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首页> 外文期刊>International Journal of Legal Medicine >Analysis of mitochondrial length heteroplasmy in monozygous and non-monozygous siblings
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Analysis of mitochondrial length heteroplasmy in monozygous and non-monozygous siblings

机译:单合和非单合兄弟姐妹的线粒体长度异质性分析

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摘要

The segregation of mitochondrial genomes and the inheritance of mitochondrial DNA are constant matters of debate. To obtain more information about this issue and to answer the question whether or not it is possible to distinguish mitochondrial DNA (mtDNA) samples from monozygous individuals by analysing heteroplasmic length variants, 290 monozygous and 121 dizygous twin pairs and 34 sets of multiples were studied by RFLP and partly by direct sequencing. A factor D describing the respective pattern of length variants in a given sample was also calculated. The results show that monozygous individuals exhibit a significantly lower median and closer distribution of D than non-monozygous siblings. Thus, a differentiation of mtDNA samples from monozygous twins by this trait is not possible. The high percentage of heteroplasmic individuals, the low median of the D values and the unexpectedly very similar distribution of length variants in monozygotic individuals support the existence of a relatively wide bottleneck or the assumption of a regeneration of length heteroplasmy following a tight bottleneck and agree with a random segregation of mtDNA genomes in dividing oocytes.
机译:线粒体基因组的分离和线粒体DNA的遗传一直是争论的话题。为了获得有关此问题的更多信息并回答是否可以通过分析异质性长度变异来区分线粒体DNA(mtDNA)与单合子个体的问题,研究了290个单合子和121个双合子对以及34套倍数。 RFLP,部分通过直接测序。还计算了描述给定样品中长度变化的各自模式的因子D。结果表明,单合子个体比非单合子兄弟姐妹表现出明显更低的中位D值和更接近的D分布。因此,不可能通过该性状将mtDNA样品与单卵双胞胎区分开。杂种个体的高百分比,D值的中位数低以及单合子个体中长度变异的出乎意料的非常相似的分布支持存在相对较宽的瓶颈,或假设在紧致的瓶颈之后会出现长度异质的再生,并且同意卵母细胞中mtDNA基因组的随机分离。

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