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首页> 外文期刊>Genome Biology and Evolution >De Novo Assembly and Annotation of the Asian Tiger Mosquito (Aedes albopictus) Repeatome with dnaPipeTE from Raw Genomic Reads and Comparative Analysis with the Yellow Fever Mosquito (Aedes aegypti)
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De Novo Assembly and Annotation of the Asian Tiger Mosquito (Aedes albopictus) Repeatome with dnaPipeTE from Raw Genomic Reads and Comparative Analysis with the Yellow Fever Mosquito (Aedes aegypti)

机译:从原始基因组读物中用dnaPipeTE进行亚洲虎蚊(Aedes albopictus)重复组的De Novo组装和注释以及与黄热蚊(Aedes aegypti)的比较分析

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Repetitive DNA, including transposable elements (TEs), is found throughout eukaryotic genomes. Annotating and assembling the “repeatome” during genome-wide analysis often poses a challenge. To address this problem, we present dnaPipeTE—a new bioinformatics pipeline that uses a sample of raw genomic reads. It produces precise estimates of repeated DNA content and TE consensus sequences, as well as the relative ages of TE families. We shows that dnaPipeTE performs well using very low coverage sequencing in different genomes, losing accuracy only with old TE families. We applied this pipeline to the genome of the Asian tiger mosquito Aedes albopictus, an invasive species of human health interest, for which the genome size is estimated to be over 1 Gbp. Using dnaPipeTE, we showed that this species harbors a large (50% of the genome) and potentially active repeatome with an overall TE class and order composition similar to that of Aedes aegypti, the yellow fever mosquito. However, intraorder dynamics show clear distinctions between the two species, with differences at the TE family level. Our pipeline's ability to manage the repeatome annotation problem will make it helpful for new or ongoing assembly projects, and our results will benefit future genomic studies of A. albopictus.
机译:在整个真核基因组中都发现了包括转座因子(TEs)在内的重复DNA。在全基因组分析过程中注释和组装“重复序列组”通常会带来挑战。为了解决这个问题,我们提出了dnaPipeTE-一种新的生物信息学管道,该管道使用原始基因组读数样本。它可以精确估算重复的DNA含量和TE共有序列,以及TE家族的相对年龄。我们显示dnaPipeTE在不同基因组中使用极低覆盖率的测序表现良好,仅在老TE系列中就失去了准确性。我们将此管道应用于亚洲虎蚊白纹伊蚊(Aedes albopictus)的基因组,白纹伊蚊是一种对人类健康有益的入侵物种,其基因组大小估计超过1 Gbp。使用dnaPipeTE,我们表明该物种具有较大的(占基因组的50%)且可能具有活性的重复组,其总体TE类别和有序组成类似于埃及黄热蚊(Aedes aegypti)。但是,阶内动力学显示了这两个物种之间的明显区别,在TE家族水平上存在差异。我们的管道具有处理重复基因组注释问题的能力,这将对新的或正在进行的组装项目有所帮助,而我们的研究结果将有益于未来的白纹拟南芥基因组研究。

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