Instituto de Patologia e Imunologia da Universidade do Porto, Porto, Portugal.
Electrophoresis. 2010 Jan;31(2):303-8. doi: 10.1002/elps.200900389.
This study reports the methodology used to search, select and characterize STR loci on the canine X chromosome using publicly available genome resources and following the current guidelines for human and non-human forensic testing. After several rounds of selection, 12 X-STR markers were optimized for simultaneous co-amplification in a single PCR, and genetic profiles were determined in a sample of 103 unrelated dogs. Mendelian inheritance was verified and mutation rates were assessed using family groups. Alleles that varied in size were sequenced to create a standardized nomenclature proposal based on the number of repeats. All loci conformed to Hardy-Weinberg expectations. The resulting panel showed high forensic efficiency, presenting high values of power of discrimination (in males and females) and mean exclusion chance, both in trios involving female offspring and in duos composed of dam and male offspring. Its use may complement the information obtained by autosomal STR analysis and contribute to the resolution of complex cases of kinship in dogs. The presented methodology for the de novo construction of an STR multiplex may also provide a helpful framework for analogous work in other animal species. As an increasing number of reference genomes become available, convenient tools for individual identification and parentage testing based on STR loci selected from autosomes or sex chromosomes' sequences may be created following this strategy.
本研究报告了使用公开可用的基因组资源并遵循当前人类和非人类法医检测指南,搜索、选择和描述犬科动物 X 染色体上 STR 基因座的方法。经过几轮筛选,优化了 12 个 X-STR 标记物,以在单个 PCR 中同时进行共扩增,并在 103 个无关犬只样本中确定了遗传谱。通过家系群体验证了孟德尔遗传,并评估了突变率。对大小不同的等位基因进行测序,根据重复次数提出标准化命名建议。所有基因座均符合 Hardy-Weinberg 预期。该检测面板显示出较高的法医学效率,在涉及雌性后代的三亲组合和由母犬和雄性后代组成的二亲组合中,均表现出较高的个体识别能力(在雄性和雌性中)和平均排除机会。它的使用可以补充常染色体 STR 分析获得的信息,并有助于解决犬类复杂的亲缘关系案件。本研究提出的从头构建 STR 多重扩增的方法也可以为其他动物物种中基于常染色体或性染色体序列选择的 STR 基因座的个体识别和亲子关系检测提供有用的框架。随着越来越多的参考基因组可用,基于从常染色体或性染色体序列中选择的 STR 基因座的个体识别和亲子关系检测的便捷工具可以根据该策略创建。