Institute of Infection, Veterinary and Ecological Sciences, University of Liverpool, Liverpool, UK.
Research Department of Genetics, Evolution and Environment, University College London, Gower Street, London WC1E 6BT, UK.
Proc Biol Sci. 2021 Sep 29;288(1959):20211735. doi: 10.1098/rspb.2021.1735.
Diverse eukaryotic taxa carry facultative heritable symbionts, microbes that are passed from mother to offspring. These symbionts are coinherited with mitochondria, and selection favouring either new symbionts, or new symbiont variants, is known to drive loss of mitochondrial diversity as a correlated response. More recently, evidence has accumulated of episodic directional selection on mitochondria, but with currently unknown consequences for symbiont evolution. We therefore employed a population genetic mean field framework to model the impact of selection on mitochondrial DNA (mtDNA) upon symbiont frequency for three generic scenarios of host-symbiont interaction. Our models predict that direct selection on mtDNA can drive symbionts out of the population where a positively selected mtDNA mutation occurs initially in an individual that is uninfected with the symbiont, and the symbiont is initially at low frequency. When, by contrast, the positively selected mtDNA mutation occurs in a symbiont-infected individual, the mutation becomes fixed and in doing so removes symbiont variation from the population. We conclude that the molecular evolution of symbionts and mitochondria, which has previously been viewed from a perspective of selection on symbionts driving the evolution of a neutral mtDNA marker, should be reappraised in the light of positive selection on mtDNA.
多种真核生物类群携带兼性遗传共生体,即从母体传递给后代的微生物。这些共生体与线粒体共同遗传,选择有利于新的共生体或新的共生体变体,这被认为是导致线粒体多样性作为相关反应丧失的原因。最近,有证据表明线粒体发生了间歇性定向选择,但目前尚不清楚这对共生体进化有何影响。因此,我们采用群体遗传平均场框架,针对三种宿主-共生体相互作用的通用情景,对线粒体 DNA(mtDNA)上的选择对共生体频率的影响进行建模。我们的模型预测,mtDNA 的直接选择可以将共生体从种群中淘汰出去,当一个个体最初未感染共生体时,mtDNA 中一个正向选择的突变发生,而共生体的初始频率较低。相比之下,当正向选择的 mtDNA 突变发生在感染共生体的个体中时,该突变会被固定,从而将共生体的变异从种群中移除。我们的结论是,共生体和线粒体的分子进化,以前一直从选择驱动中性 mtDNA 标记进化的角度来看待,应该根据 mtDNA 的正向选择重新评估。