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Sex-specific effects of sympatric mitonuclear variation on fitness in Drosophila subobscura

机译:同胞微小核变异对果蝇亚种的适应性的性别特异性影响

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Background A number of recent studies have shown that the pattern of mitochondrial DNA variation and evolution is at odds with a neutral equilibrium model. Theory has suggested that selection on mitonuclear genotypes can act to maintain stable mitonuclear polymorphism within populations. However, this effect largely relies upon selection being either sex-specific or frequency dependent. Here, we use mitonuclear introgression lines to assess differences in a series of key life-history traits (egg-to-adult developmental time, viability, offspring sex-ratio, adult longevity and resistance to desiccation) in Drosophila subobscura fruit flies carrying one of three different sympatric mtDNA haplotypes. Results We found functional differences between these sympatric mtDNA haplotypes, but these effects were contingent upon the nuclear genome with which they were co-expressed. Further, we demonstrate a significant mitonuclear genetic effect on adult sex ratio, as well as a sex?×?mtDNA?×?nuDNA interaction for adult longevity. Conclusions The observed effects suggest that sex specific mitonuclear selection contributes to the maintenance of mtDNA polymorphism and to mitonuclear linkage disequilibrium in this model system.
机译:背景技术最近的许多研究表明,线粒体DNA变异和进化的模式与中性平衡模型不一致。理论表明,对微核基因型的选择可以起到维持群体内稳定的微核多态性的作用。但是,这种效果在很大程度上取决于性别或频率的选择。在这里,我们使用微核渗入系来评估果蝇亚黑腹果蝇中一系列生命史关键特征(蛋到成人的发育时间,生存能力,后代性别比率,成年寿命和对干燥的抵抗力)之间的差异。三种不同的同胞mtDNA单倍型。结果我们发现了这些同伴的mtDNA单倍型之间的功能差异,但这些影响取决于它们共同表达的核基因组。此外,我们证明了对成年性别比的显着的核细胞遗传效应,以及成年寿命的性爱××mtDNA→×nuDNA相互作用。结论观察到的影响表明,在该模型系统中,性别特异性的微核选择有助于维持mtDNA多态性并导致微核连锁不平衡。

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