首页> 美国卫生研究院文献>Plant Physiology >Vitamer Levels Stress Response Enzyme Activity and Gene Regulation of Arabidopsis Lines Mutant in the Pyridoxine/Pyridoxamine 5′-Phosphate Oxidase (PDX3) and the Pyridoxal Kinase (SOS4) Genes Involved in the Vitamin B6 Salvage Pathway
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Vitamer Levels Stress Response Enzyme Activity and Gene Regulation of Arabidopsis Lines Mutant in the Pyridoxine/Pyridoxamine 5′-Phosphate Oxidase (PDX3) and the Pyridoxal Kinase (SOS4) Genes Involved in the Vitamin B6 Salvage Pathway

机译:维生素B6挽救途径涉及的吡ox醇/吡rid胺5-磷酸氧化酶(PDX3)和吡rid醛激酶(SOS4)基因的拟南芥品系的维生素水平应激反应酶活性和基因调控。

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摘要

PDX3 and SALT OVERLY SENSITIVE4 (SOS4), encoding pyridoxine/pyridoxamine 5′-phosphate oxidase and pyridoxal kinase, respectively, are the only known genes involved in the salvage pathway of pyridoxal 5′-phosphate in plants. In this study, we determined the phenotype, stress responses, vitamer levels, and regulation of the vitamin B6 pathway genes in Arabidopsis (Arabidopsis thaliana) plants mutant in PDX3 and SOS4. sos4 mutant plants showed a distinct phenotype characterized by chlorosis and reduced plant size, as well as hypersensitivity to sucrose in addition to the previously noted NaCl sensitivity. This mutant had higher levels of pyridoxine, pyridoxamine, and pyridoxal 5′-phosphate than the wild type, reflected in an increase in total vitamin B6 observed through HPLC analysis and yeast bioassay. The sos4 mutant showed increased activity of PDX3 as well as of the B6 de novo pathway enzyme PDX1, correlating with increased total B6 levels. Two independent lines with T-DNA insertions in the promoter region of PDX3 (pdx3-1 and pdx3-2) had decreased PDX3 activity. Both also had decreased activity of PDX1, which correlated with lower levels of total vitamin B6 observed using the yeast bioassay; however, no differences were noted in levels of individual vitamers by HPLC analysis. Both pdx3 mutants showed growth reduction in vitro and in vivo as well as an inability to increase growth under high light conditions. Increased expression of salvage and some of the de novo pathway genes was observed in both the pdx3 and sos4 mutants. In all mutants, increased expression was more dramatic for the salvage pathway genes.
机译:分别编码吡ido醇/吡rid胺5'-磷酸氧化酶和吡ido醛激酶的PDX3和盐过度敏感4(SOS4)是植物中吡ido醛5'-磷酸的挽救途径中唯一已知的基因。在这项研究中,我们确定了在PDX3和SOS4中的拟南芥(Arabidopsis thaliana)植物突变体中的表型,应激反应,维他命水平和维生素B6途径基因的调控。 sos4突变植物表现出独特的表型,其特征为萎黄病和植物大小缩小,以及对蔗糖的超敏性(除先前提到的NaCl敏感性外)。该突变体比野生型具有更高的吡ido醇,吡ido胺和吡x醛5'-磷酸水平,这反映在通过HPLC分析和酵母生物测定法观察到的总维生素B6含量增加中。 sos4突变体显示PDX3以及B6 de novo途径酶PDX1的活性增加,与总B6水平增加相关。在PDX3的启动子区域(pdx3-1和pdx3-2)插入T-DNA的两条独立细胞系降低了PDX3的活性。两者都具有降低的PDX1活性,这与使用酵母生物测定法观察到的总维生素B6较低水平相关;然而,通过HPLC分析未观察到单个维他命水平的差异。两种pdx3突变体均在体外和体内均显示出生长减少,并且在强光条件下无法增加生长。在pdx3和sos4突变体中均观察到抢救和某些从头途径基因的表达增加。在所有突变体中,挽救途径基因的表达增加更为显着。

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