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首页> 外文期刊>Plant and cell physiology >Enhancing sucrose synthase activity in transgenic potato (Solanum tuberosum L. ) tubers results in increased levels of starch, ADPglucose and UDPglucose and total yield.
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Enhancing sucrose synthase activity in transgenic potato (Solanum tuberosum L. ) tubers results in increased levels of starch, ADPglucose and UDPglucose and total yield.

机译:提高转基因马铃薯(Solanum tuberosum L.)块茎中的蔗糖合酶活性可增加淀粉,ADP葡萄糖和UDP葡萄糖的含量以及总产量。

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Sucrose synthase (SuSy) is a highly regulated cytosolic enzyme that catalyzes the conversion of sucrose and a nucleoside diphosphate into the corresponding nucleoside diphosphate glucose and fructose. To determine the impact of SuSy activity in starch metabolism and yield in potato (Solanum tuberosum L.) tubers we measured sugar levels and enzyme activities in tubers of SuSy-overexpressing potato plants grown in greenhouse and open field conditions. We also transcriptionally characterized tubers of SuSy-overexpressing and -antisensed potato plants. SuSy-overexpressing tubers exhibited a substantial increase in starch, UDPglucose and ADPglucose content when compared with controls. Tuber dry weight, starch content per plant and total yield of SuSy-overexpressing tubers increased significantly over those of control plants. In contrast, activities of enzymes directly involved in starch metabolism in SuSy-overexpressing tubers were normal when compared with controls. Transcriptomic analyses using POCI arrays and the MapMan software revealed that changes in SuSy activity affect the expression of genes involved in multiple biological processes, but not that of genes directly involved in starch metabolism. These analyses also revealed a reverse correlation between the expressions of acid invertase and SuSy-encoding genes, indicating that the balance between SuSy- and acid invertase-mediated sucrolytic pathways is a major determinant of starch accumulation in potato tubers. Results presented in this work show that SuSy strongly determines the intracellular levels of UDPglucose, ADPglucose and starch, and total yield in potato tubers. We also show that enhancement of SuSy activity represents a useful strategy for increasing starch accumulation and yield in potato tubers. (c) The Author 2009. Published by Oxford University Press on behalf of Japanese Society of Plant Physiologists. All rights reserved.
机译:蔗糖合酶(SuSy)是一种高度调节的胞质酶,可催化蔗糖和核苷二磷酸转化为相应的核苷二磷酸葡萄糖和果糖。为了确定SuSy活性对马铃薯(Solanum tuberosum L.)块茎中淀粉代谢和产量的影响,我们测量了在温室和露天条件下生长的SuSy过表达马铃薯植株的块茎中的糖水平和酶活性。我们还通过转录表征了SuSy过表达和反义马铃薯植株的块茎。与对照相比,过表达SuSy的块茎显示淀粉,UDP葡萄糖和ADP葡萄糖含量显着增加。与对照相比,块茎干重,单株淀粉含量和SuSy过表达块茎的总产量显着增加。相反,与对照相比,过表达SuSy的块茎中直接参与淀粉代谢的酶的活性是正常的。使用POCI阵列和MapMan软件进行的转录组分析显示,SuSy活性的变化影响涉及多个生物过程的基因的表达,但不影响直接参与淀粉代谢的基因的表达。这些分析还揭示了酸性转化酶和SuSy编码基因表达之间的反向相关性,表明SuSy和酸性转化酶介导的糖分解途径之间的平衡是马铃薯块茎淀粉积累的主要决定因素。这项工作提出的结果表明,SuSy强烈决定了马铃薯块茎中UDP葡萄糖,ADP葡萄糖和淀粉的细胞内水平以及总产量。我们还表明,提高SuSy活性代表增加马铃薯块茎淀粉积累和产量的有用策略。 (c)作者2009。由牛津大学出版社代表日本植物生理学家学会出版。版权所有。

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