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首页> 外文期刊>Plant Biotechnology Journal >Induction of a dwarf phenotype with IBH1 may enable increased production of plant?¢????made pharmaceuticals in plant factory conditions
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Induction of a dwarf phenotype with IBH1 may enable increased production of plant?¢????made pharmaceuticals in plant factory conditions

机译:用IBH1诱导矮表型可以在工厂工厂条件下增加植物制成的药物的产量

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摘要

Year?¢????round production in a contained, environmentally controlled ?¢????plant factory?¢???? may provide a cost?¢????effective method to produce pharmaceuticals and other high?¢????value products. However, cost?¢????effective production may require substantial modification of the host plant phenotype; for example, using dwarf plants can enable the growth of more plants in a given volume by allowing more plants per shelf and enabling more shelves to be stacked vertically. We show here that the expression of the chimeric repressor for Arabidopsis AtIBH1 ( P35S:AtIBH1SRDX ) in transgenic tobacco plants ( Nicotiana tabacum ) induces a dwarf phenotype, with reduced cell size. We estimate that, in a given volume of cultivation space, we can grow five times more AtIBH1SRDX plants than wild?¢????type plants. Although, the AtIBH1SRDX plants also showed reduced biomass compared with wild?¢????type plants, they produced about four times more biomass per unit of cultivation volume. To test whether the dwarf phenotype affects the production of recombinant proteins, we expressed the genes for anti?¢????hepatitis B virus antibodies (anti?¢????HBs) in tobacco plants and found that the production of anti?¢????HBs per unit fresh weight did not significantly differ between wild?¢????type and AtIBH1SRDX plants. These data indicate that P35S:AtIBH1SRDX plants produced about fourfold more antibody per unit of cultivation volume, compared with wild type. Our results indicate that AtIBH1SRDX provides a useful tool for the modification of plant phenotype for cost?¢????effective production of high?¢????value products by stably transformed plants in plant factory conditions.
机译:一年-在一个封闭的,受环境控制的工厂工厂中进行全面生产。可以提供一种成本有效的方法来生产药品和其他高价值产品。然而,为了有效地生产成本,可能需要对宿主植物的表型进行实质性的改变。例如,使用矮化植物可以通过在每个架子上放置更多植物,并在垂直方向上堆叠更多的架子,从而在给定的体积中生长更多的植物。我们在这里显示了在转基因烟草植物(Nicotiana tabacum)中拟南芥AtIBH1(P35S:AtIBH1SRDX)的嵌合阻遏物的表达诱导了矮化表型,并减少了细胞大小。我们估计,在给定的栽培空间中,AtIBH1SRDX植物的生长量是野生型植物的五倍。尽管与野生型植物相比,AtIBH1SRDX植物也显示出减少的生物量,但它们每单位耕种量产生的生物量约为四倍。为了测试矮型表型是否影响重组蛋白的产生,我们在烟草植物中表达了抗乙肝病毒乙型肝炎病毒抗体(抗乙肝HBs)的基因,并发现抗乙肝病毒的产生。野生型和AtIBH1SRDX植物的单位新鲜体重HBs没有显着差异。这些数据表明,与野生型相比,P35S:AtIBH1SRDX植物每单位培养体积产生的抗体多约四倍。我们的结果表明,AtIBH1SRDX为修饰植物表型提供了有用的工具,以通过在工厂工厂条件下稳定转化的植物有效地生产成本高昂的产品。

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