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重新审视布里格斯古代DNA损伤模型:一种估计死后损伤的快速最大似然方法。

Revisiting the Briggs Ancient DNA Damage Model: A Fast Maximum Likelihood Method to Estimate Post-Mortem Damage.

作者信息

Zhao Lei, Henriksen Rasmus Amund, Ramsøe Abigail, Nielsen Rasmus, Korneliussen Thorfinn Sand

机构信息

School of Ecological and Environmental Sciences, East China Normal University, Shanghai, China.

Section for GeoGenetics, Globe Institute, University of Copenhagen, Copenhagen K, Denmark.

出版信息

Mol Ecol Resour. 2025 Jan;25(1):e14029. doi: 10.1111/1755-0998.14029. Epub 2024 Oct 21.

Abstract

One essential initial step in the analysis of ancient DNA is to authenticate that the DNA sequencing reads are actually from ancient DNA. This is done by assessing if the reads exhibit typical characteristics of post-mortem damage (PMD), including cytosine deamination and nicks. We present a novel statistical method implemented in a fast multithreaded programme, ngsBriggs that enables rapid quantification of PMD by estimation of the Briggs ancient damage model parameters (Briggs parameters). Using a multinomial model with maximum likelihood fit, ngsBriggs accurately estimates the parameters of the Briggs model, quantifying the PMD signal from single and double-stranded DNA regions. We extend the original Briggs model to capture PMD signals for contemporary sequencing platforms and show that ngsBriggs accurately estimates the Briggs parameters across a variety of contamination levels. Classification of reads into ancient or modern reads, for the purpose of decontamination, is significantly more accurate using ngsBriggs than using other methods available. Furthermore, ngsBriggs is substantially faster than other state-of-the-art methods. ngsBriggs offers a practical and accurate method for researchers seeking to authenticate ancient DNA and improve the quality of their data.

摘要

古代DNA分析的一个重要初始步骤是验证DNA测序读数确实来自古代DNA。这是通过评估读数是否表现出死后损伤(PMD)的典型特征来完成的,包括胞嘧啶脱氨基和切口。我们提出了一种在快速多线程程序ngsBriggs中实现的新颖统计方法,该方法能够通过估计布里格斯古代损伤模型参数(布里格斯参数)来快速量化PMD。使用具有最大似然拟合的多项模型,ngsBriggs准确估计布里格斯模型的参数,量化来自单链和双链DNA区域的PMD信号。我们扩展了原始的布里格斯模型以捕获当代测序平台的PMD信号,并表明ngsBriggs在各种污染水平下都能准确估计布里格斯参数。为了净化目的,使用ngsBriggs将读数分类为古代或现代读数比使用其他现有方法要准确得多。此外,ngsBriggs比其他最先进的方法要快得多。对于寻求验证古代DNA并提高其数据质量的研究人员来说,ngsBriggs提供了一种实用且准确的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a995/11646307/6b60ec87b3b4/MEN-25-e14029-g005.jpg

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