Lytovchenko Anna, Sweetlove Lee, Pauly Markus, Fernie Alisdair R
Dept. Willnitzer, Max-Planck-Institut für Molekulare Pflanzenphysiologie, Am Mühlenberg 1, 14476 Golm, Germany.
Planta. 2002 Oct;215(6):1013-21. doi: 10.1007/s00425-002-0826-1. Epub 2002 Jul 12.
The aim of this work was to examine the role of cytosolic phosphoglucomutase (cPGM; EC 5.4.2.2) in photosynthetic carbon partitioning. We have previously described the generation and characterisation of the tuber metabolism of transgenic potato ( Solanum tuberosum cv. Desiree) lines expressing the StcPGM gene in the antisense orientation under the control of the 35S promoter. Here we extend the characterisation of leaf metabolism within these lines, examining properties of gas exchange, carbon partitioning, and the effect of the genetic manipulation on a wide range of metabolites including metabolites of the sucrose-starch transition, glycolysis, the Krebs cycle and amino acid metabolism. The data acquired in the present study surprisingly reveal that the photosynthetic sucrose synthetic capacity of the leaves is largely unaltered but that these plants display a reduced rate of photosynthesis, a dramatic reduction in nucleotide levels, and a general decline of biosynthesis. We conclude that these lines exhibit only moderate changes in sucrose synthesis but more complex changes on a range of diverse metabolic pathways.
这项工作的目的是研究胞质磷酸葡萄糖变位酶(cPGM;EC 5.4.2.2)在光合碳分配中的作用。我们之前已经描述了在35S启动子控制下以反义方向表达StcPGM基因的转基因马铃薯(Solanum tuberosum cv. Desiree)品系块茎代谢的产生和特征。在此,我们扩展了这些品系叶片代谢的特征描述,研究了气体交换特性、碳分配以及基因操作对多种代谢物的影响,这些代谢物包括蔗糖 - 淀粉转化、糖酵解、三羧酸循环和氨基酸代谢的代谢物。本研究获得的数据出人意料地表明,叶片的光合蔗糖合成能力基本未改变,但这些植株的光合作用速率降低、核苷酸水平急剧下降且生物合成普遍减少。我们得出结论,这些品系在蔗糖合成方面仅表现出适度变化,但在一系列不同的代谢途径上有更复杂的变化。