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Genetic structuring in a Neotropical palm analyzed through an Andean orogenesis‐scenario

机译:通过安第斯造山运动情景分析的新热带棕榈的遗传结构

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摘要

Andean orogenesis has driven the development of very high plant diversity in the Neotropics through its impact on landscape evolution and climate. The analysis of the intraspecific patterns of genetic structure in plants would permit inferring the effects of Andean uplift on the evolution and diversification of Neotropical flora. In this study, using microsatellite markers and Bayesian clustering analyses, we report the presence of four genetic clusters for the palm Oenocarpus bataua var. bataua which are located within four biogeographic regions in northwestern South America: (a) Chocó rain forest, (b) Amotape‐Huancabamba Zone, (c) northwestern Amazonian rain forest, and (d) southwestern Amazonian rain forest. We hypothesize that these clusters developed following three genetic diversification events mainly promoted by Andean orogenic events. Additionally, the distinct current climate dynamics among northwestern and southwestern Amazonia may maintain the genetic diversification detected in the western Amazon basin. Genetic exchange was identified between the clusters, including across the Andes region, discarding the possibility of any cluster to diversify as a distinct intraspecific variety. We identified a hot spot of genetic diversity in the northern Peruvian Amazon around the locality of Iquitos. We also detected a decrease in diversity with distance from this area in westward and southward direction within the Amazon basin and the eastern Andean foothills. Additionally, we confirmed the existence and divergence of O. bataua var. bataua from var. oligocarpus in northern South America, possibly expanding the distributional range of the latter variety beyond eastern Venezuela, to the central and eastern Andean cordilleras of Colombia. Based on our results, we suggest that Andean orogenesis is the main driver of genetic structuring and diversification in O. bataua within northwestern South America.
机译:安第斯造山运动通过对景观演化和气候的影响,推动了新热带地区植物高度多样性的发展。对植物遗传结构种内模式的分析将有助于推断安第斯山隆升对新热带植物区系的进化和多样化的影响。在这项研究中,使用微卫星标记和贝叶斯聚类分析,我们报告了八爪掌棕榈Oenocarpus bataua var的四个遗传簇的存在。分布在南美西北部四个生物地理区域内的bataua:(a)Chocó雨林,(b)Amotape-Huancabamba区,(c)西北亚马逊雨林,以及(d)西南亚马逊雨林。我们假设这些集群是在主要由安第斯造山事件推动的三个遗传多样化事件之后发展起来的。此外,西北亚马孙地区和西南亚马孙地区之间当前不同的气候动态可能会维持在西亚马孙河流域发现的遗传多样性。在集群之间(包括整个安第斯山脉地区)确定了遗传交换,从而放弃了任何集群作为独特种内品种进行多样化的可能性。我们在伊基托斯(Iquitos)地区附近的秘鲁北部亚马逊地区发现了遗传多样性的热点。我们还发现,在亚马逊河流域和安第斯山麓东部,从该区域向西和向南的距离随着距离的增加而减少。此外,我们确认了O.bataua var的存在和分歧。 var。的bataua南美洲北部的寡果,可能将后者的分布范围扩大到委内瑞拉东部以外,再到哥伦比亚的安第斯山脉中部和东部。根据我们的结果,我们认为,安第斯造山运动是南美西北部蝙蝠au遗传结构和多样化的主要驱动力。

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