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首页> 外文期刊>The Journal of Antimicrobial Chemotherapy >Molecular identification of pathogenic fungi.
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Molecular identification of pathogenic fungi.

机译:致病真菌的分子鉴定。

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Systemic fungal infections represent a major cause of morbidity and mortality in immunocompromised patients. The ever-increasing number of yeast species associated with human infections that are not covered by conventional identification kits, and the fact that moulds isolated from deep infections are frequently impossible to identify using classical methods due to lack of sporulation, has driven the need for rapid, robust molecular identification techniques. We recently developed a rapid method of preparing fungal genomic DNAs using Whatman FTA filters, which has greatly facilitated molecular identification. Mould isolates cultured from dark grain mycetomas (destructive infections of skin/subcutaneous tissues that progress to involve muscle and bone) invariably fail to produce features by which they can be identified and were taxonomic mysteries. PCR amplification and sequencing of 250 bp of the internal transcribed spacer region 1 (ITS1) allowed us to distinguish between the known agents of mycetoma,to describe three new species associated with this disease and to define phylogenetic relationships. For yeasts, 153 isolates encompassing 47 species that had failed to be identified using classical methods were unambiguously identified by conventional sequencing of 350 bp of the 26S rRNA D1D2 region. These represented 5% of the isolates examined and included common species with atypical biochemical and phenotypic profiles, and rarer species infrequently associated with infection. Our recent studies indicate that FTA extraction coupled with pyrosequencing of 25 bp of ITS2 could potentially identify most common yeast species from pure culture in half a day. Together, these data underscore the importance of molecular techniques for fungal identification.
机译:全身性真菌感染是免疫功能低下患者发病和死亡的主要原因。传统的鉴定试剂盒无法涵盖与人类感染相关的酵母菌数量的不断增加,以及由于缺乏孢子形成而无法用经典方法鉴定出与深部感染分离的霉菌这一事实,这推动了对快速感染的需求。 ,强大的分子鉴定技术。我们最近开发了一种使用Whatman FTA过滤器制备真菌基因组DNA的快速方法,该方法极大地促进了分子鉴定。从深色谷物菌瘤(发展至涉及肌肉和骨骼的皮肤/皮下组织的破坏性感染)中培养的霉菌分离株始终无法产生可用来鉴定它们的特征,并且是分类学的奥秘。 250 bp的内部转录间隔区1(ITS1)的PCR扩增和测序使我们能够区分真菌病的已知病原体,描述与该疾病相关的三个新物种并定义系统发育关系。对于酵母菌,通过常规测序方法对26S rRNA D1D2区的350 bp进行了明确鉴定,从而明确鉴定了153个分离株,其中包含47种未使用经典方法鉴定的菌株。这些代表了所检测菌株的5%,包括具有非典型生化和表型特征的常见物种,以及很少与感染相关的物种。我们最近的研究表明,FTA提取结合25bp ITS2的焦磷酸测序可以在半天的时间内从纯培养物中鉴定出最常见的酵母菌种。这些数据共同强调了分子技术对真菌鉴定的重要性。

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