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Development of a fast PCR protocol enabling rapid generation of AmpFℓSTR(® )Identifiler(® )profiles for genotyping of human DNA

BACKGROUND: Traditional PCR methods for forensic STR genotyping require approximately 2.5 to 4 hours to complete, contributing a significant portion of the time required to process forensic DNA samples. The purpose of this study was to develop and validate a fast PCR protocol that enabled amplificat...

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Autores principales: Foster, Amanda, Laurin, Nancy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3352264/
https://www.ncbi.nlm.nih.gov/pubmed/22394458
http://dx.doi.org/10.1186/2041-2223-3-6
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author Foster, Amanda
Laurin, Nancy
author_facet Foster, Amanda
Laurin, Nancy
author_sort Foster, Amanda
collection PubMed
description BACKGROUND: Traditional PCR methods for forensic STR genotyping require approximately 2.5 to 4 hours to complete, contributing a significant portion of the time required to process forensic DNA samples. The purpose of this study was to develop and validate a fast PCR protocol that enabled amplification of the 16 loci targeted by the AmpFℓSTR(® )Identifiler(® )primer set, allowing decreased cycling times. METHODS: Fast PCR conditions were achieved by substituting the traditional Taq polymerase for SpeedSTAR™ HS DNA polymerase which is designed for fast PCR, by upgrading to a thermal cycler with faster temperature ramping rates and by modifying cycling parameters (less time at each temperature) and adopting a two-step PCR approach. RESULTS: The total time required for the optimized protocol is 26 min. A total of 147 forensically relevant DNA samples were amplified using the fast PCR protocol for Identifiler. Heterozygote peak height ratios were not affected by fast PCR conditions, and full profiles were generated for single-source DNA amounts between 0.125 ng and 2.0 ng. Individual loci in profiles produced with the fast PCR protocol exhibited average n-4 stutter percentages ranging from 2.5 ± 0.9% (THO1) to 9.9 ± 2.7% (D2S1338). No increase in non-adenylation or other amplification artefacts was observed. Minor contributor alleles in two-person DNA mixtures were reliably discerned. Low level cross-reactivity (monomorphic peaks) was observed with some domestic animal DNA. CONCLUSIONS: The fast PCR protocol presented offers a feasible alternative to current amplification methods and could aid in reducing the overall time in STR profile production or could be incorporated into a fast STR genotyping procedure for time-sensitive situations.
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spelling pubmed-33522642012-05-16 Development of a fast PCR protocol enabling rapid generation of AmpFℓSTR(® )Identifiler(® )profiles for genotyping of human DNA Foster, Amanda Laurin, Nancy Investig Genet Methodology BACKGROUND: Traditional PCR methods for forensic STR genotyping require approximately 2.5 to 4 hours to complete, contributing a significant portion of the time required to process forensic DNA samples. The purpose of this study was to develop and validate a fast PCR protocol that enabled amplification of the 16 loci targeted by the AmpFℓSTR(® )Identifiler(® )primer set, allowing decreased cycling times. METHODS: Fast PCR conditions were achieved by substituting the traditional Taq polymerase for SpeedSTAR™ HS DNA polymerase which is designed for fast PCR, by upgrading to a thermal cycler with faster temperature ramping rates and by modifying cycling parameters (less time at each temperature) and adopting a two-step PCR approach. RESULTS: The total time required for the optimized protocol is 26 min. A total of 147 forensically relevant DNA samples were amplified using the fast PCR protocol for Identifiler. Heterozygote peak height ratios were not affected by fast PCR conditions, and full profiles were generated for single-source DNA amounts between 0.125 ng and 2.0 ng. Individual loci in profiles produced with the fast PCR protocol exhibited average n-4 stutter percentages ranging from 2.5 ± 0.9% (THO1) to 9.9 ± 2.7% (D2S1338). No increase in non-adenylation or other amplification artefacts was observed. Minor contributor alleles in two-person DNA mixtures were reliably discerned. Low level cross-reactivity (monomorphic peaks) was observed with some domestic animal DNA. CONCLUSIONS: The fast PCR protocol presented offers a feasible alternative to current amplification methods and could aid in reducing the overall time in STR profile production or could be incorporated into a fast STR genotyping procedure for time-sensitive situations. BioMed Central 2012-03-06 /pmc/articles/PMC3352264/ /pubmed/22394458 http://dx.doi.org/10.1186/2041-2223-3-6 Text en Copyright ©2012 Foster and Laurin; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Methodology
Foster, Amanda
Laurin, Nancy
Development of a fast PCR protocol enabling rapid generation of AmpFℓSTR(® )Identifiler(® )profiles for genotyping of human DNA
title Development of a fast PCR protocol enabling rapid generation of AmpFℓSTR(® )Identifiler(® )profiles for genotyping of human DNA
title_full Development of a fast PCR protocol enabling rapid generation of AmpFℓSTR(® )Identifiler(® )profiles for genotyping of human DNA
title_fullStr Development of a fast PCR protocol enabling rapid generation of AmpFℓSTR(® )Identifiler(® )profiles for genotyping of human DNA
title_full_unstemmed Development of a fast PCR protocol enabling rapid generation of AmpFℓSTR(® )Identifiler(® )profiles for genotyping of human DNA
title_short Development of a fast PCR protocol enabling rapid generation of AmpFℓSTR(® )Identifiler(® )profiles for genotyping of human DNA
title_sort development of a fast pcr protocol enabling rapid generation of ampfℓstr(® )identifiler(® )profiles for genotyping of human dna
topic Methodology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3352264/
https://www.ncbi.nlm.nih.gov/pubmed/22394458
http://dx.doi.org/10.1186/2041-2223-3-6
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