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Abstract

We developed a q-PCR technique that simultaneously evaluates the extent of degradation and determines the gender of a human DNA donor. QYDEG HRM is a triplex real-time PCR whose products are analysed by high-resolution melting (HRM). The system produces three amplicons: (1) transducin (beta)-like 1, Y-linked (TBL1Y) (84bp); (2) large-target sequence (DGlt) (244bp); and (3) small-target sequence (DGst) (152bp). After HRM analysis, three melting peaks are detected in male DNA samples and two in female DNA samples. An imbalance between the DGst and DGlt melting peak heights allows for the estimation of the extent of DNA degradation. For sensitivity assessment, triplicate aliquots of 0.0032 to 50ng/μL DNA were tested, denoting good linearity and reproducibility. The results also showed the analysis to be precise and accurate in the DNA range of 0.04–5ng/μL. Diverse types of DNA samples were tested: experimentally heat-degraded DNA; crime scene samples derived from casework and highly degraded samples with partial STR profiles from corpse material and mass disaster events. The results were compared with those obtained from the Plexor® and PowerQuant® commercial kits. Additionally, the quantification results of the QYDEG HRM triplex correlate well with the STR amplification that was subsequently obtained. The method is simple, cost-effective and helpful for determining the DNA integrity and the sex of a sample donor in any field where human DNA quantification is required.

Details

Title
Human DNA degradation assessment and male DNA detection by quantitative-PCR followed by high-resolution melting analysis
Author
Ginart, S 1 ; Caputo, M 1 ; Corach, D 1 ; Sala, A 1 

 Centro de Referencia en Identificación Genética Humana de la Universidad de Buenos Aires, Cátedra de Genética Forense y Servicio de Huellas Digitales Genéticas, Facultad de Farmacia y Bioquímica, Universidad de Buenos Aires, Junin 956, CP 1113, Ciudad Autónoma de Buenos Aires, Argentina; Consejo Nacional de Investigaciones Científicas y Técnicas-CONICET, Godoy Cruz 2290, CP 1425, Ciudad Autónoma de Buenos Aires, Argentina 
Pages
1-7
Section
Technical Note
Publication year
2019
Publication date
Feb 2019
Publisher
Elsevier Limited
e-ISSN
18726283
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
2168484886
Copyright
Copyright Elsevier Limited Feb 2019