发起人
合成生物学
计算生物学
生物
转基因
质粒
报告基因
烟草
克隆(编程)
基因
规范化(社会学)
一套
遗传学
计算机科学
基因表达
生物技术
历史
社会学
考古
程序设计语言
人类学
作者
Andy Zhou,Liam D. Kirkpatrick,Izaiah J. Ornelas,Lorenzo J. Washington,Niklas F. C. Hummel,Christopher W. Gee,Sophia Tang,Collin R. Barnum,Henrik Vibe Scheller,Patrick M. Shih
标识
DOI:10.1021/acssynbio.3c00075
摘要
The need for convenient tools to express transgenes over a large dynamic range is pervasive throughout plant synthetic biology; however, current efforts are largely limited by the heavy reliance on a small set of strong promoters, precluding more nuanced and refined engineering endeavors in planta. To address this technical gap, we characterize a suite of constitutive promoters that span a wide range of transcriptional levels and develop a GoldenGate-based plasmid toolkit named PCONS, optimized for versatile cloning and rapid testing of transgene expression at varying strengths. We demonstrate how easy access to a stepwise gradient of expression levels can be used for optimizing synthetic transcriptional systems and the production of small molecules in planta. We also systematically investigate the potential of using PCONS as an internal standard in plant biology experimental design, establishing the best practices for signal normalization in experiments. Although our library has primarily been developed for optimizing expression in N. benthamiana, we demonstrate the translatability of our promoters across distantly related species using a multiplexed reporter assay with barcoded transcripts. Our findings showcase the advantages of the PCONS library as an invaluable toolkit for plant synthetic biology.
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