Max Planck Partner Group, Departamento de Biologia Vegetal, Universidade Federal de Vi�osa, Vi�osa 36570-900, Minas Gerais, Brazil.
Max-Planck-Institute of Molecular Plant Physiology, Am M�hlenberg 1, Potsdam-Golm 14476, Germany.
Plant Cell Physiol. 2020 May 1;61(5):897-908. doi: 10.1093/pcp/pcaa017.
Despite the fundamental importance of nicotinamide adenine dinucleotide (NAD+) for metabolism, the physiological roles of NAD+ carriers in plants remain unclear. We previously characterized the Arabidopsis thaliana gene (At1g25380), named AtNDT2, encoding a protein located in the mitochondrial inner membrane, which imports NAD+ from the cytosol using ADP and AMP as counter-exchange substrates for NAD+. Here, we further investigated the physiological roles of NDT2, by isolating a T-DNA insertion line, generating an antisense line and characterizing these genotypes in detail. Reduced NDT2 expression affected reproductive phase by reducing total seed yield. In addition, reduced seed germination and retardation in seedling establishment were observed in the mutant lines. Moreover, remarkable changes in primary metabolism were observed in dry and germinated seeds and an increase in fatty acid levels was verified during seedling establishment. Furthermore, flowers and seedlings of NDT2 mutants displayed upregulation of de novo and salvage pathway genes encoding NAD+ biosynthesis enzymes, demonstrating the transcriptional control mediated by NDT2 activity over these genes. Taken together, our results suggest that NDT2 expression is fundamental for maintaining NAD+ balance amongst organelles that modulate metabolism, physiology and developmental processes of heterotrophic tissues.
尽管烟酰胺腺嘌呤二核苷酸 (NAD+) 对代谢至关重要,但 NAD+载体在植物中的生理作用仍不清楚。我们之前鉴定了拟南芥基因(At1g25380),命名为 AtNDT2,该基因编码一种位于线粒体内膜的蛋白质,它使用 ADP 和 AMP 作为 NAD+的反向交换底物,从细胞质中导入 NAD+。在这里,我们通过分离 T-DNA 插入系、生成反义系并详细表征这些基因型,进一步研究了 NDT2 的生理作用。NDT2 表达的减少通过降低总种子产量来影响生殖阶段。此外,在突变体系中观察到种子发芽和幼苗建立延迟。此外,在干种子和发芽种子中观察到初级代谢物的显著变化,并在幼苗建立过程中验证了脂肪酸水平的增加。此外,NDT2 突变体的花和幼苗上调了编码 NAD+生物合成酶的从头合成和补救途径基因,表明 NDT2 活性对这些基因的转录调控。总之,我们的研究结果表明,NDT2 的表达对于维持细胞器间 NAD+平衡至关重要,这种平衡调节着异养组织的代谢、生理和发育过程。