Massively parallel sequencing techniques for forensics: A review
Методы массивно-параллельного секвенирования в судебной экспертизе: обзор
2018-08-13
SCID: 54.1/9u9ezefy
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forensic DNA analysismassively parallel sequencingnext-generation sequencingshort tandem repeatssingle-nucleotide polymorphisms
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Abstract (AI)
DNA sequencing, starting with Sanger's chain termination method in 1977 and evolving into the next generation sequencing (NGS) techniques of today that employ massively parallel sequencing (MPS), has become essential in application areas such as biotechnology, virology, and medical diagnostics. Reflected by the growing number of articles published over the last 2-3 years, these techniques have also gained attention in the forensic field. This review contains a brief description of first, second, and third generation sequencing techniques, and focuses on the recent developments in human DNA analysis applicable in the forensic field. Relevance to the forensic analysis is that besides generation of standard STR-profiles, DNA repeats can also be sequenced to look for polymorphisms. Furthermore, additional SNPs can be sequenced to acquire information on ancestry, paternity or phenotype. The current MPS systems are also very helpful in cases where only a limited amount of DNA or highly degraded DNA has been secured from a crime scene. If enough autosomal DNA is not present, mitochondrial DNA can be sequenced for maternal lineage analysis. These developments clearly demonstrate that the use of NGS will grow into an indispensable tool for forensic science.
Key Findings
1
Current MPS systems are useful for analyzing limited or highly degraded crime-scene DNA, including mitochondrial DNA for maternal lineage analysis.
2
MPS can generate standard STR profiles while also sequencing repeat regions to identify additional polymorphisms.
3
Massively parallel sequencing (MPS) has recently gained increasing attention in forensic DNA analysis as next-generation sequencing technologies advance.
4
Sequencing additional SNPs can provide forensic information about ancestry, paternity, and phenotype.
5
The review concludes that next-generation sequencing is likely to become an indispensable tool in forensic science.
Research Object
Massively parallel sequencing (MPS) techniques applied to human DNA analysis in forensic investigations
Research Subject
Forensic genetic information obtained through MPS, including STR profiling, DNA-repeat polymorphism detection, ancestry, paternity and phenotype inference, and lineage analysis from limited or degraded DNA
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2018-08-13
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