Department of Bioscience and Biotechnology, Dalian University of Technology, Dalian, Liaoning, China.
Appl Biochem Biotechnol. 2009 Dec;159(3):739-49. doi: 10.1007/s12010-009-8554-7. Epub 2009 Mar 3.
A new method without any special devices for direct transformation of linear gene cassettes was developed. Its feasibility was verified through 5'-fluorescent dye (fluorescein isothiocyanate, FITC)-labeled fluorescent tracing and transient expression of a gus reporter gene. Minimal linear gene cassettes, containing necessary regulation elements and a gus reporter gene, was prepared by polymerase chain reaction and dissolved in transformation buffer solution to 100 ng/mL. The basic transformation solution used was Murashige and Skoog basal salt mixture (MS) liquid medium. Hypertonic pretreatment of explants and transformation cofactors, including Ca(2+), surfactant assistants, Agrobacterium LBA4404 cell culture on transformation efficiency were evaluated. Prior to the incubation of the explants and target linear cassette in each designed transformation solution for 3 h, the onion low epidermal explants were pre-cultured in darkness at 27 degrees C for 48 h and then transferred to MS solid media for 72 h. FITC-labeled linear DNA was used to trace the delivery of DNA entry into the cell and the nuclei. By GUS staining and flow-cytometry-mediated fluorescent detection, a significant increase of the ratios of fluorescent nuclei as well as expression of the gus reporter gene was observed by each designed transformation solution. This potent and feasible method showed prospective applications in plant transgenic research.
我们开发了一种无需任何特殊设备即可直接转化线性基因盒的新方法。通过 5' - 荧光染料(异硫氰酸荧光素,FITC)标记荧光示踪和 Gus 报告基因的瞬时表达,验证了其可行性。通过聚合酶链反应制备含有必要调控元件和 Gus 报告基因的最小线性基因盒,并将其溶解在转化缓冲液中至 100ng/ml。基本的转化溶液使用 Murashige 和 Skoog 基本盐混合物(MS)液体培养基。评估了外植体的高渗预处理和转化辅助因子(包括 Ca(2+)、表面活性剂助剂、Agrobacterium LBA4404 细胞培养)对转化效率的影响。在将外植体和目标线性盒在每个设计的转化溶液中孵育 3 小时之前,将洋葱低表皮外植体在黑暗中于 27℃预培养 48 小时,然后转移到 MS 固体培养基中培养 72 小时。FITC 标记的线性 DNA 用于追踪 DNA 进入细胞和细胞核的传递。通过 GUS 染色和流式细胞仪介导的荧光检测,每个设计的转化溶液均观察到荧光核比率以及 Gus 报告基因表达的显著增加。这种有效且可行的方法显示出在植物转基因研究中的应用前景。