Departamento de Microbiologia e Imunologia, Instituto de Biociências de Botucatu, Universidade Estadual Paulista, São Paulo, Brazil.
Centro de Biociências, Universidade Federal de Rio Grande do Norte, Natal, Brazil.
Mycoses. 2016 Dec;59(12):787-797. doi: 10.1111/myc.12532. Epub 2016 Jul 19.
Dermatophytes constitute a complex group of fungi, comprised of by the genera Trichophyton, Epidermophyton and Microsporum. They have the ability to degrade keratin and cause human and animal infections. Molecular techniques have made their identification faster and more accurate, and allowed important advances in phylogenetic studies. We aim to identify molecularly and to determine the phylogenetic relationships in dermatophyte fungi from Brazil and other Latin American countries, using DNA sequencing of the nuclear ribosome regions ITS1-5.8S-ITS2 and D1/D2. DNA of 45 dermatophytes was extracted and amplified by PCR for identification at the species level by sequencing of those ribosomal regions. The software mega 6.0 was used to establish the phylogenetic relationships via the Maximum Likelihood method. Out of 45 strains, 43 were identified by ITS (95.5%) and 100% by D1/D2 sequencing. Two strains could not be identified by ITS. Phylogenetic analyses separated the genera Trichophyton and Microsporum, which presented an uncertain relationship with Epidermophyton floccosum, depending on the ribosomal marker. Both regions can provide efficient identification of dermatophytes, whereas phylogenetic analysis revealed complex relations among dermatophyte fungi.
皮肤癣菌构成了一组复杂的真菌,包括 Trichophyton、Epidermophyton 和 Microsporum 属。它们能够降解角蛋白,引起人类和动物感染。分子技术使它们的鉴定更快、更准确,并在系统发育研究方面取得了重要进展。我们旨在使用核核糖体区域 ITS1-5.8S-ITS2 和 D1/D2 的 DNA 测序,对来自巴西和其他拉丁美洲国家的皮肤癣菌真菌进行分子鉴定和确定系统发育关系。从 45 株皮肤癣菌中提取和扩增 DNA,通过对这些核糖体区域进行测序来鉴定种水平的物种。使用 mega 6.0 软件通过最大似然法建立系统发育关系。在 45 株菌株中,ITS 鉴定出 43 株(95.5%),D1/D2 测序鉴定出 100%。两株菌株不能通过 ITS 鉴定。系统发育分析将 Trichophyton 和 Microsporum 属分开,这与 Epidermophyton floccosum 属的关系不确定,这取决于核糖体标记。这两个区域都可以有效地鉴定皮肤癣菌,而系统发育分析显示皮肤癣菌真菌之间存在复杂的关系。