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Genetic Factors for Enhancement of Nicotine Levels in Cultivated Tobacco

机译:遗传因素提高栽培烟中尼古丁水平

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摘要

Nicotine has practical applications relating to smoking cessation devices and alternative nicotine products. Genetic manipulation for increasing nicotine content in cultivated tobacco (Nicotiana tabacum L.) may be of value for industrial purposes, including the possibility of enhancing the efficiency of nicotine extraction. Biotechnological approaches have been evaluated in connection with this objective, but field-based results are few. Here, we report characterization of two genes encoding basic-helix-loop-helix (bHLH) transcription factors (TFs), NtMYC2a and NtMYC2b from tobacco. Overexpression of NtMYC2a increased leaf nicotine levels in T1 transgenic lines approximately 2.3-fold in greenhouse-grown plants of tobacco cultivar ‘NC 95′. Subsequent field testing of T2 and T3 generations of transgenic NtMYC2a overexpression lines showed nicotine concentrations were 76% and 58% higher than control lines, respectively. These results demonstrated that the increased nicotine trait was stably inherited to the T2 and T3 generations, indicating the important role that NtMYC2a plays in regulating nicotine accumulation in N. tabacum and the great potential of NtMYC2a overexpression in tobacco plants for industrial nicotine production. Collected data in this study also indicated a negative feedback inhibition of nicotine biosynthesis. Further enhancement of nicotine accumulation in tobacco leaf may require modification of the processes of nicotine transport and deposition.
机译:尼古丁具有与戒烟设备和尼古丁替代产品有关的实际应用。遗传操纵以增加栽培烟草(Nicotiana tabacum L.)中尼古丁的含量可能具有工业用途,包括提高尼古丁提取效率的可能性。已经针对这一目标对生物技术方法进行了评估,但是基于现场的结果却很少。在这里,我们报告表征两个编码烟草基本螺旋-环-螺旋(bHLH)转录因子(TFs)的基因,NtMYC2a和NtMYC2b。 NtMYC2a的过表达使T1转基因品系的温室烟叶品种'NC 95'的叶片烟碱水平增加了约2.3倍。随后对转基因NtMYC2a过表达品系的T2和T3世代进行的现场测试表明,烟碱浓度分别比对照品高76%和58%。这些结果表明,增加的尼古丁性状稳定地遗传给了T2和T3世代,表明NtMYC2a在调节烟草中尼古丁积累中起着重要作用,以及NtMYC2a在烟草植物中过量表达的工业尼古丁生产潜力。在这项研究中收集的数据还表明尼古丁生物合成的负反馈抑制作用。进一步提高烟叶中尼古丁的积累可能需要改变尼古丁的运输和沉积过程。

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