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Zinc triggers a complex transcriptional and post-transcriptional regulation of the metal homeostasis gene FRD3 in Arabidopsis relatives

机译:锌触发了拟南芥亲属金属稳态基因FRD3的复杂转录和转录后调节

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In Arabidopsis thaliana, FRD3 (FERRIC CHELATE REDUCTASE DEFECTIVE 3) plays a central role in metal homeostasis. FRD3 is among a set of metal homeostasis genes that are constitutively highly expressed in roots and shoots of Arabidopsis halleri, a zinc hyperaccumulating and hypertolerant species. Here, we examined the regulation of FRD3 by zinc in both species to shed light on the evolutionary processes underlying the evolution of hyperaccumulation in A. halleri. We combined gene expression studies with the use of beta-glucuronidase and green fluorescent protein reporter constructs to compare the expression profile and transcriptional and post-transcriptional regulation of FRD3 in both species. The AtFRD3 and AhFRD3 genes displayed a conserved expression profile. In A. thaliana, alternative transcription initiation sites from two promoters determined transcript variants that were differentially regulated by zinc supply in roots and shoots to favour the most highly translated variant under zinc-excess conditions. In A. halleri, a single transcript variant with higher transcript stability and enhanced translation has been maintained. The FRD3 gene thus undergoes complex transcriptional and post-transcriptional regulation in Arabidopsis relatives. Our study reveals that a diverse set of mechanisms underlie increased gene dosage in the A. halleri lineage and illustrates how an environmental challenge can alter gene regulation.
机译:在Arabidopsis Thaliana中,FRD3(螯合螯合物还原酶有缺陷3)在金属稳态中起着重要作用。 FRD3是一组金属稳态基因,这些基因组成型在rapidopsis holleri的根和芽,锌超令人痛苦和高增压物种中。在这里,我们通过锌的锌来研究FRD3的调节,以阐明在A. Halleri的超读数的演变中的进化过程中的阐明。我们将基因表达研究与使用β-葡糖醛酸酶和绿色荧光蛋白报告构建体组合以比较两种物种中FRD3的表达谱和转录和转录后调节。 ATFRD3和AHFRD3基因显示出保守的表达谱。在A.本地,来自两种启动子的替代转录起始位点确定的转录变体,其通过锌供应在根中差异调节并射击,以支持在锌过量条件下最高度翻译的变体。在A. Halleri中,维持了一种具有更高转录物稳定性和增强翻译的单一转录变体。因此,FRD3基因经历了拟南芥亲属的复杂转录和转录后调节。我们的研究表明,一种多样化的机制提出了A. Halleri谱系的增加的基因剂量,并说明了环境挑战如何改变基因调控。

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