Leiden Institute of Chemistry, Leiden University, RA Leiden, The Netherlands.
Institute of Medical Physics and Biophysics, University of Leipzig, Leipzig, Germany.
PLoS One. 2019 Jun 25;14(6):e0218219. doi: 10.1371/journal.pone.0218219. eCollection 2019.
Climate change and the rising food demand provide a need for smart crops that yield more biomass. Recently, two Arabidopsis thaliana mutants with enhanced growth characteristics, VP16-02-003 and the VP16-05-014, were obtained by genome-wide reprogramming of gene expression, which led to the identification of novel biomarkers of these enhanced growth phenotypes. Since the circadian cycle strongly influences metabolic and physiological processes and exerts control over the photosynthetic machinery responsible for enhanced growth, in this study, we investigate the influences of the circadian clock on the metabolic rhythm of eighteen key biomarkers for the larger rosette surface area phenotype. The metabolic profile was studied in intact leaves at seven different time points throughout the circadian cycle using high-resolution magic angle spinning (HR-MAS) NMR. The results show that the circadian rhythm of biomarker metabolites are remarkably robust across wild-type Col-0 and VP16-02-003 and the VP16-05-014 mutants, with widely different metabolite levels of both mutants compared to Col-0 throughout the circadian cycle. Our analysis reveals that robustness is achieved through functional independence between the circadian clock and primary metabolic processes.
气候变化和不断增长的粮食需求需要智能作物来生产更多的生物量。最近,通过对基因表达的全基因组重新编程,获得了两个具有增强生长特性的拟南芥突变体 VP16-02-003 和 VP16-05-014,这导致了这些增强生长表型的新型生物标志物的鉴定。由于昼夜节律强烈影响代谢和生理过程,并对负责增强生长的光合作用机制进行控制,因此在这项研究中,我们研究了昼夜节律钟对 18 个关键生物标志物的代谢节律的影响,这些标志物与较大的莲座叶面积表型有关。使用高分辨率魔角旋转(HR-MAS)NMR 在昼夜周期的七个不同时间点对完整叶片中的代谢谱进行了研究。结果表明,昼夜节律钟的生物标志物代谢物的节律在野生型 Col-0 和 VP16-02-003 以及 VP16-05-014 突变体中非常稳健,与 Col-0 相比,这两个突变体在整个昼夜周期中具有广泛不同的代谢物水平。我们的分析表明,通过昼夜节律钟和初级代谢过程之间的功能独立性实现了稳健性。