MHC, TSP, and the Origin of Species: From Immunogenetics to Evolutionary Genetics
- 1 December 2007
- journal article
- review article
- Published by Annual Reviews in Annual Review of Genetics
- Vol. 41 (1) , 281-304
- https://doi.org/10.1146/annurev.genet.41.110306.130137
Abstract
The acronym Mhc, major histocompatibility complex, is customarily not allied with topics in evolutionary biology. Here, however, we attempt to demonstrate that the Mhc has much to offer to this discipline and intimate that evolutionary biologists who ignore its contributions miss out on a chance of applying a new approach to vexing questions. One aspect of the Mhc in particular affords a fresh look at the population processes that transform one species into another: the trans-species polymorphism, the passage of allelic lineages from ancestral to descendant species. We provide examples of using the Mhc polymorphism in estimating the size of the founding population of new species, and of analyzing the long-term population demographies of phylogenetic lineages. We then extend the concept of trans-species polymorphism to other genes, even those not evolving under balancing selection, and argue that the phenomenon is widespread between closely related species. On the example of the cichlid fishes of Lake Victoria, we demonstrate how the concept changes the interpretation of this so-called “species flock.” We contend that the conclusions reached regarding the cichlid fishes apply also to other examples of adaptive radiation, for example that of Darwin's finches, and so provide new insights into the nature of speciation in general.Keywords
This publication has 70 references indexed in Scilit:
- Finely Orchestrated Movements: Evolution of the Ribosomal RNA GenesGenetics, 2007
- Single Holliday Junctions Are Intermediates of Meiotic RecombinationCell, 2006
- Phylogenetic history of hominoid DRB loci and alleles inferred from intron sequencesImmunological Reviews, 1999
- HLA-DRB intron 1 sequences: Implications for the evolution of HLA-DRB genes and haplotypesHuman Immunology, 1996
- The major histocompatibility complex and human evolutionTrends in Genetics, 1990
- Pattern of nucleotide substitution at major histocompatibility complex class I loci reveals overdominant selectionNature, 1988
- The origin of MHC class II gene polymorphism within the genus MusNature, 1988
- Mitochondrial DNA and human evolutionNature, 1987
- Genetic variation of wild mouse populations in southern Germany: II. Serological studyGenetics Research, 1983
- A comparison of the ribosomal DNA's of Xenopus laevis and Xenopus mulleri: the evolution of tandem genesJournal of Molecular Biology, 1972