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Identification of polymorphic SVA retrotransposons using a mobile element scanning method for SVA (ME-Scan-SVA)

机译:使用SVA的移动元素扫描方法(ME-Scan-SVA)识别多态SVA逆转座子

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Background Mobile element insertions are a major source of human genomic variation. SVA (SINE-R/VNTR/Alu) is the youngest retrotransposon family in the human genome and a number of diseases are known to be caused by SVA insertions. However, inter-individual genomic variations generated by SVA insertions and their impacts have not been studied extensively due to the difficulty in identifying polymorphic SVA insertions. Results To systematically identify SVA insertions at the population level and assess their genomic impact, we developed a mobile element scanning (ME-Scan) protocol we called ME-Scan-SVA. Using a nested SVA-specific PCR enrichment method, ME-Scan-SVA selectively amplify the 5′ end of SVA elements and their flanking genomic regions. To demonstrate the utility of the protocol, we constructed and sequenced a ME-Scan-SVA library of 21 individuals and analyzed the data using a new analysis pipeline designed for the protocol. Overall, the method achieved high SVA-specificity and over >90?% of the sequenced reads are from SVA insertions. The method also had high sensitivity (>90?%) for fixed SVA insertions that contain the SVA-specific primer-binding sites in the reference genome. Using candidate locus selection criteria that are expected to have a 90?% sensitivity, we identified 151 and 29 novel polymorphic SVA candidates under relaxed and stringent cutoffs, respectively (average 12 and 2 per individual). For six polymorphic SVAs that we were able to validate by PCR, the average individual genotype accuracy is 92?%, demonstrating a high accuracy of the computational genotype calling pipeline. Conclusions The new approach allows identifying novel SVA insertions using high-throughput sequencing. It is cost-effective and can be applied in large-scale population study. It also can be applied for detecting potential active SVA elements, and somatic SVA retrotransposition events in different tissues or developmental stages.
机译:背景技术可移动元件插入是人类基因组变异的主要来源。 SVA(SINE-R / VNTR / Alu)是人类基因组中最年轻的反转录转座子家族,已知许多疾病是由SVA插入引起的。然而,由于难以识别多态性SVA插入,由SVA插入产生的个体间基因组变异及其影响尚未得到广泛研究。结果为了在人群水平上系统地识别SVA插入片段并评估其基因组影响,我们开发了一种称为ME-Scan-SVA的移动元件扫描(ME-Scan)协议。使用巢式SVA特异性PCR富集方法,ME-Scan-SVA选择性扩增SVA元件及其侧翼基因组区域的5'端。为了演示该协议的实用性,我们构建了21个个体的ME-Scan-SVA文库并对其进行了测序,并使用为该协议设计的新分析管道分析了数据。总的来说,该方法实现了很高的SVA特异性,超过90%的测序读数来自SVA插入。该方法对在参考基因组中包含SVA特异性引物结合位点的固定SVA插入也具有很高的灵敏度(> 90%)。使用预期具有90%灵敏度的候选基因座选择标准,我们分别在轻松和严格的临界值下(每人平均12和2)确定了151和29个新颖的多态SVA候选物。对于我们能够通过PCR验证的6个多态SVA,单个基因型的平均准确度为92%,这表明计算基因型调用流程的准确性很高。结论新方法允许使用高通量测序鉴定新的SVA插入。它具有成本效益,可用于大规模人口研究。它也可以用于检测潜在的活性SVA元素,以及不同组织或发育阶段中的SVA体转座事件。

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