Kock J L, Coetzee D J, van Dyk M S, Truscott M, Botha A, Augustyn O P
Department of Microbiology, University of the Orange Free State, Bloemfontein, South Africa.
Antonie Van Leeuwenhoek. 1992 Nov;62(4):251-9. doi: 10.1007/BF00572592.
By using specific inhibitors of the lipoxygenase and cyclo-oxygenase pathways, arachidonic acid metabolites with similar sensitivities towards these inhibitors as in humans, were detected in Dipodascopsis uninucleata. The taxonomic value of aspirin sensitive arachidonic acid metabolites in the Lipomycetaceae was next assessed. No metabolites of which the production is inhibited by aspirin were detected in strains representing the following species: Lipomyces starkeyi, Lipomyces kononenkoae, Lipomyces tetrasporus, Myxozyma melibiosi, Myxozyma mucilagina, Myxozyma kluyveri, Waltomyces lipofer, Zygozyma oligophaga and Zygozyma arxii. The detection of such aspirin sensitive arachidonic acid metabolites in representative strains of Lipomyces anomalus and the genus Dipodascopsis, emphasises the isolated position of these taxa in the genus Lipomyces and the family Lipomycetaceae, respectively. Finally using long chain fatty acid analyses, electrophoretic karyotyping and other phenotypic characters, a phylogenetic scheme is proposed for some genera in the Lipomycetaceae.
通过使用脂氧合酶和环氧化酶途径的特异性抑制剂,在单核双孢酵母中检测到了对这些抑制剂具有与人类相似敏感性的花生四烯酸代谢物。接下来评估了脂霉科中对阿司匹林敏感的花生四烯酸代谢物的分类学价值。在代表以下物种的菌株中未检测到其产生受阿司匹林抑制的代谢物:斯塔基脂酵母、科诺宁科脂酵母、四孢脂酵母、蜜二糖黏液酵母、黏液黏液酵母、克鲁维黏液酵母、产脂圆酵母、寡食接合酵母和阿氏接合酵母。在异常脂酵母和双孢酵母属的代表性菌株中检测到这种对阿司匹林敏感的花生四烯酸代谢物,分别强调了这些分类单元在脂酵母属和脂霉科中的独特地位。最后,利用长链脂肪酸分析、电泳核型分析和其他表型特征,为脂霉科的一些属提出了一个系统发育方案。