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High-throughput Sequencing of Trace Quantities of Soil Provides Reproducible and Discriminative Fungal DNA Profiles

机译:痕量土壤的高通量测序提供了可再现和区分性的真菌DNA谱

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摘要

High-throughput sequencing (HTS) offers improved resolution between forensic soil samples by characterizing individual taxa present; however, the heterogeneous distribution of taxa in soils, and limited quantity of material available, may hinder the reliability of HTS in casework. Using HTS of the internal transcribed spacer, we examined the effect of soil mass (50, 150, and 250 mg) on fungal DNA profiles, focusing on reproducibility and discriminatory power between close proximity soils, and samples with similar textural classification. The results show that reduced soil mass had no significant effect on sample differentiation and that 150 mg soil provides the most reproducible DNA profiles across different soil types. In addition, Ascomycota was identified as a robust fungal target for forensic intelligence as this phylum was detected consistently across all samples regardless of sample quantity. Overall, this study highlights the value of trace quantities of soil for use in forensic casework.
机译:高通量测序(HTS)通过表征存在的单个分类单元来提高法医土壤样品之间的分辨率;然而,分类单元在土壤中的分布不均,以及可用物质的数量有限,可能会妨碍HTS在案例研究中的可靠性。我们使用内部转录间隔物的高温超导技术,研究了土壤质量(50、150和250 mg)对真菌DNA分布的影响,重点研究了近邻土壤与具有相似质地分类的样品之间的重现性和鉴别力。结果表明,减少的土壤质量对样品的分化没有显着影响,并且150 mg的土壤在不同土壤类型中提供的DNA谱图可重复性最高。另外,子囊菌被鉴定为法医情报的强有力的真菌靶标,因为在所有样本中均一致地检测到该门,而与样本量无关。总的来说,这项研究突出了用于法医案例研究的微量土壤的价值。

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