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群体水平上线粒体和核酵母基因组的演化失调。

Discordant evolution of mitochondrial and nuclear yeast genomes at population level.

机构信息

Université Côte d'Azur, CNRS, INSERM, IRCAN, Nice, France.

Université de Strasbourg, CNRS, GMGM UMR 7156, F-67000, Strasbourg, France.

出版信息

BMC Biol. 2020 May 11;18(1):49. doi: 10.1186/s12915-020-00786-4.

Abstract

BACKGROUND

Mitochondria are essential organelles partially regulated by their own genomes. The mitochondrial genome maintenance and inheritance differ from the nuclear genome, potentially uncoupling their evolutionary trajectories. Here, we analysed mitochondrial sequences obtained from the 1011 Saccharomyces cerevisiae strain collection and identified pronounced differences with their nuclear genome counterparts.

RESULTS

In contrast with pre-whole genome duplication fungal species, S. cerevisiae mitochondrial genomes show higher genetic diversity compared to the nuclear genomes. Strikingly, mitochondrial genomes appear to be highly admixed, resulting in a complex interconnected phylogeny with a weak grouping of isolates, whereas interspecies introgressions are very rare. Complete genome assemblies revealed that structural rearrangements are nearly absent with rare inversions detected. We tracked intron variation in COX1 and COB to infer gain and loss events throughout the species evolutionary history. Mitochondrial genome copy number is connected with the nuclear genome and linearly scale up with ploidy. We observed rare cases of naturally occurring mitochondrial DNA loss, petite, with a subset of them that do not suffer the expected growth defect in fermentable rich media.

CONCLUSIONS

Overall, our results illustrate how differences in the biology of two genomes coexisting in the same cells can lead to discordant evolutionary histories.

摘要

背景

线粒体是部分受其自身基因组调控的必需细胞器。线粒体基因组的维持和遗传与核基因组不同,可能使它们的进化轨迹脱耦。在这里,我们分析了从 1011 个酿酒酵母菌株集中获得的线粒体序列,并发现了与它们的核基因组对应物明显不同的地方。

结果

与全基因组复制前的真菌物种相比,酿酒酵母的线粒体基因组与核基因组相比表现出更高的遗传多样性。引人注目的是,线粒体基因组似乎高度混合,导致一个复杂的相互关联的系统发育,与分离株的分组很弱,而种间基因渗入则非常罕见。完整的基因组组装显示,结构重排几乎不存在,只有少数发现的倒位。我们跟踪了 COX1 和 COB 中的内含子变异,以推断整个物种进化历史中的获得和丢失事件。线粒体基因组的拷贝数与核基因组相连,并随倍性线性增加。我们观察到了罕见的自然发生的线粒体 DNA 丢失,即 petite,其中一部分在可发酵的富培养基中不会出现预期的生长缺陷。

结论

总的来说,我们的结果说明了共存于同一细胞中的两个基因组的生物学差异如何导致它们的进化历史不一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/091c/7216626/d6b7a8cd83df/12915_2020_786_Fig1_HTML.jpg

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