1Howard Hughes Medical Institute, Department of Plant and Microbial Biology, University of California, Berkeley, CA 94720-3102 USA.
2Molecular Biophysics and Integrated Bioimaging Division, Lawrence Berkeley National Laboratory, Berkeley, CA 94720 USA.
Commun Biol. 2019 Sep 19;2:347. doi: 10.1038/s42003-019-0577-1. eCollection 2019.
Global primary production is driven largely by oxygenic photosynthesis, with algae as major contributors. The green alga reversibly switches off photosynthesis in the presence of glucose in the light and augments production of biofuel precursors (triacylglycerols) and the high-value antioxidant astaxanthin. Here we used forward genetics to reveal that this photosynthetic and metabolic switch is mediated by the glycolytic enzyme hexokinase (CzHXK1). In contrast to wild-type, glucose-treated mutants do not shut off photosynthesis or accumulate astaxanthin, triacylglycerols, or cytoplasmic lipid droplets. We show that CzHXK1 is critical for the regulation of genes related to photosynthesis, ketocarotenoid synthesis and fatty acid biosynthesis. Sugars play fundamental regulatory roles in gene expression, physiology, metabolism, and growth in plants and animals, and we introduce a relatively simple, emerging model system to investigate conserved eukaryotic sugar sensing and signaling at the base of the green lineage.
全球初级生产力主要由产氧光合作用驱动,藻类是主要贡献者。绿藻在光照下的葡萄糖存在下可逆地关闭光合作用,并增加生物燃料前体(三酰基甘油)和高价值抗氧化剂虾青素的产生。在这里,我们使用正向遗传学揭示了这种光合和代谢开关是由糖酵解酶己糖激酶(CzHXK1)介导的。与野生型相比,葡萄糖处理的突变体不会关闭光合作用或积累虾青素、三酰基甘油或细胞质脂滴。我们表明,CzHXK1 对于与光合作用、酮类胡萝卜素合成和脂肪酸生物合成相关的基因的调控至关重要。在动植物中,糖在基因表达、生理学、代谢和生长中起着基本的调节作用,我们引入了一个相对简单、新兴的模式系统,以研究绿色谱系基础上保守的真核糖感应和信号转导。