Sequencing of 231 forensic genetic markers using the MiSeq FGx™ forensic genomics system – an evaluation of the assay and software

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Standard

Sequencing of 231 forensic genetic markers using the MiSeq FGx™ forensic genomics system – an evaluation of the assay and software. / Hussing, Christian; Huber, Christina; Bytyci, Rajmonda; Mogensen, Helle Smidt; Morling, Niels; Børsting, Claus.

I: Forensic Sciences Research, Bind 3, Nr. 2, 09.04.2018, s. 111-123.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Hussing, C, Huber, C, Bytyci, R, Mogensen, HS, Morling, N & Børsting, C 2018, 'Sequencing of 231 forensic genetic markers using the MiSeq FGx™ forensic genomics system – an evaluation of the assay and software', Forensic Sciences Research, bind 3, nr. 2, s. 111-123. https://doi.org/10.1080/20961790.2018.1446672

APA

Hussing, C., Huber, C., Bytyci, R., Mogensen, H. S., Morling, N., & Børsting, C. (2018). Sequencing of 231 forensic genetic markers using the MiSeq FGx™ forensic genomics system – an evaluation of the assay and software. Forensic Sciences Research, 3(2), 111-123. https://doi.org/10.1080/20961790.2018.1446672

Vancouver

Hussing C, Huber C, Bytyci R, Mogensen HS, Morling N, Børsting C. Sequencing of 231 forensic genetic markers using the MiSeq FGx™ forensic genomics system – an evaluation of the assay and software. Forensic Sciences Research. 2018 apr. 9;3(2):111-123. https://doi.org/10.1080/20961790.2018.1446672

Author

Hussing, Christian ; Huber, Christina ; Bytyci, Rajmonda ; Mogensen, Helle Smidt ; Morling, Niels ; Børsting, Claus. / Sequencing of 231 forensic genetic markers using the MiSeq FGx™ forensic genomics system – an evaluation of the assay and software. I: Forensic Sciences Research. 2018 ; Bind 3, Nr. 2. s. 111-123.

Bibtex

@article{d8842289ab4243c685ba8a9e8e10aa7f,
title = "Sequencing of 231 forensic genetic markers using the MiSeq FGx{\texttrademark} forensic genomics system – an evaluation of the assay and software",
abstract = "The MiSeq FGx{\texttrademark} Forensic Genomics System types 231 genetic markers in one multiplex polymerase chain reaction (PCR) assay. The markers include core forensic short tandem repeats (STRs) as well as identity, ancestry and phenotype informative short nucleotide polymorphisms (SNPs). In this work, the MiSeq FGx{\texttrademark} Forensic Genomics System was evaluated by analysing reproducibility, sensitivity, mixture identification and forensic phenotyping capabilities of the assay. Furthermore, the genotype calling of the ForenSeq{\texttrademark} Universal Analysis Software was verified by analysing fastq.gz files from the MiSeq FGx{\texttrademark} platform using the softwares STRinNGS and GATK. Overall, the performance of the MiSeq FGx{\texttrademark} Forensic Genomics System was high. However, locus and allele drop-outs were relatively frequent at six loci (two STRs and four human identification SNPs) due to low read depth or skewed heterozygote balances, and the stutter ratios were larger than those observed with conventional STR genotyping methods. The risk of locus and allele drop-outs increased dramatically when the amount of DNA in the first PCR was lower than 250 pg. Two-person 50:1 mixtures were identified as mixtures, whereas 100:1 and 1000:1 mixtures were not. Y-chromosomal short tandem repeats (Y-STRs) alleles were detected in the 100:1 and 1000:1 female/male mixtures. The ForenSeq{\texttrademark} Universal Analysis Software provided the data analyst with useful alerts that simplified the analysis of the large number of markers. Many of the alerts were due to user-defined, locus-specific criteria. The results shown here indicated that the default settings should be altered for some loci. Also, recommended changes to the assay and software are discussed.",
author = "Christian Hussing and Christina Huber and Rajmonda Bytyci and Mogensen, {Helle Smidt} and Niels Morling and Claus B{\o}rsting",
year = "2018",
month = apr,
day = "9",
doi = "10.1080/20961790.2018.1446672",
language = "English",
volume = "3",
pages = "111--123",
journal = "Forensic Sciences Research",
issn = "2096-1790",
publisher = "Taylor & Francis",
number = "2",

}

RIS

TY - JOUR

T1 - Sequencing of 231 forensic genetic markers using the MiSeq FGx™ forensic genomics system – an evaluation of the assay and software

AU - Hussing, Christian

AU - Huber, Christina

AU - Bytyci, Rajmonda

AU - Mogensen, Helle Smidt

AU - Morling, Niels

AU - Børsting, Claus

PY - 2018/4/9

Y1 - 2018/4/9

N2 - The MiSeq FGx™ Forensic Genomics System types 231 genetic markers in one multiplex polymerase chain reaction (PCR) assay. The markers include core forensic short tandem repeats (STRs) as well as identity, ancestry and phenotype informative short nucleotide polymorphisms (SNPs). In this work, the MiSeq FGx™ Forensic Genomics System was evaluated by analysing reproducibility, sensitivity, mixture identification and forensic phenotyping capabilities of the assay. Furthermore, the genotype calling of the ForenSeq™ Universal Analysis Software was verified by analysing fastq.gz files from the MiSeq FGx™ platform using the softwares STRinNGS and GATK. Overall, the performance of the MiSeq FGx™ Forensic Genomics System was high. However, locus and allele drop-outs were relatively frequent at six loci (two STRs and four human identification SNPs) due to low read depth or skewed heterozygote balances, and the stutter ratios were larger than those observed with conventional STR genotyping methods. The risk of locus and allele drop-outs increased dramatically when the amount of DNA in the first PCR was lower than 250 pg. Two-person 50:1 mixtures were identified as mixtures, whereas 100:1 and 1000:1 mixtures were not. Y-chromosomal short tandem repeats (Y-STRs) alleles were detected in the 100:1 and 1000:1 female/male mixtures. The ForenSeq™ Universal Analysis Software provided the data analyst with useful alerts that simplified the analysis of the large number of markers. Many of the alerts were due to user-defined, locus-specific criteria. The results shown here indicated that the default settings should be altered for some loci. Also, recommended changes to the assay and software are discussed.

AB - The MiSeq FGx™ Forensic Genomics System types 231 genetic markers in one multiplex polymerase chain reaction (PCR) assay. The markers include core forensic short tandem repeats (STRs) as well as identity, ancestry and phenotype informative short nucleotide polymorphisms (SNPs). In this work, the MiSeq FGx™ Forensic Genomics System was evaluated by analysing reproducibility, sensitivity, mixture identification and forensic phenotyping capabilities of the assay. Furthermore, the genotype calling of the ForenSeq™ Universal Analysis Software was verified by analysing fastq.gz files from the MiSeq FGx™ platform using the softwares STRinNGS and GATK. Overall, the performance of the MiSeq FGx™ Forensic Genomics System was high. However, locus and allele drop-outs were relatively frequent at six loci (two STRs and four human identification SNPs) due to low read depth or skewed heterozygote balances, and the stutter ratios were larger than those observed with conventional STR genotyping methods. The risk of locus and allele drop-outs increased dramatically when the amount of DNA in the first PCR was lower than 250 pg. Two-person 50:1 mixtures were identified as mixtures, whereas 100:1 and 1000:1 mixtures were not. Y-chromosomal short tandem repeats (Y-STRs) alleles were detected in the 100:1 and 1000:1 female/male mixtures. The ForenSeq™ Universal Analysis Software provided the data analyst with useful alerts that simplified the analysis of the large number of markers. Many of the alerts were due to user-defined, locus-specific criteria. The results shown here indicated that the default settings should be altered for some loci. Also, recommended changes to the assay and software are discussed.

U2 - 10.1080/20961790.2018.1446672

DO - 10.1080/20961790.2018.1446672

M3 - Journal article

C2 - 30483659

VL - 3

SP - 111

EP - 123

JO - Forensic Sciences Research

JF - Forensic Sciences Research

SN - 2096-1790

IS - 2

ER -

ID: 194947295