Biomaterials and Biocatalysts Group, Temasek Life Sciences Laboratory, 1 Research Link, National University of Singapore, Singapore 117604, Singapore.
Appl Microbiol Biotechnol. 2013 Jan;97(2):719-29. doi: 10.1007/s00253-012-4223-9. Epub 2012 Jun 22.
The oleaginous yeast Rhodosporidium toruloides, which belongs to the Pucciniomycotina subphylum in the Basidiomycota, has attracted strong interest in the biofuel community recently due to its ability to accumulate more than 60% of dry biomass as lipid under high-density fermentation. A 3,543-nucleotide (nt) DNA fragment of the glyceraldehyde-3-phosphate dehydrogenase gene (GPD1) was isolated from R. toruloides ATCC 10657 and characterized in details. The 1,038-nt mRNA derived from seven exons encodes an open reading frame (ORF) of 345 amino acids that shows high identity (80%) to the Ustilago maydis homolog. Notably, the ORF is composed of codons strongly biased towards cytosine at the Wobble position. GPD1 is transcriptionally regulated by temperature shock, osmotic stress, and carbon source. Nested deletion analysis of the GPD1 promoter by GFP reporter assay revealed that two regions, -975 to -1,270 and -1,270 to -1,429, upstream from the translational start site of GPD1 were important for responses to various stress stimuli. Interestingly, a 176-bp short fragment maintained 42.2% promoter activity of the 795-bp version in U. maydis whereas it was reduced to 17.4% in R. toruloides. The GPD1 promoter drove strong expression of a codon-optimized enhanced green fluorescent protein gene (RtGFP) and a codon-optimized hygromycin phosphotransferase gene (hpt-3), which was critical for Agrobacterium tumefaciens-mediated transformation in R. toruloides.
油脂酵母 Rhodosporidium toruloides 属于担子菌门 Pucciniomycotina 亚门,由于其在高密度发酵下能够将超过 60%的干生物质积累为油脂,因此在生物燃料领域引起了强烈关注。我们从 R. toruloides ATCC 10657 中分离出了一个 3543 个核苷酸(nt)的甘油醛-3-磷酸脱氢酶基因(GPD1)片段,并对其进行了详细的特征描述。该基因的 1038nt mRNA 来源于七个外显子,编码一个 345 个氨基酸的开放阅读框(ORF),与 Ustilago maydis 的同源物具有高度的同一性(80%)。值得注意的是,该 ORF 由强烈偏向于 Wobble 位置胞嘧啶的密码子组成。GPD1 的转录受到温度冲击、渗透压和碳源的调控。通过 GFP 报告基因实验对 GPD1 启动子的嵌套缺失分析表明,翻译起始位点上游的-975 到-1270 和-1270 到-1429 两个区域对于各种应激刺激的响应是重要的。有趣的是,一个 176bp 的短片段在 U. maydis 中保持了 795bp 版本 42.2%的启动子活性,而在 R. toruloides 中则降低到 17.4%。GPD1 启动子驱动了优化后的增强型绿色荧光蛋白基因(RtGFP)和优化后的潮霉素磷酸转移酶基因(hpt-3)的强表达,这对于 R. toruloides 中的农杆菌介导转化至关重要。