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Cytoplasmic–Nuclear Incompatibility Between Wild Isolates of Caenorhabditis nouraguensis

机译:Nouraguensis的野生分离株之间的细胞质-核不相容性

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摘要

How species arise is a fundamental question in biology. Species can be defined as populations of interbreeding individuals that are reproductively isolated from other such populations. Therefore, understanding how reproductive barriers evolve between populations is essential for understanding the process of speciation. Hybrid incompatibility (for example, hybrid sterility or lethality) is a common and strong reproductive barrier in nature. Here we report a lethal incompatibility between two wild isolates of the nematode Caenorhabditis nouraguensis. Hybrid inviability results from the incompatibility between a maternally inherited cytoplasmic factor from each strain and a recessive nuclear locus from the other. We have excluded the possibility that maternally inherited endosymbiotic bacteria cause the incompatibility by treating both strains with tetracycline and show that hybrid death is unaffected. Furthermore, cytoplasmic–nuclear incompatibility commonly occurs between other wild isolates, indicating that this is a significant reproductive barrier within C. nouraguensis. We hypothesize that the maternally inherited cytoplasmic factor is the mitochondrial genome and that mitochondrial dysfunction underlies hybrid death. This system has the potential to shed light on the dynamics of divergent mitochondrial–nuclear coevolution and its role in promoting speciation.
机译:物种如何产生是生物学中的一个基本问题。物种可以定义为与其他此类种群繁殖分离的杂交个体的种群。因此,了解种群之间生殖障碍的发展方式对于理解物种形成过程至关重要。杂种不相容(例如杂种不育或致死性)是自然界中常见且强烈的繁殖障碍。在这里,我们报道线虫Caenorhabditis nouraguensis的两个野生分离株之间的致死性不相容性。杂种不可生存性是由于每个菌株的母系遗传胞质因子与另一个菌株的隐性核基因座之间的不相容性。我们已经排除了母体遗传的共生共生细菌通过用四环素处理这两种菌株而导致不相容的可能性,并表明杂种死亡不受影响。此外,其他野生分离株之间通常发生细胞质-核不相容性,这表明这是努拉古氏梭菌的重要生殖屏障。我们假设母本遗传的细胞质因子是线粒体基因组,而线粒体功能障碍是杂交死亡的基础。该系统有可能阐明线粒体-核的不同发散的动力学及其在促进物种形成中的作用。

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