Improving DNA mixtures analysis using compound markers composed of InDels and SNPs screened from the whole genome with next‐generation sequencing

Author:

Tan Mengyu1,Xue Jiaming1,Wu Qiushuo1,Zheng Yazi1,Liu Guihong1,Zhang Ranran1,Wu Mengna1,Song Jinlong1,Xiao Yuanyuan1,Chen Dezhi1,Lv Meili2,Liao Miao1,Qu Shengqiu1,Liang Weibo1ORCID

Affiliation:

1. Department of Forensic Genetics, West China School of Basic Medical Sciences and Forensic Medicine Sichuan University Chengdu Sichuan P. R. China

2. Department of Immunology, West China School of Basic Medical Sciences and Forensic Medicine Sichuan University Chengdu Sichuan P. R. China

Abstract

AbstractNext‐generation sequencing (NGS) allows for better identification of insertion and deletion polymorphisms (InDels) and their combination with adjacent single nucleotide polymorphisms (SNPs) to form compound markers. These markers can improve the polymorphism of microhaplotypes (MHs) within the same length range, and thus, boost the efficiency of DNA mixture analysis. In this study, we screened InDels and SNPs across the whole genome and selected highly polymorphic markers composed of InDels and/or SNPs within 300 bp. Further, we successfully developed and evaluated an NGS‐based panel comprising 55 loci, of which 24 were composed of both SNPs and InDels. Analysis of 124 unrelated Southern Han Chinese revealed an average effective number of alleles (Ae) of 7.52 for this panel. The cumulative power of discrimination and cumulative probability of exclusion values of the 55 loci were 1–2.37 × 10–73and 1–1.19 × 10–28, respectively. Additionally, this panel exhibited high allele detection rates of over 97% in each of the 21 artificial mixtures involving from two to six contributors at different mixing ratios. We used EuroForMix to calculate the likelihood ratio (LR) and evaluate the evidence strength provided by this panel, and it could assess evidence strength with LR, distinguishing real and noncontributors. In conclusion, our panel holds great potential for detecting and analyzing DNA mixtures in forensic applications, with the capability to enhance routine mixture analysis.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Clinical Biochemistry,Biochemistry,Analytical Chemistry

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