Optimizing Promoters and Subcellular Localization for Constitutive Transgene Expression in Marchantia polymorpha.

IF 3.9 2区 生物学 Q2 CELL BIOLOGY
Sze Wai Tse, Davide Annese, Facundo Romani, Fernando Guzman-Chavez, Ignacy Bonter, Edith Forestier, Eftychios Frangedakis, Jim Haseloff
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Abstract

Marchantia polymorpha has become an important model system for comparative studies and synthetic biology. The systematic characterization of genetic elements would make heterologous gene expression more predictable in this test bed for gene circuit assembly and bioproduction. Yet, the toolbox of genetic parts for Marchantia includes only a few constitutive promoters that need benchmarking to assess their utility. We compared the expression patterns of previously characterized and new constitutive promoters. We found that driving expression with the double enhancer version of the cauliflower mosaic virus 35S promoter (pro35S × 2) provided the highest yield of proteins, although it also inhibits the growth of transformants. In contrast, promoters derived from the Marchantia genes for ETHYLENE RESPONSE FACTOR 1 and the CLASS II HOMEODOMAIN-LEUCINE ZIPPER protein drove expression to higher levels across all tissues without a growth penalty and can provide intermediate levels of gene expression. In addition, we showed that the cytosol is the best subcellular compartment to target heterologous proteins for higher levels of expression without a significant growth burden. To demonstrate the potential of these promoters in Marchantia, we expressed RUBY, a polycistronic betalain synthesis cassette linked by P2A sequences, to demonstrate coordinated expression of metabolic enzymes. A heat-shock-inducible promoter was used to further mitigate growth burdens associated with high amounts of betalain accumulation. We have expanded the existing tool kit for gene expression in Marchantia and provided new resources for the Marchantia research community.

优化启动子和亚细胞定位,以实现马钱子转基因的组成型表达。
Marchantia polymorpha 已成为比较研究和合成生物学的重要模式系统。对遗传元件进行系统化描述将使异源基因的表达在这个基因回路组装和生物生产的试验平台上更具可预测性。然而,用于马钱子的基因元件工具箱只包括几个组成型启动子,需要对它们进行基准测试,以评估其效用。我们比较了先前表征的组成型启动子和新的组成型启动子的表达模式。我们发现,用花椰菜花叶病毒 35S 启动子的双增强子版本(pro35S×2)驱动表达可提供最高的蛋白质产量,尽管它也会抑制转化体的生长。与此相反,源自马钱子乙烯反应因子 1(MpERF1)和第二类同源多聚酶-亮氨酸 ZIPPER(MpC2HDZ)基因的启动子能使所有组织的表达量达到较高水平,而不会影响生长,并能提供中等水平的基因表达。此外,我们还发现细胞质是靶向异源蛋白的最佳亚细胞区室,可以在不对生长造成明显负担的情况下实现更高水平的表达。为了证明这些启动子在马钱子中的潜力,我们表达了多聚子RUBY甜菜碱合成盒,以证明代谢酶的协调表达。我们还使用了热休克诱导型启动子,以进一步减轻与大量甜菜素积累相关的生长负担。我们扩展了现有的马钱子基因表达工具包,为马钱子研究界提供了新的资源。
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来源期刊
Plant and Cell Physiology
Plant and Cell Physiology 生物-细胞生物学
CiteScore
8.40
自引率
4.10%
发文量
166
审稿时长
1.7 months
期刊介绍: Plant & Cell Physiology (PCP) was established in 1959 and is the official journal of the Japanese Society of Plant Physiologists (JSPP). The title reflects the journal''s original interest and scope to encompass research not just at the whole-organism level but also at the cellular and subcellular levels. Amongst the broad range of topics covered by this international journal, readers will find the very best original research on plant physiology, biochemistry, cell biology, molecular genetics, epigenetics, biotechnology, bioinformatics and –omics; as well as how plants respond to and interact with their environment (abiotic and biotic factors), and the biology of photosynthetic microorganisms.
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