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首页> 外文期刊>Applied and Environmental Microbiology >Molecular Breeding of Transgenic Rice Plants Expressing a Bacterial Chlorocatechol Dioxygenase Gene
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Molecular Breeding of Transgenic Rice Plants Expressing a Bacterial Chlorocatechol Dioxygenase Gene

机译:表达细菌氯邻苯二酚双加氧酶基因的转基因水稻植物的分子育种

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摘要

The cbnA gene encoding the chlorocatechol dioxygenase gene from Ralstonia eutropha NH9 was introduced into rice plants. The cbnA gene was expressed in transgenic rice plants under the control of a modified cauliflower mosaic virus 35S promoter. Western blot analysis using anti-CbnA protein indicated that the cbnA gene was expressed in leaf tissue, roots, culms, and seeds. Transgenic rice calluses expressing the cbnA gene converted 3-chlorocatechol to 2-chloromucote efficiently. Growth and morphology of the transgenic rice plants expressing the cbnA gene were not distinguished from those of control rice plants harboring only a Ti binary vector. It is thus possible to breed transgenic plants that degrade chloroaromatic compounds in soil and surface water.
机译:将来自Ralstonia eutropha NH9的氯邻苯二酚双加氧酶基因的cbnA基因导入水稻植株。在修饰的花椰菜花叶病毒35S启动子的控制下,cbnA基因在转基因水稻植物中表达。使用抗CbnA蛋白的蛋白质印迹分析表明,cbnA基因在叶片组织,根,茎和种子中表达。表达cbnA基因的转基因水稻老茧有效地将3-氯邻苯二酚转化为2-氯粘液。表达cbnA基因的转基因水稻植株的生长和形态与仅带有Ti二元载体的对照水稻植株没有区别。因此,有可能培育出可降解土壤和地表水中的氯代芳香族化合物的转基因植物。

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