Evidence map›Paper›PMID 42782325›Full record

ArticleInternational journal of legal medicine2026

A mitochondrial DNA metabarcoding system based on tNGS enables multiplex identification of vertebrate species in samples containing degraded and mixed DNA.

Xueyuan Liu, Chang Su, Rongxing Wei, Xiaohui Chen, Jiaqian Le, Guichao Xiao, Jiarong Chang, Shaoming Liang, Xiaoling Wu, Changhui Liu and 4 more

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Article in International journal of legal medicine, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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14 authors.

Xueyuan Liu *Zhaoqing Medical College, Zhaoqing, Guangdong, 526020, PR China.
Chang Su *Guangzhou Key Laboratory of Forensic Multi-Omics for Precision Identification, School of Forensic Medicine, Southern Medical University, Guangzhou, Guangdong, 510515, PR China.
Rongxing Wei *Guangzhou Key Laboratory of Forensic Multi-Omics for Precision Identification, School of Forensic Medicine, Southern Medical University, Guangzhou, Guangdong, 510515, PR China.
Xiaohui ChenGuangzhou Public Security Bureau, Guangzhou, Guangdong, PR China.
Jiaqian LeGuangzhou Key Laboratory of Forensic Multi-Omics for Precision Identification, School of Forensic Medicine, Southern Medical University, Guangzhou, Guangdong, 510515, PR China.
Guichao XiaoGuangzhou Key Laboratory of Forensic Multi-Omics for Precision Identification, School of Forensic Medicine, Southern Medical University, Guangzhou, Guangdong, 510515, PR China.
Jiarong ChangGuangzhou Key Laboratory of Forensic Multi-Omics for Precision Identification, School of Forensic Medicine, Southern Medical University, Guangzhou, Guangdong, 510515, PR China.
Shaoming LiangZhaoqing Medical College, Zhaoqing, Guangdong, 526020, PR China.
Xiaoling WuZhaoqing Medical College, Zhaoqing, Guangdong, 526020, PR China.
Changhui LiuGuangzhou Public Security Bureau, Guangzhou, Guangdong, PR China.
Hong LiuGuangzhou Public Security Bureau, Guangzhou, Guangdong, PR China.
Weian DuDepartment of Forensic Medicine, School of Basic Medical Sciences and Public Health, Jinan University, Guangzhou, Guangdong, 510632, China. duwa168@163.com.
Chao LiuGuangzhou Key Laboratory of Forensic Multi-Omics for Precision Identification, School of Forensic Medicine, Southern Medical University, Guangzhou, Guangdong, 510515, PR China. liuchaogzf@163.com.
Ling ChenGuangzhou Key Laboratory of Forensic Multi-Omics for Precision Identification, School of Forensic Medicine, Southern Medical University, Guangzhou, Guangdong, 510515, PR China. lingpzy@163.com.ORCID https://orcid.org/0000-0001-7699-4820

Funding

Jiangxi Provincial Key Research and Development Program Grant no. 20223BBG71020National Natural Science Foundation of China Grant no. 82371901Paired research team project between Southern Medical University and Zhaoqing Medical College Grant no. JDBF004
6 · The paper itself

Abstract

Next-generation sequencing (NGS) has facilitated the widespread use of DNA metabarcoding in fields such as biodiversity, population research, and food adulteration. To improve the identification of animal-derived DNA in samples containing degraded and mixed DNA, a DNA metabarcoding system targeting the mitochondrial Cytb, COI, 16 S rRNA, and 12 S rRNA genes using targeted NGS (tNGS) was developed for vertebrate species. In line with the International Society for Forensic Genetics (ISFG) recommendations for non-human DNA analysis, the forensic performance of the novel assay was systematically evaluated, including assessments of sensitivity, mixtures, inhibitors, degraded DNA, processed meat products, and case sample studies. Sensitivity studies showed that 10 pg of genomic DNA per reaction from a single species was sufficient to detect at least one marker for all tested species, whereas 100 pg enabled reliable species identification using all four markers. For mixed samples with a total DNA input of 1 ng, all ten species were accurately identified in an equimolar mixture. Minor components were also detected in binary mixtures at a 99:1 ratio (1% minor contributors). Notably, the assay recovered fragmented DNA from experimentally degraded samples and highly processed food matrices. Analysis of casework samples further demonstrated that the tNGS-based multiplex assay enables broad-spectrum vertebrate identification and holds great practical value for curbing wildlife trafficking, mitigating food fraud, and facilitating biodiversity monitoring.

Indexed as

Degraded DNADNA metabarcodingPrecise identificationTargeted next-generation sequencing (tNGS)Vertebrate species

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