Serrano Isabel M, Hirose Misa, Valentine Charles C, Roesner Sharon, Schmidt Elizabeth, Pratt Gabriel, Williams Lindsey, Salk Jesse, Ibrahim Saleh, Sudmant Peter H
Center for Computational Biology, University of California, Berkeley.
Lübeck Institute of Experimental Dermatology, University of Lübeck.
bioRxiv. 2023 Oct 23:2023.03.06.531392. doi: 10.1101/2023.03.06.531392.
Mitochondrial genomes co-evolve with the nuclear genome over evolutionary timescales and are shaped by selection in the female germline. Here, we investigate how mismatching between nuclear and mitochondrial ancestry impacts the somatic evolution of the mt-genome in different tissues throughout aging. We used ultra-sensitive Duplex Sequencing to profile ~2.5 million mt-genomes across five mitochondrial haplotypes and three tissues in young and aged mice, cataloging ~1.2 million mitochondrial somatic and ultra low frequency inherited mutations, of which 81,097 are unique. We identify haplotype-specific mutational patterns and several mutational hotspots, including at the Light Strand Origin of Replication, which consistently exhibits the highest mutation frequency. We show that rodents exhibit a distinct mitochondrial somatic mutational spectrum compared to primates with a surfeit of reactive oxygen species-associated G>T/C>A mutations, and that somatic mutations in protein coding genes exhibit signatures of negative selection. Lastly, we identify an extensive enrichment in somatic reversion mutations that "re-align" mito-nuclear ancestry within an organism's lifespan. Together, our findings demonstrate that mitochondrial genomes are a dynamically evolving subcellular population shaped by somatic mutation and selection throughout organismal lifetimes.
线粒体基因组在进化时间尺度上与核基因组共同进化,并在雌性生殖系中受到选择的塑造。在这里,我们研究核与线粒体祖先之间的不匹配如何影响整个衰老过程中不同组织中线粒体基因组的体细胞进化。我们使用超灵敏的双链测序技术对年轻和老年小鼠的五种线粒体单倍型和三种组织中的约250万个线粒体基因组进行了分析,编目了约120万个线粒体体细胞和超低频遗传突变,其中81097个是独特的。我们确定了单倍型特异性突变模式和几个突变热点,包括在轻链复制起点,其始终表现出最高的突变频率。我们表明,与具有过多活性氧相关G>T/C>A突变的灵长类动物相比,啮齿动物表现出独特的线粒体体细胞突变谱,并且蛋白质编码基因中的体细胞突变表现出负选择的特征。最后,我们发现在体细胞回复突变中有广泛的富集,这些突变在生物体的寿命范围内“重新调整”了线粒体-核祖先关系。总之,我们的研究结果表明,线粒体基因组是一个动态进化的亚细胞群体,在生物体的整个生命周期中受到体细胞突变和选择的影响。