Shi Liang, Chen Dongdong, Xu Chao, Ren Ang, Yu Hanshou, Zhao Mingwen
College of Life Sciences, Nanjing Agricultural University; Key Laboratory of Microbiological Engineering of Agricultural Environment, Ministry of Agriculture.
J Gen Appl Microbiol. 2017 Jul 11;63(3):179-185. doi: 10.2323/jgam.2016.10.003. Epub 2017 May 2.
Flammulina velutipes is a well-known edible mushroom cultivated all over the world. However, because of the low transformation frequency, the expensive instruments required, and the complicated, time-consuming procedures necessary, there is insufficient genetic research on F. velutipes. In this study, we report a liposome-mediated transformation (LMT) system for the genetic transformation of F. velutipes. Using the LMT system, we obtained 82 ± 4 stable F. velutipes transformants per 10 protoplasts, which is a clear increase in transformation frequency compared to the other methods used. We were able to detect the expression of an EGFP reporter gene in the F. velutipes transformants using fluorescence imaging assays. Furthermore, we used this method to transfer the laccase gene into F. velutipes and found that the transcriptional level and enzymatic activity increased in these transformants. Mitotic stability analysis showed that all of the selected transformants remained mitotically stable, even after five successive rounds of sub-culturing. These results demonstrate a new transgenic approach that will facilitate F. velutipes research.
金针菇是一种在全球广泛种植的著名食用菌。然而,由于转化频率低、所需仪器昂贵以及程序复杂且耗时,金针菇的遗传研究并不充分。在本研究中,我们报道了一种用于金针菇遗传转化的脂质体介导转化(LMT)系统。使用该LMT系统,每10个原生质体我们获得了82±4个稳定的金针菇转化体,与其他使用的方法相比,转化频率有了明显提高。我们能够通过荧光成像分析检测到金针菇转化体中EGFP报告基因的表达。此外,我们使用该方法将漆酶基因导入金针菇,发现这些转化体中的转录水平和酶活性有所增加。有丝分裂稳定性分析表明,即使经过连续五轮继代培养,所有选定的转化体在有丝分裂过程中仍保持稳定。这些结果证明了一种新的转基因方法,将有助于金针菇的研究。