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Vascular expression of a bean cell wall glycine-rich protein–β-glucuronidase gene fusion in transgenic tobacco

机译:转基因烟草中大豆细胞壁富含甘氨酸的蛋白–β-葡萄糖醛酸苷酶基因融合蛋白的血管表达

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摘要

In French bean (Phaseolus vulgaris >L.), the glycine-rich wall protein GRP 1.8 is specifically synthesized in protoxylem tracheary elements of the vascular system. A 494 bp upstream promoter fragment of the gene encoding GRP 1.8 was isolated and translationally fused to the β-glucuronidase reporter gene. Transgenic tobacco plants containing this construct expressed the gene in vascular tissue of roots, stems, leaves and flowers. The gene was developmentally expressed during differentiation of both primary and secondary vascular tissue and was also rapidly induced (in < 30 min) after excision-wounding of young stems. This wound response is more rapid than in bean hypocotyls, indicating possible differences between the activation mechanism for glycine-rich protein gene expression in wounded bean and tobacco. Only a subset of cells were found to participate in the wound response. In young stems, the GRP wound induction was localized in pith parenchyma cells adjacent to the wound surface, where vessel regeneration is known to occur. Thus, a promoter fragment of 494 bp, including 427 bp upstream from the transcription start site, contains information for tissue-specific and wound-induced gene regulation. The cell-type specificity of expression suggests that the GRP 1.8 promoter is regulated by very specific developmental and environmental signals.
机译:在法国菜豆(Phaseolus vulgaris > L。)中,富含甘氨酸的壁蛋白GRP 1.8是在血管系统的原丙酸气管元件中专门合成的。分离出编码GRP 1.8的基因的494bp上游启动子片段,并将其翻译融合到β-葡糖醛酸糖苷酶报道基因上。含有这种构建体的转基因烟草植物在根,茎,叶和花的维管组织中表达该基因。该基因在初级和次级血管组织分化过程中均在发育中表达,并且在年轻茎切除伤口后也被迅速诱导(<30分钟内)。这种伤口反应比大豆下胚轴更快,表明在受伤的大豆和烟草中富含甘氨酸的蛋白质基因表达的激活机制之间可能存在差异。发现只有一部分细胞参与伤口反应。在年轻的茎中,GRP伤口诱导位于邻近伤口表面的髓实质细胞中,已知血管再生发生在该表面。因此,494 bp的启动子片段(包括转录起始位点上游的427 bp)包含组织特异性和伤口诱导基因调控的信息。表达的细胞类型特异性表明,GRP 1.8启动子受非常具体的发育和环境信号调节。

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