Pi starvation in roots and shoots were assessed, identifying 20 miRNA families that were not previously associated with Pi starvation, such as miR6250. In this article, we present a comprehensive spatio-temporal transcriptome analysis of plant responses to Pi stress, revealing a large number of potential key regulators of Pi homeostasis in plants.
机译:我们使用水稻(Oryza sativa)作为模型作物,我们进行了深入的时间转录组分析,涵盖了使用下一代测序技术进行的Pi剥夺的早期和晚期以及根和芽中的Pi回收。跨越九个时间点的126个配对末端RNA测序文库的分析全面概述了水稻对Pi胁迫的动态响应。根据它们对Pi饥饿和恢复的反应,将差异表达的基因分为八组,从而使参与Pi动态平衡的复杂信号通路得以解开。还生成了一个基于参考注释的转录本程序集,可识别438个在Pi饥饿下差异表达的未注释基因座。几个基因还显示在Pi饥饿下诱导未注释的剪接亚型。在这些中,Pi稳态的关键调节剂PHOSPHATE2(PHO2)显示出Pi饥饿诱导的同工型,这与增加的翻译活性有关。此外,评估了长期Pi饥饿后根和芽中的microRNA(miRNA)表达谱,鉴定了先前与Pi饥饿无关的20个miRNA家族,例如miR6250。在本文中,我们对植物对Pi胁迫的反应进行了全面的时空转录组分析,揭示了植物中Pi稳态的大量潜在关键调控因子。

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