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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >LENGTH AND SEQUENCE VARIATION IN D7S22 (G3) ALLELES STUDIED BY HIGH RESOLUTION LENGTH MEASUREMENTS AND NUCLEOTIDE SEQUENCING
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LENGTH AND SEQUENCE VARIATION IN D7S22 (G3) ALLELES STUDIED BY HIGH RESOLUTION LENGTH MEASUREMENTS AND NUCLEOTIDE SEQUENCING

机译:高分辨率长度测量和核苷酸测序法研究D7S22(G3)等位基因的长度和序列变异。

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In a study of DNA sequence and length variation in the repeat array of small D7S22 alleles, 100 alleles typed as the common 14 repeat allele (14R) and 92 rare ones were selected for further characterization. A polymerase chain reaction (PCR) based allele length measurement method revealed a discontinuous distribution of alleles. The 92 rare alleles were grouped by their number of repeats. All, except four 6R alleles were distributed within the 11R-19R allele groups. The 14Rs revealed no further length variation while 7 out of the 92 rare alleles showed small length deviations from the other alleles within their respective groups. Nucleotide sequencing of the repeat array was performed in 17 alleles selected from each of the nine allele groups. The micro length variation within allele groups was caused by the presence of either 33, 36 or 37 bp repeats in given positions. A comparison of three 14Rs revealed no further sequence variation between these. Nine out of the fourteen repeats in the 14R differed in sequence and/or size. Based on this difference the repeat array sequence was converted into a code of different variant repeats. The 6R showed a variant repeat code quite unlike that of the 14R, while the encoded allele structure of the other rare alleles suggested that most of them may have evolved from a 14R allele by deletion or duplication of repeat units. Nucleotide sequencing of progenitor and mutant in a D7S22 de novo mutation as well as typing in a polymorphic site near the repeat array suggested that the event was an intra-allelic deletion of exactly three repeats. The present findings indicate that the 14R is ancestral to most rare small alleles, and that mutations in small alleles most often are intra-allelic events leading to a change in bp size equal to an integer number of repeats. [References: 20]
机译:在对小D7S22等位基因重复序列中DNA序列和长度变异的研究中,选择了100个等位基因作为共同的14个重复等位基因(14R)和92个稀有基因进行进一步表征。基于聚合酶链反应(PCR)的等位基因长度测量方法揭示了等位基因的不连续分布。 92个稀有等位基因按重复数分组。除四个6R等位基因外,其余全部分布在11R-19R等位基因组中。 14Rs没有进一步的长度变化,而92个稀有等位基因中的7个显示出与各自组别中的其他等位基因相比较小的长度偏差。在选自九个等位基因组的每一个中的17个等位基因中进行重复序列的核苷酸测序。等位基因组内的微长度变化是由于在给定位置存在33、36或37 bp重复而引起的。对三个14R的比较表明它们之间没有进一步的序列变异。 14R中14个重复序列中有9个的序列和/或大小不同。基于此差异,将重复阵列序列转换为不同变体重复的代码。 6R显示的变异重复编码与14R完全不同,而其他稀有等位基因的编码等位基因结构表明,它们中的大多数可能是通过删除或复制重复单元从14R等位基因进化而来的。 D7S22 de novo突变中祖细胞和突变体的核苷酸测序以及在重复序列附近输入多态位点表明该事件是等位基因内三个重复序列的缺失。目前的发现表明,14R是大多数稀有小等位基因的祖先,而小等位基因中的突变通常是等位基因内事件,导致bp大小的变化等于整数的重复次数。 [参考:20]

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