Literature DB >> 6776005

Components of hybrid dysgenesis in a wild population of Drosophila melanogaster.

W R Engels, C R Preston.   

Abstract

Hybrid dysgenesis is a condition found in certain interstrain hybrids of Drosophila melanogaster caused by the interaction of chromosomal and cytoplasmic factors. Germ-line abnormalities, including sterility, high mutability and male recombination, appear in the affected individuals. There are at lest two distinct systems of hybrid dysgenesis. We examined a Wisconsin wild population in two consecutive years to determine the distribution of the chromosomal P factor and the extrachromosomal M cytotype that together cause one kind of hybrid dysgenic sterility. The P factor was found to be very common in the population, with all three major chromosomes being polymorphic for it. This polymorphism was strongly correlated with variability for male recombination elements, suggesting that these two traits are part of the same system of hybrid dysgenesis. There was a slight tendency for the P factor to be lost in lines taken from this population and inbred in the laboratory for many generations. A large-scale search for the M cytotype, which causes susceptibility to the P factor, showed that it is present in the population at only very low frequencies. Further evidence that the population is mostly immune to the action of the P factor was our finding of a general lack of dysgenic sterility in the wild flies themselves. However, we were able to isolate several wild strains that consistently showed the M cytotype. In some cases, the frequency of the M cytotype could be maintained in these lines, but it could not usually be increased by artificial selection. Some possible consequences of hybrid dysgenesis for the evolutionary biology of Drosophila are suggested.

Entities:  

Mesh:

Year:  1980        PMID: 6776005      PMCID: PMC1214210     

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


  9 in total

1.  Studies on the sterility induced by the male recombination factor 31.1 MRF in Drosophila melanogaster.

Authors:  G Yannopoulos
Journal:  Genet Res       Date:  1978-11       Impact factor: 1.588

2.  Intraspecific hybridisation and the release of mutator activity.

Authors:  R C Woodruff; J N Thompson; R F Lyman
Journal:  Nature       Date:  1979-03-15       Impact factor: 49.962

3.  Genetic instability in Drosophila melanogaster: De novo induction of putative insertion mutations.

Authors:  M M Green
Journal:  Proc Natl Acad Sci U S A       Date:  1977-08       Impact factor: 11.205

4.  Genetic Studies on DROSOPHILA SIMULANS. I. Introduction. Hybrids with DROSOPHILA MELANOGASTER.

Authors:  A H Sturtevant
Journal:  Genetics       Date:  1920-09       Impact factor: 4.562

5.  Hybrid Dysgenesis in DROSOPHILA MELANOGASTER: Sterility Resulting from Gonadal Dysgenesis in the P-M System.

Authors:  M G Kidwell; J B Novy
Journal:  Genetics       Date:  1979-08       Impact factor: 4.562

6.  Mutator genes--pacemakers of evolution.

Authors:  J N Thompson; R C Woodruff
Journal:  Nature       Date:  1978-07-27       Impact factor: 49.962

7.  Non-mendelian female sterility in Drosophila melanogaster: hereditary transmission of I factor.

Authors:  G Picard
Journal:  Genetics       Date:  1976-05       Impact factor: 4.562

8.  Genetic instability in Drosophila melanogaster: the induction of specific chromosome 2 deletions by MR elements.

Authors:  M M Green; S H Shepherd
Journal:  Genetics       Date:  1979-07       Impact factor: 4.562

9.  Hybrid dysgenesis in Drosophila melanogaster: the biology of female and male sterility.

Authors:  W R Engels; C R Preston
Journal:  Genetics       Date:  1979-05       Impact factor: 4.562

  9 in total
  21 in total

1.  Direct determination of the effects of genotype and extreme temperature on the transposition of roo in long-term mutation accumulation lines of Drosophila melanogaster.

Authors:  J Fernando Vázquez; Jesús Albornoz; Ana Domínguez
Journal:  Mol Genet Genomics       Date:  2007-08-25       Impact factor: 3.291

2.  Expression of nuclear-cytoplasmic genomic incompatibility in interspecific Petunia somatic hybrid plants.

Authors:  L S Schnabelrauch; F Kloc-Bauchan; K C Sink
Journal:  Theor Appl Genet       Date:  1985-04       Impact factor: 5.699

3.  Repression of hybrid dysgenesis in Drosophila melanogaster by heat-shock-inducible sense and antisense P-element constructs.

Authors:  M J Simmons; J D Raymond; C D Grimes; C Belinco; B C Haake; M Jordan; C Lund; T A Ojala; D Papermaster
Journal:  Genetics       Date:  1996-12       Impact factor: 4.562

4.  Modified P elements that mimic the P cytotype in Drosophila melanogaster.

Authors:  H M Robertson; W R Engels
Journal:  Genetics       Date:  1989-12       Impact factor: 4.562

5.  Gonadal dysgenesis determinants in a natural population of Drosophila melanogaster.

Authors:  G M Simmons
Journal:  Genetics       Date:  1986-11       Impact factor: 4.562

6.  Somatic effects of P element activity in Drosophila melanogaster: pupal lethality.

Authors:  W R Engels; W K Benz; C R Preston; P L Graham; R W Phillis; H M Robertson
Journal:  Genetics       Date:  1987-12       Impact factor: 4.562

7.  A rapid change in P-element-induced hybrid dysgenesis status in Ukrainian populations of Drosophila melanogaster.

Authors:  I A Kozeretska; V I Shulha; S V Serga; A I Rozhok; O V Protsenko; N C Lau
Journal:  Biol Lett       Date:  2018-08       Impact factor: 3.703

8.  Evolution of hybrid dysgenesis determinants in Drosophila melanogaster.

Authors:  M G Kidwell
Journal:  Proc Natl Acad Sci U S A       Date:  1983-03       Impact factor: 11.205

9.  Formation of chromosome rearrangements by P factors in Drosophila.

Authors:  W R Engels; C R Preston
Journal:  Genetics       Date:  1984-08       Impact factor: 4.562

10.  Hybrid dysgenesis in natural populations of Drosophila melanogaster in Japan. III. The P-M system in and around Japan.

Authors:  E T Matsuura; S Takada; H Kato; S Niizeki; S I Chigusa
Journal:  Genetica       Date:  1993       Impact factor: 1.082

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