首页> 外文期刊>Mycopathologia >Use of rolling circle amplification to rapidly identify species of Cladophialophora potentially causing human infection. (Special Issue: The bright future of darkness - the rising power of black fungi: black yeasts, microcolonial fungi, and their relatives.)
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Use of rolling circle amplification to rapidly identify species of Cladophialophora potentially causing human infection. (Special Issue: The bright future of darkness - the rising power of black fungi: black yeasts, microcolonial fungi, and their relatives.)

机译:使用滚环扩增来快速识别潜在导致人类感染的克拉科菌种。 (特刊:黑暗的光明未来-黑真菌的力量不断增强:黑酵母,微殖民地真菌及其亲属。)

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摘要

The genus Cladophialophora comprises etiologic agents of disease in immunocompetent patients, ranging from mild cutaneous colonization to cerebral encephalitis, in addition to saprobic species. Due to the high degree of phenotypic similarity between closely related species of the genus, identification problems are imminent. In the present study, we described rapid and sensitive rolling circle amplification (RCA) method based on species-specific padlock probes targeted for the internal transcribed spacer regions of rDNA. ITS regions of 12 Cladophialophora species were sequenced, and subsequently, 10 specific padlock probes were designed for the detection of single nucleotide polymorphisms. The majority of circularizable padlock probes were designed based on single nucleotide polymorphisms (SNPs), while for C. bantiana, C. immunda and C. devriesii were characterized by two or more nucleotides. Individual species-specific probes correctly identified in all ten Cladophialophora species correctly by visualization on 1.2% agarose gels used to verify specificity of probe-template binding; no cross-reactivity was observed. Simplicity, sensitivity, robustness and low costs provide RCA a distinct place among isothermal techniques for DNA diagnostics. However, restriction and specificity and sensitivity should be lowered and increased, respectively, to be useful for a wide variety of clinical applications.
机译:Cladophialophora属除具有免疫性的物种外,还包括免疫功能正常的患者的病因,包括轻度皮肤定植到脑性脑炎。由于该属的密切相关物种之间的表型相似度很高,因此迫切需要进行鉴定。在本研究中,我们描述了基于针对rDNA内部转录间隔区的物种特异性挂锁探针的快速灵敏的滚环扩增(RCA)方法。测序了12个锁骨珊瑚属物种的ITS区域,随后设计了10个特异性挂锁探针以检测单核苷酸多态性。大部分可圆化的挂锁探针是基于单核苷酸多态性(SNP)设计的,而对于C. bantiana,C。immunda和C. devriesii的特征是两个或多个核苷酸。通过在1.2%的琼脂糖凝胶上可视化以正确验证探针-模板结合的特异性,可以正确识别所有十种锁齿藻物种中的单个物种特异性探针;没有观察到交叉反应。简单性,灵敏性,坚固性和低成本为RCA在DNA诊断等温技术中提供了独特的位置。但是,应分别降低和增加限制,特异性和敏感性,以用于多种临床应用。

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