2020年第47卷第9期目录
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封面故事:本研究基于插入-缺失多态性(Insertion-Deletion polymorphism,InDel) 遗传标记,筛选了38个在东亚、欧洲、非洲人群中具有等位基因频率差异的祖先来源InDel位点,同时整合Amelogenin位点和Y染色体STR (DYS439) 位点,以辅助未知样本的性别鉴定. 采用PCR-CE技术构建了单管直接扩增复合检测体系,经研究表明:该体系有较高的灵敏度和准确性,可以区分三大洲际人群及其混合人群,能够准确推断待测样本的族群来源、估算祖先成分,可与微流控芯片系统相结合,1.7 h内完成DNA样本自动化扩增和电泳分型. 与其他SNP族群推断体系相比,本体系的优势在于采用PCR-CE技术,在3 h内即可完成样本检测和推断,耗时短、检测成本低. 与其他InDel族群推断体系相比,本体系所需试剂均为国产,降低了检测成本,同时可以直接扩增,操作简单. 由于与常规STR检验方法相同,也易于在国内法医DNA实验室推广应用.
(韩俊萍,赵蕾,王庆国,江丽,谢何鑫,庄斌,赵丽健,李唐松,吴瑾,李彩霞. 单管直扩38 重祖先信息InDels 体系的构建及其在微流控芯片系统的应用,本期第968~981 页
Cover Story:In this paper, 38 ancestry informative insertion-deletion (InDel) polymorphism markers, with allele
frequency differences between three major continental population groups (East Asian, European, and African)
were selected from the related literatures and dbSNP database. The Amelogenin locus and a Y chromosomal STR
(DYS439) locus were integrated to aid in the sex determination of an unknown sample. All markers were designed
and amplified in a single-tube and performed direct amplification assay based on the PCR-CE technology for
inferring ancestry of three continental populations. This assay was integrated with a microfluidic system for
automatic amplification and InDel genotyping using DNA samples in 1.7 h. The genotypes of 1 607 individuals
obtained from the 1000Genomes Phase III panel were used to assess the differentiation capacity of this 38-plex
InDels assay. Then, this assay was validated by sensitivity, genotyping accuracy, and direct PCR ability. 779
samples from 5 populations and 215 direct amplification from saliva and blood samples were genotyped by this
assay, then using the structure cluster analysis and principal component analysis to infer ancestral origins and
evaluate the accuracy of the system. The results indicate that the 38-plex InDels assay can provide an accurate
genotyping, with a sensitivity of 157 pg, and enable the direct amplification of DNA from saliva and blood on
filter paper without sample purification. In addition, this assay is sufficient to distinguish between three
continental populations and the admixture of Eurasian populations, and also accurately infer the ancestry origins
of testing DNA samples. The integration of cell lysis into the microfluidic system is possible to yield 'sample-inprofile-
out' results of InDel genotyping in 2 h.
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综述与专论
研究报告
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