Research Department of Genetics, Evolution and Environment, University College London, Gower Street, London WC1E 6BT, UK.
Philos Trans R Soc Lond B Biol Sci. 2020 Jan 20;375(1790):20190416. doi: 10.1098/rstb.2019.0416. Epub 2019 Dec 2.
Mitochondria are central to both energy metabolism and biosynthesis. Mitochondrial function could therefore influence resource allocation. Critically, mitochondrial function depends on interactions between proteins encoded by the mitochondrial and nuclear genomes. Severe incompatibilities between these genomes can have pervasive effects on both fitness and longevity. How milder deficits in mitochondrial function affect life-history trade-offs is less well understood. Here, we analyse how mitonuclear interactions affect the trade-off between fecundity and longevity in . We consider a panel of 10 different mitochondrial DNA haplotypes against two contrasting nuclear backgrounds ( (WE) and Zim53 (ZIM)) in response to high-protein versus standard diet. We report strikingly different responses between the two nuclear backgrounds. WE females have higher fecundity and decreased longevity on high protein. ZIM females have much greater fecundity and shorter lifespan than WE flies on standard diet. High protein doubled their fecundity with no effect on longevity. Mitochondrial haplotype reflected nuclear life-history trade-offs, with a negative correlation between longevity and fecundity in WE flies and no correlation in ZIM flies. Mitonuclear interactions had substantial effects but did not reflect genetic distance between mitochondrial haplotypes. We conclude that mitonuclear interactions can have significant impact on life-history trade-offs, but their effects are not predictable by relatedness. This article is part of the theme issue 'Linking the mitochondrial genotype to phenotype: a complex endeavour'.
线粒体对于能量代谢和生物合成都至关重要。因此,线粒体功能可能会影响资源分配。关键的是,线粒体功能取决于线粒体和核基因组编码的蛋白质之间的相互作用。这些基因组之间严重的不兼容会对适应性和寿命产生广泛的影响。线粒体功能的轻度缺陷如何影响生活史权衡,人们的了解还比较少。在这里,我们分析了线粒体-核相互作用如何影响. 在高蛋白与标准饮食的情况下,我们针对两种不同的核背景( (WE) 和 Zim53(ZIM)),分析了 10 种不同的线粒体 DNA 单倍型之间的权衡关系。我们报告了这两种核背景之间截然不同的反应。在高蛋白饮食中,WE 雌蝇具有更高的繁殖力和更低的寿命。与 WE 蝇相比,ZIM 蝇在标准饮食下具有更大的繁殖力和更短的寿命。高蛋白饮食使它们的繁殖力增加了一倍,而对寿命没有影响。线粒体单倍型反映了核的生活史权衡,在 WE 蝇中,寿命和繁殖力呈负相关,而在 ZIM 蝇中则没有相关性。线粒体-核相互作用有显著的影响,但与线粒体单倍型之间的遗传距离无关。我们的结论是,线粒体-核相互作用对生活史权衡有重大影响,但它们的影响不能用亲缘关系来预测。本文是主题为“将线粒体基因型与表型联系起来:一项复杂的任务”的一部分。