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The c4h, tat, hppr and hppd Genes Prompted Engineering of Rosmarinic Acid Biosynthetic Pathway in Salvia miltiorrhiza Hairy Root Cultures

机译:丹参毛状根培养物中迷迭香酸生物合成途径的c4h,tat,hppr和hppd基因提示工程

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摘要

Rational engineering to produce biologically active plant compounds has been greatly impeded by our poor understanding of the regulatory and metabolic pathways underlying the biosynthesis of these compounds. Here we capitalized on our previously described gene-to-metabolite network in order to engineer rosmarinic acid (RA) biosynthesis pathway for the production of beneficial RA and lithospermic acid B (LAB) in Salvia miltiorrhiza hairy root cultures. Results showed their production was greatly elevated by (1) overexpression of single gene, including cinnamic acid 4-hydroxylase (c4h), tyrosine aminotransferase (tat), and 4-hydroxyphenylpyruvate reductase (hppr), (2) overexpression of both tat and hppr, and (3) suppression of 4-hydroxyphenylpyruvate dioxygenase (hppd). Co-expression of tat/hppr produced the most abundant RA (906 mg/liter) and LAB (992 mg/liter), which were 4.3 and 3.2-fold more than in their wild-type (wt) counterparts respectively. And the value of RA concentration was also higher than that reported before, that produced by means of nutrient medium optimization or elicitor treatment. It is the first report of boosting RA and LAB biosynthesis through genetic manipulation, providing an effective approach for their large-scale commercial production by using hairy root culture systems as bioreactors.
机译:由于我们对这些化合物的生物合成基础的调节和代谢途径的了解不足,极大地阻碍了生产生物活性植物化合物的合理工程。在这里,我们利用我们先前描述的基因到代谢物网络来工程化迷迭香酸(RA)生物合成途径,以在丹参毛状根培养物中生产有益的RA和紫草酸B(LAB)。结果表明,它们的产量由于(1)肉桂酸4-羟化酶(c4h),酪氨酸转氨酶(tat)和4-羟苯基丙酮酸还原酶(hppr)的单个基因的过表达而大大提高,(2)tat和hppr都过表达,以及(3)抑制4-羟苯基丙酮酸双加氧酶(hppd)。 tat / hppr的共表达产生最丰富的RA(906 mg / L)和LAB(992 mg / L),分别比野生型(wt)高4.3和3.2倍。 RA浓度的值也高于以前通过营养培养基优化或诱导剂处理产生的浓度。这是第一个通过基因操作促进RA和LAB生物合成的报告,它通过使用毛根培养系统作为生物反应器,为大规模商业生产提供了有效的方法。

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