Colinas Maite, Eisenhut Marion, Tohge Takayuki, Pesquera Marta, Fernie Alisdair R, Weber Andreas P M, Fitzpatrick Teresa B
Department of Botany and Plant Biology, University of Geneva, 1211 Geneva, Switzerland.
Institute of Plant Biochemistry, Cluster of Excellence on Plant Science, Heinrich-Heine-University, 40225 Düsseldorf, Germany.
Plant Cell. 2016 Feb;28(2):439-53. doi: 10.1105/tpc.15.01033. Epub 2016 Feb 8.
Vitamin B6 comprises a family of compounds that is essential for all organisms, most notable among which is the cofactor pyridoxal 5'-phosphate (PLP). Other forms of vitamin B6 include pyridoxamine 5'-phosphate (PMP), pyridoxine 5'-phosphate (PNP), and the corresponding nonphosphorylated derivatives. While plants can biosynthesize PLP de novo, they also have salvage pathways that serve to interconvert the different vitamers. The selective contribution of these various pathways to cellular vitamin B6 homeostasis in plants is not fully understood. Although biosynthesis de novo has been extensively characterized, the salvage pathways have received comparatively little attention in plants. Here, we show that the PMP/PNP oxidase PDX3 is essential for balancing B6 vitamer levels in Arabidopsis thaliana. In the absence of PDX3, growth and development are impaired and the metabolite profile is altered. Surprisingly, RNA sequencing reveals strong induction of stress-related genes in pdx3, particularly those associated with biotic stress that coincides with an increase in salicylic acid levels. Intriguingly, exogenous ammonium rescues the growth and developmental phenotype in line with a severe reduction in nitrate reductase activity that may be due to the overaccumulation of PMP in pdx3. Our analyses demonstrate an important link between vitamin B6 homeostasis and nitrogen metabolism.
维生素B6由对所有生物体都必不可少的一类化合物组成,其中最显著的是辅因子磷酸吡哆醛(PLP)。维生素B6的其他形式包括磷酸吡哆胺(PMP)、磷酸吡哆醇(PNP)以及相应的非磷酸化衍生物。虽然植物能够从头生物合成PLP,但它们也有补救途径,用于不同维生素形式之间的相互转化。这些不同途径对植物细胞维生素B6稳态的选择性贡献尚未完全了解。尽管从头生物合成已得到广泛表征,但植物中的补救途径相对较少受到关注。在这里,我们表明PMP/PNP氧化酶PDX3对于拟南芥中B6维生素形式水平的平衡至关重要。在没有PDX3的情况下,生长和发育受到损害,代谢物谱发生改变。令人惊讶的是,RNA测序显示pdx3中与应激相关的基因强烈诱导,特别是那些与生物应激相关的基因,这与水杨酸水平的增加相吻合。有趣的是,外源铵挽救了生长和发育表型,这与硝酸还原酶活性的严重降低一致,这可能是由于pdx3中PMP的过度积累所致。我们的分析表明维生素B6稳态与氮代谢之间存在重要联系。