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Ecotypic differentiation under farmers selection: Molecular insights into the domestication of Pachyrhizus Rich. ex DC. (Fabaceae) in the Peruvian Andes

机译:农民选择下的生态型分化:丰富的Pachyrhizus Rich驯化的分子见解。前DC。 (豆科)在秘鲁安第斯山脉

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摘要

Understanding the distribution of crop genetic diversity in relation to environmental factors can give insights into the eco‐evolutionary processes involved in plant domestication. Yam beans (Pachyrhizus Rich. ex DC.) are leguminous crops native to South and Central America that are grown for their tuberous roots but are seed‐propagated. Using a landscape genetic approach, we examined correlations between environmental factors and phylogeographic patterns of genetic diversity in Pachyrhizus landrace populations. Molecular analyses based on chloroplast DNA sequencing and a new set of nuclear microsatellite markers revealed two distinct lineages, with strong genetic differentiation between Andean landraces (lineage A) and Amazonian landraces (lineage B). The comparison of different evolutionary scenarios for the diversification history of yam beans in the Andes using approximate Bayesian computation suggests that Pachyrhizus ahipa and Pachyrhizus tuberosus share a progenitor‐derivative relationship, with environmental factors playing an important role in driving selection for divergent ecotypes. The new molecular data call for a revision of the taxonomy of Pachyrhizus but are congruent with paleoclimatic and archeological evidence, and suggest that selection for determinate growth was part of ecophysiological adaptations associated with the diversification of the P. tuberosus–P. ahipa complex during the Mid‐Holocene.
机译:了解与环境因素相关的农作物遗传多样性的分布,可以深入了解植物驯化中涉及的生态进化过程。山药豆(Pachyrhizus Rich。ex DC。)是南美和中美洲原产的豆类作物,以块茎根生长,但种子繁殖。我们使用景观遗传学方法,检查了环境因素与Pachyrhizus地方品种种群遗传多样性的系统地理模式之间的相关性。基于叶绿体DNA测序和一组新的核微卫星标记的分子分析揭示了两个不同的谱系,在安第斯地方种(谱系A)和亚马逊族种(谱系B)之间有很强的遗传分化。使用近似贝叶斯计算对安第斯山脉山药豆多样化历史的不同进化情景进行的比较表明,Pachyrhizus ahipa和Pachyrhizus tuberosus具有祖先-衍生关系,环境因素在驱动选择不同生态型中起着重要作用。新的分子数据要求修订Pachyrhizus的分类学,但与古气候和考古学证据相一致,并建议确定生长的选择是与P.tuberosus-P多样化相关的生态生理适应的一部分。全新世时期的ahipa复合体。

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