Wang Yanan, Lin Xinping, Zhang Sufang, Sun Wenyi, Ma Sijia, Zhao Zongbao Kent
Division of Biotechnology, Dalian Institute of Chemical Physics, CAS, Dalian, 116023, People's Republic of China.
University of Chinese Academy of Sciences, Beijing, 100049,, People's Republic of China.
Yeast. 2016 Mar;33(3):99-106. doi: 10.1002/yea.3145. Epub 2016 Jan 14.
The oleaginous yeast Rhodosporidium toruloides is an unconventional yeast species that can accumulate a high content of lipids. Because it belongs to the basidiomycetous group of fungus, limited tools and functional elements are available for genetic engineering of R. toruloides and related red yeasts. Here we report the functional evaluation of five constitutive promoters from this yeast. We assembled a reporter gene expression cassette, consisting of a promoter, the hygromycin gene (HYG) and the nos terminator, and inserted it into the binary vector pZPK. Hygromycin-resistant transformants were obtained when R. toruloides cells were co-cultured with Agrobacterium tumefaciens AGL1 cells harbouring the engineered vector. Genomic integration of the reporter cassette was verified by successful amplification of target DNA fragments. Quantitative PCR analysis suggested that the transformant had only one copy of the reporter cassette. The strength of these promoters was demonstrated at the phenotypic level on the hygromycin-gradient plate and at the transcriptional level by real-time quantitative PCR. It was found that the strengths of these promoters varied no more than five-fold and followed a decreasing sequence of PPGI, PPGK, PFBA, PTPI, and PGPD. This study established new genetic elements for the construction of superior R. toruloides strains to produce advanced biofuels and related chemicals.
产油酵母红冬孢酵母是一种非常规酵母物种,能够积累高含量的脂质。由于它属于担子菌纲真菌,用于红冬孢酵母及相关红酵母基因工程的工具和功能元件有限。在此,我们报告了来自这种酵母的5个组成型启动子的功能评估。我们组装了一个报告基因表达盒,其由一个启动子、潮霉素基因(HYG)和胭脂碱合成酶终止子组成,并将其插入二元载体pZPK中。当红冬孢酵母细胞与携带工程化载体的根癌农杆菌AGL1细胞共培养时,获得了潮霉素抗性转化体。通过成功扩增目标DNA片段验证了报告盒的基因组整合。定量PCR分析表明,转化体只有一份报告盒拷贝。这些启动子的强度在潮霉素梯度平板上的表型水平以及通过实时定量PCR在转录水平上得到了证明。发现这些启动子的强度变化不超过5倍,并且遵循PPGI、PPGK、PFBA、PTPI和PGPD的递减顺序。本研究为构建用于生产先进生物燃料和相关化学品的优良红冬孢酵母菌株建立了新的遗传元件。