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Biomedical subjects

M Coluzzi

Publications and source records attributed to M Coluzzi.

At least 109 records · Page 6Linked to original sources

Heterogeneities of the malaria vectorial system in tropical Africa and their significance in malaria epidemiology and control.

The most important units of the malaria vectorial system in tropical Africa are included in the Linnaean taxon Anopheles gambiae, which has been split into six sibling species recognized by the application of genetic techniques. More recent studies have shown further complexities involving chromosomal inversion polymorphism in some vector populations as well as incipient speciation processes. The significance for field research in malaria of the splitting of a morphological taxon into genetically defined units and subunits is discussed.

Anopheles↗

Observations on the taxonomic status of Anopheles sicaulti.

Field and laboratory studies were carried out on populations of Anopheles sicaulti and An. labranchiae from the Moroccan province of Tetouan, in order to evaluate the hypothesis of a specific rank for the former taxon, recently suggested by White (1978). The egg morphology, and particularly the exochorion pattern and the number of float ribs, showed a complete range of variation, from typical sicaulti to typical labranchiae. Females laying "intermediate" eggs are those prevailing in the study area (60.5% of the eggs collected in the Tetouan province were of this type); in some localities (Ben Karriche and Restinga) only such females were observed. The latter finding would indicate a polygenic control of the egg pattern, as the two supposed parental forms do not seem to segregate from the "intermediate" one. No pure labranchiae populations were observed in the study area, while a pure sicaulti sample was found at Kantara. More widespread appears to be the coexistence of the "intermediate" form either with sicaulti (at Mdiq and Beni Yder, in both cases with a ratio of about 1.7:1), or with both sicaulti and labranchiae (at Souk Khemis and Tatoufet, with a ratio of about 2:1:1 in the two cases). These data seem to indicate that in the considered area sicaulti interbreeds freely with labranchiae. Crossing experiments failed to evidence post-mating barriers between the two taxa; fertile hybrids were obtained in the expected numbers. The polytene chromosome studies showed no differences of diagnostic value between sicaulti and labranchiae, that have the same banding pattern. Also the genetic structure, analyzed by means of starch-gel electrophoresis on the basis of 16 gene-enzyme systems appears to be quite similar in the two forms: allele frequencies at the polymorphic loci do not show significant differences. The average Nei's genetic distance found between sicaulti and labranchiae is exceedingly low (D = 0.014); values of the same magnitude were observed between conspecific populations both in An. labranchiae and An. atroparvus (average D = 0.016 in the two cases). The polymorphic loci in the Tatoufet population, that includes the three forms: sicaulti, "intermediate" and labranchiae, are in Hardy-Weinberg equilibrium, indicating that it represents a panmictic unit. The overall picture does not favour a specific rank for sicaulti, that seems rather a local variant of An. labranchiae. The need is stressed for further investigations involving populations living in the Rabat area, from where sicaulti was originally described.

Alleles↗

Chromosomal differentiation and adaptation to human environments in the Anopheles gambiae complex.

Speciation in the Anopheles gambiae complex is reviewed and discussed with emphasis on the patterns of chromosomal differentiation, particularly at the intraspecific level. The significance of inversion polymorphism in gambiae and arabiensis (the two species of greatest medical importance) is evaluated with reference to recent field investigations carried out in Nigeria. In both sibling species some of the inversions show clinical geographical changes in frequencies, with evident correlations with climatic conditions and vegetation zones. Microgeographical variations in species distribution and in intraspecific inversion frequencies are also present, which appear mostly related to man-made environmental contrasts. Parallel indoor-/outdoor collections of samples from polymorphic populations of arabiensis and gambiae show that adult mosquitoes carrying certain inversion karyotypes do not distribute at random in relation to the human environment, being significantly more frequent in outdoor than in indoor samples, or vice-versa. Optimal habitat choice appears to be involved in such variations of indoor resting behaviour, since the chromosomal types carried by less endophilic individuals are those more adapted to humid climates, i.e. those which tend to avoid the higher nocturnal saturation deficit of the indoor environment. This phenomenon, producing non-uniform exposure of the vector population to residual insecticides sprayed in houses, might explain the mediocrity of the results of malaria control projects based on house-spraying against endophilic vectors in the African savannas.

Animals↗

Applied and theoretical significance of electrohoretic studies in mosquitoes (Diptera: Culicidae).

The more relevant results obtained in the past decade with the use of electrophoretic techniques in studying mosquitoes are reviewed and discussed. These results mainly concern the evaluation of genetic variability of natural and laboratory populations; the study of the role of natural selection and genetic drift in the maintenance and evolution of enzyme polymorphisms; the estimate of genetic differentiation between populations, subspecies and species; the identification of sibling species and of their possible hybrids; the field study of precopulatory isolating mechanisms by the release of electrophoretically recognizable population samples; the elaboration of genetic maps; the study of the phenomenon of multiple insemination; and the evaluation of sexual competitiveness, particularly in connection with the planning of genetic control measures. The importance of this approach in the study of mosquito biology from the applied and theoretical points of view is stressed.

Aedes↗

Genetic distance between two sibling species of the Aedes mariae complex (Diptera, Culicidae).

Two sibling species of the mariae complex of the Aedes genus have been studied: Ae. mariae and Ae. zammitii. Thee mosquitoes are allopatric and show similar adaptations to rocky mediterranean coasts. The isolating mechanisms between the two species are well studied. A partial sterility of hybrid F1, limited to males, has been found with laboratory cross experiments. Strong pre-mating isolating mechanisms were shown in nature by means of release experiments, the frequency of hybrids never exceeding 2% without evidence of introgression. We analyzed genetic variation at 26 enzyme loci in a population of each species: 35% of loci were polymorphic, with an observed mean heterozygosity of 0.07 in Ae. mariae and 0.06 in Ae. zammitii; 6 loci allow discrimination between the two species at a probability of at least .99. Nei's measures of genetic identity and genetic distance are respectively I = 0.6096 and D = 0.2828. The distribution of genetic identities relative to loci is strongly bimodal, reflecting a different contribution of highly variable and fast evolving loci on one side and conservative and slowly evolving loci on the other. We consider, on the base of various experimental data (see Powell, 1975), in the first class ("fast evolving" loci) both variable substrate and regulatory enzymes, in the second ("slow evolving" loci) non regulatory enzymes. Values of genetic distance calculated separately for the "fast" (54% of the loci studied) and "slow" (46%) evolving loci are respectively Df = 0.41 and Ds = 0.03, showing that the main contribution to genetic distance in the first period of divergence is due to fast evolving loci, whose rate of evolution is about ten times more rapid with respect to slow evolving loci.

Aedes↗

Receptivity to malaria in Europe.

Experimental work has confirmed the refractoriness of Anopheles atroparvus to tropical strains of Plasmodium falciparum to which A. labranchiae may also be refractory. This indicates a lower receptivity to malaria in Europe than the existing vector densities and increasing number of parasite carriers would suggest.

Animals↗

Inversion polymorphism and adult emergence in Anopheles stephensi.

The adult carriers of two alternative gene arrangements in Anopheles stephensi were found to have distinct daily distributions of emergence, the heterokaryotype being intermediate between the homokaryotypes. Such differences in temporal organization may arise from inversion coadaptation that results in the production of diversified genetic regulatory systems.

Animals↗