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Evolutionarily Stable Infection by a Male-Killing Endosymbiont in Drosophila innubila

机译:果蝇果蝇杀死雄性内生菌的进化稳定感染。

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摘要

Maternally inherited microbes that spread via male-killing are common pathogens of insects, yet very little is known about the evolutionary duration of these associations. The few examples to date indicate very recent, and thus potentially transient, infections. A male-killing strain of Wolbachia has recently been discovered in natural populations of Drosophila innubila. The population-level effects of this infection are significant: ∼35% of females are infected, infected females produce very strongly female-biased sex ratios, and the resulting population-level sex ratio is significantly female biased. Using data on infection prevalence and Wolbachia transmission rates, infected cytoplasmic lineages are estimated to experience a ∼5% selective advantage relative to uninfected lineages. The evolutionary history of this infection was explored by surveying patterns of polymorphism in both the host and parasite genomes, comparing the Wolbachia wsp gene and the host mtDNA COI gene to five host nuclear genes. Molecular data suggest that this male-killing infection is evolutionarily old, a conclusion supported with a simple model of parasite and mtDNA transmission dynamics. Despite a large effective population size of the host species and strong selection to evolve resistance, the D. innubila-Wolbachia association is likely at a stable equilibrium that is maintained by imperfect maternal transmission of the bacteria rather than partial resistance in the host species.
机译:通过雄性杀灭传播的母系遗传微生物是昆虫的常见病原体,但对这些关联的进化持续时间知之甚少。迄今为止的一些例子表明感染是最近的,因此可能是暂时的感染。最近,在果蝇果蝇的自然种群中发现了一种杀害沃尔巴氏菌的雄性菌株。这种感染的人群水平影响是显着的:约35%的女性受到感染,被感染的女性产生非常强烈的女性偏向性别比,并且由此产生的人口水平性别比明显偏向女性。利用感染率和Wolbachia传播率的数据,被感染的细胞质谱系相对于未感染的谱系具有约5%的选择性优势。通过调查宿主和寄生虫基因组中的多态性模式,并将Wolbachia wsp基因和宿主mtDNA COI基因与五个宿主核基因进行比较,探索了这种感染的进化史。分子数据表明,这种杀死男性的感染在进化上已经过时,这一结论得到了寄生​​虫和mtDNA传播动力学简单模型的支持。尽管寄主物种的有效种群数量很大,并且有很强的选择来进化抗性,但无环线虫-沃尔巴克氏菌可能处于稳定的平衡状态,这是由于细菌的母体传播不完善而不是寄主物种的部分抗性而得以维持的。

著录项

  • 期刊名称 Genetics
  • 作者

    Kelly A. Dyer; John Jaenike;

  • 作者单位
  • 年(卷),期 2011(168),3
  • 年度 2011
  • 页码 1443–1455
  • 总页数 14
  • 原文格式 PDF
  • 正文语种
  • 中图分类 遗传学;
  • 关键词

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