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A Minimally-Invasive Method for Sampling Human Petrous Bones From the Cranial Base for Ancient DNA Analysis

机译:一种从颅底采样人类粗骨的微创方法,用于古代DNA分析

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摘要

Ancient DNA (aDNA) research involves invasive and destructive sampling procedures that are often incompatible with anthropological, anatomical, and bioarcheological analyses requiring intact skeletal remains. The osseous labyrinth inside the petrous bone has been shown to yield higher amounts of endogenous DNA than any other skeletal element; however, accessing this labyrinth in cases of a complete or reconstructed skull involves causing major structural damage to the cranial vault or base. Here, we describe a novel cranial base drilling method (CBDM) for accessing the osseous labyrinth from the cranial base that prevents damaging the surrounding cranial features, making it highly complementary to morphological analyses. We assessed this method by comparing the aDNA results from one petrous bone processed using our novel method to its pair, which was processed using established protocols for sampling disarticulated petrous bones. We show a decrease in endogenous DNA and molecular copy numbers when the drilling method is used; however, we also show that this method produces more endogenous DNA and higher copy numbers than any postcranial bone. Our results demonstrate that this minimally-invasive method reduces the loss of genetic data associated with the use of other skeletal elements and enables the combined craniometric and genetic study of individuals with archeological, cultural, and evolutionary value.
机译:古代DNA(aDNA)研究涉及侵入性和破坏性采样程序,这些程序通常与需要完整骨骼遗骸的人类学,解剖学和生物考古学分析不兼容。已显示,在石骨内的骨迷路比任何其他骨骼元素都能产生更高数量的内源性DNA。但是,在完整或重建的颅骨的情况下进入该迷宫会导致颅顶或基底的重大结构损坏。在这里,我们描述了一种新颖的颅底钻孔方法(CBDM),用于从颅底进入骨迷路,可防止损坏周围的颅骨特征,使其与形态分析高度互补。我们通过比较使用我们的新方法处理过的一块骨头的aDNA结果与其对进行比较,评估了该方法,该结果使用已建立的协议对松散的骨头进行采样。当使用钻孔方法时,我们显示出内源性DNA和分子拷贝数的减少;但是,我们还表明,与任何颅骨相比,该方法可产生更多的内源性DNA和更高的拷贝数。我们的结果表明,这种微创方法可减少与其他骨骼元素使用相关的遗传数据的丢失,并能够对具有考古,文化和进化价值的个体进行颅骨学和遗传学研究。

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