Institute of Plant and Microbial Biology, Academia Sinica, Taipei, 115 201, Taiwan.
Department of Plant Pathology, National Chung Hsing University, Taichung, 402 202, Taiwan.
New Phytol. 2024 Oct;244(1):318-331. doi: 10.1111/nph.20021. Epub 2024 Jul 30.
Chemical-inducible gene expression systems are commonly used to regulate gene expression for functional genomics in various plant species. However, a convenient system that can tightly regulate transgene expression in Nicotiana benthamiana is still lacking. In this study, we developed a tightly regulated copper-inducible system that can control transgene expression and conduct cell death assays in N. benthamiana. We tested several chemical-inducible systems using Agrobacterium-mediated transient expression and found that the copper-inducible system exhibited the least concerns regarding leakiness in N. benthamiana. Although the copper-inducible system can control the expression of some tested reporters, it is not sufficiently tight to regulate certain tested hypersensitive cell death responses. Using the MoClo-based synthetic biology approach, we incorporated the suicide exon HyP5SM/OsL5 and Cre/LoxP as additional regulatory elements to enhance the tightness of the regulation. This new design allowed us to tightly control the hypersensitive cell death induced by several tested leucine-rich repeat-containing proteins and their matching avirulence factors, and it can be easily applied to regulate the expression of other transgenes in transient expression assays. Our findings offer new approaches for both fundamental and translational studies in plant functional genomics.
化学诱导型基因表达系统常用于调控各种植物物种的功能基因组学中的基因表达。然而,在本氏烟中仍缺乏一种可有效调控转基因表达的便捷系统。本研究中,我们开发了一种可调控的铜诱导型系统,可用于控制转基因表达和开展本氏烟细胞死亡实验。我们使用农杆菌介导的瞬时表达方法测试了几种化学诱导型系统,发现铜诱导型系统在本氏烟中漏表达的问题最少。虽然铜诱导型系统可控制部分测试报告基因的表达,但对于某些测试的过敏细胞死亡反应的调控还不够严格。利用基于 MoClo 的合成生物学方法,我们将自杀外显子 HyP5SM/OsL5 和 Cre/LoxP 作为附加调控元件整合到系统中,以增强调控的严格性。这种新设计允许我们严格控制由几种测试的富含亮氨酸重复蛋白及其匹配的无毒因子诱导的过敏细胞死亡,并且可以轻松应用于调控瞬时表达实验中其他转基因的表达。我们的研究结果为植物功能基因组学的基础研究和转化研究提供了新的方法。