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Genetic Divergence and Signatures of Natural Selection in Marginal Populations of a Keystone Long-Lived Conifer Eastern White Pine (Pinus strobus) from Northern Ontario

机译:安大略省北部白松(Keystones)长寿针叶树东部白松(Pinus strobus)边缘种群的遗传多样性和自然选择的特征

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摘要

Marginal populations are expected to provide the frontiers for adaptation, evolution and range shifts of plant species under the anticipated climate change conditions. Marginal populations are predicted to show genetic divergence from central populations due to their isolation, and divergent natural selection and genetic drift operating therein. Marginal populations are also expected to have lower genetic diversity and effective population size (N e) and higher genetic differentiation than central populations. We tested these hypotheses using eastern white pine (Pinus strobus) as a model for keystone, long-lived widely-distributed plants. All 614 eastern white pine trees, in a complete census of two populations each of marginal old-growth, central old-growth, and central second-growth, were genotyped at 11 microsatellite loci. The central populations had significantly higher allelic and genotypic diversity, latent genetic potential (LGP) and N e than the marginal populations. However, heterozygosity and fixation index were similar between them. The marginal populations were genetically diverged from the central populations. Model testing suggested predominant north to south gene flow in the study area with curtailed gene flow to northern marginal populations. Signatures of natural selection were detected at three loci in the marginal populations; two showing divergent selection with directional change in allele frequencies, and one balancing selection. Contrary to the general belief, no significant differences were observed in genetic diversity, differentiation, LGP, and N e between old-growth and second-growth populations. Our study provides information on the dynamics of migration, genetic drift and selection in central versus marginal populations of a keystone long-lived plant species and has broad evolutionary, conservation and adaptation significance.
机译:在预期的气候变化条件下,边缘人群有望为植物物种的适应,进化和范围转移提供前沿领域。由于边缘人群的隔离以及在其中的自然选择和遗传漂移,预计边缘人群与中央人群之间将显示出遗传差异。与中央人群相比,边缘人群的遗传多样性和有效人群规模(N e)以及遗传分化也更高。我们使用东部白松(Pinus strobus)作为梯形,长寿,分布广泛的植物的模型,对这些假设进行了检验。在11个微卫星基因座上对边缘的老树,中部的老树和中部的第二树中的每一个的两个种群进行了全面的人口普查,对全部614棵东部白松树进行了基因分型。与边缘人群相比,中央人群的等位基因和基因型多样性,潜在遗传潜能(LGP)和N e明显更高。但是,它们之间的杂合性和固着指数相似。边缘人群与中央人群在遗传上存在分歧。模型测试表明,在研究区域中,从北向南的基因流占主导地位,而向北部边缘人群的基因流却减少了。在边缘人群的三个位点检测到了自然选择的特征。两个显示等位基因频率方向变化的发散选择,另一个显示平衡选择。与普遍的看法相反,老龄和次生人群之间的遗传多样性,分化,LGP和N e没有显着差异。我们的研究提供了关于关键长寿植物物种中部和边缘种群迁移,遗传漂移和选择动态的信息,具有广泛的进化,保护和适应意义。

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  • 总页数 13
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  • 入库时间 2022-08-21 11:18:42

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