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Expression of rice 45S rRNA promotes cell proliferation, leading to enhancement of growth in transgenic tobacco

机译:水稻45S rRNA的表达促进细胞增殖,从而促进转基因烟草的生长

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An increase in plant biomass production is desired to reduce emission of carbon dioxide emissions and arrest global climate change because it will provide a more source of energy production than fossil fuels. Recently, we found that forced expression of the rice 45S rRNA gene increased aboveground growth by ca . 2-fold in the transgenic Arabidopsis plants. Here, we created transgenic tobacco plants harboring the rice 45S rRNA driven by the maize ubiquitin promoter (UbiP:: Os45SrRNA ) or cauliflower mosaic virus 35S promoter (35SP:: Os45SrRNA ). In 35SP:: Os45SrRNA and UbiP:: Os45SrRNA transgenic tobacco plants, the leaf length and size were increased compared with control plants, leading to an increase of aboveground growth (dry weight) up to 2-fold at the early stage of seedling development. Conversely, leaf physiological traits, such as photosynthetic capacity, stomatal characteristics, and chlorophylls and RuBisCO protein contents, were similar between the transgenic and control plants. Flow cytometry analysis indicated that the transgenic plants had enhanced cell-proliferation especially in seedling root and leaf primordia. Microarray analysis revealed that genes encoding transcription factors, such as GIGANTEA-like, were more than 2-fold up-regulated in the transgenic plants. Although the mechanism underlying the increased growth has yet to be elucidated, this strategy could be used to increase biomass production in cereals, vegetables, and bio-energy plants.
机译:希望增加植物生物量的生产以减少二氧化碳的排放并阻止全球气候变化,因为与化石燃料相比,它将提供更多的能源生产来源。最近,我们发现水稻45S rRNA基因的强制表达通过ca促进了地上生长。转基因拟南芥植物的2倍。在这里,我们创建了转基因烟草植物,该植物带有由玉米泛素启动子(UbiP :: Os45SrRNA)或花椰菜花叶病毒35S启动子(35SP :: Os45SrRNA)驱动的水稻45S rRNA。在35SP :: Os45SrRNA和UbiP :: Os45SrRNA转基因烟草植物中,与对照植物相比,叶片长度和大小增加,导致幼苗生长初期地上生长(干重)增加至2倍。相反,在转基因植物和对照植物之间,叶片的生理特性,如光合能力,气孔特征,叶绿素和RuBisCO蛋白含量相似。流式细胞仪分析表明,转基因植物的细胞增殖增强,特别是在幼苗的根和叶原基中。基因芯片分析显示,在转基因植物中,编码转录因子(如GIGANTEA样)的基因上调了2倍以上。尽管尚未阐明增长增长的机制,但该策略可用于增加谷物,蔬菜和生物能源植物的生物量生产。

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