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A linkage disequilibrium perspective on the genetic mosaic of speciation in two hybridizing Mediterranean white oaks

机译:一个连锁不平衡的观点在两个杂交的地中海白橡木树种的遗传镶嵌中

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摘要

We analyzed the genetic mosaic of speciation in two hybridizing Mediterranean white oaks from the Iberian Peninsula (Quercus faginea Lamb. and Quercus pyrenaica Willd.). The two species show ecological divergence in flowering phenology, leaf morphology and composition, and in their basic or acidic soil preferences. Ninety expressed sequence tag-simple sequence repeats (EST-SSRs) and eight nuclear SSRs were genotyped in 96 trees from each species. Genotyping was designed in two steps. First, we used 69 markers evenly distributed over the 12 linkage groups (LGs) of the oak linkage map to confirm the species genetic identity of the sampled genotypes, and searched for differentiation outliers. Then, we genotyped 29 additional markers from the chromosome bins containing the outliers and repeated the multilocus scans. We found one or two additional outliers within four saturated bins, thus confirming that outliers are organized into clusters. Linkage disequilibrium (LD) was extensive; even for loosely linked and for independent markers. Consequently, score tests for association between two-marker haplotypes and the ‘species trait' showed a broad genomic divergence, although substantial variation across the genome and within LGs was also observed. We discuss the influence of several confounding effects on neutrality tests and review the evolutionary processes leading to extensive LD. Finally, we examine how LD analyses within regions that contain outlier clusters and quantitative trait loci can help to identify regions of divergence and/or genomic hitchhiking in the light of predictions from ecological speciation theory.
机译:我们分析了来自伊比利亚半岛的两个杂交地中海白橡树(栎木(Quercus faginea Lamb。)和栎木(Quercus pyrenaica Willd))的物种形成的遗传镶嵌。这两个物种在开花物候,叶片形态和组成以及其基本或酸性土壤偏好方面表现出生态差异。在每个物种的96棵树中对90个表达的序列标签-简单序列重复(EST-SSR)和八个核SSR进行了基因分型。基因分型的设计分两步进行。首先,我们使用69个标记均匀分布在橡树连锁图的12个连锁组(LG)上,以确认所采样基因型的物种遗传同一性,并寻找分化离群值。然后,我们从包含异常值的染色体仓中对29个其他标记进行了基因分型,并重复了多位点扫描。我们在四个饱和箱中发现了一个或两个额外的离群值,从而确认了离群值被组织为簇。连锁不平衡(LD)广泛;即使是松散链接和独立标记。因此,对两个标记的单倍型与“物种性状”之间的关联进行的得分测试显示出广泛的基因组差异,尽管也观察到了整个基因组和LG内部的显着差异。我们讨论了几种混杂效应对中性测试的影响,并回顾了导致广泛LD的进化过程。最后,我们检查了在包含异常簇和定量性状基因座的区域内进行的LD分析如何根据生态形态理论的预测来帮助识别发散和/或基因组搭便车的区域。

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