Wegener Melanie, Persicke Marcus, Dietz Karl-Josef
Department of Biochemistry and Physiology of Plants, Faculty of Biology, Bielefeld University, Universitätsstr.25, D-33615, Bielefeld, Germany.
Center for Biotechnology-CeBiTec, Bielefeld University, Universitätsstr. 27, D-33615 Bielefeld, Germany.
J Exp Bot. 2024 Apr 15;75(8):2494-2509. doi: 10.1093/jxb/erad509.
Dark-light and light-dark transitions during the day are switching points of leaf metabolism that strongly affect the regulatory state of the cells, and this change is hypothesized to affect the translatome. The cytosolic glyceraldehyde-3-phosphate dehydrogenases GAPC1 and GAPC2 function in glycolysis, and carbohydrate and energy metabolism, but GAPC1/C2 also shows moonlighting functions in gene expression and post-transcriptional regulation. In this study we examined the rapid reprogramming of the translatome that occurs within 10 min at the end of the night and the end of the day in wild-type (WT) Arabidopsis and a gapc1/c2 double-knockdown mutant. Metabolite profiling compared to the WT showed that gapc1/c2 knockdown led to increases in a set of metabolites at the start of day, particularly intermediates of the citric acid cycle and linked pathways. Differences in metabolite changes were also detected at the end of the day. Only small sets of transcripts changed in the total RNA pool; however, RNA-sequencing revealed major alterations in polysome-associated transcripts at the light-transition points. The most pronounced difference between the WT and gapc1/c2 was seen in the reorganization of the translatome at the start of the night. Our results are in line with the proposed hypothesis that GAPC1/C2 play a role in the control of the translatome during light/dark transitions.
白天的暗-光和光-暗转换是叶片新陈代谢的切换点,会强烈影响细胞的调节状态,据推测这种变化会影响翻译组。胞质甘油醛-3-磷酸脱氢酶GAPC1和GAPC2在糖酵解以及碳水化合物和能量代谢中发挥作用,但GAPC1/C2在基因表达和转录后调控中也具有兼职功能。在本研究中,我们检测了野生型(WT)拟南芥以及gapc1/c2双敲除突变体在夜间结束和白天结束时10分钟内发生的翻译组快速重编程。与野生型相比的代谢物谱分析表明,gapc1/c2敲除导致白天开始时一组代谢物增加,特别是柠檬酸循环及相关途径的中间产物。在白天结束时也检测到了代谢物变化的差异。在总RNA池中只有少量转录本发生变化;然而,RNA测序揭示了在光转换点多核糖体相关转录本的主要改变。野生型和gapc1/c2之间最明显的差异出现在夜间开始时翻译组的重组中。我们的结果与提出的假设一致,即GAPC1/C2在光/暗转换期间的翻译组控制中发挥作用。