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首页> 外文期刊>Plant and Cell Physiology >UDP-Glucose Pyrophosphorylase is not Rate Limiting, but is Essential in Arabidopsis
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UDP-Glucose Pyrophosphorylase is not Rate Limiting, but is Essential in Arabidopsis

机译:UDP葡萄糖焦磷酸化酶没有速率限制,但在拟南芥中是必不可少的

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UDP-glucose pyrophosphorylase (UGPase) produces UDP-glucose which is essential for sucrose and polysaccharide synthesis. Using Arabidopsis, we demonstrated that two UGPase genes (UGP1 and UGP2) are differentially expressed in a variety of organs, with UGP1 being pre-dominant. Co-expression analyses of UGP genes suggest that UGP1 is closely co-regulated with carbohydrate metabolism genes, late embryogenesis and seed loading, while UGP2 is co-regulated with stress response genes, fertilized flowers and photosynthetic genes. We have used Arabidopsis mutants for the UGP genes to characterize the role of both genes. The UGPase activity/protein was reduced by 70, 10 and 85% in ugp1, ugp2 and ugp1/ugp2 double mutant (DK) plants, respectively. A decrease in UGPase activity/protein was accompanied by an increase in expression of USP, a gene for UDP-sugar pyrophos-phorylase, suggesting a compensatory mechanism. Generally, the mutants had no effects on soluble sugar/starch content (except in certain cases for DK plants), and there were no differences in cell wall composition/content between the wild type and the mutants. On the other hand, DK plants had greater hypocotyl and root lengths. When grown in the field, the mutants had as much as a 50% decrease in the number of seeds produced (consistent with a substantial decrease in field fitness), suggesting that they would be outcompeted in the field in a few generations. Overall, the data suggest that UGPase is not rate limiting for sucrose/starch and cell wall synthesis, but that it is essential in Arabidopsis.
机译:UDP-葡萄糖焦磷酸化酶(UGPase)产生UDP-葡萄糖,这对于蔗糖和多糖合成至关重要。使用拟南芥,我们证明了两个UGPase基因(UGP1和UGP2)在各种器官中差异表达,其中UGP1占主导。 UGP基因的共表达分析表明,UGP1与糖代谢基因,晚期胚胎发生和种子负载密切相关,而UGP2与应激反应基因,受精花和光合作用基因密切相关。我们已为UGP基因使用拟南芥突变体来表征这两个基因的作用。在ugp1,ugp2和ugp1 / ugp2双重突变(DK)植物中,UGPase活性/蛋白质分别降低了70%,10%和85%。 UGPase活性/蛋白质的降低伴随着USP的表达增加,USP是UDP糖焦磷酸磷酸化酶的基因,提示其补偿机制。通常,突变体对可溶性糖/淀粉含量没有影响(在某些情况下对于DK植物而言除外),并且野生型和突变体之间的细胞壁组成/含量没有差异。另一方面,DK植物的下胚轴和根长更大。当在田间生长时,这些突变体的种子数量减少了多达50%(与田间适应性显着降低相一致),表明它们在几代后将在田间竞争。总体而言,数据表明,UGPase对蔗糖/淀粉和细胞壁合成没有速率限制,但在拟南芥中是必需的。

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