





































CAJGH_Template


 

 

New articles in this journal are licensed under a Creative Commons Attribution 4.0 United States License. 

 

 

This journal is published by the University Library System of the University of Pittsburgh as part  

of its D-Scribe Digital Publishing Program and is cosponsored by the University of Pittsburgh Press. 

 

 

 

 

 

 

 
 

 

 

 

 

ABO Blood Group Genotyping by 

Real-time PCR in Kazakh 

Population 

 

Pavel Tarlykov, Daniyar 

Raiymbek, Elena Zholdybayeva, 

Erlan Ramanculov 
 
National Center for Biotechnology, 
Astana, Kazakhstan 

 

 

 

 

 

 

 

 

 

 

Vol. 3, Suppl. (2014)   |   ISSN 2166-7403 (online)    

DOI 10.5195/cajgh.2014.177   |   http://cajgh.pitt.edu 

http://www.library.pitt.edu/
http://www.pitt.edu/
http://www.library.pitt.edu/articles/digpubtype/index.html
http://www.upress.pitt.edu/upressIndex.aspx
http://creativecommons.org/licenses/by/3.0/us/


 

 

TARLYKOV 

 

 

This work is licensed under a Creative Commons Attribution 4.0 United States License. 

 

This journal is published by the University Library System of the University of Pittsburgh as part  

of its D-Scribe Digital Publishing Program and is cosponsored by the University of Pittsburgh Press. 

 

Central Asian Journal of Global Health 

Volume 3, Suppl. (2014)  |  ISSN 2166-7403 (online)  |  DOI 10.5195/cajgh.2014.177  |  http://cajgh.pitt.edu 

  

 

Abstract 

Introduction. ABO blood group genotyping is a new technology in hematology that helps prevent adverse transfusion reactions 

in patients. Identification of antigens on the surface of red blood cells is based on serology; however, genotyping employs a different 

strategy and is aimed directly at genes that determine the surface proteins. ABO blood group genotyping by real-time PCR has 

several crucial advantages over other PCR-based techniques, such as high rapidity and reliability of analysis. The purpose of this 

study was to examine nucleotide substitutions differences by blood types using a PCR-based method on Kazakh blood donors. 

Methods. The study was approved by the Ethics Committee of the National Center for Biotechnology. Venous blood samples from 

369 healthy Kazakh blood donors, whose blood types had been determined by serological methods, were collected after obtaining 

informed consent. The phenotypes of the samples included blood group A (n = 99), B (n = 93), O (n = 132), and AB (n = 45). 

Genomic DNA was extracted using a salting-out method. PCR products of ABO gene were sequenced on an ABI 3730xl DNA 

analyzer (Applied Biosystems). The resulting nucleotide sequences were compared and aligned against reference sequence 

NM_020469.2. Real-time PCR analysis was performed on CFX96 Touch™ Real-Time PCR Detection System (BioRad). 

Results. Direct sequencing of ABO gene in 369 samples revealed that the vast majority of nucleotide substitutions that change the 

ABO phenotype were limited to exons 6 and 7 of the ABO gene at positions 261, 467, 657, 796, 803, 930 and 1,060. However, 

genotyping of only three of them (261, 796 and 803) resulted in identification of major ABO genotypes in the Kazakh population. 

As a result, TaqMan probe based real-time PCR assay for the specific detection of genotypes 261, 796 and 803 was developed. The 

assay did not take into account several other mutations that may affect the determination of blood group, because they have a low 

occurrence rate and therefore have not been found in the population sample. 

Conclusion. Real-time PCR based method for fast and reliable ABO genotyping was developed. This assay may be used as a 

complement to classic serological blood typing. 

Keywords: genotyping, real-time PCR, blood groups, Kazakh population 

 

 

 

http://www.library.pitt.edu/
http://www.pitt.edu/
http://www.library.pitt.edu/articles/digpubtype/index.html
http://www.upress.pitt.edu/upressIndex.aspx

