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(R)-nicotine biosynthesis, metabolism and translocation in tobacco as determined by nicotine demethylase mutants

机译:(R)-尼古丁脱甲基酶突变体测定的烟草中尼古丁的生物合成,代谢和易位

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摘要

Nicotine is a chiral compound and consequently exists as two enantiomers. Since (R)-nicotine consists of less than 0.5% of total nicotine pool in tobacco, few investigations relating to (R)-nicotine have been reported. However, previous studies of nicotine demethylases suggested there was substantial amount of (R)-nicotine at synthesis in the tobacco plant. In this study, the accumulation and translocation of (R)-nicotine in tobacco was analyzed. The accumulation of nicotine and its demethylation product the nornicotine enantiomers, were investigated in different tobacco plant parts and at different growth and post-harvest stages. Scion/rootstock grafts were used to separate the contributions of roots (source) from leaves (sink) to the final accumulation of nicotine and nornicotine in leaf tissue. The results indicate that 4% of nicotine is in the (R) form at synthesis in the root. After the majority of (R)-nicotine is selectively demethylated by CYP82E4, CYP82E5v2 and CYP82E10 in the root, nicotine and nornicotine are translocated to leaf, where more nicotine becomes demethylated. Depending on the CYP82E4 activity in senescing leaf, constant low (R)-nicotine remains in the tobacco leaf and variable nornicotine composition is produced. These results confirmed the enantioselectivity of three nicotine demethylases in planta, could be used to predict the changes of nicotine and nornicotine composition, and may facilitate demethylase discovery in the future.
机译:尼古丁是一种手性化合物,因此以两种对映体的形式存在。由于(R)烟碱占烟草中尼古丁总量的不到0.5%,因此很少有关于(R)烟碱的研究报道。但是,先前对尼古丁脱甲基酶的研究表明,烟草植物在合成时存在大量的(R)-烟碱。在这项研究中,分析了(R)-尼古丁在烟草中的积累和转运。在不同的烟草植物部位以及不同的生长和收获后阶段,研究了烟碱及其脱甲基产物降烟碱对映体的积累。接穗/砧木嫁接用于分离根(源)从叶(下沉)到叶组织中尼古丁和降烟碱最终积累的贡献。结果表明,在根部合成时,4%的烟碱呈(R)形式。在大多数(R)-烟碱通过CYP82E4,CYP82E5v2和CYP82E10根部选择性脱甲基后,尼古丁和去甲烟碱易位至叶,更多的尼古丁会脱甲基。取决于衰老叶片中的CYP82E4活性,烟草叶片中始终存在低(R)-尼古丁恒定含量,并产生可变的去甲烟碱成分。这些结果证实了植物中三种烟碱脱甲基酶的对映选择性,可用于预测烟碱和去甲烟碱组成的变化,并可能在将来促进脱甲基酶的发现。

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