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Rapid Identification of Pseudallescheria and Scedosporium Strains by Using Rolling Circle Amplification

机译:滚环扩增技术快速鉴定假单胞菌和鞘孢菌

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摘要

The Pseudallescheria boydii complex, comprising environmental pathogens with Scedosporium anamorphs, has recently been subdivided into five main species: Scedosporium dehoogii, S. aurantiacum, Pseudallescheria minutispora, P. apiosperma, and P. boydii, while the validity of some other taxa is being debated. Several Pseudallescheria and Scedosporium species are indicator organisms of pollution in soil and water. Scedosporium dehoogii in particular is enriched in soils contaminated by aliphatic hydrocarbons. In addition, the fungi may cause life-threatening infections involving the central nervous system in severely impaired patients. For screening purposes, rapid and economic tools for species recognition are needed. Our aim is to establish rolling circle amplification (RCA) as a screening tool for species-specific identification of Pseudallescheria and Scedosporium. With this aim, a set of padlock probes was designed on the basis of the internal transcribed spacer (ITS) region, differing by up to 13 fixed mutations. Padlock probes were unique as judged from sequence comparison by BLAST search in GenBank and in dedicated research databases at CBS (Centraalbureau voor Schimmelcultures Fungal Biodiversity Centre). RCA was applied as an in vitro tool, tested with pure DNA amplified from cultures. The species-specific padlock probes designed in this study yielded 100% specificity. The method presented here was found to be an attractive alternative to identification by restriction fragment length polymorphism (RFLP) or sequencing. The rapidity (<1 day), specificity, and low costs make RCA a promising screening tool for environmentally and clinically relevant fungi.
机译:波氏假单胞菌复合物包含环境致病菌和无形拟孢子菌,最近被细分为五个主要种类:拟孢假单胞菌,金黄色葡萄球菌,假单胞菌小孢子虫,apiosperma和波伊氏假单胞菌,而其他一些分类群的有效性尚有争议。 。假单胞菌和假单孢菌属的几个物种是土壤和水中污染的指示生物。特别是美甲假单孢菌(Sedosporium dehoogii)富含被脂族烃污染的土壤。此外,这种真菌还可能导致严重受损患者的危及生命的感染,涉及中枢神经系统。为了筛选目的,需要用于物种识别的快速且经济的工具。我们的目标是建立滚动圆环扩增(RCA),作为针对假单胞菌和假孢子虫的物种特异性鉴定的筛选工具。为此,在内部转录间隔区(ITS)区域的基础上设计了一组挂锁探针,它们之间的差异最多为13个固定突变。根据GenBank中BLAST搜索的序列比较判断,以及在CBS(Centraalbureau voor Schimmelcultures真菌生物多样性中心)的专用研究数据库中,挂锁探针是独特的。 RCA用作体外工具,用从培养物中扩增的纯DNA进行测试。本研究中设计的物种特异性挂锁探针产生100%的特异性。发现这里提出的方法是通过限制性片段长度多态性(RFLP)或测序鉴定的一种有吸引力的替代方法。快速(<1天),特异性和低成本使RCA成为对环境和临床相关真菌有希望的筛选工具。

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