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首页> 外文期刊>BMC Genomics >Jitterbug: somatic and germline transposon insertion detection at single-nucleotide resolution
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Jitterbug: somatic and germline transposon insertion detection at single-nucleotide resolution

机译:Jitterbug:体细胞和种系转座子插入检测的单核苷酸分辨率

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Transposable elements are major players in genome evolution. Transposon insertion polymorphisms can translate into phenotypic differences in plants and animals and are linked to different diseases including human cancer, making their characterization highly relevant to the study of genome evolution and genetic diseases. Here we present Jitterbug, a novel tool that identifies transposable element insertion sites at single-nucleotide resolution based on the pairedend mapping and clipped-read signatures produced by NGS alignments. Jitterbug can be easily integrated into existing NGS analysis pipelines, using the standard BAM format produced by frequently applied alignment tools (e.g. bwa, bowtie2), with no need to realign reads to a set of consensus transposon sequences. Jitterbug is highly sensitive and able to recall transposon insertions with a very high specificity, as demonstrated by benchmarks in the human and Arabidopsis genomes, and validation using long PacBio reads. In addition, Jitterbug estimates the zygosity of transposon insertions with high accuracy and can also identify somatic insertions. We demonstrate that Jitterbug can identify mosaic somatic transposon movement using sequenced tumor-normal sample pairs and allows for estimating the cancer cell fraction of clones containing a somatic TE insertion. We suggest that the independent methods we use to evaluate performance are a step towards creating a gold standard dataset for benchmarking structural variant prediction tools.
机译:转座因子是基因组进化的主要参与者。转座子插入多态性可转化为动植物的表型差异,并与包括人类癌症在内的不同疾病相关,使其特征与基因组进化和遗传疾病的研究高度相关。在这里,我们介绍Jitterbug,这是一种新颖的工具,可基于对端映射和NGS比对产生的剪切读取签名,以单核苷酸分辨率识别可转座元件插入位点。使用频繁使用的比对工具(例如bwa,bowtie2)产生的标准BAM格式,可以轻松将Jitterbug集成到现有的NGS分析管道中,而无需将读取重新对准一组共有的转座子序列。 Jitterbug高度敏感,能够以很高的特异性召回转座子插入,如人类和拟南芥基因组中的基准所证明的,以及使用长PacBio读数进行的验证。此外,Jitterbug可以高度准确地估算转座子插入的接合度,还可以识别体细胞插入。我们证明Jitterbug可以使用已测序的肿瘤正常样本对识别镶嵌体细胞的转座子运动,并允许估算含有体细胞TE插入物的克隆的癌细胞分数。我们建议,我们用来评估性能的独立方法是朝着建立用于基准测试结构变型预测工具的黄金标准数据集迈出的一步。

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