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首页> 外文期刊>Journal of Clinical Microbiology >Reclassification of the Candida haemulonii Complex as Candida haemulonii (C. haemulonii Group I), C. duobushaemulonii sp. nov. (C. haemulonii Group II), and C. haemulonii var. vulnera var. nov.: Three Multiresistant Human Pathogenic Yeasts
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Reclassification of the Candida haemulonii Complex as Candida haemulonii (C. haemulonii Group I), C. duobushaemulonii sp. nov. (C. haemulonii Group II), and C. haemulonii var. vulnera var. nov.: Three Multiresistant Human Pathogenic Yeasts

机译:将假丝酵母假丝酵母复合物重新分类为白色假丝酵母(C. haemulonii Group 1),C duobushaemulonii sp。十一月(C. haemulonii组2)和C. haemulonii ssp。伤口11月:三种多抗人类病原菌

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摘要

The Candida haemulonii species complex is currently known as C. haemulonii groups I and II. Here we describe C. haemulonii group II as a new species, Candida duobushaemulonii sp. nov., and C. haemulonii var. vulnera as new a variety of C. haemulonii group I using phenotypic and molecular methods. These taxa and other relatives of C. haemulonii (i.e., Candida auris and Candida pseudohaemulonii) cannot be differentiated by the commercial methods now used for yeast identification. Four isolates (C. haemulonii var. vulnera) differed from the other isolates of C. haemulonii in the sequence of the internal transcribed spacer (ITS) regions of the nuclear rRNA gene operon. The new species and the new variety have a multiresistant antifungal profile, which includes high MICs of amphotericin B (geometric mean MIC, 1.18 mg/liter for C. haemulonii var. vulnera and 2 mg/liter for C. duobushaemulonii sp. nov) and cross-resistance to azole compounds. Identification of these species should be based on molecular methods, such as sequence analysis of ITS regions and matrix-assisted laser desorption ionization–time of flight mass spectrometry.
机译:假丝酵母念珠菌种复合物目前被称为假单胞菌I和II组。在这里,我们将C. haemulonii组II作为一个新物种,念珠菌duobushaemulonii sp。十一月和C. haemulonii var。作为表型和分子方法,作为新的多种C. haemulonii I组的寻常斑。这些类群和嗜血梭状芽胞杆菌的其他亲缘种(即,假丝酵母​​和假假丝酵母)不能通过目前用于鉴定酵母的商业方法来区分。四个分离株(C. haemulonii var。vulnera)在核rRNA基因操纵子的内部转录间隔区(ITS)区域的序列上不同于其他C. haemulonii分离株。新物种和新品种具有多重抗真菌特性,其中包括两性霉素B的MIC高(几何平均MIC,对于哈氏单核球菌变种为1.18 mg / L,而对杜氏梭菌变种为2 mg / L)。对唑化合物的交叉耐药性。对这些物种的鉴定应基于分子方法,例如ITS区的序列分析和基质辅助激光解吸电离-飞行时间质谱。

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