首页> 外文期刊>Journal of Agricultural and Food Chemistry >Overexpression of Tomato Prosystemin (LePS) Enhances Pest Resistance and the Production of Tanshinones in Salvia miltiorrhiza Bunge
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Overexpression of Tomato Prosystemin (LePS) Enhances Pest Resistance and the Production of Tanshinones in Salvia miltiorrhiza Bunge

机译:番茄前系统素(LePS)的过表达增强了丹参中的害虫抗性和丹参酮的产生

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Tanshinones are a group of active diterpenes with pharmacological properties that are widely used in the treatment of cardiovascular diseases. Jasmonate (JA) acts as an elicitor to enhance tanshinone biosynthesis in Salvia miltiorrhiza. However, because of high labor costs and undesirable chemical characteristics, the use of JA elicitation is still in the experimental stage. In our experiments, the overexpression of Lycopersicon esculentum (tomato) Prosystemin (LePS) in transgenic plants of S. miltiorrhiza increased their JA concentrations, significantly enhanced the production of tanshinone, and activated the expression of key genes in the tanshinone biosynthesis pathway. Meanwhile, the relative levels of metabolites related to defense such as sterols, terpenes, and phenolic acids were also increased in our OEP lines. In addition, when the larvae of cotton bollworms (Heliothis armigera) were fed with leaves from transgenic lines, their mortality rates rose by nearly 4-fold when compared to that of larvae exposed to leaves from the nontransformed wild type. Our study provides a new strategy for genetic engineering by which tanshinone production and pest resistance can be improved in S. miltiorrhiza. This is accomplished by simulating the wounding signal that increases the endogenous levels of JA.
机译:丹参酮是一组具有药理特性的活性二萜,广泛用于治疗心血管疾病。茉莉酸(JA)可以激发丹参中丹参酮的生物合成。但是,由于高昂的人工成本和不良的化学特性,JA诱因的使用仍处于实验阶段。在我们的实验中,番茄中番茄原系统素(LePS)在拟南芥转基因植物中的过表达提高了其JA浓度,显着提高了丹参酮的产量,并激活了丹参酮生物合成途径中关键基因的表达。同时,在我们的OEP品系中,与防御相关的代谢物(例如固醇,萜烯和酚酸)的相对水平也增加了。此外,当棉铃虫(Heliothis armigera)的幼虫饲喂转基因品系的叶片时,与暴露于非转化野生型叶片的幼虫相比,其死亡率提高了近4倍。我们的研究为遗传工程提供了一种新的策略,通过该策略可以提高丹参中丹参酮的产量和抗虫性。这是通过模拟增加JA内源性水平的伤口信号来完成的。

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