Guo Liang, Ma Fangfang, Wei Fang, Fanella Brian, Allen Doug K, Wang Xuemin
Department of Biology, University of Missouri, St. Louis, Missouri 63121 Donald Danforth Plant Science Center, St. Louis, Missouri 63132.
Donald Danforth Plant Science Center, St. Louis, Missouri 63132.
Plant Cell. 2014 Jul;26(7):3023-35. doi: 10.1105/tpc.114.126946. Epub 2014 Jul 2.
The cytosolic enzyme glyceraldehyde-3-phosphate dehydrogenase (GAPC) catalyzes a key reaction in glycolysis, but its contribution to plant metabolism and growth are not well defined. Here, we show that two cytosolic GAPCs play important roles in cellular metabolism and seed oil accumulation. Knockout or overexpression of GAPCs caused significant changes in the level of intermediates in the glycolytic pathway and the ratios of ATP/ADP and NAD(P)H/NAD(P). Two double knockout seeds had ∼3% of dry weight decrease in oil content compared with that of the wild type. In transgenic seeds under the constitutive 35S promoter, oil content was increased up to 42% of dry weight compared with 36% in the wild type and the fatty acid composition was altered; however, these transgenic lines exhibited decreased fertility. Seed-specific overexpression lines had >3% increase in seed oil without compromised seed yield or fecundity. The results demonstrate that GAPC levels play important roles in the overall cellular production of reductants, energy, and carbohydrate metabolites and that GAPC levels are directly correlated with seed oil accumulation. Changes in cellular metabolites and cofactor levels highlight the complexity and tolerance of Arabidopsis thaliana cells to the metabolic perturbation. Further implications for metabolic engineering of seed oil production are discussed.
胞质酶甘油醛-3-磷酸脱氢酶(GAPC)催化糖酵解中的一个关键反应,但其对植物代谢和生长的贡献尚未明确界定。在此,我们表明两种胞质GAPC在细胞代谢和种子油积累中发挥重要作用。GAPC的敲除或过表达导致糖酵解途径中间产物水平以及ATP/ADP和NAD(P)H/NAD(P)比率发生显著变化。与野生型相比,两个双敲除种子的油含量干重降低了约3%。在组成型35S启动子驱动下的转基因种子中,油含量相对于野生型的36%增加至干重的42%,且脂肪酸组成发生改变;然而,这些转基因株系的育性降低。种子特异性过表达株系的种子油含量增加超过3%,且种子产量或繁殖力未受影响。结果表明,GAPC水平在细胞还原剂、能量和碳水化合物代谢物的整体产生中发挥重要作用,并且GAPC水平与种子油积累直接相关。细胞代谢物和辅因子水平的变化突出了拟南芥细胞对代谢扰动的复杂性和耐受性。文中还讨论了对种子油生产代谢工程的进一步启示。