Internal validation of an improved system for forensic application: a 41-plex Y-STR panel

Author:

Chai Siyu12,Li Min23,Tao Ruiyang2,Xia Ruocheng2,Kong Qianqian24,Qu Yiling25,Chen Liqin4,Liu Shiquan6,Li Chengtao2,Chen Pengyu1,Zhang Suhua27

Affiliation:

1. Key Laboratory of Cell Engineering of Guizhou Province, Clinical Stem Cell Research Institute, Affiliated Hospital of Zunyi Medical University , Zunyi , China

2. Shanghai Key Laboratory of Forensic Medicine, Shanghai Forensic Service Platform, Academy of Forensic Sciences, Ministry of Justice , China, Shanghai , China

3. School of Basic Medical Sciences, Shandong First Medical University & Shandong Academy of Medical Sciences , Jinan , China

4. Department of Forensic Medicine, Inner Mongolia Medical University , Hohhot , China

5. Department of Forensic Science, Medical School of Soochow University , Suzhou , China

6. Institute of Evidence Law and Forensic Science, China University of Political Science and Law , Beijing , China

7. School of Basic Medical Sciences, Fudan University , Shanghai , China

Abstract

Abstract   Y-chromosome short tandem repeats (Y-STRs) have a unique role in forensic investigation. However, low–medium mutating Y-STRs cannot meet the requirements for male lineage differentiation in inbred populations, whereas rapidly mutating (RM) high-resolution Y-STRs might cause unexpected exclusion of paternal lineages. Thus, combining Y-STRs with low and high mutation rates helps to distinguish male individuals and lineages in family screening and analysis of genetic relationships. In this study, a novel 6-dye, 41-plex Y-STR panel was developed and validated, which included 17 loci from the Yfiler kit, nine RM Y-STR loci, 15 low–medium mutating Y-STR loci, and three Y-InDels. Developmental validation was performed for this panel, including size precision testing, stutter analysis, species specificity analysis, male specificity testing, sensitivity testing, concordance evaluation, polymerase chain reaction inhibitors analysis, and DNA mixture examination. The results demonstrated that the novel 41-plex Y-STR panel, developed in-house, was time efficient, accurate, and reliable. It showed good adaptability to directly amplify a variety of case-type samples. Furthermore, adding multiple Y-STR loci significantly improved the system’s ability to distinguish related males, making it highly informative for forensic applications. In addition, the data obtained were compatible with the widely used Y-STR kits, facilitating the search and construction of population databases. Moreover, the addition of Y-Indels with short amplicons improves the analyses of degraded samples. Key Points

Funder

National Youth Top-notch Talent of Ten Thousand Program

Shanghai Science and Technology Innovation Fund

National Natural Science Foundation of China

Open Project of Ministry of Justice of China

Publisher

Oxford University Press (OUP)

Subject

Psychiatry and Mental health,Physical and Theoretical Chemistry,Anthropology,Biochemistry, Genetics and Molecular Biology (miscellaneous),Pathology and Forensic Medicine,Analytical Chemistry

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