Department of Genetics and Applied Microbiology, Faculty of Science and Technology, University of Debrecen, Egyetem tér 1, 4032, Debrecen, Hungary.
Department of Biochemistry and Molecular Biology, Faculty of General Medicine, University of Debrecen, Debrecen, Hungary.
Curr Genet. 2021 Oct;67(5):823-830. doi: 10.1007/s00294-021-01181-4. Epub 2021 Apr 10.
The capability of RNA isolation with good efficiency and high quality is essential for a downstream application such as RNA sequencing. It requires successful cell culturing and an effective RNA isolation method. Although effective methods are available, production of the homogenous mycelia and extraction of good-quality mycelial RNA from true invasive hyphae, which penetrated into the agar plates, are difficult. To overcome these problems, the aim of this study was to develop technical modifications which allow production of homogenous mycelial biomass without extra stimuli agents and improve quality of the RNA extracted from the fungal hyphae. Our alternative culture medium was suitable for production both yeast-phase cells and hyphae of the Schizosaccharomyces japonicus and other dimorphic species, such as the Candida albicans, Saccharomyces cerevisiae, and Jaminaea angkorensis. To improve quality of the mycelial RNA, we developed an isolation procedure of the hyphal tip, which eliminated the unnecessary vacuoles-containing parts of the hyphae. To increase RNA quantity, we used glass beads in the RNA extraction protocol to achieve stronger breaking of the mycelial walls. All these modifications can also be useful for researchers working with other dimorphic fungi and can contribute to the higher comparability of the transcriptional data coming from yeast-phase cells and hyphae or even from different species.
对于下游应用(如 RNA 测序)来说,高效、高质量地提取 RNA 的能力至关重要。这需要成功的细胞培养和有效的 RNA 提取方法。虽然有有效的方法,但从真正侵入琼脂板的均匀菌丝体中提取高质量的菌丝体 RNA 是困难的。为了克服这些问题,本研究的目的是开发技术改进,允许在没有额外刺激剂的情况下生产均匀的菌丝体生物质,并提高从真菌菌丝体中提取的 RNA 的质量。我们的替代培养基适合生产日本裂殖酵母和其他二相性物种(如白色念珠菌、酿酒酵母和 Angkor Jaminaea)的酵母相细胞和菌丝体。为了提高菌丝体 RNA 的质量,我们开发了一种菌丝尖端的分离程序,该程序消除了菌丝体中不必要的含空泡部分。为了增加 RNA 的数量,我们在 RNA 提取方案中使用玻璃珠,以实现更强的菌丝体细胞壁破裂。所有这些改进对于研究其他二相性真菌的研究人员也可能是有用的,并有助于提高来自酵母相细胞和菌丝体甚至不同物种的转录数据的可比性。