Matematicheskaya Biologiya i Bioinformatika
RUS  ENG    JOURNALS   PEOPLE   ORGANISATIONS   CONFERENCES   SEMINARS   VIDEO LIBRARY   PACKAGE AMSBIB  
General information
Latest issue
Archive
Impact factor

Search papers
Search references

RSS
Latest issue
Current issues
Archive issues
What is RSS



Mat. Biolog. Bioinform.:
Year:
Volume:
Issue:
Page:
Find






Personal entry:
Login:
Password:
Save password
Enter
Forgotten password?
Register


Matematicheskaya Biologiya i Bioinformatika, 2022, Volume 17, Issue 2, Pages 250–265
DOI: https://doi.org/10.17537/2022.17.250
(Mi mbb488)
 

This article is cited in 3 scientific papers (total in 3 papers)

Bioinformatics

Application of the Aho–Corasick algorithm for the selection of primers for loop isothermal amplification

L. U. Akhmetzianovaab, T. M. Davletkulova, R. R. Garafutdinovc, I. M. Gubaydullina

a Ufa State Petroleum Technical University, Ufa
b Institute of Petrochemistry and Catalysis of Russian Academy of Sciences, Ufa
c Institute of Petrochemistry and Catalysis of Russian Academy of Sciences
Full-text PDF (877 kB) Citations (3)
References:
Abstract: This paper presents a program which allows user to do primer design for identifying DNA target site or a whole genome with a goal of performing loopmediated isothermal amplification. The review of the most popular existing primer design programs for LAMP is carried out.
Recommended conditions are presented in the paper. They are required to be taken in consideration during the process of primer design for loop-mediated isothermal amplification. These are the conditions: primer’s length, GC-content, amplicon average size, annealing temperature and distance between primers.
A search for primer positions in genome is needed since loop-mediated isothermal amplification requires primer kits that consist of 6 primers in order for primer design to be done. The Aho–Corasick algorithm was proposed for a search implementation. This algorithm is capable of simultaneous search for a number of sample (primer) entries in a longer sequence (a fragment or a whole genome).
This software allows the search for primers in genomes of various length and it groups primers by kits, which in turn could be applied in laboratory experiments. These kits are formed according both to the recommended conditions of primer selection for performing loop-mediated isothermal amplification and to the initial conditions, which are determined by the user before the process. After that, the user may choose the best option for their case from a list of primer kits that are being created as a result of performed computer analysis. The test run of the program was done during the search for a specific primer kit that is meant to be used for performing loop-mediated isothermal amplification of genome with a goal of detection of novel coronavirus infection SARS-CoV-2, a virus that triggers a dangerous disease, COVID-19.
The software was developed using Python with BioPython and Pyahocorasick libraries and available at the link: https://cloud.mail.ru/public/C7av/QCkSiUomz.
Key words: search for a pattern in a string, Aho–Korasik algorithm, Python, primers design, computer modeling, LAMP.
Funding agency Grant number
Russian Foundation for Basic Research 20-37-90091
Received 26.06.2022, 03.10.2022, Published 14.11.2022
Bibliographic databases:
Document Type: Article
Language: Russian
Citation: L. U. Akhmetzianova, T. M. Davletkulov, R. R. Garafutdinov, I. M. Gubaydullin, “Application of the Aho–Corasick algorithm for the selection of primers for loop isothermal amplification”, Mat. Biolog. Bioinform., 17:2 (2022), 250–265
Citation in format AMSBIB
\Bibitem{AkhDavGar22}
\by L.~U.~Akhmetzianova, T.~M.~Davletkulov, R.~R.~Garafutdinov, I.~M.~Gubaydullin
\paper Application of the Aho--Corasick algorithm for the selection of primers for loop isothermal amplification
\jour Mat. Biolog. Bioinform.
\yr 2022
\vol 17
\issue 2
\pages 250--265
\mathnet{http://mi.mathnet.ru/mbb488}
\crossref{https://doi.org/10.17537/2022.17.250}
\elib{https://elibrary.ru/item.asp?id=50158432}
Linking options:
  • https://www.mathnet.ru/eng/mbb488
  • https://www.mathnet.ru/eng/mbb/v17/i2/p250
  • This publication is cited in the following 3 articles:
    Citing articles in Google Scholar: Russian citations, English citations
    Related articles in Google Scholar: Russian articles, English articles
    Statistics & downloads:
    Abstract page:81
    Full-text PDF :43
    References:23
     
      Contact us:
     Terms of Use  Registration to the website  Logotypes © Steklov Mathematical Institute RAS, 2024