1)中国人民公安大学侦查学院,北京 100038;2)公安部鉴定中心,北京 100038;3)陕西省血液中心,西安 710061;4)陕西省公安厅,西安 710018
国家重点研发计划(2022YFC3341002)资助项目。
1)School of Investigation, People’s Public Security University of China, Beijing 100038, China;2)Institute of Forensic Science, Ministry of Public Security, Beijing 100038, China;3)Shaanxi Blood Center, Xi’an 710061, China;4)Shaanxi Provincial Public Security Department, Xi’an 710018, China
This work was supported by a grant from National Key R&D Programme (2022YFC3341002).
目的 建立一种灵敏、高效的多重PCR-毛细管电泳检测体系,能够在单管反应中同时鉴别牛、小鼠、犬、大鼠、猪、中国仓鼠、猫、马、人、鸡、鸭、驴、羊等13个物种的DNA,并验证其在法医物证及食品安全领域的应用潜力。方法 针对上述物种线粒体DNA,筛选具有物种特异性的序列并设计引物,构建多重PCR体系,优化引物浓度、退火温度等反应条件,使用毛细管电泳检测平台对多重PCR扩增产物进行检验,根据特征性片段长度及荧光差异表征不同物种,建立多重PCR-毛细管电泳体系,并评估其特异性、灵敏度,模拟混合样本、市售肉类样本及真实案件样本检测能力。结果 所建立的多重PCR-毛细管电泳检测体系物种鉴别能力强,灵敏度在0.05~0.001 ng之间,可检测掺假比例为0.1%~0.5%的模拟混合样本,成功鉴别真实案件检材并识别出标签信息不实的肉类及肉制品。结论 本研究所建立的多重PCR-毛细管电泳检测体系特异性强、灵敏度高,具有良好的物种鉴别能力,在法医物证分析、食品安全监测等司法问题中具有较好的应用价值。
Objective To address the challenge of identifying unknown animal-derived components in the fields of forensic evidence and food safety, we developed and validated a sensitive and efficient multiplex polymerase chain reaction-capillary electrophoresis (PCR-CE) detection system capable of simultaneously identifying DNA from 13 species—cattle (Bos taurus), mouse (Mus musculus), dog (Canis lupus familiaris), rat (Rattus norvegicus), pig (Sus scrofa), Chinese hamster (Cricetulus griseus), cat (Felis catus), horse (Equus caballus), human (Homo sapiens), chicken (Gallus gallus), duck (Anas platyrhynchos), donkey (Equus asinus), and sheep (Ovis aries)—within a single-tube reaction.Methods Species-specific primers were meticulously designed targeting hypervariable regions of the mitochondrial DNA (including Cytb, COI, 16S rRNA, and ND2 genes), with primer specificity rigorously verified in silico using BLAST analysis against non-target species. A multiplex PCR system was constructed, and critical reaction parameters, including primer concentrations and annealing temperature, were systematically optimized through gradient experiments to ensure balanced amplification of all 13 targets without non-specific products or primer-dimer formation. Amplification products were subsequently separated and detected based on their characteristic fragment lengths and distinct fluorescent labels (6-FAM, HEX) using a capillary electrophoresis platform. The established multiplex PCR-CE system was comprehensively evaluated across several parameters: specificity was tested against 17 species (13 target species and 4 non-target species); sensitivity was determined using serial dilutions of mixed DNA templates; the ability to detect adulteration was assessed using simulated mixed meat samples with known adulteration percentages (10% to 0.1%); and practical applicability was investigated by analyzing 27 commercially available meat products and authentic casework samples from a fatal dog attack incident.Results The optimized multiplex PCR-CE system successfully demonstrated specific and simultaneous amplification for all 13 target species, with zero cross-reactivity observed with 4 non-target species. The system exhibited high sensitivity, with detection limits ranging from 0.05 ng to 0.001 ng of DNA template depending on the species; ten species were detectable at the 0.001 ng level. In simulated adulteration studies, the system reliably detected duck DNA in sheep meat at 0.5%, pork in beef at 0.5%, and horse meat in donkey meat at a remarkably low level of 0.1%. Analysis of commercial meat products revealed an 18.52% (5/27) mislabeling rate. These findings were consistent with validation tests using national and industry standard methods. Furthermore, the system effectively identified human and dog DNA from real forensic case evidence (clothing fragments from bite marks), and even detected trace pig DNA, suggesting the dog’s prior pork consumption.Conclusion This study successfully established a highly specific, sensitive, and practical multiplex PCR-CE system for the simultaneous identification of 13 species. By combining the power of multiplex PCR with capillary electrophoresis, our approach delivers a significant advantage in terms of throughput, resolution, and automation over traditional gel-based methods. The system’s proven effectiveness in detecting low-level adulteration in complex mixtures and processed food products, along with its successful application to genuine forensic specimens, underscores its substantial value and broad potential for routine use in forensic laboratories for evidence analysis and in regulatory settings for ensuring food authenticity and safety monitoring.
郭润泽,胡胜,陈利萍,张颖,贺永锋,宋振,杨瑞琴,孙启凡.基于多重PCR-毛细管电泳的常见物种鉴别体系的构建与验证[J].生物化学与生物物理进展,2025,52(12):3175-3185 GUO Run-Ze, HU Sheng, CHEN Li-Ping, ZHANG Ying, HE Yong-Feng, SONG Zhen, YANG Rui-Qin, SUN Qi-Fan. Development and Validation of a Multiplex PCR-capillary Electrophoresis System for Identification of Frequently Encountered Species[J]. Progress in Biochemistry and Biophysics,2025,52(12):3175-3185
复制

扫码关注 生物化学与生物物理进展 ® 2026 网站版权 ICP:京ICP备05023138号-1 京公网安备 11010502031771号
