Camiolo Salvatore, Toome-Heller Merje, Aime M Catherine, Haridas Sajeet, Grigoriev Igor V, Porceddu Andrea, Mannazzu Ilaria
Dipartimento di Agraria, Università degli Studi di Sassari, Sassari, Italy.
Department of Botany and Plant Pathology, Purdue University, West Lafayette, Indiana, USA.
Yeast. 2019 Jan;36(1):53-64. doi: 10.1002/yea.3359. Epub 2018 Oct 16.
Red yeasts, primarily species of Rhodotorula, Sporobolomyces, and other genera of Pucciniomycotina, are traditionally considered proficient systems for lipid and terpene production, and only recently have also gained consideration for the production of a wider range of molecules of biotechnological potential. Improvements of transgene delivery protocols and regulated gene expression systems have been proposed, but a dearth of information on compositional and/or structural features of genes has prevented transgene sequence optimization efforts for high expression levels. Here, the codon compositional features of genes in six red yeast species were characterized, and the impact that evolutionary forces may have played in shaping this compositional bias was dissected by using several computational approaches. Results obtained are compatible with the hypothesis that mutational bias, although playing a significant role, cannot alone explain synonymous codon usage bias of genes. Nevertheless, several lines of evidences indicated a role for translational selection in driving the synonymous codons that allow high expression efficiency. These optimal synonymous codons are identified for each of the six species analyzed. Moreover, the presence of intragenic patterns of codon usage, which are thought to facilitate polyribosome formation, was highlighted. The information presented should be taken into consideration for transgene design for optimal expression in red yeast species.
红酵母,主要是红冬孢酵母属、掷孢酵母属以及其他锈菌亚门属的物种,传统上被认为是生产脂质和萜类化合物的有效体系,并且直到最近才开始被考虑用于生产更广泛的具有生物技术潜力的分子。人们已经提出了改进转基因传递方案和调控基因表达系统的方法,但是由于缺乏关于基因组成和/或结构特征的信息,阻碍了为实现高表达水平而进行的转基因序列优化工作。在此,我们对六种红酵母物种中基因的密码子组成特征进行了表征,并通过几种计算方法剖析了进化力量在形成这种组成偏差中可能发挥的作用。所得结果与以下假设相符:尽管突变偏差起着重要作用,但它不能单独解释基因的同义密码子使用偏差。然而,几条证据表明翻译选择在驱动允许高表达效率的同义密码子方面发挥了作用。我们为所分析的六个物种中的每一个都鉴定出了这些最佳同义密码子。此外,还强调了密码子使用的基因内模式的存在,这种模式被认为有助于多核糖体的形成。在设计用于在红酵母物种中实现最佳表达的转基因时,应考虑本文所提供的信息。