Department of Biological Sciences, Wayne State University.
Department of Biological Sciences, Wayne State University
Mol Biol Evol. 2015 Oct;32(10):2559-70. doi: 10.1093/molbev/msv127. Epub 2015 May 26.
The frequency of horizontal gene transfer (HGT) in mitochondrial DNA varies substantially. In plants, HGT is relatively common, whereas in animals it appears to be quite rare. It is of considerable importance to understand mitochondrial HGT across the major groups of eukaryotes at a genome-wide level, but so far this has been well studied only in plants. In this study, we generated ten new mitochondrial genome sequences and analyzed 40 mitochondrial genomes from the Saccharomycetaceae to assess the magnitude and nature of mitochondrial HGT in yeasts. We provide evidence for extensive, homologous-recombination-mediated, mitochondrial-to-mitochondrial HGT occurring throughout yeast mitochondrial genomes, leading to genomes that are highly chimeric evolutionarily. This HGT has led to substantial intraspecific polymorphism in both sequence content and sequence divergence, which to our knowledge has not been previously documented in any mitochondrial genome. The unexpectedly high frequency of mitochondrial HGT in yeast may be driven by frequent mitochondrial fusion, relatively low mitochondrial substitution rates and pseudohyphal fusion to produce heterokaryons. These findings suggest that mitochondrial HGT may play an important role in genome evolution of a much broader spectrum of eukaryotes than previously appreciated and that there is a critical need to systematically study the frequency, extent, and importance of mitochondrial HGT across eukaryotes.
线粒体 DNA 中的水平基因转移 (HGT) 频率变化很大。在植物中,HGT 相对常见,而在动物中则很少见。在全基因组范围内了解真核生物主要类群中的线粒体 HGT 具有相当重要的意义,但到目前为止,这在植物中得到了很好的研究。在这项研究中,我们生成了十个新的线粒体基因组序列,并分析了 Saccharomycetaceae 中的 40 个线粒体基因组,以评估酵母中线粒体 HGT 的规模和性质。我们提供了广泛的证据,证明同源重组介导的线粒体到线粒体的 HGT 发生在酵母线粒体基因组中,导致基因组在进化上高度嵌合。这种 HGT 导致了序列内容和序列差异的大量种内多态性,据我们所知,这在以前的任何线粒体基因组中都没有记录过。酵母中线粒体 HGT 的频率如此之高,可能是由于线粒体融合频繁、线粒体替代率相对较低以及假菌丝融合产生异核体所致。这些发现表明,线粒体 HGT 可能在比以前认为的更广泛的真核生物基因组进化中发挥重要作用,并且迫切需要系统地研究真核生物中线粒体 HGT 的频率、程度和重要性。