Research Institute for Innovation in Sustainable Chemistry, National Institute of Advanced Industrial Science and Technology, Tsukuba, Ibaraki, Japan.
FEMS Yeast Res. 2013 Feb;13(1):44-9. doi: 10.1111/1567-1364.12005. Epub 2012 Oct 11.
Some basidiomycetous yeast strains extracellularly produce cellobiose lipids (CLs), glycolipid biosurfactants which have strong fungicidal activity. The representative CL producer Ustilago maydis produces CLs together with the other glycolipids, mannosylerythritol lipids (MELs); the preference of the two glycolipids is affected considerably by the nitrogen source. To develop new CL producers, 12 MEL producers were cultured under the nitrogen-limited conditions. Pseudozyma aphidis and Pseudozyma. hubeiensis were characterized as new CL producers. CL production was induced on three strains, P. aphidis, Pseudozyma graminicola, and P. hubeiensis under these conditions. The putative homologous genes of U. maydis cyp1, which encodes a P450 monooxygenase, essential for CL biosynthesis, were partially amplified from their genomic DNA. The nucleotide sequences of the gene fragments from P. hubeiensis and P. aphidis shared identities with U. maydis cyp1 of 99% and 78%, respectively. Furthermore, all of the deduced translation products are tightly clustered in the phylogenic tree of the monooxygenase. These results suggest that the genes involved with CL biosynthesis must be widely distributed in the basidiomycetous fungi as well as the MEL biosynthesis genes, and thus, the genus Pseudozyma has great potential as a biosurfactant producer.
一些担子菌酵母菌株在细胞外产生纤维二糖脂(CLs),这是一种具有强杀菌活性的糖脂生物表面活性剂。代表性的 CL 产生菌 Ustilago maydis 与其他糖脂甘露糖基赤藓糖醇脂(MELs)一起产生 CLs;这两种糖脂的偏好受到氮源的极大影响。为了开发新的 CL 产生菌,在氮限制条件下培养了 12 种 MEL 产生菌。假丝酵母和湖北假丝酵母被鉴定为新的 CL 产生菌。在这些条件下,三株菌(假丝酵母、禾谷假丝酵母和湖北假丝酵母)被诱导产生 CL。从它们的基因组 DNA 中部分扩增了编码 CL 生物合成所必需的 P450 单加氧酶的 Ustilago maydis cyp1 的假定同源基因。来自湖北假丝酵母和假丝酵母的基因片段的核苷酸序列与 Ustilago maydis cyp1 的同源性分别为 99%和 78%。此外,所有推导的翻译产物在单加氧酶的系统发育树中紧密聚类。这些结果表明,参与 CL 生物合成的基因必须广泛分布在担子菌真菌中,以及 MEL 生物合成基因中,因此,假丝酵母属具有作为生物表面活性剂产生菌的巨大潜力。