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A global multilocus analysis of the model fungus Neurospora reveals a single recent origin of a novel genetic system

机译:对模型真菌Neurospora的全球多基因座分析揭示了一种新型遗传系统的最新起源

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The large diversity of mating systems observed in the fungal kingdom underlines the importance of mating system change in fungal evolution. The selfing species Neurospora tetrasperma has evolved a novel method of achieving self-fertility by a mating system referred to as pseudohomothallism. However, little is known about the origin of N. tetrasperma and its relationship to the self-sterile, heterothallic, Neurospora species. In this study, we used a combination of phylogenetic and population genetic analyses to reconstruct the evolutionary history of N. tetrasperma and its heterothallic relatives. We sequenced 9 unlinked nuclear loci from 106 strains of N. tetrasperma sampled from across the globe, and a sample of 28 heterothallic strains of Neurospora. Our analyses provide strong support for monophyly of N. tetrasperma, but reject the monophyly of N. crassa. We estimate that N. tetrasperma is of a recent origin and that it diverged from the heterothallic species similar to 1 million years ago. We also extend previous findings on the diversification within the N. tetrasperma clade, with 10 lineages identified. Taken together, these findings indicate that N. tetrasperma is younger than has been previously reported and that a rapid diversification of lineages has occurred within the N. tetrasperma clade. (C) 2014 Elsevier Inc. All rights reserved.
机译:在真菌界中观察到的交配系统的多样性突出了在真菌进化中交配系统变化的重要性。自交物种四孢子虫(Neurosporatetrasperma)已经进化出一种新的方法,该方法通过称为伪同型畸形的交配系统实现自育。然而,关于四精子猪笼草的起源及其与自育,异源,神经孢菌种的关系知之甚少。在这项研究中,我们结合了系统发育和种群遗传学分析,重建了N.tetrasperma及其杂种近缘种的进化史。我们对106株来自全球的精子猪笼草菌株和28株Neurospora杂藻菌株进行了测序,确定了9个未连锁的核基因座。我们的分析为四叶猪笼草的单性提供了有力的支持,但拒绝了卡萨猪笼草的单性。我们估计,N.tetrasperma是最近的起源,并且它与大约一百万年前的杂藻物种不同。我们还扩展了先前关于四精子猪笼草进化中发现的发现,发现了10个世系。综上所述,这些发现表明,四精子猪笼草比以前报道的更年轻,并且在四精子猪笼草内已经发生了谱系的快速多样化。 (C)2014 Elsevier Inc.保留所有权利。

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