Zhao Wei, Zhang Rui, Zhou Luyang, Zhang Zhongxia, Du Fei, Wu Ruoyu, Kong Jing, An Shengjun
School of Medicine, Hebei University of Engineering, Handan Economic and Technological Development Zone, No. 19 Taiji Road, Handan, Hebei Province, 056038, China.
Hebei Provincial Engineering Laboratory of Plant Bioreactor Preparation Technology, Hebei University of Chinese Medicine, No. 326 Xinshi South Road, Qiaoxi District, Shijiazhuang, Hebei, 050090, China.
Bioresour Bioprocess. 2024 Aug 27;11(1):83. doi: 10.1186/s40643-024-00799-9.
The human insulin gene modified with a C-peptide was synthesized according to the plant-preferred codon, and a fusion gene expression vector of insulin combined with green fluorescent protein (GFP) was constructed. The optimization of the flax callus culturing was undertaken, and a more efficient Agrobacterium-mediated genetic transformation of the flax hypocotyls was achieved. The critical concentration values of hygromycin on the flax hypocotyl development, as well as on its differentiated callus, were explored by the method of antibiotic gradient addition, and the application of antibiotic screening for the verification of positive calluses was assessed. The fusion gene of insulin and GFP was successfully inserted into the flax genome and expressed, as confirmed through polymerase chain reaction and Western blotting. In conclusion, we have established a flax callus culture system suitable for insulin expression. By optimizing the conditions of the flax callus induction, transformation, screening, and verification of a transgenic callus, we have provided an effective way to obtain insulin. Moreover, the herein-employed flax callus culture system could provide a feasible, cheap, and environmentally friendly platform for producing bioactive proteins.
根据植物偏爱的密码子合成了用C肽修饰的人胰岛素基因,并构建了胰岛素与绿色荧光蛋白(GFP)结合的融合基因表达载体。对亚麻愈伤组织培养进行了优化,实现了更高效的农杆菌介导的亚麻下胚轴遗传转化。采用抗生素梯度添加法探索了潮霉素对亚麻下胚轴发育及其分化愈伤组织的临界浓度值,并评估了抗生素筛选在阳性愈伤组织验证中的应用。通过聚合酶链反应和蛋白质免疫印迹法证实,胰岛素和GFP的融合基因成功插入亚麻基因组并表达。总之,我们建立了一个适合胰岛素表达的亚麻愈伤组织培养系统。通过优化亚麻愈伤组织诱导、转化、筛选和转基因愈伤组织验证的条件,我们提供了一种获得胰岛素的有效方法。此外,本文所采用的亚麻愈伤组织培养系统可为生产生物活性蛋白提供一个可行、廉价且环保的平台。