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首页> 外文期刊>Molecular ecology >Selective acquisition of novel mating type and vegetative incompatibility genes via interspecies gene transfer in the globally invading eukaryote Ophiostoma novo-ulmi
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Selective acquisition of novel mating type and vegetative incompatibility genes via interspecies gene transfer in the globally invading eukaryote Ophiostoma novo-ulmi

机译:通过种间基因转移选择性地获取新的交配类型和营养不相容基因

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摘要

The Dutch elm disease fungus Ophiostoma novo-ulmi, which has destroyed billions of elm trees worldwide, originally invaded Europe as a series of clonal populations with a single mating type (MAT-2) and a single vegetative incompatibility (vic) type. The populations then rapidly became diverse with the appearance of the MAT-1 type and many vegetative incompatibility types. Here, we have investigated the mechanism using isolates from sites in Portugal at which the rapid evolution of O. novo-ulmi populations from clonality to heterogeneity was well established. We show by genetic mapping of vic and MAT loci with AFLP markers and by sequence analysis of MAT loci that this diversification was due to selective acquisition by O. novo-ulmi of the MAT-1 and vic loci from another species, Ophiostoma ulmi. A global survey showed that interspecies transfer of the MAT-1 locus occurred on many occasions as O. novo-ulmi spread across the world. We discuss the possibility that fixation of the MAT-1 and vic loci occurred in response to spread of deleterious viruses in the originally clonal populations. The process demonstrates the potential of interspecies gene transfer for facilitating rapid adaptation of invasive organisms to a new environment.
机译:荷兰榆病真菌Ophiostoma novo-ulmi破坏了全球数十亿棵榆树,最初入侵欧洲的是一系列具有单一交配型(MAT-2)和单一营养不相容型(vic)的克隆种群。然后,随着MAT-1类型和许多营养不相容类型的出现,种群迅速多样化。在这里,我们研究了使用葡萄牙分离株的机制,在该分离株中,O。noul-ulmi种群从克隆性迅速演变为异质性的机制已得到良好确立。我们通过具有AFLP标记的vic和MAT基因座的遗传作图以及MAT基因座的序列分析表明,这种多样化是由于O. novo-ulmi从另一物种Ophiostoma ulmi选择性获得了MAT-1和vic基因座。一项全球调查显示,随着O. noul-ulmi遍布世界各地,MAT-1基因座的种间转移发生了很多次。我们讨论了对MAT-1和vic基因座进行固定的可能性,以响应有害病毒在原始克隆人群中的传播。该过程证明了种间基因转移在促进入侵生物快速适应新环境方面的潜力。

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