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PMID: 448746 Published · ppublish English Journal Article

Evolution of the differential regulation of duplicate genes after polyploidization.

Journal of molecular evolution ·Vol. 12 ·No. 4 ·1979-04-12 ·Pages 267-317

Ferris SD, Whitt GS

Abstract

In the 50 million years since the polyploidization event that gave rise to the catostomid family of fishes the duplicate genes encoding isozymes have undergone different fates. Ample opportunity has been available for regulatory evolution of these duplicate genes. Approximately half the duplicate genes have lost their expressions during this time. Of the duplicate genes remaining, the majority have diverged to different extents in their expression within and among adult tissues. The pattern of divergence of duplicate gene expression is consistent with the accumulation of mutations at regulatory genes. The absence of a correlation of extent of divergence of gene expression with the level of genetic variability for isozymes at these loci is consistent with the view that the rates of regulatory gene and structural gene evolution are uncoupled. The magnitude of divergence of duplicate gene expressions varies among tissues, enzymes, and species. Little correlation was found with the extent of divergence of duplicate gene expression within a species and its degree of morphological "conservatism", although species pairs which are increasingly taxonomically distant are less likely to share specific patterns of differential gene expression. Probable phylogenetic times of origin of several patterns of differential gene expression have been proposed. Some patterns of differential gene expression have evolved in recent evolutionary times and are specific to one or a few species, whereas at least one pattern of differential gene expression is present in nearly all species and probably arose soon after the polyploidization event. Multilocus isozymes, formed by polyploidization, provide a useful model system for studying the forces responsible for the maintenance of duplicate genes and the evolution of these once identical genes to new spatially and temporally specific patterns of regulation.

MeSH Terms
Animals Biological Evolution DNA Replication Fishes Genes, Regulator Isoenzymes/genetics L-Lactate Dehydrogenase/genetics Malate Dehydrogenase/genetics Mitosis Polyploidy Tissue Distribution
Chemicals
Isoenzymes L-Lactate Dehydrogenase Malate Dehydrogenase
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Ferris S D
Whitt G S
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Article Info
Journal
Journal of molecular evolution
Abbr.
J Mol Evol
ISSN
0022-2844
Published
1979-04-12
Pages
267-317
Language
English
Region
Germany
NLM ID
0360051
Subset
IM
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