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New insights on lake sediment DNA from the catchment: importance of taphonomic and analytical issues on the record quality

机译:来自集水区湖泥沙DNA的新见解:Tawhonomic和分析问题对记录质量的重要性

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Over the last decade, an increasing number of studies have used lake sediment DNA to trace past landscape changes, agricultural activities or human presence. However, the processes responsible for lake sediment formation and sediment properties might affect DNA records via taphonomic and analytical processes. It is crucial to understand these processes to ensure reliable interpretations for "palaeo" studies. Here, we combined plant and mammal DNA metabarcoding analyses with sedimentological and geochemical analyses from three lake-catchment systems that are characterised by different erosion dynamics. The new insights derived from this approach elucidate and assess issues relating to DNA sources and transfer processes. The sources of eroded materials strongly affect the "catchment-DNA" concentration in the sediments. For instance, erosion of upper organic and organo-mineral soil horizons provides a higher amount of plant DNA in lake sediments than deep horizons, bare soils or glacial flours. Moreover, high erosion rates, along with a well-developed hydrographic network, are proposed as factors positively affecting the representation of the catchment flora. The development of open and agricultural landscapes, which favour the erosion, could thus bias the reconstructed landscape trajectory but help the record of these human activities. Regarding domestic animals, pastoral practices and animal behaviour might affect their DNA record because they control the type of source of DNA ("point" vs. "diffuse").
机译:在过去的十年中,越来越多的研究已经使用苏域沉积物DNA追踪过去的景观变化,农业活动或人类存在。然而,负责湖泊沉积物和沉积物特性负责的过程可能通过TaphOnalomic和分析过程影响DNA记录。了解这些流程至关重要,以确保对“帕拉诺”研究的可靠解释。在此,我们组合植物和哺乳动物DNA地区的分析与三个湖区集水系统的沉积学和地球化学分析,该分析具有不同的侵蚀动态。这种方法的新见解阐明并评估了与DNA来源和转移过程有关的问题。侵蚀材料的来源强烈影响沉积物中的“集水DNA”浓度。例如,上部有机和有机矿物土壤视野的侵蚀在沉积物中提供了较高的植物DNA,而不是深的地平线,裸土壤或冰酸面粉。此外,提出了高侵蚀率以及发达的水文网络,作为积极影响集水区植物的代表性的因素。因此,有利于侵蚀的开放和农业景观的发展可以偏离重建的景观轨迹,但有助于这些人类活动的记录。关于家畜,牧区实践和动物行为可能会影响他们的DNA记录,因为它们控制DNA的类型(“点”与“弥漫”)。

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