Search results for "Drosophila melanogaster"

showing 10 items of 426 documents

Genetic and molecular analysis of six tumor suppressor genes in Drosophila melanogaster

1990

Six Drosophila melanogaster tumor suppressor genes causing malignant or benign tumors in specific cell types are described. The wild-type alleles of these genes are instrumental in the differentiation of particular cell types. In the homozygous state, recessive mutations in the genes interrupt the differentiation of the cells and thus cause their uncontrolled, autonomous, lethal proliferation. The tumors show all major characteristics of malignant and benign neoplastic growth. Genomic sequences of four of the genes have been identified and are currently being characterized. ImagesFIGURE 1.FIGURE 2.FIGURE 2.

GeneticsCell typebiologyHealth Toxicology and MutagenesisRestriction MappingPublic Health Environmental and Occupational HealthNeoplastic growthNeoplasms Experimentalbiology.organism_classificationMolecular analysislaw.inventionMolecular and Cellular Aspects of Transformation and DifferentiationRestriction mapDrosophila melanogasterlawSuppressorAnimalsGenes LethalGenes Tumor SuppressorDrosophila melanogasterAlleleGeneEnvironmental Health Perspectives
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Insulator proteins contribute to expression of gene loci repositioned into heterochromatin in the course ofDrosophilaevolution

2019

AbstractPericentric heterochromatin inDrosophilais generally composed of repetitive DNA forming a transcriptionally repressive environment. Nevertheless, dozens of genes were embedded into pericentric genome regions during evolution ofDrosophilidaelineage and retained functional activity. However, factors that contribute to “immunity” of these gene loci to transcriptional silencing remain unknown. Here, we investigated molecular evolution of the essentialMybandRanbp16genes. These protein-coding genes reside in euchromatic loci of chromosome X inD. melanogasterand related species, while in other studiedDrosophilaspecies, including evolutionary distant ones, they are located in genomic region…

GeneticsEuchromatinMolecular evolutionHeterochromatinDrosophilidaefungiMelanogasterMYBBiologyDrosophila melanogasterbiology.organism_classificationPericentric heterochromatin
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Genetic location and biochemical characterization of eye-colour mutants from natural populations of Drosophila melanogaster

1990

From six captures of Drosophila melanogaster carried out in three different habitats (cellar, vineyard, and pinewood) in two different seasons of the year (spring and autumn), 60 eye-colour mutations were isolated, which were reduced to 29 loci by means of allelism tests within and between populations. Forty-five of these mutations were analyzed genetically and biochemically; of these 33 turned out to be previously described mutants and mapped to a total of 17 loci. Twelve new mutants were discovered and they mapped to 12 new loci, distributed on chromosomes X, II, and III. The eye-colour mutants show large effects on the red and brown pigments. The high variability of the eye-colour loci …

GeneticsEye Colorgenetic structuresbiologyMutantChromosome MappingZoologyPigments BiologicalGeneral MedicineEyebiology.organism_classificationVineyardDrosophila melanogasterPhenotypeMutationGeneticsAnimalsDrosophila melanogasterMolecular BiologyAllelesBiotechnologyGenome
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Unmasking frequency-dependent selection in tri-cultures of Drosophila melanogaster.

1989

Larval-to-adult viability was measured for three strains of Drosophila melanogaster: a wild strain and two eye colour mutant strains (cardinal and sepia) starting from seventy different genotypic compositions. Analyses of a sub-set of the data (not considering all genotypic frequencies) demonstrate frequency-dependence in the three strains. These results suggest that in this experiment, frequency-dependent selection may be masked by other selective forces, only being apparent when specific analyses are carried out.

GeneticsGenotypeFrequency-dependent selectionMutantPopulation geneticsPlant ScienceGeneral MedicineBiologybiology.organism_classificationDrosophila melanogasterGene FrequencySpecies SpecificityInsect ScienceDrosophilidaeLarvaGenotypeMutationGeneticsAnimalsRegression AnalysisAnimal Science and ZoologySepiaDrosophila melanogasterSelection GeneticAllele frequencyGenetica
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Genetic analysis of heat shock response in three Drosophila species of the obscura group

1992

Heat shock response was investigated in three species of the obscura group of the Drosophila genus (D. subobscura, D. guanche, and D. madeirensis) by chromosome cytology analysis and [3H]uridine labeling. A set of eight puffs (2C, 15DE, 18C, 27A, 31CD, 85AB, 89A, and 94A) were induced after heat treatments in each of the three species; 18C, 27A, 89A, and 94A were the most heavily labeled in the autoradiograms after the induced conditions. From the in situ results using the major heat shock genes of D. melanogaster as a probe, it was inferred that the 18C, 94A, 89A, and 27A loci of the three obscura group species are homologous to D. melanogaster loci, which contain, HSP82, HSP70, HSP68, an…

GeneticsHot TemperaturePolytene chromosomebiologyGeneral Medicinebiology.organism_classificationBiological EvolutionChromosomesDrosophila subobscuraChromosome BandingHsp70Drosophila melanogasterMolecular ProbesHeat shock proteinDrosophilidaeGeneticsMelanogasterAnimalsDrosophilaDrosophila (subgenus)Heat shockMolecular BiologyHeat-Shock ProteinsBiotechnologyGenome
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Innate immune pathways act synergistically to constrain RNA virus evolution in Drosophila melanogaster

2021

AbstractHost-pathogen interactions impose recurrent selective pressures that lead to constant adaptation and counter-adaptation in both competing species. Here, we sought to study this evolutionary arms-race and assessed the impact of the innate immune system on viral population diversity and evolution, using D. melanogaster as model host and its natural pathogen Drosophila C virus (DCV). We first isogenized eight fly genotypes generating animals defective for RNAi, Imd and Toll innate immune pathways and also pathogen sensing and gut renewal pathways. Wild-type or mutant flies were then orally infected and DCV was serially passaged ten times. Viral population diversity was studied after ea…

GeneticsImmune systemInnate immune systembiologyRNA interferenceMelanogasterRNA virusDrosophila melanogasterbiology.organism_classificationPathogenDrosophila C virus
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Intra- and intergenotypic competition in Drosophila melanogaster: effects of density on larval survival and rate of development

1986

We have examined the effects of density and frequency in the larval competition of Drosophila melanogaster by measuring three fitness components: viability (V), mean development time (MDT) and a combination of these two (E). We have detected (contrary to most published results) non-linear effects of density in single-genotype cultures; in addition, different functions are required to describe the density effects below and above the optimal density. Frequency has also non-linear effects in the two-genotype cultures. Only one polymorphic equilibrium frequency, which is stable, occurs with respect to V; but two polymorphic equilibria, one stable and one unstable, exist with respect to E. The r…

GeneticsLarvaOptimal densitybiologymedia_common.quotation_subjectPopulation geneticsPlant ScienceGeneral Medicinebiology.organism_classificationPopulation densityCompetition (biology)Rate of developmentInsect ScienceGeneticsAnimal Science and ZoologyDrosophila melanogastermedia_commonGenetica
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Linker histone H1 is essential for Drosophila development, the establishment of pericentric heterochromatin, and a normal polytene chromosome structu…

2009

We generated mutant alleles of Drosophila melanogaster in which expression of the linker histone H1 can be down-regulated over a wide range by RNAi. When the H1 protein level is reduced to ∼20% of the level in wild-type larvae, lethality occurs in the late larval – pupal stages of development. Here we show that H1 has an important function in gene regulation within or near heterochromatin. It is a strong dominant suppressor of position effect variegation (PEV). Similar to other suppressors of PEV, H1 is simultaneously involved in both the repression of euchromatic genes brought to the vicinity of pericentric heterochromatin and the activation of heterochromatic genes that depend on their pe…

GeneticsPolytene chromosomeEuchromatinHeterochromatinfungiCentromereGene Expression Regulation DevelopmentalPosition-effect variegationBiologyChromatidsChromosomesChromosomal Position EffectsHistonesDrosophila melanogasterHeterochromatinHistone methylationGeneticsConstitutive heterochromatinAnimalsDrosophila ProteinsHeterochromatin protein 1RNA InterferencePericentric heterochromatinDevelopmental BiologyResearch Paper
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Evolution of gypsy Endogenous Retrovirus in the Drosophila obscura Species Group

2000

The Ty3/gypsy family of retroelements is closely related to retroviruses, and some of their members have an open reading frame resembling the retroviral gene env. Sequences homologous to the gypsy element from Drosophila melanogaster are widely distributed among Drosophila species. In this work, we report a phylogenetic study based mainly on the analysis of the 5' region of the env gene from several species of the obscura group, and also from sequences already reported of D. melanogaster, Drosophila virilis, and Drosophila hydei. Our results indicate that the gypsy elements from species of the obscura group constitute a monophyletic group which has strongly diverged from the prototypic D. m…

GeneticsRetroelementsPhylogenetic treebiologyEndogenous retrovirusDNASequence Analysis DNAbiology.organism_classificationGenes envEvolution MolecularDrosophila virilisRetroviridaeSpecies SpecificityEvolutionary biologyDrosophila hydeiGeneticsMelanogasterAnimalsDrosophilaDrosophila melanogasterDrosophila obscuraDrosophila (subgenus)Molecular BiologyPhylogenyEcology Evolution Behavior and SystematicsMolecular Biology and Evolution
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Genetic and Cytological Analysis of Drosophila Chromatin-Remodeling Factors

2003

GeneticsSettore BIO/18 - GeneticabiologyRNA-POLYMERASE-IIDrosophila melanogasterDrosophila (subgenus)biology.organism_classificationDrosophila ProteinChromatin remodelingCell biologyHISTONE MODIFICATIONS
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