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孔姓人群Y染色体遗传多态性研究及其法医学意义
引用本文:孙亚男,李屹,翟滇,邢豫明,曾发明,李貌,程宝文.孔姓人群Y染色体遗传多态性研究及其法医学意义[J].中国法医学杂志,2016(4):341-344.
作者姓名:孙亚男  李屹  翟滇  邢豫明  曾发明  李貌  程宝文
作者单位:1. 昆明医科大学法医学院,云南 昆明650500; 济宁医学院法医学与医学检验学院,山东 济宁272067;2. 大理州公安局,云南 大理,671000;3. 云南省公安厅刑事科学技术研究所,公安部毒品分析及禁毒技术重点实验室,云南 昆明650228;4. 云南省公安厅交警总队,云南 昆明,650228;5. 昆明医科大学法医学院,云南 昆明650500; 云南省公安厅刑事科学技术研究所,公安部毒品分析及禁毒技术重点实验室,云南 昆明650228
基金项目:公安部科技计划立项项目(2016JSYJA05)
摘    要:目的获取孔姓人群Y-SNP和Y-STR遗传标记的信息,探索姓氏与Y染色体的关联性及法医学意义。方法采用等级复合扩增和SNaPshot技术检测255例孔姓男性和330例随机无关男性样本的12个Y-SNPs位点信息;采用Y filer试剂盒检测孔姓人群的17个Y-STRs基因座;应用Arlequin 3.5.1.2、Network4.6.1.1进行统计分析。结果12个Y-SNPs位点构成13种单倍群分型,孔姓人群和无关人群中最高分布频率的单倍群均为O3a2c1a-M117(21.57%,14.85%)。孔姓人群17个Y-STRs基因座构成的196种单倍型,多态性为0.993 9,单倍型14-12-25-28-19-15-12-19-12-11-12-22-12-11-14-10-19出现15次。O3-M122单倍群的中介网络树及不配对差异分析显示孔姓人群有两个中心星型分布,核苷酸不配对曲线呈单峰泊松分布。结论联合Y-SNP和Y-STR遗传标记分析表明孔姓人群存在复杂的基因交流,有多个姓氏起源,且在历史上经历过一定的扩张或持续增长,结合孔姓家谱历史分析其人群结构的遗传差异在法医学方面有潜在的应用价值。

关 键 词:法医物证学  孔姓  Y-SNP  Y-STR  基因家谱学

Genetic polymorphism study of the Y chromosome in pedigree with the surname Kong and their forensic implications
Sun Yanan;Li Yi;Zhai Dian;Xing Yuming;Zeng Faming;Li Mao;Cheng Baowen.Genetic polymorphism study of the Y chromosome in pedigree with the surname Kong and their forensic implications[J].Chinese Journal of Forensic Medicine,2016(4):341-344.
Authors:Sun Yanan;Li Yi;Zhai Dian;Xing Yuming;Zeng Faming;Li Mao;Cheng Baowen
Institution:Sun Yanan;Li Yi;Zhai Dian;Xing Yuming;Zeng Faming;Li Mao;Cheng Baowen;School of Forensic Medicine,Kunming Medical College;School of Forensic Medicine and Medical Laboratory Science,Jinine Medical College;Dali Municipal Public Security Bureau;Key Laboratory of Ministry of Public Security of Drug Analysis and Drug Control Technology,Public Security Department of Yunnan Province;Traffic Police Headquarters of Yunnan Provincial Public Secruity Department;
Abstract:Objective Acquiring genetic information of Y-SNPs and Y-STRs genetic makers from samples with the surname of Kong, which is useful for exploring the correlation between surname and Y chromosome in forensic applications studies.Methods Two multiplex genotyping assays and SNaPshot assay were used to analyze 255 unrelated male blood samples who share the same surname Kong and 330 unrelated male blood samples obtained randomly. 17 Y-STRs were typed for the surname Kong population samples. The software Arlequin 3.5.1.2 and the program Network 4.6.1.1 were used for data statistical analysis.Results 13 haplogroups were observed. The highest haplogroup frequency in the two populations were O3a2c1a-M117 (21.57%, 14.85%). 196 haplotypes in Kong population deifned by 17 Y-STRs locus were obtained and the haplotype diversity was 0.9939. 14-12-25-28-19-15-12-19-12-11-12-22-12-11-14-10-19 is the typical haplotype. Median Joining algorithm and Mismatch Distribution were adopted to analyze the Y-STR haplotye under haplogroup O3-M122, and the result shows that there are two “central star” distribution. Conclusion Combined with Y-SNP and Y-STR analysis showed that the Kong population had experienced complicated exchanges and expansion or continued growth, which has more than one surname origin. Hence, its population genetic structure and historical differences have potential applications in forensic science.
Keywords:forensic biological evidence  surname Kong  Y-SNP  Y-STR  genetic genealog
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