烟草
生物
转基因
合成生物学
生物生产
代谢工程
计算生物学
基因表达调控
基因调控网络
基因表达
系统生物学
清脆的
基因沉默
遗传学
发起人
细胞生物学
基因组编辑
Cas9
抄写(语言学)
转录因子
RNA干扰
拟南芥
农业渗透
转基因作物
生物发光
基因组工程
生物技术
基因
基因敲除
作者
Elena Garcia‐Perez,Marta Vázquez‐Vilar,Diego Orzáez
摘要
Nicotiana benthamiana has emerged as a premier plant biofactory for recombinant protein and metabolite production due to its high metabolic versatility, ease of cultivation and permissiveness to transient expression vectors. However, challenges such as transgene silencing, low yields and metabolic toxicity limit its scalability. Synthetic gene circuits offer transformative solutions by enabling precise transgene expression control, dynamic signal processing and metabolic pathway optimization. Recent advancements include novel sensor systems responsive to chemical and electromagnetic signals, synthetic promoters integrated with programmable transcription factors and virus-derived replicons for transcriptional signal amplification. Recombinase-based processors further enhance conditional gene expression and cellular memory capabilities. Innovative platforms like plant cell packs and self-sustained bioluminescence systems facilitate rapid prototyping of gene circuits, enabling high-throughput screening and optimization. Future strategies focus on stable genomic integration, positional effect mitigation and accelerated transgenic line generation using morphogenic regulators and CRISPR systems. By addressing these challenges, synthetic biology can unlock the full potential of N. benthamiana as a scalable and sustainable biofactory for molecular farming, biosensing and advanced bioproduction applications.
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