Literature DB >> 12136018

Environment dependence of mutational parameters for viability in Drosophila melanogaster.

James D Fry1, Stefanie L Heinsohn.   

Abstract

The genomic rate of mildly deleterious mutations (U) figures prominently in much evolutionary and ecological theory. In Drosophila melanogaster, estimates of U have varied widely, from <0.1 to nearly 1 per zygote. The source of this variation is unknown, but could include differences in the conditions used for assaying fitness traits. We examined how assay conditions affect estimates of the rates and effects of viability-depressing mutations in two sets of lines with accumulated spontaneous mutations on the second chromosome. In each set, the among-line variance in egg-to-adult viability was significantly greater when viability was assayed using a high parental density than when it was assayed using a low density. In contrast, the proportional decline in viability due to new mutations did not differ between densities. Two other manipulations, lowering the temperature and adding ethanol to the medium, had no significant effects on either the mean decline or among-line variance. Cross-environment genetic correlations in viability were generally close to one, implying that most mutations reduced viability in all environments. Using data from the low-density, lower-bound estimates of U approached the classic, high values of Mukai and Ohnishi; at the high density, U estimates were similar to recently reported low values. The difference in estimated mutation rates, taken at face value, would imply that many mutations affected fitness at low density but not at high density, but this is shown to be incompatible with the observed high cross-environment correlations. Possible reasons for this discrepancy are discussed. Regardless of the interpretation, the results show that assay conditions can have a large effect on estimates of mutational parameters for fitness traits.

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Year:  2002        PMID: 12136018      PMCID: PMC1462162     

Source DB:  PubMed          Journal:  Genetics        ISSN: 0016-6731            Impact factor:   4.562


  19 in total

1.  The rate of mutation and the homozygous and heterozygous mutational effects for competitive viability: a long-term experiment with Drosophila melanogaster.

Authors:  D Chavarrías; C López-Fanjul; A García-Dorado
Journal:  Genetics       Date:  2001-06       Impact factor: 4.562

2.  The fitness effects of spontaneous mutations in Caenorhabditis elegans.

Authors:  L L Vassilieva; A M Hook; M Lynch
Journal:  Evolution       Date:  2000-08       Impact factor: 3.694

3.  Properties of ethylmethane sulfonate-induced mutations affecting life-history traits in Caenorhabditis elegans and inferences about bivariate distributions of mutation effects.

Authors:  P D Keightley; E K Davies; A D Peters; R G Shaw
Journal:  Genetics       Date:  2000-09       Impact factor: 4.562

4.  Rapid mutational declines of viability in Drosophila.

Authors:  J D Fry
Journal:  Genet Res       Date:  2001-02       Impact factor: 1.588

5.  THE GENETIC STRUCTURE OF NATURAL POPULATIONS OF DROSOPHILA MELANOGASTER. I. SPONTANEOUS MUTATION RATE OF POLYGENES CONTROLLING VIABILITY.

Authors:  T MUKAI
Journal:  Genetics       Date:  1964-07       Impact factor: 4.562

6.  New estimates of the rates and effects of mildly deleterious mutation in Drosophila melanogaster.

Authors:  J D Fry; P D Keightley; S L Heinsohn; S V Nuzhdin
Journal:  Proc Natl Acad Sci U S A       Date:  1999-01-19       Impact factor: 11.205

7.  Spontaneous mutational variances and covariances for fitness-related traits in Drosophila melanogaster.

Authors:  J Fernández; C López-Fanjul
Journal:  Genetics       Date:  1996-06       Impact factor: 4.562

8.  Mutation rate and dominance of genes affecting viability in Drosophila melanogaster.

Authors:  T Mukai; S I Chigusa; L E Mettler; J F Crow
Journal:  Genetics       Date:  1972-10       Impact factor: 4.562

9.  The genetic structure of natural populations of Drosophila melanogaster. V. Coupling-repulsion effect of spontaneous mutant polygenes controlling viability.

Authors:  T Mukai; T Yamazaki
Journal:  Genetics       Date:  1968-08       Impact factor: 4.562

10.  Environmental stress and mutational load in diploid strains of the yeast Saccharomyces cerevisiae.

Authors:  K Szafraniec; R H Borts; R Korona
Journal:  Proc Natl Acad Sci U S A       Date:  2001-01-16       Impact factor: 11.205

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  27 in total

1.  Dominance of mutations affecting viability in Drosophila melanogaster.

Authors:  James D Fry; Sergey V Nuzhdin
Journal:  Genetics       Date:  2003-04       Impact factor: 4.562

2.  Estimates of the genomic mutation rate for detrimental alleles in Drosophila melanogaster.

Authors:  Brian Charlesworth; Helen Borthwick; Carolina Bartolomé; Patricia Pignatelli
Journal:  Genetics       Date:  2004-06       Impact factor: 4.562

3.  Mutation accumulation in populations of varying size: the distribution of mutational effects for fitness correlates in Caenorhabditis elegans.

Authors:  Suzanne Estes; Patrick C Phillips; Dee R Denver; W Kelley Thomas; Michael Lynch
Journal:  Genetics       Date:  2004-03       Impact factor: 4.562

4.  Cumulative effects of spontaneous mutations for fitness in Caenorhabditis: role of genotype, environment and stress.

Authors:  Charles F Baer; Naomi Phillips; Dejerianne Ostrow; Arián Avalos; Dustin Blanton; Ashley Boggs; Thomas Keller; Laura Levy; Edward Mezerhane
Journal:  Genetics       Date:  2006-08-03       Impact factor: 4.562

5.  Increase of the spontaneous mutation rate in a long-term experiment with Drosophila melanogaster.

Authors:  Victoria Avila; David Chavarrías; Enrique Sánchez; Antonio Manrique; Carlos López-Fanjul; Aurora García-Dorado
Journal:  Genetics       Date:  2006-03-17       Impact factor: 4.562

6.  Interactions between stressful environment and gene deletions alleviate the expected average loss of fitness in yeast.

Authors:  Lukasz Jasnos; Katarzyna Tomala; Dorota Paczesniak; Ryszard Korona
Journal:  Genetics       Date:  2008-04       Impact factor: 4.562

7.  Dietary stress does not strengthen selection against single deleterious mutations in Drosophila melanogaster.

Authors:  K MacLellan; L Kwan; M C Whitlock; H D Rundle
Journal:  Heredity (Edinb)       Date:  2011-07-27       Impact factor: 3.821

8.  Abiotic stress does not magnify the deleterious effects of spontaneous mutations.

Authors:  J R Andrew; M M Dossey; V O Garza; M Keller-Pearson; C F Baer; J Joyner-Matos
Journal:  Heredity (Edinb)       Date:  2015-06-24       Impact factor: 3.821

Review 9.  Causes of natural variation in fitness: evidence from studies of Drosophila populations.

Authors:  Brian Charlesworth
Journal:  Proc Natl Acad Sci U S A       Date:  2015-01-08       Impact factor: 11.205

10.  The mutational structure of metabolism in Caenorhabditis elegans.

Authors:  Sarah K Davies; Armand Leroi; Austin Burt; Jacob G Bundy; Charles F Baer
Journal:  Evolution       Date:  2016-08-24       Impact factor: 3.694

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