Primer3—new capabilities and interfaces

Primer3 — новые возможности и интерфейсы
Maido Remm, Brant C. Faircloth, Ioana Cutcutache, Steve Rozen, Andreas Untergasser, Triinu Kõressaar, Jian Ye
2012-06-21

PCR primer designPrimer3genome-scale primer specificitymelting temperature predictionthermodynamic models
Polymerase chain reaction (PCR) is a basic molecular biology technique with a multiplicity of uses, including deoxyribonucleic acid cloning and sequencing, functional analysis of genes, diagnosis of diseases, genotyping and discovery of genetic variants. Reliable primer design is crucial for successful PCR, and for over a decade, the open-source Primer3 software has been widely used for primer design, often in high-throughput genomics applications. It has also been incorporated into numerous publicly available software packages and web services. During this period, we have greatly expanded Primer3's functionality. In this article, we describe Primer3's current capabilities, emphasizing recent improvements. The most notable enhancements incorporate more accurate thermodynamic models in the primer design process, both to improve melting temperature prediction and to reduce the likelihood that primers will form hairpins or dimers. Additional enhancements include more precise control of primer placement-a change motivated partly by opportunities to use whole-genome sequences to improve primer specificity. We also added features to increase ease of use, including the ability to save and re-use parameter settings and the ability to require that individual primers not be used in more than one primer pair. We have made the core code more modular and provided cleaner programming interfaces to further ease integration with other software. These improvements position Primer3 for continued use with genome-scale data in the decade ahead.
1
A more modular core and cleaner programming interfaces facilitate integration with other software and support genome-scale applications.
2
More precise control over primer placement supports improved primer specificity, including through use of whole-genome sequences.
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New thermodynamic models improve melting-temperature prediction and reduce the likelihood of primer hairpin and dimer formation.
4
Primer3 has substantially expanded its functionality after more than a decade as a widely used open-source PCR primer-design tool.
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Usability features enable saving and reusing parameter settings and prevent individual primers from being assigned to multiple primer pairs.

Primer3 software for PCR primer design

Primer3’s capabilities and improvements in thermodynamic modeling, primer placement control, usability, modularity, and software integration

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2012-06-21
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Authors
Maido Remm
Brant C. Faircloth
Ioana Cutcutache
Steve Rozen
Andreas Untergasser
Triinu Kõressaar
Jian Ye
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