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基于核糖体DNA内部转录间隔区1序列的须癣毛癣菌复合菌株的系统发育分类

Phylogenetic classification of Trichophyton mentagrophytes complex strains based on DNA sequences of nuclear ribosomal internal transcribed spacer 1 regions.

作者信息

Makimura K, Mochizuki T, Hasegawa A, Uchida K, Saito H, Yamaguchi H

机构信息

Teikyo University Institute of Medical Mycology, Tokyo, Japan.

出版信息

J Clin Microbiol. 1998 Sep;36(9):2629-33. doi: 10.1128/JCM.36.9.2629-2633.1998.

Abstract

Using internal transcribed spacer 1 (ITS1) region ribosomal DNA sequences from 37 stock strains and clinical isolates provisionally termed Trichophyton mentagrophytes complex in Japan, we demonstrated the mutual phylogenetic relationships of these strains. Members of this complex were classified into 3 ITS1-homologous groups and 13 ITS1-identical groups by their sequences. ITS1-homologous group I consists of Arthroderma vanbreuseghemii, T. mentagrophytes human isolates, and several strains of T. mentagrophytes animal isolates. Five strains of Arthroderma simii form a cluster comprising ITS1-homologous group II. The Americano-European and African races of Arthroderma benhamiae, T. mentagrophytes var. erinacei, and one strain of a T. mentagrophytes animal isolate constitute ITS1-homologous group III. According to the phylogenetic tree constructed with Trichophyton rubrum as an outgroup, ITS1-homologous groups I and II comprised a monophyletic cluster and ITS1-homologous group III constituted another cluster which was rather distant from the others in the complex. This system was applicable to the phylogenetic analysis of closely related strains. Using this technique, human and animal isolates of T. mentagrophytes were also clearly distinguishable from each other.

摘要

利用来自日本37株储备菌株和临床分离株(暂称为须癣毛癣菌复合体)的核糖体DNA内转录间隔区1(ITS1)序列,我们展示了这些菌株之间的系统发育关系。根据序列,该复合体的成员被分为3个ITS1同源组和13个ITS1相同组。ITS1同源组I由梵勃瑞须癣毛癣菌、须癣毛癣菌的人类分离株以及几株须癣毛癣菌的动物分离株组成。五株西氏节皮菌形成一个包含ITS1同源组II的簇。北美-欧洲和非洲种族的本汉姆节皮菌、须癣毛癣菌猬变种以及一株须癣毛癣菌动物分离株构成ITS1同源组III。以红色毛癣菌作为外群构建的系统发育树显示,ITS1同源组I和II构成一个单系簇,而ITS1同源组III构成另一个簇,在该复合体中与其他簇相距较远。该系统适用于亲缘关系密切的菌株的系统发育分析。利用这项技术,须癣毛癣菌的人类和动物分离株也能清晰地区分开来。

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