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Using archaeogenomic and computational approaches to unravel the history of local adaptation in crops

机译:使用考古基因组学和计算方法来揭示农作物局部适应的历史

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摘要

Our understanding of the evolution of domestication has changed radically in the past 10 years, from a relatively simplistic rapid origin scenario to a protracted complex process in which plants adapted to the human environment. The adaptation of plants continued as the human environment changed with the expansion of agriculture from its centres of origin. Using archaeogenomics and computational models, we can observe genome evolution directly and understand how plants adapted to the human environment and the regional conditions to which agriculture expanded. We have applied various archaeogenomics approaches as exemplars to study local adaptation of barley to drought resistance at Qasr Ibrim, Egypt. We show the utility of DNA capture, ancient RNA, methylation patterns and DNA from charred remains of archaeobotanical samples from low latitudes where preservation conditions restrict ancient DNA research to within a Holocene timescale. The genomic level of analyses that is now possible, and the complexity of the evolutionary process of local adaptation means that plant studies are set to move to the genome level, and account for the interaction of genes under selection in systems-level approaches. This way we can understand how plants adapted during the expansion of agriculture across many latitudes with rapidity.
机译:在过去的10年中,我们对驯化进化的理解已经发生了根本性的变化,从相对简单的快速起源场景到旷日持久的复杂过程,在此过程中植物适应了人类环境。随着人类环境随着农业从其起源地的扩展而变化,植物的适应仍在继续。使用考古学和计算模型,我们可以直接观察基因组进化,并了解植物如何适应人类环境和农业向其扩展的区域条件。我们已应用各种考古基因组学方法作为示例来研究大麦对埃及Qasr Ibrim的抗旱性的适应性。我们展示了DNA捕获,古代RNA,甲基化模式和来自低纬度地区考古植物标本的烧焦残留物的DNA的实用性,在这些地区,保存条件将古代DNA研究限制在全新世时期内。现在可以进行基因组分析,以及局部适应性进化过程的复杂性,意味着植物研究将转向基因组水平,并考虑在系统级方法中选择基因的相互作用。这样,我们可以了解植物如何在许多纬度的农业扩张中快速适应。

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