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转基因马铃薯根系中细胞溶质三磷酸甘油醛异构酶的大量减少影响了初级代谢中碳的分布。

A large decrease of cytosolic triosephosphate isomerase in transgenic potato roots affects the distribution of carbon in primary metabolism.

机构信息

IRBV, Université de Montréal, 4101 rue Sherbrooke est, Montréal, QC H1X 2B2, Canada.

出版信息

Planta. 2012 Oct;236(4):1177-90. doi: 10.1007/s00425-012-1675-1. Epub 2012 Jun 8.

Abstract

Triosephosphate isomerase (TPI, EC 5.3.1.1) catalyzes the interconversion of dihydroxyacetone-P and glyceraldehyde 3-P in the glycolytic pathway. A constitutively expressed antisense construct for cytosolic TPI was introduced into potato (Solanum tuberosum) using Agrobacterium rhizogenes to examine the metabolic effects of a reduction in cytosolic TPI in roots. We obtained a population of transgenic root clones displaying ~36 to 100 % of the TPI activity found in control clones carrying an empty binary vector. Ion exchange chromatography and immunoblot analysis showed that the antisense strategy significantly decreased the cytosolic TPI isoform, while levels of plastidial TPI activity remained apparently unaffected. Transgenic roots were characterized with respect to the activity of glycolytic enzymes, their metabolite contents and carbon fluxes. Metabolite profiling of sugars, organic acids, amino acids and lipids showed elevated levels of sucrose, glucose, fructose, fumarate, isocitrate, 4-aminobutyrate, alanine, glycine, aromatic amino acids and saturated long chain fatty acids in roots containing the lowest TPI activity. Labelings with (14)C-glucose, (14)C-sucrose and (14)C-acetate indicated that a reduction of cytosolic TPI activity in roots increased carbon metabolism through the pentose phosphate pathway, O(2) uptake and catabolism of sucrose to CO(2), and capacity for lipid synthesis. These results demonstrate that a large reduction of cytosolic TPI alters the distribution of carbon in plant primary metabolism.

摘要

磷酸丙糖异构酶(TPI,EC 5.3.1.1)催化糖酵解途径中 1,6-二磷酸果糖和甘油醛 3-磷酸的相互转化。使用发根农杆菌将组成型表达的细胞质 TPI 反义构建体导入马铃薯(Solanum tuberosum)中,以研究细胞质 TPI 减少对根代谢的影响。我们获得了一群转基因根克隆,其 TPI 活性约为对照克隆中携带空二元载体的 36%至 100%。离子交换层析和免疫印迹分析表明,反义策略显著降低了细胞质 TPI 同工酶的水平,而质体 TPI 活性水平显然没有受到影响。对转基因根的研究涉及糖酵解酶的活性、其代谢物含量和碳通量。糖、有机酸、氨基酸和脂类的代谢物谱分析表明,含有最低 TPI 活性的根中蔗糖、葡萄糖、果糖、富马酸、异柠檬酸、4-氨基丁酸、丙氨酸、甘氨酸、芳香族氨基酸和饱和长链脂肪酸的水平升高。用 (14)C-葡萄糖、(14)C-蔗糖和 (14)C-乙酸进行标记表明,根中细胞质 TPI 活性的降低增加了通过戊糖磷酸途径、O(2)摄取和蔗糖分解为 CO(2)以及脂质合成的碳代谢。这些结果表明,细胞质 TPI 的大量减少改变了植物初级代谢中碳的分布。

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