Easy method for production of a home-made DNA ladder in every laboratory

Background: Molecular DNA markers are one of the essential tools in molecular biology labs with varied applications. In the present study, we suggest an efficient and available strategy to produce molecular size marker in routine laboratories. Materials and Methods: To achieve the desired sizes of...

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Main Authors: Mahdi Abbasian, Hadieh Alsadat Eslampanah Seyedi, Zahra Khalili Boroujeni, Mohammad Reza Mofid
Format: Article
Language:English
Published: Wolters Kluwer Medknow Publications 2015-01-01
Series:Advanced Biomedical Research
Subjects:
PCR
Online Access:http://www.advbiores.net/article.asp?issn=2277-9175;year=2015;volume=4;issue=1;spage=70;epage=70;aulast=Abbasian
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spelling doaj-40d1d4a6b7a2489690647310c86de8b02020-11-25T01:23:24ZengWolters Kluwer Medknow PublicationsAdvanced Biomedical Research2277-91752277-91752015-01-0141707010.4103/2277-9175.153894Easy method for production of a home-made DNA ladder in every laboratoryMahdi AbbasianHadieh Alsadat Eslampanah SeyediZahra Khalili BoroujeniMohammad Reza MofidBackground: Molecular DNA markers are one of the essential tools in molecular biology labs with varied applications. In the present study, we suggest an efficient and available strategy to produce molecular size marker in routine laboratories. Materials and Methods: To achieve the desired sizes of DNA fragments, we recruited PCR and bioinformatics techniques to synthesize 14 DNA fragments ranging from 100 to 3000 bp. Results: Holistic analysis of different parameters in primers design resulted in amplification of fragments in just one PCR program without any by-product and purification step. Our applied method enables researchers to modify amplified DNA fragments by wide range of chemical modifications toward varied applications. Conclusion: Method of home-made DNA ladder production by available ingredients and routine techniques reported in this study can be used in common laboratories for different applications.http://www.advbiores.net/article.asp?issn=2277-9175;year=2015;volume=4;issue=1;spage=70;epage=70;aulast=AbbasianClick chemistryDNA ladderhome-madePCRprimer
collection DOAJ
language English
format Article
sources DOAJ
author Mahdi Abbasian
Hadieh Alsadat Eslampanah Seyedi
Zahra Khalili Boroujeni
Mohammad Reza Mofid
spellingShingle Mahdi Abbasian
Hadieh Alsadat Eslampanah Seyedi
Zahra Khalili Boroujeni
Mohammad Reza Mofid
Easy method for production of a home-made DNA ladder in every laboratory
Advanced Biomedical Research
Click chemistry
DNA ladder
home-made
PCR
primer
author_facet Mahdi Abbasian
Hadieh Alsadat Eslampanah Seyedi
Zahra Khalili Boroujeni
Mohammad Reza Mofid
author_sort Mahdi Abbasian
title Easy method for production of a home-made DNA ladder in every laboratory
title_short Easy method for production of a home-made DNA ladder in every laboratory
title_full Easy method for production of a home-made DNA ladder in every laboratory
title_fullStr Easy method for production of a home-made DNA ladder in every laboratory
title_full_unstemmed Easy method for production of a home-made DNA ladder in every laboratory
title_sort easy method for production of a home-made dna ladder in every laboratory
publisher Wolters Kluwer Medknow Publications
series Advanced Biomedical Research
issn 2277-9175
2277-9175
publishDate 2015-01-01
description Background: Molecular DNA markers are one of the essential tools in molecular biology labs with varied applications. In the present study, we suggest an efficient and available strategy to produce molecular size marker in routine laboratories. Materials and Methods: To achieve the desired sizes of DNA fragments, we recruited PCR and bioinformatics techniques to synthesize 14 DNA fragments ranging from 100 to 3000 bp. Results: Holistic analysis of different parameters in primers design resulted in amplification of fragments in just one PCR program without any by-product and purification step. Our applied method enables researchers to modify amplified DNA fragments by wide range of chemical modifications toward varied applications. Conclusion: Method of home-made DNA ladder production by available ingredients and routine techniques reported in this study can be used in common laboratories for different applications.
topic Click chemistry
DNA ladder
home-made
PCR
primer
url http://www.advbiores.net/article.asp?issn=2277-9175;year=2015;volume=4;issue=1;spage=70;epage=70;aulast=Abbasian
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AT zahrakhaliliboroujeni easymethodforproductionofahomemadednaladderineverylaboratory
AT mohammadrezamofid easymethodforproductionofahomemadednaladderineverylaboratory
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