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首页> 外文期刊>International Journal of Legal Medicine >Detection of the A189G mtDNA heteroplasmic mutation in relation to age in modern and ancient bones
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Detection of the A189G mtDNA heteroplasmic mutation in relation to age in modern and ancient bones

机译:在现代和古代骨骼中检测与年龄相关的A189G mtDNA异质突变

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摘要

The aim of this study was to demonstrate the presence of the A189G age-related point mutation on DNA extracted from bone. For this, a peptide nucleic acid (PNA)/DNA sequencing method which can determine an age threshold for the appearance of the mutation was used. Initially, work was done in muscle tissue in order to evaluate the sensitivity of the technique and afterwards in bone samples from the same individuals. This method was also applied to ancient bones from six well-preserved skeletal remains. The mutation was invariably found in muscle, and at a rate of up to 20% in individuals over 60 years old. In modern bones, the mutation was detected in individuals aged 38 years old or more, at a rate of up to 1%, but its occurrence was not systematic (only four out of ten of the individuals over 50 years old carried the heteroplasmy). For ancient bones, the mutation was also found in the oldest individuals according to osteologic markers. The study of this type of age-related mutation and a more complete understanding of its manifestation has potentially useful applications. Combined with traditional age markers, it could improve identification accuracy in forensic cases or in anthropological studies of ancient populations.
机译:这项研究的目的是证明从骨骼中提取的DNA上存在A189G年龄相关的点突变。为此,使用了可以确定突变出现年龄阈值的肽核酸(PNA)/ DNA测序方法。最初,在肌肉组织中进行了工作以评估该技术的敏感性,然后在同一个人的骨骼样本中进行了评估。该方法还应用于六个保存完好的骨骼遗骸的古代骨骼。突变总是在肌肉中发现,在60岁以上的人群中高达20%。在现代骨骼中,该突变是在38岁以上的个体中检测到的,其发生率高达1%,但它的发生不是系统性的(50岁以上的个体中,只有十分之四携带异质性)。对于古代骨骼,根据骨科标志物,在年龄最大的个体中也发现了这种突变。对这种与年龄有关的突变的研究以及对其表现的更完整的理解具有潜在的有用应用。结合传统的年龄标记,可以提高法医案件或古代人群的人类学研究中的识别准确性。

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