Zhang Guojun, Geng Deqi, Guo Qiulin, Liu Wei, Li Shufen, Gao Wujun, Wang Yongfei, Zhang Min, Wang Yilin, Bu Yanzhen, Niu Hongxing
College of Life Sciences, Henan Normal University, Xinxiang, China.
School of Basic Medical Sciences, Xinxiang Medical University, Xinxiang, China.
Integr Zool. 2022 Sep;17(5):890-903. doi: 10.1111/1749-4877.12582. Epub 2021 Sep 29.
The transfer of mitochondrial DNA to the nuclear genome gives rise to the nuclear DNA sequences of mitochondrial origin (NUMTs), considered as a driving force in genome evolution. In this study, NUMTs in 23 bat genomes were investigated and compared systematically. The results showed that NUMTs existed in 22 genomes except for Noctilio leporinus, suggesting that mitochondrial fragment insertion in the nuclear genome was a common event in bat genomes. However, remarkable variations in NUMTs number, cumulative length, and proportion in the nuclear genome were discovered across bat species. Further orthologous NUMT loci analysis of the Phyllostomidae family indicated that the NUMTs insertion events in bat genomes were homoplasy-free. The NUMTs were mainly inserted into the intergenic regions, particularly, co-localized with repetitive sequences (especially transposable elements). However, several NUMTs were inserted into genes, some of which were in the exon region of functional genes. One NUMT in the genome of Pteropus alecto surprisingly matched with cDNA of ATP8B3 that provided evidence of NUMTs with coding function. Phylogenic analysis on NUMTs originating from COXI and COXII loci highlighted 2 clusters of Yinpterochiroptera and Yangochiroptera for Chiroptera. Seven NUMTs from Rhinolophus ferrumequinum were amplified, and the sequencing results confirmed the reliability of the NUMT analysis. One of them was polymorphic for the presence or absence of the NUMT insertion, and each genotype of NUMT loci showed a distinct regional distribution pattern. The information obtained in this study provides novel insights into the NUMT organization and features in bat genomes and establishes a basis for further studying of the evolution of bat species.
线粒体DNA向核基因组的转移产生了线粒体起源的核DNA序列(NUMTs),被认为是基因组进化的驱动力。在本研究中,对23种蝙蝠基因组中的NUMTs进行了系统的调查和比较。结果表明,除兔唇蝠外,22种基因组中均存在NUMTs,这表明线粒体片段插入核基因组在蝙蝠基因组中是一个常见事件。然而,在不同蝙蝠物种中发现NUMTs数量、累积长度和在核基因组中的比例存在显著差异。对叶口蝠科的直系同源NUMT位点进一步分析表明,蝙蝠基因组中的NUMTs插入事件不存在同塑性。NUMTs主要插入基因间区域,特别是与重复序列(尤其是转座元件)共定位。然而,有几个NUMTs插入到基因中,其中一些位于功能基因的外显子区域。狐蝠基因组中的一个NUMT令人惊讶地与ATP8B3的cDNA匹配,这为具有编码功能的NUMTs提供了证据。对源自COXI和COXII位点的NUMTs进行系统发育分析,突出了翼手目的两个聚类:阴翼手亚目和阳翼手亚目。对马铁菊头蝠的7个NUMTs进行了扩增,测序结果证实了NUMT分析的可靠性。其中一个在NUMT插入的有无上具有多态性,NUMT位点的每种基因型都表现出明显的区域分布模式。本研究获得的信息为蝙蝠基因组中NUMT的组织和特征提供了新的见解,并为进一步研究蝙蝠物种的进化奠定了基础。