PubMed Health⌕ Search

Biomedical subjects

A Fontdevila

Publications and source records attributed to A Fontdevila.

33 records · Page 2Linked to original sources

The evolutionary history of Drosophila buzzatii. XXV. Random mating in nature.

Using allozymes as the genetic probe, data are presented which show that wild Drosophila buzzatii females and males engaged in copulation mate at random. Hence, putative inbreeding due to local mating of genetically related flies emerging from the patchy distributed substrates, was not detected. We conclude that individuals raised from a niche disperse and mate at random with other members of the population, so only one round of drift due to the colonization of suitable and ephemeral breeding sites is taking place.

Alleles↗

The evolutionary history of Drosophila buzzatii. XXIV. Second chromosome inversions have different average effects on thorax length.

We demonstrate a genetic correlation between rearrangements of the second chromosome of D. buzzatii and thorax length, as a measure of body size. The results indicate that 2j and 2jz3 arrangements are correlated with large size, whereas 2st arrangement is correlated with small size. Some inversions (2st and 2jz3) show dominant effects and others (2j/jz3) exhibit overdominance. These results show that at least 25 per cent of body size variation may be accounted for by the studied karyotypes. The possible integration of the genotypic, phenotypic and fitness levels, and also the possible implications to life-history evolution theories, are discussed. These results suggest that, under moderate to high heritability values, some kinds of chromosomal endocyclic and/or balancing selection may be valuable mechanisms for maintenance of body size variation.

Animals↗

The evolutionary history of Drosophila buzzatii. XXIII. High content of nonsatellite repetitive DNA in D. buzzatii and in its sibling D. koepferae.

The frequency and types of repetitive nonsatellite DNA of two sibling species of the repleta group of Drosophila, D. buzzatii, and D. koepferae have been determined. For each species, the analysis is based on a sample of more than 100 clones (400 kb) obtained from genomic DNA. A theoretical model has been developed to correct for the presence of a mixture of repetitive and unique DNA in these clones. After correction, a high content of repetitive DNA has been demonstrated for both species (D. buzzatii, 19-26%; D. koepferae, 27-32%). The repetitive sequences have been classified according to their hybridization pattern when used as probes against genomic DNA and by their in situ hybridization signals on polytene chromosomes. Data suggest that the main nonsatellite component of these species is simpler and more repetitive than that of D. melanogaster, pointing to a wide variability in content and class size distribution of repetitive DNA among Drosophila species.

Animals↗

The evolutionary history of D. buzzatii. XXII. Chromosomal and genic sterility in male hybrids of Drosophila buzzatii and Drosophila koepferae.

The genetic basis of sterility in F1 male hybrids of Drosophila buzzatii and D. koepferae has been investigated in two steps. (1) By successive backcrossing of hybrid females to either parental species. (2) By assessment of the effects on male fertility of selected segments of polytene chromosomes from the donor species on a background entirely derived from the recipient species. The length of introgressed segments producing sterility was progressively reduced through repeated backcrosses. This procedure sometimes led to an approximate mapping of major genes of hybrid sterility (genic sterility) on the polytene chromosome map. At other times it was found that sterility was produced only when the introgressed segment exceeded a certain threshold size (chromosomal sterility). The contribution of the autosomes to hybrid sterility seems to be mainly of the chromosomal type. The evidence concerning the X chromosome is equivocal. No fertile males were found following introgression with any of the investigated segments of this chromosome. These results are compatible both with the presence of at least six major genes of hybrid sterility (genic sterility) and with the existence of a rather small threshold size for the chromosome segments producing sterility (chromosomal sterility). The role of the Y chromosome was not investigated in this study.

Animals↗

Genetic variance for body size in a natural population of Drosophila buzzatii.

Previous work has shown thorax length to be under directional selection in the Drosophila buzzatii population of Carboneras. In order to predict the genetic consequences of natural selection, genetic variation for this trait was investigated in two ways. First, narrow sense heritability was estimated in the laboratory F2 generation of a sample of wild flies by means of the offspring-parent regression. A relatively high value, 0.59, was obtained. Because the phenotypic variance of wild flies was 7-9 times that of the flies raised in the laboratory, "natural" heritability may be estimated as one-seventh to one-ninth that value. Second, the contribution of the second and fourth chromosomes, which are polymorphic for paracentric inversions, to the genetic variance of thorax length was estimated in the field and in the laboratory. This was done with the assistance of a simple genetic model which shows that the variance among chromosome arrangements and the variance among karyotypes provide minimum estimates of the chromosome's contribution to the additive and genetic variances of the trait, respectively. In males raised under optimal conditions in the laboratory, the variance among second-chromosome karyotypes accounted for 11.43% of the total phenotypic variance and most of this variance was additive; by contrast, the contribution of the fourth chromosome was nonsignificant. The variance among second-chromosome karyotypes accounted for 1.56-1.78% of the total phenotypic variance in wild males and was nonsignificant in wild females. The variance among fourth chromosome karyotypes accounted for 0.14-3.48% of the total phenotypic variance in wild flies. At both chromosomes, the proportion of additive variance was higher in mating flies than in nonmating flies.

Animals↗

Differential response to environmental alcohol among second-chromosome arrangements in experimental populations of Drosophila buzzatii.

Drosophila buzzatii feeds and breeds on the decaying cladodes and fruits of several species of Opuntia (prickly pear) which contain significant levels of ethanol and isopropanol. The potential influence of these two alcohols on the inversion polymorphism of the second and fourth chromosomes was investigated in ten experimental populations with different amounts of alcohol (either ethanol or isopropanol) added to the culture medium. All populations were started with the offspring of 29 wild females collected at Adeje (Tenerife, Canary Islands) and their genetic composition was monitored for about two years (more than 30 generations). Consistent changes in the frequency of most second- and fourth-chromosome arrangements occurred in all populations including those without alcohol (control). The comparison of inversion frequency through the various treatments revealed a significant influence of the alcohol on the frequency changes of the four second-chromosome arrangements. Moreover, this influence was of a different type for every one of them, sometimes with opposite effects between alcohols and/or concentrations. These results indicate genetic differentiation among second-chromosome arrangements with regard to alcohol and suggest that the alcohol heterogeneity found in the species' trophic niche may play an important role in the maintenance of this polymorphism and also in the recent historical changes in the frequency of some arrangements associated with colonization.

1-Propanol↗

Adh expression in species of the mulleri subgroup of Drosophila.

The locus encoding the NAD-dependent alcohol dehydrogenase (alcohol:NAD oxidoreductase; EC 1.1.1.1) is duplicated in some species of the cactophilic mulleri subgroup of Drosophila. Here we report a survey on the expression throughout development and in different tissues for this system, its regulation using interspecific hybrids, and the effects induced by 2-propanol in 10 species belonging to four different clusters of the above-mentioned subgroup. Our results indicate different expression throughout development and in different tissues, cis regulation in hybrid ovaries, trans (-) regulation in hybrid adults, and different responses to 2-propanol.

1-Propanol↗

The evolutionary history of Drosophila buzzatii. IX. High frequencies of new chromosome rearrangements induced by introgressive hybridization.

Introgression of a chromosome segment from Drosophila serido into the genome of its sibling D. buzzatii brought about the release of mutator potential in the hybrids. Mutator activity was determined by examining the frequency of new chromosomal rearrangements, that appeared only in the progeny of hybrid individuals. Mutation frequency was 30 times greater in the progeny of hybrid males than in that of hybrid females. There was a remarkable influence of the D. buzzatii genetic background on the frequency of production of these new rearrangements. The appearance of a new rearrangement did not depend on the genotype of the larva that bore it, but only on that of its hybrid progenitor. Among the new rearrangements there were inversions, translocations, and duplications. The number of translocations was significantly lower than that of inversions or duplications; this last type was the most frequently recorded. The distribution of the aberrations among the four major autosomes seemed to be homogeneous, although the total number of breakpoints was significantly greater in chromosome 4 than in the others. No rearrangement was found on the X chromosome. Breakpoints within three of the four affected autosomes were not randomly distributed.

Animals↗

Effect of the singed locus on the egg production curve of Drosophila melanogaster.

Egg production curves of virgin and mated females of several genotypes at the singed locus of Drosophila melanogaster have been studied. Fitz-Earle's theorectical model (1971) for characterizing daily egg production has been used. In general, the model gave good fit to the experimental data. A clear effect of the female genotype is detected on the following parameters and derivations of the model: alpha, rate of decrease in egg production; tq, day of cessation of egg-laying, N(tmax), maximum egg production; and T(t0,Tq), total lifetime egg production. Homozygous snqr females present higher values of alpha and lower values of tq, N(tmax), and T(t0,tq) than heterozygous and wild-type homozygous females. Egg-to-larva viability along female lifetime related with the different physiological stages of the egg-laying curve (increasing, maximum, and decreasing parts) has been also studied. Homozygous snqr females show low viability and decreasing with age compared to wildtype females. In some cases, different physiological stages of the egg production curve show characteristic egg-to-larva viability values.

Animals↗

Genotype-temperature interaction in Drosophila melanogaster. II. Body weight.

The effect of genotype-temperature interactions on body weight has been studied in a natural population of Drosophila melanogaster using four isogenic strains derived from it, and their hybrid F(1) and F(2) progenies. Measurements were made at four constant temperatures-25 degrees , 21 degrees , 17 degrees and 13 degrees C-and at a temperature oscillating between 17 degrees and 25 degrees C.-Low, though significant, genotype-temperature interaction exists among the isogenic strains, but not among the F(1) nor F(2) hybrid progenies. These low interaction values may be due to the fact that all isogenic strains have a common origin and therefore presumably little genic divergence exists among them. F(1) and F(2) hybrid progenies generally exhibit higher homeostasis than the isogenic strains, although one isogenic line has better homeostasis than the majority of the hybrids.-There is no evidence of heterosis and some evidence of dominance. These results are consistent with the hypothesis that body weight is regulated mainly by additive genetic factors and is subject to stabilizing selection.

Analysis of Variance↗

Stable Drosophila buzzatii-Drosophila koepferae hybrids.

Previous experiments discovered high rates of chromosomal rearrangements in the progeny of males containing a telomeric segment of Drosophila koepferae in a D. buzzatii genetic background (segmental males). We have performed similar experiments, designed to test whether this chromosomal instability could be explained by a phenomenon similar to P-M hybrid dysgenesis or, alternatively, by a generalized telomeric effect. However, the results obtained have not allowed us to fully characterize this process, because we have not observed chromosomal rearrangements in the progeny of the putative unstable males. Our results suggest that chromosomal instability is independent of the introgressed fragment. A reasonable hypothesis to explain these results is that mutator factors are occasionally introduced by the hybridization. The effect of sampling, caused by the fact that only a small region is introgressed in a particular line, may explain why only some hybridizations lead to instability.

Animals↗

Genetic mapping of the Adh locus in the repleta group of Drosophila by in situ hybridization.

A biotinylated probe of the Adh (alcohol dehydrogenase) gene of Drosophila melanogaster was used for in situ hybridization on polytene chromosomes of D. mojavensis and D. buzzatii, two species of the repleta group of the genus Drosophila. Hybridization showed that the Adh gene maps at the G1a band of the third chromosome. This is in accordance with a previous result obtained through the use of interspecific hybrid asynapsis as a cytological marker and establishes the limits of the precision of this method.

Alcohol Dehydrogenase↗