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首页> 外文期刊>Evolution: International Journal of Organic Evolution >Does hybridization drive the transition to asexuality in diploidboechera?
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Does hybridization drive the transition to asexuality in diploidboechera?

机译:杂交是否会推动二倍体毛虫向无性的过渡?

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Gametophytic apomixis is a common form of asexual reproduction in plants. Virtually all gametophytic apomicts are polyploids, and some view polyploidy as a prerequisite for the transition to apomixis. However, any causal link between apomixis and polyploidy is complicated by the fact that most apomictic polyploids are allopolyploids, leading some to speculate that hybridization, rather than polyploidy, enables apomixis. Diploid apomixis presents a rare opportunity to isolate the role of hybridization, and a number of diploid apomicts have been documented in the genusBoechera(Brassicaceae). Here, we present the results of a microsatellite study of 1393 morphologically and geographically diverse diploid individuals, evaluating the hypothesis that diploidBoecheraapomicts are hybrids. This genus-wide dataset was made possible by the applicability of a core set of microsatellite loci in 69 of the 70 diploidBoecheraspecies and by our ability to successfully genotype herbarium specimens of widely varying ages. With few exceptions, diploid apomicts exhibited markedly high levels of heterozygosity resulting from the combination of disparate genomes. This strongly suggests that most apomictic diploidBoecheralineages are of hybrid origin, and that the genomic consequences of hybridization allow for the transition to gametophytic apomixis in this genus.
机译:配子体无融合生殖是植物中无性繁殖的一种常见形式。几乎所有配子体无融合生殖都是多倍体,有些人认为多倍体是向无融合生殖过渡的先决条件。但是,由于大多数无融合生殖多倍体是同种多倍体这一事实使无融合生殖和多倍体之间的因果关系变得复杂,导致一些人推测杂交而不是多倍体能够实现无融合生殖。二倍体无融合生殖提供了一个难得的机会来分离杂交的作用,并且Boechera(Brassicaceae)属中已经记录了许多二倍体无融合生殖。在这里,我们介绍了1393个形态和地理上不同的二倍体个体的微卫星研究结果,评估了二倍体Boecheraapomicts是杂种的假说。通过在70种二倍体Boechera物种中的69种中应用微卫星基因座的核心集,以及通过我们成功地对不同年龄的标本馆标本进行基因分型的能力,可以实现这个属全范围的数据集。除少数例外,由于不同基因组的结合,二倍体无融合生殖细胞显示出显着高水平的杂合性。这有力地表明,大多数无融合生殖二倍体Boecheralineages是杂种起源的,并且杂交的基因组后果使得该属可以过渡到配子体无融合生殖。

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