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Zinc Deficiency Up-Regulates Expression of High-Affinity Phosphate Transporter Genes in Both Phosphate-Sufficient and -Deficient Barley Roots

机译:锌缺乏上调高磷和低磷大麦根中高亲和力磷酸转运蛋白基因的表达

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摘要

Phosphate (P) is taken up by plants through high-affinity P transporter proteins embedded in the plasma membrane of certain cell types in plant roots. Expression of the genes that encode these transporters responds to the P status of the plants, and their transcription is normally tightly controlled. However, this tight control of P uptake is lost under Zn deficiency, leading to very high accumulation of P in plants. We examined the effect of plant Zn status on the expression of the genes encoding the HVPT1 and HVPT2 high-affinity P transporters in barley (Hordeum vulgare L. cv Weeah) roots. The results show that the expression of these genes is intimately linked to the Zn status of the plants. Zn deficiency induced the expression of genes encoding these P transporters in plants grown in either P-sufficient or -deficient conditions. Moreover, the role of Zn in the regulation of these genes is specific in that it cannot be replaced by manganese (a divalent cation similar to Zn). It appears that Zn plays a specific role in the signal transduction pathway responsible for the regulation of genes encoding high-affinity P transporters in plant roots. The significance of Zn involvement in the regulation of genes involved in P uptake is discussed.
机译:植物通过嵌入植物根部某些细胞类型的质膜中的高亲和力P转运蛋白吸收磷(P)。编码这些转运蛋白的基因的表达对植物的P状态起反应,并且其转录通常受到严格控制。但是,在锌缺乏的情况下,对磷吸收的严格控制会丢失,从而导致植物中很高的磷积累。我们检查了植物锌状态对大麦根(Hordeum vulgare L. cv Weeah)根中编码HVPT1和HVPT2高亲和力P转运蛋白的基因表达的影响。结果表明,这些基因的表达与植物的锌状态密切相关。锌缺乏诱导了在磷充足或不足条件下生长的植物中编码这些P转运蛋白的基因的表达。而且,Zn在调节这些基因中的作用是特异性的,因为它不能被锰(类似于Zn的二价阳离子)替代。似乎锌在信号转导途径中起特定作用,该信号转导途径负责调节植物根中编码高亲和力P转运蛋白的基因。讨论了锌在调控参与磷吸收的基因中的重要性。

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