Louvain Institute of Biomolecular Science and Technology, UCLouvain, Louvain-la-Neuve, Belgium.
Environmental Research and Innovation, Luxembourg Institute of Science and Technology, Esch-sur-Alzette, Luxembourg.
Plant Sci. 2023 Mar;328:111573. doi: 10.1016/j.plantsci.2022.111573. Epub 2022 Dec 21.
In this work, we aimed at implementing the biosynthesis of triterpenic acids in Nicotiana tabacum glandular trichomes. Although endogenous genes coding for enzymes involved in such biosynthetic pathway are found in the Nicotiana tabacum genome, implementing such pathway specifically in glandular trichomes required to boost endogenous enzymatic activities. Five transgenes coding for a farnesyl-diphosphate synthase, a squalene synthase, a squalene epoxidase, a beta-amyrin synthase and a beta-amyrin 28-monooxygenase were introduced in N.tabacum, their expression being driven by pMALD1, a trichome-specific transcriptional promoter. This study aimed at testing whether sinking isoprenoid precursors localized in plastids, by exploiting potential cross-talks allowing the exchange of terpenoid pools from the chloroplast to the cytosol, could be a way to improve overall yield. By analyzing metabolites extracted from entire leaves, a low amount of ursolic acid was detected in plants expressing the five transgenes. Our study shows that the terpene biosynthetic pathway could be, in part, redirected in N.tabacum glandular trichomes with no deleterious phenotype at the whole plant level (chlorosis, dwarfism,…). In light of our results, possible ways to improve the final yield are discussed.
在这项工作中,我们旨在实现在烟草腺毛中三萜酸的生物合成。尽管烟草基因组中存在编码参与这种生物合成途径的酶的内源性基因,但要在腺毛中特异性地实现这种途径,需要提高内源性酶活性。我们将五个编码法呢基二磷酸合酶、鲨烯合酶、鲨烯环氧化酶、β-香树脂醇合酶和β-香树脂醇 28-单加氧酶的转基因引入烟草中,它们的表达受腺毛特异性转录启动子 pMALD1 的驱动。本研究旨在测试是否可以通过利用允许从叶绿体到细胞质交换萜类化合物库的潜在交叉对话,将质体中的异戊二烯前体下沉,从而提高整体产量。通过分析从整个叶片中提取的代谢物,我们在表达这五个转基因的植物中检测到了少量的熊果酸。我们的研究表明,萜类生物合成途径可以部分重定向到烟草腺毛中,而在整个植物水平上没有表型缺陷(黄化、矮化等)。根据我们的结果,讨论了提高最终产量的可能途径。