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A new synthetic biology approach allows transfer of an entire metabolic pathway from a medicinal plant to a biomass crop

机译:一种新的合成生物学方法可以将整个代谢途径从药用植物转移到生物质作物

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摘要

Artemisinin-based therapies are the only effective treatment for malaria, the most devastating disease in human history. To meet the growing demand for artemisinin and make it accessible to the poorest, an inexpensive and rapidly scalable production platform is urgently needed. Here we have developed a new synthetic biology approach, combinatorial supertransformation of transplastomic recipient lines (COSTREL), and applied it to introduce the complete pathway for artemisinic acid, the precursor of artemisinin, into the high-biomass crop tobacco. We first introduced the core pathway of artemisinic acid biosynthesis into the chloroplast genome. The transplastomic plants were then combinatorially supertransformed with cassettes for all additional enzymes known to affect flux through the artemisinin pathway. By screening large populations of COSTREL lines, we isolated plants that produce more than 120 milligram artemisinic acid per kilogram biomass. Our work provides an efficient strategy for engineering complex biochemical pathways into plants and optimizing the metabolic output.>DOI:
机译:基于青蒿素的疗法是治疗疟疾的唯一有效方法,疟疾是人类历史上最具破坏性的疾病。为了满足对青蒿素不断增长的需求并使最贫穷的人们能够使用青蒿素,迫切需要一种廉价且可快速扩展的生产平台。在这里,我们开发了一种新的合成生物学方法,即转质体受体系的组合超转化(COSTREL),并应用它来将青蒿素的前体青蒿酸引入高生物量农作物烟草的完整途径。我们首先将青蒿酸生物合成的核心途径引入到叶绿体基因组中。然后用已知影响青蒿素途径通量的所有其他酶的盒,对转质体植物进行组合超转化。通过筛选大量的COSTREL品系,我们分离出每千克生物质能产生120毫克青蒿酸的植物。我们的工作为将复杂的生化途径工程化为植物并优化代谢输出提供了有效的策略。> DOI:

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