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Mitonuclear interactions mtDNA-mediated thermal plasticity and implications for the Trojan Female Technique for pest control

机译:微核相互作用mtDNA介导的热可塑性及其对特洛伊木马女性病虫害防治技术的意义

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摘要

Pest species pose major challenges to global economies, ecosystems, and health. Unfortunately, most conventional approaches to pest control remain costly, and temporary in effect. As such, a heritable variant of the Sterile Insect Technique (SIT) was proposed, based on the introduction of mitochondrial DNA mutations into pest populations, which impair male fertility but have no effects on females. Evidence for this “Trojan Female Technique” (TFT) was recently provided, in the form of a mutation in the mitochondrial cytochrome b gene (mt:Cyt-b) of Drosophila melanogaster which reduces male fertility across diverse nuclear backgrounds. However, recent studies have shown that the magnitude of mitochondrial genetic effects on the phenotype can vary greatly across environments, with mtDNA polymorphisms commonly entwined in genotype-by-environment (G × E) interactions. Here we test whether the male-sterilizing effects previously associated with the mt:Cyt-b mutation are consistent across three thermal and three nuclear genomic contexts. The effects of this mutation were indeed moderated by the nuclear background and thermal environment, but crucially the fertility of males carrying the mutation was invariably reduced relative to controls. This mutation thus constitutes a promising candidate for the further development of the TFT.
机译:害虫物种对全球经济,生态系统和健康构成重大挑战。不幸的是,大多数传统的害虫控制方法仍然是昂贵的,并且是暂时的。因此,基于将线粒体DNA突变引入有害生物种群,提出了一种不育昆虫技术(SIT)的可遗传变异,这种突变会损害雄性繁殖力,但对雌性没有影响。最近以“果蝇黑腹果蝇”的线粒体细胞色素b基因(mt:Cyt-b)突变的形式提供了这种“特洛伊女性技术”(TFT)的证据,这种突变降低了跨不同核背景的男性生育能力。但是,最近的研究表明,线粒体遗传效应对表型的影响程度在不同环境中可能存在很大差异,而线粒体DNA多态性通常在逐个基因型(G×E)相互作用中交织在一起。在这里,我们测试先前与mt:Cyt-b突变相关的雄性不育效应在三个热基因组和三个核基因组环境中是否一致。确实通过核背景和热环境减轻了这种突变的影响,但是至关重要的是,携带这种突变的男性的生育力总是相对于对照降低。因此,这种突变构成了TFT进一步发展的有希望的候选者。

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