Wang Jian-Xia, Liu Jing, Miao Yun-Heng, Huang Da-Wei, Xiao Jin-Hua
Institute of Entomology, College of Life Sciences, Nankai University, Tianjin 300071, China.
Key Laboratory of Zoological Systematics and Evolution, Institute of Zoology, Chinese Academy of Sciences, Beijing 100101, China.
Insects. 2020 Oct 7;11(10):680. doi: 10.3390/insects11100680.
Mitochondrial DNA sequences can be transferred into the nuclear genome, giving rise to nuclear mitochondrial DNA sequences (NUMTs). NUMTs have been described in numerous eukaryotes. However, the studies on the distribution of NUMTs and its influencing factors are still inadequate and even controversial. Previous studies have suggested that Hymenoptera may be a group rich in NUMTs, in which we selected 11 species of fig wasps (Chalcidoidea, Hymenoptera) to analyze the distribution and evolution of NUMTs at the genomic level. The results showed that the contents of NUMTs varied greatly in these species, and bursts of NUMTs existed in some species or lineages. Further detailed analyses showed that the large number of NUMTs might be related to the large genomes; NUMTs tended to be inserted into unstable regions of the genomes; and the inserted NUMTs might also be affected by transposable elements (TEs) in the neighbors, leading to fragmentations and duplications, followed by bursts of NUMTs. In summary, our results suggest that a variety of genomic environmental factors can determine the insertion and post-insertion fate of NUMTs, resulting in their species- or lineage-specific distribution patterns, and that studying the evolution of NUMTs can provide good evidence and theoretical basis for exploring the dynamics of exogenous DNA entering into the nuclear genome.
线粒体DNA序列可转移至核基因组中,从而产生核线粒体DNA序列(NUMTs)。NUMTs已在众多真核生物中被描述。然而,关于NUMTs的分布及其影响因素的研究仍不充分,甚至存在争议。先前的研究表明,膜翅目可能是富含NUMTs的类群,我们从中选取了11种榕小蜂(膜翅目,小蜂总科),在基因组水平上分析NUMTs的分布和进化。结果表明,这些物种中NUMTs的含量差异很大,并且在某些物种或谱系中存在NUMTs爆发的情况。进一步的详细分析表明,大量的NUMTs可能与大基因组有关;NUMTs倾向于插入基因组的不稳定区域;并且插入的NUMTs也可能受到邻近区域转座元件(TEs)的影响,导致片段化和重复,进而引发NUMTs爆发。总之,我们的结果表明,多种基因组环境因素可决定NUMTs的插入及插入后的命运,从而导致其物种或谱系特异性的分布模式,并且研究NUMTs的进化可为探索外源DNA进入核基因组的动态过程提供良好的证据和理论基础。