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首页> 外文期刊>G3: Genes, Genomes, Genetics >Revisiting Suppression of Interspecies Hybrid Male Lethality in Caenorhabditis Nematodes
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Revisiting Suppression of Interspecies Hybrid Male Lethality in Caenorhabditis Nematodes

机译:再次抑制线粒体秀丽隐杆线虫的种间杂种雄性死亡。

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Within the nematode genus Caenorhabditis , Caenorhabditis briggsae and C. nigoni are among the most closely related species known. They differ in sexual mode, with C. nigoni retaining the ancestral XO male–XX female outcrossing system, while C. briggsae recently evolved self-fertility and an XX-biased sex ratio. Wild-type C. briggsae and C. nigoni can produce fertile hybrid XX female progeny, but XO progeny are either 100% inviable (when C. briggsae is the mother) or viable but sterile (when C. nigoni is the mother). A recent study provided evidence suggesting that loss of the [Cbr-him-8][1] meiotic regulator in C. briggsae hermaphrodites allowed them to produce viable and fertile hybrid XO male progeny when mated to C. nigoni . Because such males would be useful for a variety of genetic experiments, we sought to verify this result. Preliminary crosses with wild-type C. briggsae hermaphrodites occasionally produced fertile males, but they could not be confirmed to be interspecies hybrids. Using an RNA interference (RNAi) protocol that eliminates any possibility of self-progeny in [Cbr-him-8][1] hermaphrodites, we found sterile males bearing the C. nigoni X chromosome, but no fertile males bearing the C. briggsae X, as in wild-type crosses. Our results suggest that the apparent rescue of XO hybrid viability and fertility is due to incomplete purging of self-sperm prior to mating. [1]: http://www.wormbase.org/db/get?name=WBGene00033765;class=Gene
机译:在线虫Caenorhabditis内,Brien的Caenorhabditis和C. nigoni是已知最密切相关的物种。它们的性生活方式有所不同,黑角衣原保留了祖先的XO男性至XX雌性异种交配系统,而黑角衣原最近进化出了自我生育能力和XX偏性比例。野生型Briggsae和C.nigoni可以产生可育的杂种XX雌性后代,但XO后代要么是100%不能存活的(当Briggsae是母亲时),要么是活的但不育的(当C. nigoni是母亲时)。最近的一项研究提供了证据,表明在C. briggsae雌雄同体中,[Cbr-him-8] [1]减数分裂调节因子的丧失使它们与C. nigoni交配时,能够产生可行且可育的杂种XO雄性子代。由于这类雄性动物可用于多种遗传实验,因此我们试图验证这一结果。与野生型Briggsae雌雄同体的初步杂交偶尔会产生可育的雄性,但不能确定它们是种间杂种。我们使用RNA干扰(RNAi)协议消除了[Cbr-him-8] [1]雌雄同体的任何后代,我们发现带有C. nigoni X染色体的不育雄性,而没有携带C. briggsae的可育雄性。 X,如野生型杂交。我们的结果表明,XO杂种的生存能力和生育力的明显挽救是由于交配前不完全清除自身精子。 [1]:http://www.wormbase.org/db/get?name = WBGene00033765; class = Gene

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