Application of high-resolution, massively parallel pyrosequencing for estimation of haplotypes and gene expression levels of swine leukocyte antigen (SLA) class I genes

The swine is an important animal model for allo- and xeno-transplantation donor studies, which necessitates an extensive characterization of the expression and sequence variations within the highly polygenic and polymorphic swine leukocyte antigen ( SLA ) region. Massively parallel pyrosequencing is...

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Veröffentlicht in:Immunogenetics (New York) 2012-03, Vol.64 (3), p.187-199
Hauptverfasser: Kita, Yuki F., Ando, Asako, Tanaka, Keiko, Suzuki, Shingo, Ozaki, Yuki, Uenishi, Hirohide, Inoko, Hidetoshi, Kulski, Jerzy K., Shiina, Takashi
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Sprache:eng
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Zusammenfassung:The swine is an important animal model for allo- and xeno-transplantation donor studies, which necessitates an extensive characterization of the expression and sequence variations within the highly polygenic and polymorphic swine leukocyte antigen ( SLA ) region. Massively parallel pyrosequencing is potentially an effective new 2ndGen method for simultaneous high-throughput genotyping and detection of SLA class I gene expression levels. In this study, we compared the 2ndGen method using the Roche Genome Sequencer 454 FLX with the conventional method using sub-cloning and Sanger sequencing to genotype SLA class I genes in five pigs of the Clawn breed and four pigs of the Landrace breed. We obtained an average of 10.4 SLA class I sequences per pig by the 2ndGen method, consistent with the inheritance data, and an average of only 6.0 sequences by the conventional method. We also performed a correlation analysis between the sequence read numbers obtained by the 2ndGen method and the relative expression values obtained by quantitative real-time PCR analysis at the allele level. A significant correlation coefficient ( r  = 0.899, P  
ISSN:0093-7711
1432-1211
DOI:10.1007/s00251-011-0572-2