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首页> 外文期刊>Frontiers in Physiology >Mitochondrial DNA Sequence and Lack of Response to Anoxia in the Annual Killifish Austrofundulus limnaeus
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Mitochondrial DNA Sequence and Lack of Response to Anoxia in the Annual Killifish Austrofundulus limnaeus

机译:一年生illi鱼的线粒体DNA序列和对缺氧的反应缺乏 limundeus limnaeus

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The annual killifish Austrofundulus limnaeus inhabits ephemeral ponds in regions of Venezuela, South America. Permanent populations of A. limnaeus are maintained by production of stress-tolerant embryos that are able to persist in the desiccated sediment. Previous work has demonstrated that A. limnaeus have a remarkable ability to tolerate extended periods of anoxia and desiccating conditions. After considering temperature, A. limnaeus embryos have the highest known tolerance to anoxia when compared to any other vertebrate yet studied. Oxygen is completely essential for the process of oxidative phosphorylation by mitochondria, the intracellular organelle responsible for the majority of adenosine triphosphate production. Thus, understanding the unique properties of A. limnaeus mitochondria is of great interest. In this work, we describe the first complete mitochondrial genome (mtgenome) sequence of a single adult A. limnaeus individual and compare both coding and non-coding regions to several other closely related fish mtgenomes. Mitochondrial features were predicted using MitoAnnotator and polyadenylation sites were predicted using RNAseq mapping. To estimate the responsiveness of A. limnaeus mitochondria to anoxia treatment, we measure relative mitochondrial DNA copy number and total citrate synthase activity in both relatively anoxia-tolerant and anoxia-sensitive embryonic stages. Our cross-species comparative approach identifies unique features of ND1, ND5, ND6 , and ATPase-6 that may facilitate the unique phenotype of A. limnaeus embryos. Additionally, we do not find evidence for mitochondrial degradation or biogenesis during anoxia/reoxygenation treatment in A. limnaeus embryos, suggesting that anoxia-tolerant mitochondria do not respond to anoxia in a manner similar to anoxia-sensitive mitochondria.
机译:南美委内瑞拉地区的一年生幼鱼栖息在南方的委内瑞拉地区的临时池塘中。通过生产能够在干燥的沉积物中持续存在的耐应力胚胎来维持林蛙的永久种群。先前的研究表明,林蛙具有出色的耐受缺氧和干燥条件的能力。考虑温度后,与尚未研究的任何其他脊椎动物相比,林蛙的厌氧耐受性最高。氧对于线粒体的氧化磷酸化过程至关重要,线粒体是细胞内的细胞器,负责大部分三磷酸腺苷的产生。因此,非常了解兴趣线虫线粒体的独特性质。在这项工作中,我们描述了单个成年拟南芥个体的第一个完整的线粒体基因组(mtgenome)序列,并将编码和非编码区域与其他几个紧密相关的鱼类mtgenomes进行了比较。使用MitoAnnotator预测线粒体特征,并使用RNAseq作图预测多腺苷酸化位点。为了估计A. limnaeus线粒体对缺氧治疗的反应性,我们在相对耐缺氧和对缺氧敏感的胚胎阶段测量相对线粒体DNA拷贝数和总柠檬酸合酶活性。我们的跨物种比较方法确定了ND1,ND5,ND6和ATPase-6的独特特征,这些特征可能促进了A. limnaeus胚胎的独特表型。此外,我们没有找到证据证明A. limnaeus胚胎在缺氧/复氧处理过程中线粒体降解或生物发生,这表明耐缺氧的线粒体对缺氧的反应方式与缺氧敏感的线粒体相似。

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