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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >B chromosomes are more frequent in mammals with acrocentric karyotypes: support for the theory of centromeric drive
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B chromosomes are more frequent in mammals with acrocentric karyotypes: support for the theory of centromeric drive

机译:B染色体在具有近端核型的哺乳动物中更常见:支持着丝粒驱动理论

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摘要

The chromosomes of mammals tend to be either mostly acrocentric (having one long arm) or mostly bi-armed, with few species having intermediate karyotypes. The theory of centromeric drive suggests that this observation reflects a bias during female meiosis, favouring either more centromeres or fewer, and that the direction of this bias changes frequently over evolutionary time. B chromosomes are selfish genetic elements found in some individuals within some species. B chromosomes are often harmful, but persist because they drive (i.e. they are transmitted more frequently than expected). We predicted that species with mainly acrocentric chromosomes would be more likely to harbour B chromosomes than those with mainly bi-armed chromosomes, because female meiosis would favour more centromeres over fewer in species with one-armed chromosomes. Our results show that B chromosomes are indeed more common in species with acrocentric chromosomes, across all mammals, among rodents, among non-rodents and in a test of independent taxonomic contrasts. These results provide independent evidence supporting the theory of centromeric drive and also help to explain the distribution of selfish DNA across species. In addition, we demonstrate an association between the shape of the B chromosomes and the shape of the typical ('A') chromosomes. [References: 15]
机译:哺乳动物的染色体趋向于多数为近端核(具有一只长臂)或多数为双臂的,很少有具有中间核型的物种。着丝粒驱动理论表明,该观察结果反映了女性减数分裂过程中的偏倚,偏向于着丝粒更多或更少,并且这种偏倚的方向在进化过程中频繁变化。 B染色体是某些物种中某些个体中发现的自私遗传元素。 B染色体通常是有害的,但由于它们驱动而持续存在(即,它们的传播频率比预期的要高)。我们预测,主要具有近端中心染色体的物种比那些主要具有双臂染色体的物种更有可能具有B染色体,因为与单臂染色体的物种相比,雌性减数分裂将倾向于更多的着丝粒。我们的结果表明,在所有哺乳动物中,啮齿动物中,非啮齿类动物中以及在进行独立的分类学对比测试中,B染色体确实在具有近端染色体的物种中更为常见。这些结果提供了支持着丝粒驱动理论的独立证据,也有助于解释自私DNA在物种中的分布。此外,我们证明了B染色体的形状和典型('A')染色体的形状之间的关联。 [参考:15]

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