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Identification of Trypanosoma cruzi Discrete Typing Units (DTUs) through the implementation of a High-Resolution Melting (HRM) genotyping assay

机译:通过实施高分辨率熔解(HRM)基因分型测定法鉴定克鲁斯锥虫离散分型单位(DTU)

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Background Chagas disease, caused by Trypanosoma cruzi, is a geographically widespread anthropozoonosis that is considered a major public health problem in Latin America. Because this parasite presents high genetic variability, a nomenclature has been adopted to classify the parasite into six discrete typing units (DTUs): TcI, TcII, TcIII, TcIV, TcV, and TcVI, which present different eco-epidemiological, clinical, and geographic associations. Currently, the available genotyping methods present a series of drawbacks that implies the need for developing new methods for characterizing T. cruzi DTU’s. The aim of this work was to genotype reference populations from T. cruzi by means of a High-Resolution Melting (HRM) genotyping assay. To genotype the DTUs of 38 strains and 14 reference clones of T. cruzi from diverse sources, real-time PCR (qPCR) was coupled to high-resolution melting (HRM) based on the amplification of two molecular markers—the divergent domain of the 24 sα rRNA gene and the intergenic region of the mini-exon gene. Findings Amplification of the mini-exon gene allowed the genotyping of three distinct groups: TcI, TcII- TcIV- TcV, and TcIII-TcVI, while amplification of the 24sα gene generated non-overlapping melting temperature ranges for each DTU that were used to identify the groups in the six existing DTUs of Trypanosoma cruzi. Conclusions The proposed genotyping assay allowed discrimination of the six genetic groups by obtaining specific melting curves for each DTU. The application of this technique is proposed because of its specificity, sensitivity, high performance, and low cost compared with other previously described characterization methods.
机译:背景技术由克鲁斯锥虫引起的南美锥虫病是一种在地理上广泛分布的人畜共患病,被认为是拉丁美洲的主要公共卫生问题。由于该寄生虫具有很高的遗传变异性,因此已采用命名法将其分为六个离散类型单位(DTU):TcI,TcII,TcIII,TcIV,TcV和TcVI,它们表现出不同的生态流行病学,临床和地理特征协会。当前,可用的基因分型方法存在一系列缺陷,这意味着需要开发新的方法来表征克鲁维酵母的DTU。这项工作的目的是通过高分辨率熔解(HRM)基因分型测定法对克鲁维酵母的参考种群进行基因分型。为了对来自不同来源的克氏锥虫的38个菌株和14个参考克隆的DTU进行基因分型,实时PCR(qPCR)与高分辨率熔解(HRM)结合,基于两个分子标记- 24sαrRNA基因和mini-exon基因的基因间区域。研究结果通过扩增小外显子基因,可以对三个不同的基因组进行基因分型:TcI,TcII-TcIV-TcV和TcIII-TcVI,而24sα基因的扩增则为每个DTU产生了不重叠的解链温度范围,这些温度范围可用于鉴定克氏锥虫的六个现有DTU中的组。结论拟议的基因分型测定法通过获得每个DTU的特异性解链曲线,可以区分六个基因组。与其他先前描述的表征方法相比,提出该技术的应用是因为其特异性,灵敏性,高性能和低成本。

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