首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Convergent patterns of evolution of mitochondrial oxidative phosphorylation (OXPHOS) genes in electric fishes
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Convergent patterns of evolution of mitochondrial oxidative phosphorylation (OXPHOS) genes in electric fishes

机译:电鱼中线粒体氧化磷酸化(汤膦)基因演化的收敛模式

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摘要

The ability to generate and detect electric fields has evolved in several groups of fishes as a means of communication, navigation and, occasionally, predation. The energetic burden required can account for up to 20% of electric fishes' daily energy expenditure. Despite this, molecular adaptations that enable electric fishes to meet the metabolic demands of bioelectrogenesis remain unknown. Here, we investigate the molecular evolution of the mitochondrial oxidative phosphorylation (OXPHOS) complexes in the two most diverse clades of weakly electric fishes-South American Gymnotiformes and African Mormyroidea, using codon-based likelihood approaches. Our analyses reveal that although mitochondrial OXPHOS genes are generally subject to strong purifying selection, this constraint is significantly reduced in electric compared to non-electric fishes, particularly for complexes IV and V. Moreover, analyses of concatenated mitochondrial genes show strong evidence for positive selection in complex I genes on the two branches associated with the independent evolutionary origins of electrogenesis. These results suggest that adaptive evolution of proton translocation in the OXPHOS cellular machinery may be associated with the evolution of bioelectrogenesis. Overall, we find striking evidence for remarkably similar effects of electrogenesis on the molecular evolution of mitochondrial OXPHOS genes in two independently derived clades of electrogenic fishes. This article is part of the theme issue 'Linking the mitochondrial genotype to phenotype: a complex endeavour'.
机译:生成和检测电场的能力在几组鱼类中发展为通信,导航和偶尔捕食。需要的充满活力负担可以占电鱼每日能源支出的高达20%。尽管如此,可以使电鱼能够满足生物电体的代谢需求的分子适应仍然未知。在这里,我们研究了使用基于密码子的似然方法的两种多样化的弱电器 - 南美体育米诺罗斯和非洲摩尔菊属植物中的线粒体氧化磷酸化(毒物)复合物的分子演变。我们的分析表明,虽然线粒体毒液基因通常受强净化选择的影响,但与非电鱼相比,电气的这种约束显着降低,特别是对于复合物IV和V.此外,级联的线粒体基因的分析显示出阳性选择的有力证据在复杂的I基因上,两个分支与电生成的独立进化起源相关。这些结果表明,毒物蜂窝机械中质子易位的自适应演化可能与生物电体的演变相关。总体而言,我们发现尖锐的证据表明电生物生理对电池毒药基因的分子演变的显着效果,其在两个独立衍生的电热鱼类中的电涌毒药片中的分子演变。本文是主题问题的一部分“将线粒体基因型与表型联系起来:复杂的努力”。

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