Department of Biological Sciences, University of Southern California, Los Angeles, CA 90089.
Proc Natl Acad Sci U S A. 2024 Jun 11;121(24):e2321267121. doi: 10.1073/pnas.2321267121. Epub 2024 Jun 5.
Mitochondria perform an array of functions, many of which involve interactions with gene products encoded by the nucleus. These mitochondrial functions, particularly those involving energy production, can be expected to differ between sexes and across ages. Here, we measured mitochondrial effects on sex- and age-specific gene expression in parental and reciprocal F1 hybrids between allopatric populations of with over 20% mitochondrial DNA divergence. Because the species lacks sex chromosomes, sex-biased mitochondrial effects are not confounded by the effects of sex chromosomes. Results revealed pervasive sex differences in mitochondrial effects, including effects on energetics and aging involving nuclear interactions throughout the genome. Using single-individual RNA sequencing, sex differences were found to explain more than 80% of the variance in gene expression. Males had higher expression of mitochondrial genes and mitochondrially targeted proteins (MTPs) involved in oxidative phosphorylation (OXPHOS), while females had elevated expression of non-OXPHOS MTPs, indicating strongly sex-dimorphic energy metabolism at the whole organism level. Comparison of reciprocal F1 hybrids allowed insights into the nature of mito-nuclear interactions, showing both mitochondrial effects on nuclear expression, and nuclear effects on mitochondrial expression. While based on a small set of crosses, sex-specific increases in mitochondrial expression with age were associated with longer life. Network analyses identified nuclear components of strong mito-nuclear interactions and found them to be sexually dimorphic. These results highlight the profound impact of mitochondria and mito-nuclear interactions on sex- and age-specific gene expression.
线粒体具有多种功能,其中许多功能涉及与核基因产物的相互作用。这些线粒体功能,特别是那些涉及能量产生的功能,预计会因性别和年龄的不同而有所差异。在这里,我们测量了来自于具有超过 20%线粒体 DNA 差异的异地种群的父母本和正反 F1 杂交种中,线粒体对性别和年龄特异性基因表达的影响。由于该物种没有性染色体,因此线粒体的性别偏向效应不会受到性染色体效应的影响。研究结果揭示了线粒体效应在性别上存在普遍差异,包括对能量产生和衰老的影响,这些影响涉及到整个基因组中的核相互作用。使用单个个体的 RNA 测序,发现性别差异可以解释超过 80%的基因表达的方差。雄性具有更高的线粒体基因和涉及氧化磷酸化(OXPHOS)的线粒体靶向蛋白(MTP)的表达,而雌性则具有更高的非 OXPHOS MTP 的表达,这表明在整个生物体水平上存在强烈的性别二态性能量代谢。对正反 F1 杂交种的比较使我们能够深入了解线粒体与核相互作用的性质,显示了线粒体对核表达的影响,以及核对线粒体表达的影响。虽然这是基于一组小的杂交实验,但线粒体表达随年龄的增加与寿命的延长有关。网络分析确定了具有强烈线粒体与核相互作用的核成分,并发现它们具有性别二态性。这些结果强调了线粒体和线粒体与核相互作用对性别和年龄特异性基因表达的深远影响。