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Evolutionary and Biogeographic Insights on the Macaronesian Beta-Patellifolia Species (Amaranthaceae) from a Time-Scaled Molecular Phylogeny

机译:时间尺度的分子系统发育对Macaronesian Beta-P蝶科物种(A菜科)的进化和生物地理洞察。

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摘要

The Western Mediterranean Region and Macaronesian Islands are one of the top biodiversity hotspots of Europe, containing a significant native genetic diversity of global value among the Crop Wild Relatives (CWR). Sugar beet is the primary crop of the genus Beta (subfamily Betoideae, Amaranthaceae) and despite the great economic importance of this genus, and of the close relative Patellifolia species, a reconstruction of their evolutionary history is still lacking. We analyzed nrDNA (ITS) and cpDNA gene (matK, trnH-psbA, trnL intron, rbcL) sequences to: (i) investigate the phylogenetic relationships within the Betoideae subfamily, and (ii) elucidate the historical biogeography of wild beet species in the Western Mediterranean Region, including the Macaronesian Islands. The results support the Betoideae as a monophyletic group (excluding the Acroglochin genus) and provide a detailed inference of relationships within this subfamily, revealing: (i) a deep genetic differentiation between Beta and Patellifolia species, which may have occurred in Late Oligocene; and (ii) the occurrence of a West-East genetic divergence within Beta, indicating that the Mediterranean species probably differentiated by the end of the Miocene. This was interpreted as a signature of species radiation induced by dramatic habitat changes during the Messinian Salinity Crisis (MSC, 5.96–5.33 Mya). Moreover, colonization events during the Pleistocene also played a role in shaping the current diversity patterns among and within the Macaronesian Islands. The origin and number of these events could not be revealed due to insufficient phylogenetic resolution, suggesting that the diversification was quite recent in these archipelagos, and unravelling potential complex biogeographic patterns with hybridization and gene flow playing an important role. Finally, three evolutionary lineages were identified corresponding to major gene pools of sugar beet wild relatives, which provide useful information for establishing in situ and ex situ conservation priorities in the hotspot area of the Macaronesian Islands.
机译:地中海西部地区和马卡罗尼西亚群岛是欧洲最重要的生物多样性热点之一,在作物野生亲戚(CWR)中具有全球价值的重要原生遗传多样性。甜菜是Beta属(Betoideae,Amaranthaceae)的主要农作物,尽管该属以及近缘的Paterellifolia物种在经济上具有重要意义,但仍缺乏对其进化史的重建。我们分析了nrDNA(ITS)和cpDNA基因(matK,trnH-psbA,trnL内含子,rbcL)序列,以:(i)研究Betoideae亚科内的系统发育关系,以及(ii)阐明野生甜菜物种的历史生物地理学地中海西部地区,包括马卡罗尼西亚群岛。结果支持贝托虫科作为单系统种群(不包括顶绿头菌属),并提供了该亚科之间关系的详细推论,揭示了: (ii)Beta内部发生了东西方遗传差异,表明地中海物种可能在中新世末期已经分化。这被解释为在墨西尼盐度危机(MSC,5.96-5.33 Mya)期间,栖息地的剧烈变化引起的物种辐射的特征。此外,在更新世期间的殖民化事件也影响了马卡罗尼西亚群岛之间及其内部目前的多样性格局。这些事件的起源和数量由于系统发育分辨率不足而无法透露,这表明这些群岛中的多样性是最近的,并且揭示潜在的复杂生物地理模式以及杂交和基因流起着重要作用。最后,确定了与甜菜野生亲缘种的主要基因库相对应的三个进化谱系,它们为在马卡罗尼群岛的热点地区建立原位和非原位保存优先次序提供了有用的信息。

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