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首页> 外文期刊>Plant Molecular Biology >Increased Septoria musiva resistance in transgenic hybrid poplar leaves expressing a wheat oxalate oxidase gene
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Increased Septoria musiva resistance in transgenic hybrid poplar leaves expressing a wheat oxalate oxidase gene

机译:表达小麦草酸氧化酶基因的转基因杂种杨树叶片中Septoria肌肉抗性的增加

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摘要

A cDNA clone of a wheat germin-like oxalate oxidase (OxO) gene regulated by the constitutive CaMV 35S promoter was expressed in a hybrid poplar clone, Populus × euramericana (`Ogy'). Previous studies showed that OxO is likely to play an important role in several aspects of plant development, stress response, and defense against pathogens. In order to study this wheat oxalate oxidase gene in woody plants, the expression of this gene and the functions of the encoded enzyme were examined in vitro and in vivo in transgenic `Ogy'. The enzyme activity in the transformed `Ogy' was visualized by histochemical assays and in SDS-polyacrylamide gels. It was found that the wheat OxO gene is expressed in leaves, stems, and roots of the transgenic `Ogy' plants and the encoded enzyme is able to break down oxalic acid. Transgenic `Ogy' leaves were more tolerant to oxalic acid as well as more effective in increasing the pH in an oxalic acid solution when compared to untransformed controls. In addition, when leaf disks from `Ogy' plants were inoculated with conidia of the poplar pathogenic fungus Septoria musiva, which produces oxalic acid, the OxO-transformed plants were more resistant than the untransformed controls.
机译:由组成型CaMV 35S启动子调控的小麦发芽状草酸氧化酶(OxO)基因的cDNA克隆在杂交杨树克隆Populus×euramericana('Ogy')中表达。先前的研究表明,OxO可能在植物发育,胁迫反应和病原体防御的多个方面发挥重要作用。为了研究木本植物中的小麦草酸氧化酶基因,在转基因“ Ogy”中体内和体外检查了该基因的表达和编码酶的功能。通过组织化学分析和SDS-聚丙烯酰胺凝胶观察到转化的“ Ogy”中的酶活性。已经发现,小麦OxO基因在转基因“ Ogy”植物的叶子,茎和根中表达,编码的酶能够分解草酸。与未转化的对照相比,转基因“ Ogy”叶对草酸的耐受性更高,并且在增加草酸溶液中的pH值方面更有效。另外,当将来自“ Ogy”植物的叶盘接种产生草酸的杨树病原真菌Septoria musiva的分生孢子时,经OxO转化的植物比未转化的对照更具抗性。

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