Evolution of major histocompatibility complex class I genes in the sable Martes zibellina (Carnivora, Mustelidae)
Эволюция генов главного комплекса гистосовместимости класса I у соболя Martes zibellina (Carnivora, Mustelidae)
2020-03-11
SCID: 54.1/fqvzxr4p
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MHC class I genesbalancing selectionmolecular evolutionnonclassical MHC class Irecombination
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Abstract (AI)
Abstract The molecules encoded by major histocompatibility complex (MHC) genes play an essential role in the adaptive immune response among vertebrates. We investigated the molecular evolution of MHC class I genes in the sable Martes zibellina. We isolated 26 MHC class I sequences, including 12 putatively functional sequences and 14 pseudogene sequences, from 24 individuals from two geographic areas of northeast China. The number of putatively functional sequences found in a single individual ranged from one to five, which might be at least 1–3 loci. We found that both balancing selection and recombination contribute to evolution of MHC class I genes in M. zibellina. In addition, we identified a candidate nonclassical MHC class I lineage in Carnivora, which may have preceded the divergence (about 52–57 Mya) of Caniformia and Feliformia. This may contribute to further understanding of the origin and evolution of nonclassical MHC class I genes. Our study provides important immune information of MHC for M. zibellina, as well as other carnivores.
Key Findings
1
A candidate nonclassical MHC class I lineage was identified in Carnivora, potentially predating the divergence of Caniformia and Feliformia approximately 52–57 million years ago.
2
Both balancing selection and recombination contributed to the molecular evolution of MHC class I genes in the sable.
3
Individual sables carried one to five putatively functional MHC class I sequences, indicating at least one to three loci.
4
The findings provide immune-genetic information for the sable and comparative insights into MHC evolution in carnivores.
5
The study isolated 26 MHC class I sequences from 24 sables, comprising 12 putatively functional sequences and 14 pseudogenes.
Research Object
MHC class I genes in the sable Martes zibellina
Research Subject
The molecular evolution of MHC class I genes, including balancing selection, recombination, pseudogenization, and the origin of a candidate nonclassical lineage
Publication Details
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2020-03-11
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