Regulation of nucleus‐encoded trans‐acting factors allows orthogonal fine‐tuning of multiple transgenes in the chloroplast of Chlamydomonas reinhardtii

IF 10.1 1区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Pawel Mateusz Mordaka, Kitty Clouston, Aleix Gorchs‐Rovira, Catherine Sutherland, Daniel Qingyang Zhang, Katrin Geisler, Payam Mehrshahi, Alison Gail Smith
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Abstract

SummaryThe green microalga Chlamydomonas reinhardtii is a promising host organism for the production of valuable compounds. Engineering the Chlamydomonas chloroplast genome offers several advantages over the nuclear genome, including targeted gene insertion, lack of silencing mechanisms, potentially higher protein production due to multiple genome copies and natural substrate abundance for metabolic engineering. Tuneable expression systems can be used to minimize competition between heterologous production and host cell viability. However, complex gene regulation and a lack of tight regulatory elements make this a challenge in the Chlamydomonas chloroplast. In this work, we develop two synthetic tuneable systems to control the expression of genes on the chloroplast genome, taking advantage of the properties of the vitamin B12‐responsive METE promoter and a modified thiamine (vitamin B1) riboswitch, along with nucleus‐encoded chloroplast‐targeted regulatory proteins NAC2 and MRL1. We demonstrate the capacity of these systems for robust, fine‐tuned control of several chloroplast transgenes, by addition of nanomolar levels of vitamins. The two systems have been combined in a single strain engineered to avoid effects on photosynthesis and are orthogonal to each other. They were then used to manipulate the production of an industrially relevant diterpenoid, casbene, by introducing and tuning expression of the coding sequence for casbene synthase, as well as regulating the metabolite flux towards casbene precursors, highlighting the utility of these systems for informing metabolic engineering approaches.

Abstract Image

核编码反式作用因子的调控允许莱茵衣藻叶绿体中多个转基因的正交微调
莱茵衣藻(Chlamydomonas reinhardtii)是一种很有希望生产有价值化合物的绿色微藻。与核基因组相比,衣藻叶绿体基因组工程具有几个优势,包括靶向基因插入,缺乏沉默机制,由于多个基因组拷贝和天然底物丰富的代谢工程,可能会产生更高的蛋白质。可调表达系统可用于减少异种生产和宿主细胞活力之间的竞争。然而,在衣藻叶绿体中,复杂的基因调控和缺乏严格的调控元件使这成为一个挑战。在这项工作中,我们开发了两个合成可调系统来控制叶绿体基因组上基因的表达,利用维生素B12响应METE启动子和修饰的硫胺素(维生素B1)核糖开关的特性,以及核编码的叶绿体靶向调节蛋白NAC2和MRL1。通过添加纳摩尔水平的维生素,我们证明了这些系统对几种叶绿体转基因进行稳健、微调控制的能力。为了避免对光合作用的影响,这两个系统被组合在一个菌株中,并且彼此正交。然后,通过引入和调整casbene合成酶编码序列的表达,以及调节casbene前体的代谢物通量,它们被用来操纵工业上相关的二萜类物质casbene的生产,突出了这些系统在代谢工程方法中的实用性。
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来源期刊
Plant Biotechnology Journal
Plant Biotechnology Journal 生物-生物工程与应用微生物
CiteScore
20.50
自引率
2.90%
发文量
201
审稿时长
1 months
期刊介绍: Plant Biotechnology Journal aspires to publish original research and insightful reviews of high impact, authored by prominent researchers in applied plant science. The journal places a special emphasis on molecular plant sciences and their practical applications through plant biotechnology. Our goal is to establish a platform for showcasing significant advances in the field, encompassing curiosity-driven studies with potential applications, strategic research in plant biotechnology, scientific analysis of crucial issues for the beneficial utilization of plant sciences, and assessments of the performance of plant biotechnology products in practical applications.
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