National Institute of Biological Sciences, Beijing, China.
Graduate School of Peking Union Medical College, Beijing, China.
Genome Biol Evol. 2019 Aug 1;11(8):2312-2329. doi: 10.1093/gbe/evz165.
The fission yeast Schizosaccharomyces pombe is an important model organism, but its natural diversity and evolutionary history remain under-studied. In particular, the population genomics of the S. pombe mitochondrial genome (mitogenome) has not been thoroughly investigated. Here, we assembled the complete circular-mapping mitogenomes of 192 S. pombe isolates de novo, and found that these mitogenomes belong to 69 nonidentical sequence types ranging from 17,618 to 26,910 bp in length. Using the assembled mitogenomes, we identified 20 errors in the reference mitogenome and discovered two previously unknown mitochondrial introns. Analyzing sequence diversity of these 69 types of mitogenomes revealed two highly distinct clades, with only three mitogenomes exhibiting signs of inter-clade recombination. This diversity pattern suggests that currently available S. pombe isolates descend from two long-separated ancestral lineages. This conclusion is corroborated by the diversity pattern of the recombination-repressed K-region located between donor mating-type loci mat2 and mat3 in the nuclear genome. We estimated that the two ancestral S. pombe lineages diverged about 31 million generations ago. These findings shed new light on the evolution of S. pombe and the data sets generated in this study will facilitate future research on genome evolution.
裂殖酵母 Schizosaccharomyces pombe 是一种重要的模式生物,但它的自然多样性和进化历史仍未得到充分研究。特别是,裂殖酵母 S. pombe 线粒体基因组(mitogenome)的群体基因组学尚未得到彻底研究。在这里,我们从头开始组装了 192 个裂殖酵母 S. pombe 分离株的完整圆形映射线粒体基因组,并发现这些线粒体基因组属于 69 个非相同序列类型,长度从 17618 到 26910bp 不等。使用组装的线粒体基因组,我们在参考线粒体基因组中发现了 20 个错误,并发现了两个以前未知的线粒体内含子。分析这 69 种线粒体基因组的序列多样性揭示了两个高度不同的分支,只有三个线粒体基因组显示出跨分支重组的迹象。这种多样性模式表明,目前可用的裂殖酵母 S. pombe 分离株来自两个长期分离的祖先谱系。这一结论得到了核基因组中位于供体交配型位点 mat2 和 mat3 之间的受重组抑制的 K 区的多样性模式的证实。我们估计,这两个祖先裂殖酵母 S. pombe 谱系在大约 3100 万代前分化。这些发现为裂殖酵母 S. pombe 的进化提供了新的线索,本研究中生成的数据集将有助于未来对基因组进化的研究。