Forensic efficiency and population genetic construction of Guizhou Gelao minority from Southwest China revealed by a panel of 23 autosomal STR loci

Author:

Chai Siyu12,Li Shuhua342,Zhu Ruxin1,Luo Li25,Chen Kaiqin341,Lei Yinlei341,Wan Weihong34,Hu Xijie34,Liu Shiquan6,Chen Pengyu3412

Affiliation:

1. Shanghai Key Lab of Forensic Medicine , Key Lab of Forensic Science, Ministry of Justice, China (Academy of Forensic Science), Shanghai, China

2. Center of Forensic Expertise , Affiliated hospital of Zunyi Medical University, Guizhou, China

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

4. Collaborative Innovation Center of Chinese Ministry of Education , Zunyi Medical University, Guizhou, China

5. School of forensic medicine , Shanxi Medical University, Taiyuan, China

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

Abstract

Abstract   Short tandem repeats (STRs) are the most common genetic markers in forensic and human population genetics due to their high polymorphism, rapid detection, and reliable genotyping. To adapt the rapid growth of forensic DNA database and solve problems in disputed cases, a panel of 23 autosomal STR loci with high discriminating ability was constructed recently. The Tai-Kadai-speaking Gelao is the most ancient indigenous minority in Guizhou province, however, the forensic efficiency and population genetic structure remain poorly explored. Here, 490 Guizhou Gelao individuals from Southwest China were genotyped with the panel of 23 STRs using the Huaxia Platinum Kit. A total of 265 alleles were screened. The combined discrimination power and the combined probability of paternity were 0.9999 and 0.9999, respectively. This indicated the 23 loci had higher discrimination power in Guizhou Gelao and could be applied to forensic practice. Comprehensive population structures with reference populations from China and abroad using the neighbour-joining phylogenetic tree (N-J tree), multidimensional scaling, principal component analysis and heatmap demonstrated that Guizhou Gelao was genetically closer to Guizhou Han than other populations. Moreover, our results showed that a complex phylogenetic model was influenced by ethnic, geographic, and linguistic factors. Key points

Funder

Shanghai Key Lab of Forensic Medicine

Key Lab of Forensic Science, Ministry of Justice, China

Academy of Forensic Science

National Natural Science Foundation

Science and Technology Project of Guizhou Provincial Health Commission

Science and Technology Cooperation Project of Zunyi Science and Technology

Science and Technology Foundation of Guizhou Province of China

Publisher

Oxford University Press (OUP)

Reference47 articles.

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