Building a pipeline to identify and engineer constitutive and repressible promoters.

Quantitative plant biology Pub Date : 2023-10-19 eCollection Date: 2023-01-01 DOI:10.1017/qpb.2023.10
Eric J Y Yang, Jennifer L Nemhauser
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引用次数: 0

Abstract

To support the increasingly complex circuits needed for plant synthetic biology applications, additional constitutive promoters are essential. Reusing promoter parts can lead to difficulty in cloning, increased heterogeneity between transformants, transgene silencing and trait instability. We have developed a pipeline to identify genes that have stable expression across a wide range of Arabidopsis tissues at different developmental stages and have identified a number of promoters that are well expressed in both transient (Nicotiana benthamiana) and stable (Arabidopsis) transformation assays. We have also introduced two genome-orthogonal gRNA target sites in a subset of the screened promoters, converting them into NOR logic gates. The work here establishes a pipeline to screen for additional constitutive promoters and can form the basis of constructing more complex information processing circuits in the future.

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建立一个鉴定和设计组成型和抑制型启动子的管道。
为了支持植物合成生物学应用所需的日益复杂的电路,额外的组成型启动子是必不可少的。重复使用启动子部分会导致克隆困难、转化体之间的异质性增加、转基因沉默和性状不稳定。我们已经开发了一条管道来鉴定在不同发育阶段在广泛的拟南芥组织中稳定表达的基因,并鉴定了许多在瞬时(本氏烟草)和稳定(拟南芥)转化试验中都能很好表达的启动子。我们还在筛选的启动子子集中引入了两个基因组正交gRNA靶位点,将它们转化为NOR逻辑门。这里的工作建立了一个筛选额外组成型启动子的管道,并可以为未来构建更复杂的信息处理电路奠定基础。
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CiteScore
2.50
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