Department of Biology, University of Crete, Voutes University Campus, 70013 Iraklio, Greece.
Department of Ecology, Evolutionary and Organismal Biology, Brown University, Providence, RI 02912, USA.
Genes (Basel). 2022 Jun 6;13(6):1023. doi: 10.3390/genes13061023.
mtDNA sequences can be incorporated into the nuclear genome and produce nuclear mitochondrial fragments (NUMTs), which resemble mtDNA in their sequence but are transmitted biparentally, like the nuclear genome. NUMTs can be mistaken as real mtDNA and may lead to the erroneous impression that mtDNA is biparentally transmitted. Here, we report a case of mtDNA heteroplasmy in a Drosophila melanogaster DGRP line, in which the one haplotype was biparentally transmitted in an autosomal manner. Given the sequence identity of this haplotype with the mtDNA, the crossing experiments led to uncertainty about whether heteroplasmy was real or an artifact due to a NUMT. More specific experiments revealed that there is a large NUMT insertion in the X chromosome of a specific DGRP line, imitating biparental inheritance of mtDNA. Our result suggests that studies on mtDNA heteroplasmy and on mtDNA inheritance should first exclude the possibility of NUMT interference in their data.
线粒体 DNA 序列可以整合到核基因组中,并产生核线粒体片段(NUMTs),它们在序列上与 mtDNA 相似,但像核基因组一样,由双亲遗传。NUMTs 可能被误认为是真正的 mtDNA,可能导致错误的印象,即 mtDNA 是由双亲遗传的。在这里,我们报告了一个在黑腹果蝇 DGRP 系中存在 mtDNA 异质性的案例,其中一个单倍型以常染色体的方式由双亲遗传。鉴于该单倍型与 mtDNA 的序列同一性,交叉实验导致了对异质性是真实的还是由于 NUMT 引起的假象的不确定性。更具体的实验表明,在特定的 DGRP 系的 X 染色体上存在一个大的 NUMT 插入,模拟 mtDNA 的双亲遗传。我们的结果表明,对 mtDNA 异质性和 mtDNA 遗传的研究首先应该排除 NUMT 对其数据的干扰的可能性。