PubMed Health⌕ Search

Biomedical subjects

F Kevei

Publications and source records attributed to F Kevei.

29 records · Page 2Linked to original sources

Mitochondrial DNA restriction fragment length polymorphisms in field isolates of the Aspergillus niger aggregate.

The mitochondrial DNAs (mtDNAs) and the ribosomal repeat unit (ribosomal DNA, rDNA) of black Aspergillus isolates collected in various parts of the world were examined. Wide-ranging mtDNA variation was observed in natural populations of the Aspergillus niger aggregate. Most isolates were classifiable as A. niger or Aspergillus tubingensis according to their rDNA and mtDNA patterns. The mtDNA variation was distributed unevenly in the populations studied. The mtDNAs of most of the isolates collected in Australia were of the A. tubingensis type, with an unexpectedly high degree of variation, while the rDNA of these isolates exhibited the same A. tubingensis pattern as that of isolates from other locations. Some other local populations displayed very little polymorphism in their mtDNA and rDNA. Hybridization experiments in which cloned A. niger and Aspergillus nidulans mtDNA fragments were used revealed that the two main mtDNA groups corresponding to A. niger and A. tubingensis are more distantly related than concluded earlier. Six of the 13 Brazilian isolates examined exhibited mtDNA and rDNA types different from those of all the other strains and could not be classified into the above species. Classical taxonomic examination of these strains is in progress.

Aspergillus↗

Characterization of interspecific hybrids within the Aspergillus nidulans group by isoenzyme analysis.

A comparison of interspecific hybrids within the Aspergillus nidulans species group was made by isoenzyme analysis. The gel electrophoretic patterns of the parental species were distinct for most of the enzymes tested. The hybrids were distinguishable from their parents by isoenzyme patterns. The appearance of novel bands in all the interspecific hybrids indicated that nuclear fusion could have occurred. In most hybrids the appearance of the parental bands showed nonpreferential, partial chromosome loss or repressive interaction between the genomes. The isoenzyme composition of the haploid segregants of the Aspergillus nidulans x Aspergillus rugulosus hybrid differed for some of the enzymes studied from that of the hybrid, suggesting that during segregation further interaction of the chromosomes took place. The results indicate a certain degree of genetic homology among the members of the Aspergillus nidulans species group.

Aspergillus nidulans↗

Further studies on protoplast fusion and interspecific hybridization within the Aspergillus nidulans group.

Hybridization of eight species of the Aspergillus nidulans group was attempted using auxotrophic mutants and protoplast fusion methods. Viable fusion products were obtained from eight crosses. Allodiploid hybrids were recovered from crosses involving A. nidulans with A. rugulosus, A. quadrilineatus, A. nidulans var. echinulatus and A. violaceus, although some mutants only gave heterokaryons. Crosses involving these latter species also gave heterokaryons. Crosses between A. nidulans and A. unguis, A. stellatus and A. heterothallicus were unsuccessful. Fusions involving three parents gave heterokaryons made up of only two of them.

Aspergillus nidulans↗

Induced segregation in interspecific hybrids of Aspergillus nidulans and Aspergillus rugulosus obtained by protoplast fusion.

Interspecific hybrids produced by polyethylene glycol induced fusion of protoplasts from auxotrophic mutants of Aspergillus nidulans and Aspergillus rugulosus were grown in the presence of the recombinogens benomyl and chloral hydrate to stimulate segregation. The A. nidulans parental strains used had a known genetic marker in each linkage group. Hybrids grown on complete medium containing benomyl yielded more segregants. Analysis of the segregants showed that the distribution of A. nidulans linkage groups was random. No specific linkage group appeared in all the segregants. The two parents are closely related taxonomically and the findings from these experiments suggest that a high degree of chromosomal homology may exist between them.

Aspergillus↗