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Genomic and functional approaches reveal a case of adaptive introgression from Populus balsamifera (balsam poplar) in P. trichocarpa (black cottonwood)

机译:基因组学和功能方法揭示了毛果杨(黑杨)中的Balsamifera(苦瓜杨)适应性渗入的情况。

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Natural hybrid zones in forest trees provide systems to study the transfer of adaptive genetic variation by introgression. Previous landscape genomic studies in Populus trichocarpa, a keystone tree species, indicated genomic footprints of admixture with its sister species Populus balsamifera and identified candidate genes for local adaptation. Here, we explored the patterns of introgression and signals of local adaptation in P. trichocarpa and P. balsamifera, employing genome resequencing data from three chromosomes in pure species and admixed individuals from wild populations. Local ancestry analysis in admixed P. trichocarpa revealed a telomeric region in chromosome 15 with P. balsamifera ancestry, containing several candidate genes for local adaptation. Genomic analyses revealed signals of selection in certain genes in this region (e.g. PRR5, COMT1), and functional analyses based on gene expression variation and correlations with adaptive phenotypes suggest distinct functions of the introgressed alleles. In contrast, a block of genes in chromosome 12 paralogous to the introgressed region showed no signs of introgression or signatures of selection. We hypothesize that the introgressed region in chromosome 15 has introduced modular or cassette-like variation into P. trichocarpa. These linked adaptive mutations are associated with a block of genes in chromosome 15 that appear to have undergone neo-or subfunctionalization relative to paralogs in a duplicated region on chromosome 12 that show no signatures of adaptive variation. The association between P. balsamifera introgressed alleles with the expression of adaptive traits in P. trichocarpa supports the hypothesis that this is a case of adaptive introgression in an ecologically important foundation species.
机译:林木中的自然杂种区提供了系统研究渗入的适应性遗传变异的转移。先前在关键树种毛白杨中的景观基因组学研究表明,与其姊妹种白头翁混合在一起的基因组足迹,并确定了适合当地适应的候选基因。在这里,我们利用纯种中三个染色体的基因组重测序数据和野生种群的混交个体,探索了毛果李和杆头凤梨的基因渗入模式和局部适应信号。混合的毛果木果的本地血统分析显示,在15号染色体上的一个端粒区具有Balsamifera血统,其中包含一些用于局部适应的候选基因。基因组分析揭示了该区域某些基因(例如PRR5,COMT1)的选择信号,基于基因表达变异和与适应性表型的相关性的功能分析表明,等位基因的功能不同。相比之下,第12号染色体上与渗入区同源的一个基因块没有渗入迹象或选择标记。我们假设第15号染色体的基因渗入区域已将模块状或盒状变异引入毛果杨。这些连锁的适应性突变与15号染色体上的一个基因块相关,这些基因块似乎相对于12号染色体上重复区域中的旁系同源物经历了新功能或亚功能化,而这些旁系同源物没有显示出自适应变异的特征。苦瓜假单胞菌渗入的等位基因与毛果假单胞菌的适应性状的表达之间的联系支持了以下假设:在生态学上重要的基础物种中,这是适应性渗入的情况。

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