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一个马铃薯α-葡萄糖苷酶基因编码一种具有加工糖蛋白功能的α-葡萄糖苷酶II样活性。转基因植物中酶活性的证明及下调的影响。

A potato alpha-glucosidase gene encodes a glycoprotein-processing alpha-glucosidase II-like activity. Demonstration of enzyme activity and effects of down-regulation in transgenic plants.

作者信息

Taylor M A, Ross H A, McRae D, Stewart D, Roberts I, Duncan G, Wright F, Millam S, Davies H V

机构信息

Scottish Crop Research Institute, Invergowrie, Dundee DD2 5DA, UK.

出版信息

Plant J. 2000 Nov;24(3):305-16. doi: 10.1046/j.1365-313x.2000.00873.x.

Abstract

In order to elucidate more fully the function of a potato gene (MAL1) encoding alpha-glucosidase activity, transgenic plants in which MAL1 expression was down-regulated were generated using antisense technology. In transgenic lines severely down-regulated in the expression of MAL1, total alpha-glucosidase activity was not decreased in leaves and tubers, and the contents of starch, glucose, fructose and sucrose remained unchanged in tubers. Phylogenetic analysis indicated that the MAL1 gene product was more similar to the glycoprotein-processing alpha-glucosidase II of mammalian and yeast origin than to other plant alpha-glucosidases. Using [14C-Glc]-labelled Glc2Man9GlcNAc2 as a substrate, it was demonstrated that glucosidase II activity was markedly down-regulated in microsomes isolated from tubers of four independent antisense lines studied in detail, strongly suggesting that MAL1 encodes glucosidase II activity. In field trials (but not in the glasshouse), MAL1 down-regulation produced an extremely stunted phenotype - the leaves were curled and tuber yield was decreased by 90% compared to control values. Microscopic analysis of leaves revealed significant differences between the antisense and control samples. Plants with down-regulated glucosidase II activity showed a greater degree of plasmolysis, and an increase in the size of mesophyll intracellular spaces. Analysis of cell walls also indicated changes in structure as a result of MAL1 down-regulation. In leaves from four antisense lines, the steady-state transcript level corresponding to the endoplasmic reticulum chaperone, BiP, was enhanced. This is diagnostic of stress in the endoplasmic reticulum.

摘要

为了更全面地阐明编码α-葡萄糖苷酶活性的马铃薯基因(MAL1)的功能,利用反义技术培育了MAL1表达下调的转基因植物。在MAL1表达严重下调的转基因株系中,叶片和块茎中的总α-葡萄糖苷酶活性并未降低,块茎中淀粉、葡萄糖、果糖和蔗糖的含量也保持不变。系统发育分析表明,MAL1基因产物与哺乳动物和酵母来源的糖蛋白加工α-葡萄糖苷酶II的相似性高于其他植物α-葡萄糖苷酶。以[14C-Glc]标记的Glc2Man9GlcNAc2为底物,结果表明,在所详细研究的4个独立反义株系的块茎中分离出的微粒体中,葡萄糖苷酶II的活性显著下调,这有力地表明MAL1编码葡萄糖苷酶II的活性。在田间试验(而非温室试验)中,MAL1表达下调产生了极度矮小的表型——叶片卷曲,块茎产量比对照值降低了90%。对叶片的显微镜分析揭示了反义样品与对照样品之间的显著差异。葡萄糖苷酶II活性下调的植株表现出更大程度的质壁分离,叶肉细胞内空间增大。细胞壁分析也表明,MAL1表达下调导致了结构变化。在4个反义株系的叶片中,与内质网伴侣BiP相对应的稳态转录水平有所提高。这是内质网应激的诊断指标。

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