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Biomedical subjects

R Alicchio

Publications and source records attributed to R Alicchio.

4 recordsLinked to original sources

RFLP- and RAPD-based genetic relationships of seven diploid species of Avena with the A genome.

Relatively few molecular analyses are available for diploid oat species, which constitute the majority of the wild species of Avena and, therefore, the principal natural reservoir of variability. The present work reports an RAPD-(random amplified polymorphic DNA) and RFLP-(restriction fragment length polymorphism) based study of the intra- and interspecific variability of seven diploid A-genome oat species. Both types of markers resulted in valid tools for identifying polymorphisms both within and between species. The two statistical analyses, UPGMA (unweighted pair group method, arithmetic mean) and PCoA (principal coordinate analysis), computed on the basis of genetic similarities estimated from RAPDs and RFLPs, showed that the different accessions grouped according to species, but the similarity coefficients were consistently higher in the RFLP analysis. Furthermore, slight differences were observed in the intra- and interspecific relationships found with the two types of markers. This may support the hypothesis that the polymorphisms revealed by the two types of markers may associate with regions of the genome having different evolutionary rates. The relationships among species are not identical to those deduced from previous karyotypic and morphological studies, thus suggesting a partially different evolutionary pathway in oat speciation.

Avena↗

Differential lethality following treatment with ionizing radiations of various energies in Drosophila.

Male and female gametes of Drosophila were treated with various doses of ionizing radiations: X-rays at different energy, and gamma-rays from 2 sources given singly and in 2 temporal sequences. The induced lethality was assessed in successive developmental stages by scoring the number of eggs, larvae and adults. The results clearly show that the effects of various radiations appear in terms of difference among developmental stages and/or between treated sexes/genotypes. It is suggested that the various energies affect different gene functions which are not completely independent, as supported by the non-additive effects of the two temporal sequences.

Animals↗

Differential response to selection on the two sexes in Drosophila melanogaster.

Artificial selection for short wing was performed in two Drosophila melanogaster populations with partially different gene pools: the C populations were derived from a Canton stock while the H lines were derived from a cross between Canton and a b, cn, vg strain. It is shown that in both populations selection on females (CF, HF) was more effective than selection on males (CM, HM). This difference cannot be explained in terms of differences in additive genetic variability between the two sexes because: (1) both sexes contribute to the genetic variability utilized by selection applied to one sex only, and (2) switching selection pressure on females in the M lines does not result in a response comparable to that obtained in the F populations; this rules out almost completely recombination as the responsible agent for the differences between the selection limits reached by M and F selections.-These results, together with several additional observations concerning sexual dimorphism, fitness and the effect of natural selection, suggest that a complex interaction should be involved in the differential response of M and F lines, controlling the wing length phenotype.

Animals↗