Objective To establish the northwest database of short tandem repeat(STR) loci in forensic medicine. Methods Bloodstains or whole blood samples were collected from the unrelated prisoners in Xi'an city. Genetic ...Objective To establish the northwest database of short tandem repeat(STR) loci in forensic medicine. Methods Bloodstains or whole blood samples were collected from the unrelated prisoners in Xi'an city. Genetic distribution for 13 STR loci and amelogenin locus were determined in prisons based on GeneScan. One primer for each locus was labeled with the fluorescent by 5 FAM, JOE, or NED. The forensic database were generated by using multiple amplification, GeneScan, genotype, and genetic distribution analysis. Results 113 alleles and 302 genotypes were observed, with the corresponding frequency between 0.0050-0.5250 and 0.0100-0.4100. The mean H was 0.7667. The accumulative DP was 0.9999999,. The accumulative EPP was 0.9999999. The scope of PIC was 0.6036- 0.8562 . PM was less than 10 -11 . The observed and expected genotype frequencies were evaluated using χ 2 test and all were in accordance with Hardy Weinberg equilibrium ( P > 0.05 ). Conclusion STR loci is an ideal genetic marker with powerful polymorphism and stable heredity. It can be used for individual identification and paternity in forensic medicine. The forensic DNA database model can be established successfully.展开更多
目的 建立基于常用STR分型试剂盒的肿瘤组织身源鉴定方法。方法 采用ForenSeq^(TM) DNA Signature Prep试剂盒检测55例配对肿瘤组织样本(肿瘤组织和同一个体正常组织成对)以及75例无关个体全血样本27个常染色体STR基因座的分型情况,并模...目的 建立基于常用STR分型试剂盒的肿瘤组织身源鉴定方法。方法 采用ForenSeq^(TM) DNA Signature Prep试剂盒检测55例配对肿瘤组织样本(肿瘤组织和同一个体正常组织成对)以及75例无关个体全血样本27个常染色体STR基因座的分型情况,并模拟55例肿瘤组织的全同胞、亲子对分型数据,统计成对肿瘤(paired carcinoma,PC)、肿瘤-无关个体(tumor-unrelated individual,UI)、肿瘤-全同胞(tumor-simulated full sibling,FS)与肿瘤-亲子(tumor-simulated parent-offspring,PO)的共有等位基因个数(number of total identical alleles,A_n)及状态一致性(identity by state,IBS)评分。以上述统计结果作为参照,建立8个常用STR分型试剂盒的肿瘤组织身源鉴定预测模型,并尝试构建一个专用于肿瘤组织身源鉴定的模型。使用另外23例配对肿瘤组织样本的检测结果对鉴定模型的准确性、灵敏度及特异度进行验证与评估。结果 (1)在任一试剂盒中,全不同基因座数量(A_0)在PC组与PO组之间差异无统计学意义。1个相同基因座数量(A_(1))、2个相同基因座数量(A_(2))和IBS评分在PC组与UI、FS、PO组之间差异均有统计学意义。(2)不同STR基因座的A_n与IBS评分在不同组别存在差异,其中,13个STR基因座(CSF1PO、D12S391、D19S433、D20S482、D2S1338、D3S1358、D4S2408、D7S820、D8S1179、FGA、TH01、TPOX、vWA)的A_(2)在PC组均高于其他STR基因座;2个STR基因座(D6S1043、PentaE)的A_(2)在UI组低于其他STR基因座。(3)成功构建了8个常用STR分型试剂盒的肿瘤组织身源鉴定预测模型以及15个STR基因座的肿瘤组织身源鉴定模型(15-STRs),灵敏度均达100%,特异度为97.56%~99.88%,准确度为97.59%~99.89%。其中,15-STRs模型的灵敏度为100%,特异度为99.88%,准确率为99.89%,高于常用商业化试剂盒。结论 本研究成功建立了8个常用STR分型试剂盒的肿瘤组织身源鉴定方法,拓展了肿瘤组织身源鉴定的应用范围。通过比较不同基因座在肿瘤组织身源鉴定中的差异,筛选出了15个特别适用于肿瘤组织身源鉴定的STR基因座,为未来肿瘤组织溯源的试剂盒构建提供了数据基础。展开更多
基金ThisworkwassupportedbytheScientificResearchItemofXi’ancity (No .2 0 0 2 3 9)
文摘Objective To establish the northwest database of short tandem repeat(STR) loci in forensic medicine. Methods Bloodstains or whole blood samples were collected from the unrelated prisoners in Xi'an city. Genetic distribution for 13 STR loci and amelogenin locus were determined in prisons based on GeneScan. One primer for each locus was labeled with the fluorescent by 5 FAM, JOE, or NED. The forensic database were generated by using multiple amplification, GeneScan, genotype, and genetic distribution analysis. Results 113 alleles and 302 genotypes were observed, with the corresponding frequency between 0.0050-0.5250 and 0.0100-0.4100. The mean H was 0.7667. The accumulative DP was 0.9999999,. The accumulative EPP was 0.9999999. The scope of PIC was 0.6036- 0.8562 . PM was less than 10 -11 . The observed and expected genotype frequencies were evaluated using χ 2 test and all were in accordance with Hardy Weinberg equilibrium ( P > 0.05 ). Conclusion STR loci is an ideal genetic marker with powerful polymorphism and stable heredity. It can be used for individual identification and paternity in forensic medicine. The forensic DNA database model can be established successfully.
文摘目的 建立基于常用STR分型试剂盒的肿瘤组织身源鉴定方法。方法 采用ForenSeq^(TM) DNA Signature Prep试剂盒检测55例配对肿瘤组织样本(肿瘤组织和同一个体正常组织成对)以及75例无关个体全血样本27个常染色体STR基因座的分型情况,并模拟55例肿瘤组织的全同胞、亲子对分型数据,统计成对肿瘤(paired carcinoma,PC)、肿瘤-无关个体(tumor-unrelated individual,UI)、肿瘤-全同胞(tumor-simulated full sibling,FS)与肿瘤-亲子(tumor-simulated parent-offspring,PO)的共有等位基因个数(number of total identical alleles,A_n)及状态一致性(identity by state,IBS)评分。以上述统计结果作为参照,建立8个常用STR分型试剂盒的肿瘤组织身源鉴定预测模型,并尝试构建一个专用于肿瘤组织身源鉴定的模型。使用另外23例配对肿瘤组织样本的检测结果对鉴定模型的准确性、灵敏度及特异度进行验证与评估。结果 (1)在任一试剂盒中,全不同基因座数量(A_0)在PC组与PO组之间差异无统计学意义。1个相同基因座数量(A_(1))、2个相同基因座数量(A_(2))和IBS评分在PC组与UI、FS、PO组之间差异均有统计学意义。(2)不同STR基因座的A_n与IBS评分在不同组别存在差异,其中,13个STR基因座(CSF1PO、D12S391、D19S433、D20S482、D2S1338、D3S1358、D4S2408、D7S820、D8S1179、FGA、TH01、TPOX、vWA)的A_(2)在PC组均高于其他STR基因座;2个STR基因座(D6S1043、PentaE)的A_(2)在UI组低于其他STR基因座。(3)成功构建了8个常用STR分型试剂盒的肿瘤组织身源鉴定预测模型以及15个STR基因座的肿瘤组织身源鉴定模型(15-STRs),灵敏度均达100%,特异度为97.56%~99.88%,准确度为97.59%~99.89%。其中,15-STRs模型的灵敏度为100%,特异度为99.88%,准确率为99.89%,高于常用商业化试剂盒。结论 本研究成功建立了8个常用STR分型试剂盒的肿瘤组织身源鉴定方法,拓展了肿瘤组织身源鉴定的应用范围。通过比较不同基因座在肿瘤组织身源鉴定中的差异,筛选出了15个特别适用于肿瘤组织身源鉴定的STR基因座,为未来肿瘤组织溯源的试剂盒构建提供了数据基础。