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A High-Throughput Ancient DNA Extraction Method for Large-Scale Sample Screening

delete2025-02-06
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OA
AI
A
Alexandre Gilardet
E
Edana Lord
G
Gonzalo Oteo‐García
G
Georgios Xenikoudakis
K
Katerina Douka
M
Matthew J. Wooller
T
Timothy B. Rowe
M
Michael D. Martin
M
Mathilde Le Moullec
М
М. М. Анисимов
P
Peter D. Heintzman *
L
Love Dalén *
DOI:10.1111/1755-0998.14077delete
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Abstract

Abstract

En 中文
Large-scale DNA screening of palaeontological and archaeological collections remains a limiting and costly factor for ancient DNA studies. Several DNA extraction protocols are routinely used in ancient DNA laboratories and have even been automated on robotic platforms. Robots offer a solution for high-throughput screening but the costs, as well as necessity for trained technicians and engineers, can be prohibitive for some laboratories. Here, we present a high-throughput alternative to robot-based ancient DNA extraction using a 96-column plate. When compared to routine single MinElute columns, we retrieved highly similar endogenous DNA contents, an important metric in ancient DNA screening. Mitogenomes with a coverage depth greater than 0.1x could be generated and allowed for taxonomic assignment. However, average fragment lengths, DNA damage and library complexities significantly differed between methods but these differences became nonsignificant after modification of our library purification protocol. Our high-throughput extraction method allows generation of 96 extracts within approximately 4 hours of laboratory work while bringing the cost down by similar to 39% compared to using single columns. Additionally, we formally demonstrate that the addition of Tween-20 during the elution step results in higher complexity libraries, thereby enabling higher genome coverage for the same sequencing effort.
Keywords:
96-column plate
ancient DNA
DNA extraction
high-throughput
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