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Mitochondrial DNA level, but not active replicase, is essential for Caenorhabditis elegans development

机译:线粒体DNA水平但不是活性复制酶,对于秀丽隐杆线虫的发展至关重要

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A number of studies showed that the development and the lifespan of Caenorhabditis elegans is dependent on mitochondrial function. In this study, we addressed the role of mitochondrial DNA levels and mtDNA maintenance in development of C. elegans by analyzing deletion mutants for mitochondrial polymerase gamma (polg-1(ok1548)). Surprisingly, even though previous studies in other model organisms showed necessity of polymerase gamma for embryonic development, homozygous polg-1(ok1548) mutants had normal development and reached adulthood without any morphological defects. However, polg-1 deficient animals have a seriously compromised gonadal function as a result of severe mitochondrial depletion, leading to sterility and shortened lifespan. Our results indicate that the gonad is the primary site of mtDNA replication, whilst the mtDNA of adult somatic tissues mainly stems from the developing embryo. Furthermore, we show that the mtDNA copy number shows great plasticity as it can be almost tripled as a response to the environmental stimuli. Finally, we show that the mtDNA copy number is an essential limiting factor for the worm development and therefore, a number of mechanisms set to maintain mtDNA levels exist, ensuring a normal development of C. elegans even in the absence of the mitochondrial replicase.
机译:大量研究表明,秀丽隐杆线虫的发育和寿命取决于线粒体功能。在这项研究中,我们通过分析线粒体聚合酶γ(polg-1(ok1548))的缺失突变体,探讨了线粒体DNA水平和线粒体DNA维持在秀丽隐杆线虫发育中的作用。出人意料的是,尽管先前在其他模型生物中的研究表明聚合酶γ对于胚胎发育是必需的,但纯合子polg-1(ok1548)突变体却能正常发育并成年后没有任何形态学缺陷。但是,由于线粒体严重耗竭,缺乏polg-1的动物的性腺功能严重受损,导致不育和寿命缩短。我们的结果表明,性腺是mtDNA复制的主要位点,而成人体细胞组织的mtDNA主要来自发育中的胚胎。此外,我们表明mtDNA拷贝数显示出极大的可塑性,因为它对环境刺激的反应几乎可以增加三倍。最后,我们证明了mtDNA拷贝数是蠕虫发育的基本限制因素,因此,存在许多维持mtDNA水平的机制,即使没有线粒体复制酶也可确保线虫的正常发育。

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