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Genetic And Developmental Basis Of F_2 Hybrid Breakdown In Nasonia Parasitoid Wasps

机译:拟南芥寄生蜂F_2杂种分解的遗传和发育基础

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摘要

Speciation is responsible for the vast diversity of life, and hybrid inviability, by reducing gene flow between populations, is a major contributor to this process. In the parasitoid wasp genus Nasonia, F_2 hybrid males of Nasonia vitripennis and Nasonia giraulti experience an increased larval mortality rate relative to the parental species. Previous studies indicated that this increase of mortality is a consequence of incompatibilities between multiple nuclear loci and cytoplasmic factors of the parental species, but could only explain ~40% of the mortality rate in hybrids with N. giraulti cytoplasm. Here we report a locus on chromosome 5 that can explain the remaining mortality in this cross. We show that hybrid larvae that carry the incompatible allele on chromosome 5 halt growth early in their development and that ~98% die before they reach adulthood. On the basis of these new findings, we identified a nuclear-encoded OXPHOS gene as a strong candidate for being causally involved in the observed hybrid breakdown, suggesting that the incompatible mitochondrial locus is one of the six mitochondrial-encoded NADH genes. By identifying both genetic and physiological mechanisms that reduce gene flow between species, our results provide valuable and novel insights into the evolutionary dynamics of speciation.
机译:物种形成导致生命的巨大多样性,而杂种不可生存性(通过减少种群之间的基因流动)是这一过程的主要贡献者。在拟寄生的黄蜂属纳森氏菌中,相对于亲本物种而言,纳氏沙门氏菌(Nasonia vitripennis)和吉氏纳索尼亚(Nasonia giraulti)的F_2杂种雄性的幼虫死亡率增加。先前的研究表明,死亡率的增加是亲本物种的多个核基因座和细胞质因子之间不相容的结果,但只能解释约吉罗氏猪笼草细胞质中约40%的死亡率。在这里,我们报告了5号染色体上的一个基因座,可以解释该杂交中的剩余死亡率。我们显示,杂种幼虫在5号染色体上携带不相容的等位基因,在其发育早期停止生长,并且约98%的幼虫在成年之前死亡。在这些新发现的基础上,我们确定了核编码的OXPHOS基因是因果关系到观察到的杂种分解的有力候选者,表明不相容的线粒体基因座是六个线粒体编码的NADH基因之一。通过确定减少物种间基因流动的遗传和生理机制,我们的结果为物种形成的进化动力学提供了宝贵而新颖的见解。

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