Developments in forensic DNA analysis
Развитие анализа ДНК в судебной экспертизе
2021-04-01
SCID: 54.1/52xhffad
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DNA methylationforensic DNA analysisforensic genetic genealogymassively parallel sequencingprobabilistic genotyping
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Abstract (AI)
The analysis of DNA from biological evidence recovered in the course of criminal investigations can provide very powerful evidence when a recovered profile matches one found on a DNA database or generated from a suspect. However, when no profile match is found, when the amount of DNA in a sample is too low, or the DNA too degraded to be analysed, traditional STR profiling may be of limited value. The rapidly expanding field of forensic genetics has introduced various novel methodologies that enable the analysis of challenging forensic samples, and that can generate intelligence about the donor of a biological sample. This article reviews some of the most important recent advances in the field, including the application of massively parallel sequencing to the analysis of STRs and other marker types, advancements in DNA mixture interpretation, particularly the use of probabilistic genotyping methods, the profiling of different RNA types for the identification of body fluids, the interrogation of SNP markers for predicting forensically relevant phenotypes, epigenetics and the analysis of DNA methylation to determine tissue type and estimate age, and the emerging field of forensic genetic genealogy. A key challenge will be for researchers to consider carefully how these innovations can be implemented into forensic practice to ensure their potential benefits are maximised.
Key Findings
1
DNA methylation analysis can help determine tissue type and estimate age, and forensic genetic genealogy is emerging as a new investigative approach.
2
Massively parallel sequencing enables forensic analysis of STRs and other genetic marker types, expanding capabilities for challenging biological evidence.
3
Probabilistic genotyping methods represent important advances in interpreting complex DNA mixtures.
4
RNA profiling can identify body fluids, while SNP analysis can predict forensically relevant donor phenotypes.
5
Successful forensic implementation of these innovations requires careful consideration to maximize benefits in operational practice.
6
Traditional STR profiling has limited value when DNA profiles do not match databases or suspects, samples contain very little DNA, or DNA is highly degraded.
Research Object
forensic DNA analysis of biological evidence from criminal investigations
Research Subject
recent advances and novel methodologies for analyzing challenging forensic samples and generating intelligence about their biological donors
Publication Details
Publication Date
2021-04-01
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