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在核编码线粒体假基因(numts)存在的情况下,对整个线粒体基因组进行选择性富集和测序。

Selective enrichment and sequencing of whole mitochondrial genomes in the presence of nuclear encoded mitochondrial pseudogenes (numts).

机构信息

School of Biotechnology and Biomolecular Sciences, University of New South Wales, Sydney, Australia.

出版信息

PLoS One. 2012;7(5):e37142. doi: 10.1371/journal.pone.0037142. Epub 2012 May 14.

Abstract

Numts are an integral component of many eukaryote genomes offering a snapshot of the evolutionary process that led from the incorporation of an α-proteobacterium into a larger eukaryotic cell some 1.8 billion years ago. Although numt sequence can be harnessed as molecular marker, these sequences often remain unidentified and are mistaken for genuine mtDNA leading to erroneous interpretation of mtDNA data sets. It is therefore indispensable that during the process of amplifying and sequencing mitochondrial genes, preventive measures are taken to ensure the exclusion of numts to guarantee the recovery of genuine mtDNA. This applies to mtDNA analyses in general but especially to studies where mtDNAs are sequenced de novo as the launch pad for subsequent mtDNA-based research. By using a combination of dilution series and nested rolling circle amplification (RCA), we present a novel strategy to selectively amplify mtDNA and exclude the amplification of numt sequence. We have successfully applied this strategy to de novo sequence the mtDNA of the Black Field Cricket Teleogryllus commodus, a species known to contain numts. Aligning our assembled sequence to the reference genome of Teleogryllus emma (GenBank EU557269.1) led to the identification of a numt sequence in the reference sequence. This unexpected result further highlights the need of a reliable and accessible strategy to eliminate this source of error.

摘要

Numts 是许多真核生物基因组的一个组成部分,提供了一个关于进化过程的快照,这个过程可以追溯到大约 18 亿年前,一个 α-变形菌被整合到一个更大的真核细胞中。尽管 numt 序列可以被用作分子标记,但这些序列经常未被识别,被误认为是真正的 mtDNA,从而导致对 mtDNA 数据集的错误解释。因此,在扩增和测序线粒体基因的过程中,采取预防措施确保排除 numts,以保证真正的 mtDNA 的恢复,这是必不可少的。这适用于一般的 mtDNA 分析,但特别是在从头测序 mtDNA 作为随后基于 mtDNA 的研究的起点的研究中。通过使用稀释系列和嵌套滚环扩增 (RCA) 的组合,我们提出了一种选择性扩增 mtDNA 并排除 numt 序列扩增的新策略。我们已经成功地将该策略应用于从头测序黑蝗 Teleogryllus commodus 的 mtDNA,该物种已知含有 numts。将我们组装的序列与 Teleogryllus emma 的参考基因组(GenBank EU557269.1)对齐,导致在参考序列中鉴定出 numt 序列。这一意外结果进一步强调了需要一种可靠和易于访问的策略来消除这种错误源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/230b/3351421/318f5feb50e4/pone.0037142.g001.jpg

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