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首页> 外文期刊>Plant Physiology and Biochemistry >Enhanced tolerance to salt stress in transgenic loblolly pine simultaneously expressing two genes encoding mannitol-1-phosphate dehydrogenase and glucitol-6-phosphate dehydrogenase.
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Enhanced tolerance to salt stress in transgenic loblolly pine simultaneously expressing two genes encoding mannitol-1-phosphate dehydrogenase and glucitol-6-phosphate dehydrogenase.

机译:转基因火炬松对盐胁迫的耐受性增强,同时表达编码甘露醇-1-磷酸脱氢酶和葡萄糖醇-6-磷酸脱氢酶的两个基因。

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摘要

A reproducible approach to improve salt tolerance of conifers has been established by using the technology of plant genetic transformation and using loblolly pine (Pinus taeda L.) as a model plant. Mature zygotic embryos of three genotypes of loblolly pine were infected with Agrobacterium tumefaciens strain LBA 4404 harboring the plasmid pBIGM which carrying two bacterial genes encoding the mannitol-1-phosphate dehydrogenase (Mt1D, EC 1.1.1.17) and glucitol-6-phosphate dehydrogenase (GutD) (EC 1.1.1.140), respectively. Transgenic plantlets were produced on selection medium containing 15 mg/litre kanamycin and confirmed by polymerase chain reaction (PCR) and Southern blot analysis of genomic DNA. The Mt1D and GutD genes were expressed and translated into functional enzymes that resulted in the synthesis and accumulation of mannitol and glucitol in transgenic plants. Salt tolerance assays demonstrated that transgenic plantlets producing mannitol and glucitol had an increased ability to tolerate high salinity. These results suggested that an efficient A. tumefaciens-mediated transformation protocol for stable integration of bacterial Mt1D and GutD genes into loblolly pine has been developed and this could be useful for the future studies on engineering breeding of conifers.
机译:通过使用植物遗传转化技术并使用火炬松(Pinus taeda L.)作为模型植物,已经建立了一种提高针叶树耐盐性的可再现方法。用含有质粒pBIGM的根癌农杆菌菌株LBA 4404感染三种基因型的火炬松成熟合子胚,该质粒携带两个编码甘露醇-1-磷酸脱氢酶(Mt1D,EC 1.1.1.17)和葡萄糖醇-6-磷酸脱氢酶的细菌基因。 GutD)(EC 1.1.1.140)。在含有15 mg / L卡那霉素的选择培养基上产生转基因苗,并通过聚合酶链反应(PCR)和基因组DNA的Southern印迹分析进行确认。 Mt1D和GutD基因被表达并翻译成功能性酶,导致转基因植物中甘露醇和葡萄糖醇的合成和积累。耐盐性试验表明,生产甘露醇和葡萄糖醇的转基因植株具有较高的耐盐度能力。这些结果表明,已开发出一种有效的根癌农杆菌介导的转化方案,用于将细菌Mt1D和GutD基因稳定整合到火炬松中,这可用于针叶树工程育种的未来研究。

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