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首页> 外文期刊>American journal of botany >INFLUENCES OF LANDSCAPE AND POLLINATORS ON POPULATION GENETIC STRUCTURE: EXAMPLES FROM THREE PENSTEMON (PLANTAGINACEAE) SPECIES IN THE GREAT BASIN
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INFLUENCES OF LANDSCAPE AND POLLINATORS ON POPULATION GENETIC STRUCTURE: EXAMPLES FROM THREE PENSTEMON (PLANTAGINACEAE) SPECIES IN THE GREAT BASIN

机译:景观和授粉媒介对种群遗传结构的影响:以大盆地中的三种Penstemon(车前科)为例

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Premise of the study : Despite rapid growth in the field of landscape genetics, our understanding of how landscape features interact with life history traits to influence population genetic structure in plant species remains limited. Here, we identify population genetic divergence in three species of Penstemon (Plantaginaceae) similarly distributed throughout the Great Basin region of the western United States but with different pollination syndromes (bee and hummingbird). The Great Basin's mountainous landscape provides an ideal setting to compare the interaction of landscape and dispersal ability in isolating populations of different species.Methods : We used eight highly polymorphic microsatellite loci to identify neutral population genetic structure between populations within and among mountain ranges for eight populations of P. deustus, 10 populations of P. pachyphyllus, and 10 populations of P. rostriflorus. We applied traditional population genetics approaches as well as spatial and landscape genetics approaches to infer genetic structure and discontinuities among populations.Key results : All three species had significant genetic structure and exhibited isolation by distance, ranging from high structure and low inferred gene flow in the bee-pollinated species P. deustus (F-ST = 0.1330, R-ST = 0.4076, seven genetic clusters identified) and P. pachyphyllus (F-ST = 0.1896, R-ST = 0.2531, four genetic clusters identified) to much lower structure and higher inferred gene flow in the hummingbird-pollinated P. rostriflorus (F-ST = 0.0638, R-ST = 0.1116, three genetic clusters identified).Conclusions : These three Penstemon species have significant yet strikingly different patterns of population genetic structure, findings consistent with different interactions between landscape features and the dispersal capabilities of their pollinators.
机译:研究的前提:尽管景观遗传学领域迅速发展,但我们对景观特征如何与生活史特征相互作用以影响植物物种种群遗传结构的理解仍然有限。在这里,我们确定了在美国西部大盆地地区相似分布但具有不同授粉综合症(蜜蜂和蜂鸟)的三种Penstemon(车前草科)物种的种群遗传差异。大盆地的山区景观为比较景观和散布能力在隔离不同物种种群中的相互作用提供了理想的环境。方法:我们使用八个高度多态的微卫星基因座来识别八个种群的山脉内和种群之间的中性种群遗传结构P. deustus,10个种群的P. pachyphyllus和10个种群的P. rostriflorus。我们采用了传统的种群遗传学方法以及空间和景观遗传学方法来推断种群之间的遗传结构和不连续性。关键结果:这三个物种均具有重要的遗传结构,并表现出距离上的隔离,从高结构到低推断基因流。蜜蜂授粉的种(P. deustus)(F-ST = 0.1330,R-ST = 0.4076,鉴定出七个遗传簇)和P. pachyphyllus(F-ST = 0.1896,R-ST = 0.2531,鉴定出四个遗传簇)要低得多蜂鸟授粉的P. rostriflorus的结构和较高的推断基因流(F-ST = 0.0638,R-ST = 0.1116,已鉴定出三个遗传簇)。结论:这三种Penstemon物种具有显着但显着不同的种群遗传结构模式,研究结果与景观特征及其传粉媒介的扩散能力之间的不同相互作用相一致。

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