A framework for optimising arthropod DNA quality and quantity for modern sequencing tools using hard ticks (Ixodidae)
X W Barton1,2, S S Tobe3,4, J B Fontaine5
1School of Medical, Molecular and Forensic Sciences, College of Environmental and Life Sciences, Murdoch University, Perth, 6150, Australia. x.barton@murdoch.edu.au.
Parasitology Research
|January 6, 2026
Summary
Optimizing DNA extraction from small arthropods is crucial for advanced sequencing. The Qiagen MagAttract High Molecular Weight Kit and specific tissue preparation methods yield higher quality DNA, essential for genomic studies.
Area of Science:
- Genomics
- Molecular Biology
- Arthropod Research
Background:
- Advanced sequencing technologies demand high-quality DNA input and integrity.
- Extracting pure, endogenous DNA from small arthropods with mixed DNA sources (arthropod, host, microbiome) presents a significant challenge.
Purpose of the Study:
- To optimize DNA extraction methods for small arthropods, focusing on yield, quality, and composition.
- To identify the best combination of tissue types, disruption methods, and extraction kits for DNA suitable for advanced sequencing.
Main Methods:
- Evaluated three tissue types: Whole, Bisected, and Legs.
- Assessed three disruption methods: Undisrupted, Sliced, and liquid nitrogen bead Homogenisation.
- Compared two DNA extraction kits: Qiagen DNeasy Blood & Tissue and MagAttract High Molecular Weight.
Main Results:
- The MagAttract HMW kit increased large DNA fragments (20-48.5 kbp) 11-fold compared to the DNeasy kit.
- Aggressive homogenization yielded more short DNA fragments (97%, 1-10 kbp).
- Whole-Homogenised specimens gave the highest DNA concentration (198 ng µL⁻¹), while Bisected-Undisrupted specimens had more large fragments (3.15%).
Conclusions:
- Selecting appropriate DNA extraction kits and methods is vital for obtaining optimal DNA quality for advanced sequencing.
- Provides guidelines for DNA extraction from small arthropods (10-20 mg), considering DNA quantity, quality, and composition.


