Mortz Mathieu, Levivier Aurore, Lartillot Nicolas, Dufresne France, Blier Pierre U
Institut Des Sciences De La Mer De Rimouski, Université Du Québec à Rimouski, Rimouski, QC, Canada.
Laboratoire De Biométrie et Biologie Evolutive, UMR CNRS, Université Lyon 1, Villeurbanne, France.
Front Mol Biosci. 2021 Mar 15;8:626042. doi: 10.3389/fmolb.2021.626042. eCollection 2021.
Bivalves represent valuable taxonomic group for aging studies given their wide variation in longevity (from 1-2 to >500 years). It is well known that aging is associated to the maintenance of Reactive Oxygen Species homeostasis and that mitochondria phenotype and genotype dysfunctions accumulation is a hallmark of these processes. Previous studies have shown that mitochondrial DNA mutation rates are linked to lifespan in vertebrate species, but no study has explored this in invertebrates. To this end, we performed a Bayesian Phylogenetic Covariance model of evolution analysis using 12 mitochondrial protein-coding genes of 76 bivalve species. Three life history traits (maximum longevity, generation time and mean temperature tolerance) were tested against 1) synonymous substitution rates (dS), 2) conservative amino acid replacement rates (Kc) and 3) ratios of radical over conservative amino acid replacement rates (Kr/Kc). Our results confirm the already known correlation between longevity and generation time and show, for the first time in an invertebrate class, a significant negative correlation between dS and longevity. This correlation was not as strong when generation time and mean temperature tolerance variations were also considered in our model (marginal correlation), suggesting a confounding effect of these traits on the relationship between longevity and mtDNA substitution rate. By confirming the negative correlation between dS and longevity previously documented in birds and mammals, our results provide support for a general pattern in substitution rates.
双壳贝类因其寿命差异很大(从1 - 2年到超过500年),是衰老研究中有价值的分类群体。众所周知,衰老与活性氧稳态的维持有关,线粒体表型和基因型功能障碍的积累是这些过程的一个标志。先前的研究表明,脊椎动物物种中线粒体DNA突变率与寿命相关,但尚无研究在无脊椎动物中探讨这一问题。为此,我们使用76种双壳贝类的12个线粒体蛋白编码基因进行了贝叶斯系统发育协方差模型进化分析。针对三个生活史特征(最大寿命、世代时间和平均温度耐受性)测试了1)同义替换率(dS)、2)保守氨基酸替换率(Kc)和3)自由基与保守氨基酸替换率之比(Kr/Kc)。我们的结果证实了寿命与世代时间之间已知的相关性,并首次在无脊椎动物类群中表明dS与寿命之间存在显著的负相关。当我们的模型中也考虑世代时间和平均温度耐受性变化时(边际相关性),这种相关性并不那么强,这表明这些特征对寿命与线粒体DNA替换率之间的关系有混杂效应。通过证实先前在鸟类和哺乳动物中记录的dS与寿命之间的负相关,我们的结果为替换率的一般模式提供了支持。