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A genome-wide transcriptome profiling reveals the early molecular events during callus initiation in Arabidopsis multiple organs

机译:全基因组转录组分析揭示了拟南芥多个器官中愈伤组织起始过程中的早期分子事件

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Induction of a pluripotent cell mass termed callus is the first step in an in vitro plant regeneration system, which is required for subsequent regeneration of new organs or whole plants. However, the early molecular mechanism underlying callus initiation is largely elusive. Here, we analyzed the dynamic transcriptome profiling of callus initiation in Arabidopsis aerial and root explants and identified 1342 differentially expressed genes in both explants after incubation on callus-inducing medium. Detailed categorization revealed that the differentially expressed genes were mainly related to hormone homeostasis and signaling, transcriptional and post transcriptional regulations, protein phosphorelay cascades and DNA- or chromatin-modification. Further characterization showed that overexpression of two transcription factors, HB52 or CRF3, resulted in the callus formation in transgenic plants without exogenous auxin. Therefore, our comprehensive analyses provide some insight into the early molecular regulations during callus initiation and are useful for further identification of the regulators governing callus formation.
机译:诱导称为愈伤组织的多能细胞团是体外植物再生系统的第一步,这对于随后新器官或整株植物的再生是必需的。但是,愈伤组织引发的早期分子机制在很大程度上难以捉摸。在这里,我们分析了拟南芥气生和根外植体中愈伤组织起始的动态转录组谱,并在诱导愈伤组织的培养基上孵育后鉴定了两种外植体中的1342个差异表达基因。详细的分类显示,差异表达的基因主要与激素稳态和信号传导,转录和转录后调控,蛋白质磷酸化级联以及DNA或染色质修饰有关。进一步的表征表明,两种转录因子HB52或CRF3的过表达导致在没有外源生长素的转基因植物中形成愈伤组织。因此,我们的综合分析为愈伤组织启动过程中的早期分子调控提供了一些见识,并有助于进一步确定调控愈伤组织形成的调节剂。

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