KLUMPLEROVA, Marie, Petra SPLICHALOVA, Jan OPPELT, Jan FUTAS, Aneta KOHUTOVÁ, Petra MUSILOVA, Svatava KUBICKOVA, Roman VODICKA, Ludovic ORLANDO and Petr HORIN. Genetic diversity, evolution and selection in the major histocompatibility complex DRB and DQB loci in the family Equidae. BMC Genomics. LONDON: BioMed Central, 2020, vol. 21, No 1, p. 1-15. ISSN 1471-2164. Available from: https://dx.doi.org/10.1186/s12864-020-07089-6.
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Basic information
Original name Genetic diversity, evolution and selection in the major histocompatibility complex DRB and DQB loci in the family Equidae
Authors KLUMPLEROVA, Marie (203 Czech Republic), Petra SPLICHALOVA (203 Czech Republic), Jan OPPELT (203 Czech Republic, belonging to the institution), Jan FUTAS (203 Czech Republic), Aneta KOHUTOVÁ (703 Slovakia, belonging to the institution), Petra MUSILOVA (203 Czech Republic), Svatava KUBICKOVA (203 Czech Republic), Roman VODICKA (203 Czech Republic), Ludovic ORLANDO and Petr HORIN (203 Czech Republic).
Edition BMC Genomics, LONDON, BioMed Central, 2020, 1471-2164.
Other information
Original language English
Type of outcome Article in a journal
Field of Study 10603 Genetics and heredity
Country of publisher United Kingdom of Great Britain and Northern Ireland
Confidentiality degree is not subject to a state or trade secret
WWW URL
Impact factor Impact factor: 3.969
RIV identification code RIV/00216224:14110/20:00118279
Organization unit Faculty of Medicine
Doi http://dx.doi.org/10.1186/s12864-020-07089-6
UT WoS 000576982800002
Keywords in English Major histocompatibility complex; Family Equidae; MHC exon 2; MHC class II loci; Positive selection; Trans-species polymorphism; Selected amino acid sites
Tags 14110513, podil, rivok
Tags International impact, Reviewed
Changed by Changed by: Mgr. Tereza Miškechová, učo 341652. Changed: 17/3/2021 14:05.
Abstract
Background: The mammalian Major Histocompatibility Complex (MHC) is a genetic region containing highly polymorphic genes with immunological functions. MHC class I and class II genes encode antigen-presenting molecules expressed on the cell surface. The MHC class II sub-region contains genes expressed in antigen presenting cells. The antigen binding site is encoded by the second exon of genes encoding antigen presenting molecules. The exon 2 sequences of these MHC genes have evolved under the selective pressure of pathogens. Interspecific differences can be observed in the class II sub-region. The family Equidae includes a variety of domesticated, and free-ranging species inhabiting a range of habitats exposed to different pathogens and represents a model for studying this important part of the immunogenome. While equine MHC class II DRA and DQA loci have received attention, the genetic diversity and effects of selection on DRB and DQB loci have been largely overlooked. This study aimed to provide the first in-depth analysis of the MHC class II DRB and DQB loci in the Equidae family. Results: Three DRB and two DQB genes were identified in the genomes of all equids. The genes DRB2, DRB3 and DQB3 showed high sequence conservation, while polymorphisms were more frequent at ORB1 and DQB1 across all species analyzed. DQB2 was not found in the genome of the Asiatic asses Equus hemionus kulan and E. h. onager. The bioinformatic analysis of non-zero-coverage-bases of DRB and DQB genes in 14 equine individual genomes revealed differences among individual genes. Evidence for recombination was found for DRB1, DRB2, DQB1 and DQB2 genes. Trans-species allele sharing was identified in all genes except ORB1. Site-specific selection analysis predicted genes evolving under positive selection both at DRB and DQB loci. No selected amino acid sites were identified in DQB3. Conclusions: The organization of the MHC class II sub-region of equids is similar across all species of the family. Genomic sequences, along with phylogenetic trees suggesting effects of selection as well as trans-species polymorphism support the contention that pathogen-driven positive selection has shaped the MHC class II DRB/DQB sub-regions in the Equidae.
Links
ED1.1.00/02.0068, research and development projectName: CEITEC - central european institute of technology
LQ1601, research and development projectName: CEITEC 2020 (Acronym: CEITEC2020)
Investor: Ministry of Education, Youth and Sports of the CR
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