Conservation and divergence in multigene families: alternatives to selection and drift
- 29 January 1986
- journal article
- research article
- Published by The Royal Society in Philosophical Transactions of the Royal Society of London. B, Biological Sciences
- Vol. 312 (1154) , 275-289
- https://doi.org/10.1098/rstb.1986.0007
Abstract
It is generally assumed that conservation and divergence of DNA signify function (selection) and no function (drift), respectively. This assumption is based on the view that a mutation is a unique event on a single chromosome, the fate of which depends on selection or drift. Knowledge of the rates, units and biases of widespread mechanisms of non-reciprocal DNA exchange, in particular within multigene families, provides alternative explanations for conservation and divergence, notwithstanding biological function. Such mechanisms of DNA turnover cause continual fluctuations in the copy-number of variant genes in an individual and, hence, promote the gradual and cohesive spread of a variant gene throughout a family (homogenization) and throughout a population (fixation). The dual processes (molecular drive) of homogenization and fixation are inextricably linked. Data are presented of the expected stages of transition in the spread of variant repeats by molecular drive in some non-genic families of DNA, seemingly not under the influence of selection. When a molecularly driven change in a given gene family is accompanied by the coevolution (mediated by selection) of other DNA, RNA or protein molecules that interact with the gene family then biological function is observed to be maintained despite sequence divergence. Conversely, the mechanics of DNA turnover and a turnover bias in favour of ancestral sequences can dramatically retard the rate of sequence change, in the absence of function. Examples of the maintenance of function by molecular coevolution and conservation of sequences in the absence of function, are drawn mainly from the rDNA multigene family.Keywords
This publication has 36 references indexed in Scilit:
- THE SPREAD AND SUCCESS OF NON-DARWINIAN NOVELTIESPublished by Elsevier ,1986
- Conservation and change in the DNA sequences coding for alcohol dehydrogenase in sibling species of DrosophilaNature, 1984
- Xenopus laevis28S ribosomal RNA: a secondary structure model and its evolutionary and functional implicationsNucleic Acids Research, 1984
- Unequal exchanges and the coevolution of X and Y rDNA arrays in drosophila melanogasterCell, 1983
- A directional process of gene conversion is expected to yield dynamic polymorphism associated with stability of alternative alleles in class I histocompatibility antigens gene familyBiochimie, 1983
- Molecular drive: a cohesive mode of species evolutionNature, 1982
- Rate of turnover of structural variants in the rDNA gene family of Drosophila melanogasterNature, 1982
- Gene conversion: Some implications for immunoglobulin genesCell, 1981
- MOLECULAR ARRANGEMENT AND EVOLUTION OF HETEROCHROMATIC DNAAnnual Review of Genetics, 1980
- The distribution of satellite and main-band DNA components in the melanogaster species subgroup of DrosophilaChromosoma, 1978