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Naturally occurring mitochondrial dna haplotypes exhibit metabolic differences: Insight into functional properties of mitochondria

机译:天然线粒体dna单倍型表现出代谢差异:深入了解线粒体的功能特性

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Linking the mitochondrial genotype and the organismal phenotype is of paramount importance in evolution of mitochondria. In this study, we determined the differences in catalytic properties of mitochondria dictated by divergences in the siII and siIII haplogroups of Drosophila simulans using introgressions of siII mtDNA type into the siIII nuclear background. We used a novel in situ method (permeabilized fibers) that allowed us to accurately measure the consumption of oxygen by mitochondria in constructed siII-introgressed flies and in siIII-control flies. Our results showed that the catalytic capacity of the electron transport system is not impaired by introgressions, suggesting that the functional properties of mitochondria are tightly related to the mtDNA haplogroup and not to the nuclear DNA or to the mito-nuclear interactions. This is the first study, to our knowledge, that demonstrates a naturally occurring haplogroup can confer specific functional differences in aspects of mitochondrial metabolism. This study illustrates the importance of mtDNA changes on organelle evolution and highlights the potential bioenergetic and metabolic impacts that divergent mitochondrial haplogroups may have upon a wide variety of species including humans.
机译:将线粒体基因型和生物表型联系起来在线粒体进化中至关重要。在这项研究中,我们确定了线粒体催化特性的差异,这是由果蝇模拟物的siII和siIII单体组中的差异决定的,使用的是siII mtDNA类型的渗入到siIII核背景中。我们使用了一种新颖的原位方法(透化纤维),该方法使我们能够准确地测量在构建的siII渗入的果蝇和siIII对照果蝇中线粒体的氧消耗。我们的研究结果表明,渗入不会损害电子传输系统的催化能力,这表明线粒体的功能特性与mtDNA单倍体紧密相关,与核DNA或线粒体-核相互作用无关。据我们所知,这是第一项研究,该研究证明了天然存在的单倍体可以在线粒体代谢方面赋予特定的功能差异。这项研究阐明了线粒体DNA变化对细胞器进化的重要性,并强调了线粒体单倍体群可能对包括人类在内的多种物种产生的潜在生物能和代谢影响。

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