The Applied Biosystems Precision ID mtDNA Control Region Panel is an innovative next-generation sequencing (NGS) approach to mitochondrial DNA (mtDNA)Read more
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Catalog number A31443
Price (USD)/ 96 reactions
1,238.00
-
Add to cart
Price (USD)/ 96 reactions
1,238.00
Add to cart
Precision ID mtDNA Control Region Panel
Catalog numberA31443
Price (USD)/ 96 reactions
1,238.00
-
Add to cart
The Applied Biosystems Precision ID mtDNA Control Region Panel is an innovative next-generation sequencing (NGS) approach to mitochondrial DNA (mtDNA) analysis specifically developed for forensic applications. It is a 2-pool multiplex assay that targets the 1.2 kb control region of the human mitochondrial genome, which encompasses HV-I,II, and III (see figure below). This panel was constructed using a novel, innovative tiling approach to obtain optimal coverage data from highly compromised, degraded samples such as hair shafts, teeth, and bones that uses massively parallel sequencing built on Ion AmpliSeq technology. This mtDNA tiling approach was also used to construct the Precision ID mtDNA Whole Genome Panel (Cat. No. A30938).Simplicity • Small amplicons enable control region coverage of degraded samples • As little as 2 pg of input • Automated library and template preparation using the Ion Chef System • Optimized analysis using Converge software
Scalability • Multiple chip formats to meet a range of sample throughput requirements • Ability to multiplex up to 56 samples*
Speed • Less than 45 minutes of hands-on time for a DNA-to-data targeted sequencing workflow* • Total sample-to-data time of less than 2 days*
Mitochondrial DNA analysis is a key DNA detection method used by forensic scientists when samples such as teeth, bones, and hairs without a follicle (root) are collected from crime scenes, missing person remains, or disaster areas that have been exposed to high environmental stress where nuclear DNA is insufficient in quality and/or quantity. Balanced coverage is achieved using a small amplicon design, optimized with the inclusion of degenerate primers in the Precision ID mtDNA Control Region Panel, which increases success with degraded and low template DNA samples. This panel can be used with all types of forensic samples, including ancient samples as well as clinical research specimens.
Additionally, full automation of library and template preparation of the Precision ID mtDNA Control Region Panel using the Ion Chef System and sequencing on the Ion GeneStudio series systems can reduce variation observed with manual workflows and streamline user-instrument interaction with less than 45 minutes of hands-on time. The Converge NGS Analysis module automates mtDNA analysis, leveraging optimized base calling, phylogenetically-guided alignment, and quality filtering algorithms specific for the Precision ID mtDNA panels. Variant calling including, including heteroplasmy detection can be easily optimized within the software features. These solutions give forensic DNA laboratories the flexibility to detect variation within noncoding control sequences using the Precision ID mtDNA Control Region Panel or take advantage of the genetic diversity of full mtGenome sequence data using the Precision ID mtDNA Whole Genome Panel.
NOTE: The Precision ID mtDNA Control Region Panel provides sufficient material to perform 96 reactions using the manual Precision ID Library kit (Cat. No. A26435) or 48 reactions using the automated Precision ID DL8 Library Kit (Cat. No. A33212).
* Using the Precision ID NGS System for Human Identification
Specifications
Sample TypeDNA
Sequencing TypeGenome and DNA Sequencing
For Use With (Equipment)Ion GeneStudio S5 System, Ion PGM™ System, Ion S5™ XL System, Ion OneTouch™ 2 System, Ion Chef™ System
For Use With (Application)Forensics
LibrariesTargeted Sequencing Library
Product TypePrecision ID mtDNA Control Region Panel
Quantity96 reactions
Shipping ConditionDry Ice
Workflow StepLibrary Generation
Unit Size96 reactions
Contents & Storage
2 tubes (Pool 1 and Pool 2) Precision ID mtDNA Control Region Panel Store at -5 to -30°C.