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Taxonomy and phylogeny of new wood- and soil-inhabiting Sporothrix species in the Ophiostoma stenoceras-Sporothrix schenckii complex

机译:食口蛇眼-Sporothrix schenckii复合体中新的居住在土壤和土壤中的Sporothrix种类的分类学和系统发育

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摘要

Sporothrix, one of the anamorph genera of Ophiostoma, includes the important human pathogen S. schenckii and various fungi associated with insects and sap stain of wood. A survey of fungi from wood utility poles in South Africa yielded two distinct groups of Sporothrix isolates from different geographical areas. DNA sequence and morphological data derived in this study showed that isolates in these groups represent two novel species in the S. schenckii-O. steuoceras species complex. A new species isolated from pine poles and rosebush wood and phylogenetically closely related to S. pallida is described here as Sporothrix stylites. Phylogenetic analyses also confirmed the synonymy of S. albicans and S. nivea with S. pallida. Sporothrix stylites and S. pallida also are related closely to the isolates from soil, previously treated as "environmental" isolates of S. schenckii. Soil isolates are clearly distinct from human isolates of S. schenckii. We describe the former here as Sporothrix humicola. The isolates from eucalypt poles group peripheral to most other species in the S. schenckii-O. stenoceras complex and are newly described as Sporothrix lignivora. Phylogenetic analyses of sequences of isolates from soil and wood together with those of clinical isolates showed that the human-pathogenic strains form an aggregate of several cryptic species.
机译:孢子丝菌是蛇口虫(Ophiostoma)的无性属之一,它包括重要的人类病原菌S. schenckii和与昆虫和木材汁液染色相关的各种真菌。对南非木材电线杆上的真菌进行的一项调查得出了不同地理区域的两组孢子丝菌分离株。在这项研究中获得的DNA序列和形态数据表明,这些组中的分离物代表了S. schenckii-O中的两个新物种。球藻种类复杂。从松杆和玫瑰丛中分离出的一个新物种,在系统发育上与S. pallida密切相关,在此被描述为Sporothrix stylites。系统发育分析还确认了白色链球菌和妮维链球菌与浅色链球菌的同义词。 Sporothrix stylites和S. pallida也与土壤分离物密切相关,土壤分离物以前被视为S. schenckii的“环境”分离物。土壤分离物显然与人间链球菌分离。我们在这里将前者描述为Sporothrix humicola。来自桉树极的分离物在S. schenckii-O中位于大多数其他物种的外围。细角龙复杂,新近被描述为木质孢子菌。从土壤和木材中分离株的序列以及临床分离株的序列的系统发育分析表明,人致病性菌株形成了几种隐性物种的聚集体。

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