School of Biological Sciences, Monash University, Melbourne, Victoria, Australia.
Department of Biological Science, The University of Tulsa, Tulsa, Oklahoma, USA.
J Evol Biol. 2022 Oct;35(10):1396-1402. doi: 10.1111/jeb.14080. Epub 2022 Aug 21.
While mitochondria have long been understood to be critical to cellular function, questions remain as to how genetic variation within mitochondria may underlie variation in general metrics of organismal function. To date, studies investigating links between mitochondrial genotype and phenotype have largely focused on differences in expression of genes and physiological and life-history traits across haplotypes. Mating display behaviours may also be sensitive to mitochondrial functionality and so may also be affected by sequence variation in mitochondrial DNA, with consequences for sexual selection and fitness. Here, we tested whether the pre-copulatory mating success of male fruit flies (Drosophila melanogaster) varies across six different mitochondrial haplotypes expressed alongside a common nuclear genetic background. We found a significant effect of mitochondrial haplotype on our measure of competitive mating success, driven largely by the relatively poor performance of males with one particular haplotype. This haplotype, termed 'Brownsville', has previously been shown to have complex and sex-specific effects, most notably including depressed fertility in males but not females. Our study extends this disproportionate effect on male reproductive success to pre-copulatory aspects of reproduction. Our results demonstrate that mutations in mitochondrial DNA can plausibly affect pre-copulatory mating success, with implications for future study into the subcellular underpinnings of such behaviours and the information they may communicate.
虽然线粒体长期以来被认为对细胞功能至关重要,但遗传变异如何影响生物功能的总体指标仍存在疑问。迄今为止,研究线粒体基因型与表型之间联系的研究主要集中在不同单倍型的基因表达差异、生理和生活史特征上。交配展示行为也可能对线粒体功能敏感,因此也可能受到线粒体 DNA 序列变异的影响,从而影响性选择和适应性。在这里,我们测试了雄性果蝇(黑腹果蝇)的预交配成功是否因六种不同的线粒体单倍型而有所不同,这些单倍型与共同的核遗传背景一起表达。我们发现线粒体单倍型对我们衡量竞争交配成功有显著影响,主要是由一种特定单倍型的雄性表现较差所致。这种单倍型被称为“布朗斯维尔”,以前已经显示出复杂的和性别的影响,最显著的是雄性的生育能力下降,但雌性没有。我们的研究将这种对雄性生殖成功的不成比例的影响扩展到生殖的预交配方面。我们的结果表明,线粒体 DNA 中的突变可能会影响预交配的交配成功,这对未来研究这种行为的亚细胞基础以及它们可能传递的信息具有重要意义。