Genetics, Vol. 154, 459-473, January 2000, Copyright © 2000

The Probability of Duplicate Gene Preservation by Subfunctionalization

Michael Lyncha and Allan Forcea
a Department of Biology, University of Oregon, Eugene, Oregon 97403

Corresponding author: Michael Lynch, Department of Biology, University of Oregon, Eugene, OR 97403., mlynch{at}oregon.uoregon.edu (E-mail)

Communicating editor: A. G. CLARK

It has often been argued that gene-duplication events are most commonly followed by a mutational event that silences one member of the pair, while on rare occasions both members of the pair are preserved as one acquires a mutation with a beneficial function and the other retains the original function. However, empirical evidence from genome duplication events suggests that gene duplicates are preserved in genomes far more commonly and for periods far in excess of the expectations under this model, and whereas some gene duplicates clearly evolve new functions, there is little evidence that this is the most common mechanism of duplicate-gene preservation. An alternative hypothesis is that gene duplicates are frequently preserved by subfunctionalization, whereby both members of a pair experience degenerative mutations that reduce their joint levels and patterns of activity to that of the single ancestral gene. We consider the ways in which the probability of duplicate-gene preservation by such complementary mutations is modified by aspects of gene structure, degree of linkage, mutation rates and effects, and population size. Even if most mutations cause complete loss-of-subfunction, the probability of duplicate-gene preservation can be appreciable if the long-term effective population size is on the order of 105 or smaller, especially if there are more than two independently mutable subfunctions per locus. Even a moderate incidence of partial loss-of-function mutations greatly elevates the probability of preservation. The model proposed herein leads to quantitative predictions that are consistent with observations on the frequency of long-term duplicate gene preservation and with observations that indicate that a common fate of the members of duplicate-gene pairs is the partitioning of tissue-specific patterns of expression of the ancestral gene.





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GeneticsHome page
J. Wang, L. Tian, H.-S. Lee, and Z. J. Chen
Nonadditive Regulation of FRI and FLC Loci Mediates Flowering-Time Variation in Arabidopsis Allopolyploids
Genetics, June 1, 2006; 173(2): 965 - 974.
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Genome ResHome page
S. Huntley, D. M. Baggott, A. T. Hamilton, M. Tran-Gyamfi, S. Yang, J. Kim, L. Gordon, E. Branscomb, and L. Stubbs
A comprehensive catalog of human KRAB-associated zinc finger genes: Insights into the evolutionary history of a large family of transcriptional repressors
Genome Res., May 1, 2006; 16(5): 669 - 677.
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Mol Biol EvolHome page
K. Ezawa, S. OOta, and N. Saitou
Genome-Wide Search of Gene Conversions in Duplicated Genes of Mouse and Rat
Mol. Biol. Evol., May 1, 2006; 23(5): 927 - 940.
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Mol Biol EvolHome page
V. Katju and M. Lynch
On the Formation of Novel Genes by Duplication in the Caenorhabditis elegans Genome
Mol. Biol. Evol., May 1, 2006; 23(5): 1056 - 1067.
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Genome ResHome page
Z. Su, J. Wang, J. Yu, X. Huang, and X. Gu
Evolution of alternative splicing after gene duplication
Genome Res., February 1, 2006; 16(2): 182 - 189.
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Mol Biol EvolHome page
M. Lynch
The Origins of Eukaryotic Gene Structure
Mol. Biol. Evol., February 1, 2006; 23(2): 450 - 468.
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Mol Biol EvolHome page
J. M. Duarte, L. Cui, P. K. Wall, Q. Zhang, X. Zhang, J. Leebens-Mack, H. Ma, N. Altman, and C. W. dePamphilis
Expression Pattern Shifts Following Duplication Indicative of Subfunctionalization and Neofunctionalization in Regulatory Genes of Arabidopsis
Mol. Biol. Evol., February 1, 2006; 23(2): 469 - 478.
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Phil Trans R Soc BHome page
M. B Bonsall
Longevity and ageing: appraising the evolutionary consequences of growing old
Phil Trans R Soc B, January 29, 2006; 361(1465): 119 - 135.
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GeneticsHome page
J. Wang, L. Tian, H.-S. Lee, N. E. Wei, H. Jiang, B. Watson, A. Madlung, T. C. Osborn, R. W. Doerge, L. Comai, et al.
Genomewide Nonadditive Gene Regulation in Arabidopsis Allotetraploids
Genetics, January 1, 2006; 172(1): 507 - 517.
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GeneticsHome page
A. van Hoof
Conserved Functions of Yeast Genes Support the Duplication, Degeneration and Complementation Model for Gene Duplication
Genetics, December 1, 2005; 171(4): 1455 - 1461.
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J. Biol. Chem.Home page
Z. Zhao, L. Fang, N. Chen, R. C. Johnsen, L. Stein, and D. L. Baillie
Distinct Regulatory Elements Mediate Similar Expression Patterns in the Excretory Cell of Caenorhabditis elegans
J. Biol. Chem., November 18, 2005; 280(46): 38787 - 38794.
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Plant Physiol.Home page
C. Gabaldon, M. Lopez-Serrano, M. A. Pedreno, and A. R. Barcelo
Cloning and Molecular Characterization of the Basic Peroxidase Isoenzyme from Zinnia elegans, an Enzyme Involved in Lignin Biosynthesis
Plant Physiology, November 1, 2005; 139(3): 1138 - 1154.
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Nucleic Acids ResHome page
R. A. Notebaart, M. A. Huynen, B. Teusink, R. J. Siezen, and B. Snel
Correlation between sequence conservation and the genomic context after gene duplication
Nucleic Acids Res., October 27, 2005; 33(19): 6164 - 6171.
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Genome ResHome page
I. G. Woods, C. Wilson, B. Friedlander, P. Chang, D. K. Reyes, R. Nix, P. D. Kelly, F. Chu, J. H. Postlethwait, and W. S. Talbot
The zebrafish gene map defines ancestral vertebrate chromosomes
Genome Res., September 1, 2005; 15(9): 1307 - 1314.
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Nucleic Acids ResHome page
K. S. Makarova, Y. I. Wolf, S. L. Mekhedov, B. G. Mirkin, and E. V. Koonin
Ancestral paralogs and pseudoparalogs and their role in the emergence of the eukaryotic cell
Nucleic Acids Res., August 16, 2005; 33(14): 4626 - 4638.
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Proc. Natl. Acad. Sci. USAHome page
C. D. Jones and D. J. Begun
Parallel evolution of chimeric fusion genes
PNAS, August 9, 2005; 102(32): 11373 - 11378.
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GeneticsHome page
A. Poon, B. H. Davis, and L. Chao
The Coupon Collector and the Suppressor Mutation: Estimating the Number of Compensatory Mutations by Maximum Likelihood
Genetics, July 1, 2005; 170(3): 1323 - 1332.
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Proc. Natl. Acad. Sci. USAHome page
A. L. Hughes
Gene duplication and the origin of novel proteins
PNAS, June 21, 2005; 102(25): 8791 - 8792.
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PaleobiologyHome page
N. Eldredge, J. N. Thompson, P. M. Brakefield, S. Gavrilets, D. Jablonski, J. B. C. Jackson, R. E. Lenski, B. S. Lieberman, M. A. McPeek, and W. Miller III
The dynamics of evolutionary stasis
Paleobiology, June 1, 2005; 31(2_Suppl): 133 - 145.
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