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首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >Enhanced production of the alkaloid nicotine in hairy root cultures of Nicotiana tabacum L.
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Enhanced production of the alkaloid nicotine in hairy root cultures of Nicotiana tabacum L.

机译:烟草毛状根培养物中生物碱尼古丁的产量提高。

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The utility of hairy root cultures to produce valuable phytochemicals could be improved by repartitioning more of the desired phytochemical into the spent culture media, thereby simplifying the bioprocess engineering associated with the purification of the desired phytochemical. The majority of nicotine produced by tobacco hairy root cultures is retained within roots, with lesser amounts exuded into the spent culture media. Reduced expression of the tobacco nicotine uptake permease (NUP1) results in significantly more nicotine accumulating in the media. Thus, NUP1-reduced expression lines provide a genetic means to repartition more nicotine into the culture media. The present study examined a wild type and a NUP1-reduced expression hairy root line during a variety of treatments to identify culture conditions that increased nicotine accumulation in the media. The NUP1-reduced expression line grew faster, used less oxygen, and exuded more nicotine into the media. Basification of the culture media associated with root growth resulted in a dramatic reduction in nicotine accumulation levels in the media, which was reversed by decreasing the pH of the media. Kinetic analysis of hairy root growth and nicotine accumulation in the media revealed a potential improvement in nicotine yields in the media by stimulating the branching of tobacco hairy roots.
机译:通过将更多的所需植物化学物质重新分配到用过的培养基中,可以改善毛状根培养物生产有价值的植物化学物质的效用,从而简化与所需植物化学物质的纯化相关的生物过程工程。烟草毛状根培养物产生的大部分尼古丁被保留在根中,而少量的尼古丁渗出到废培养基中。烟草尼古丁摄取通透酶(NUP1)的表达降低,导致烟碱在培养基中的积聚明显更多。因此,NUP1减少的表达系提供了将更多尼古丁重新分配到培养基中的遗传手段。本研究在各种处理过程中检查了野生型和NUP1减少的表达毛状根系,以鉴定可增加培养基中尼古丁积累的培养条件。 NUP1减少的表达系生长更快,消耗更少的氧气并向培养基中渗出更多的尼古丁。与根生长相关的培养基的碱化导致培养基中尼古丁积累水平的急剧下降,这通过降低培养基的pH来逆转。对培养基中毛状根生长和尼古丁积累的动力学分析表明,通过刺激烟草毛状根的分支,培养基中尼古丁产量有潜在的提高。

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