Development of a multiplex system to assess DNA persistence in taphonomic studies

Muhammad S Nazir1, Sasitaran Iyavoo, Sharizah Alimat

  • 1School of Forensic and Investigative Sciences, University of Central Lancashire, Preston, UK; University of Modern Sciences, Dubai, UAE.

Electrophoresis
|December 7, 2013
PubMed

Insights

This study presents a new PCR multiplex for assessing DNA degradation and inhibition, using human, pig, and rabbit DNA. The method accurately measures DNA persistence in tissues, crucial for forensic identification in mass disasters.

Area of Science:

  • Forensic Science
  • Molecular Biology
  • Taphonomy

Background:

  • Assessing DNA degradation and PCR inhibition is critical for forensic investigations.
  • Taphonomic research requires reliable methods to study DNA persistence in various tissues.
  • Existing methods may not adequately differentiate between DNA degradation and PCR inhibition.

Purpose of the Study:

  • To develop a multiplex PCR assay for simultaneous assessment of DNA degradation and PCR inhibition.
  • To enable the study of human DNA persistence using pig and rabbit as experimental models.
  • To evaluate DNA persistence in soft tissues under environmental conditions.

Main Methods:

  • Designed primers targeting conserved regions of the recombination activation gene (RAG-1) in human, pig, and rabbit.
  • Developed a multiplex PCR assay amplifying human, pig, rabbit, and bacterial DNA.
  • Utilized pig models exposed to environmental conditions to assess DNA persistence in muscle tissue.
  • Measured DNA persistence using time and accumulated degree days (ADD).

Main Results:

  • The multiplex PCR assay demonstrated robust amplification from 0.3 ng of template DNA across all three species.
  • DNA in pig muscle tissue persisted for over 24 days (summer, 295 ADD) and 77 days (winter, 494 ADD).
  • Full DNA profiles were generated from samples with significant environmental exposure.

Conclusions:

  • The developed multiplex PCR is effective for differentiating DNA degradation from PCR inhibition.
  • This method provides valuable insights into DNA persistence in soft tissues, aiding forensic identification.
  • Pig models effectively simulate human DNA persistence studies in taphonomic research.

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