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Sökning: WFRF:(Mentel Marek)

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1.
  • Janiak, M., et al. (författare)
  • β -delayed proton emission from P 26 and S 27
  • 2017
  • Ingår i: Physical Review C: covering nuclear physics. - 2469-9985. ; 95:3
  • Tidskriftsartikel (refereegranskat)abstract
    • Delayed emission of protons following β decay of neutron deficient nuclei P26 and S27 was investigated at the ACCULINNA separator in the Flerov Laboratory of Nuclear Reactions at Dubna. Ions of interest, identified in flight, were implanted into the active volume of the gaseous optical time projection chamber, which allowed us to record tracks of charged particles emitted in the decay. Total branching ratios for β-delayed proton emission and for β-delayed two-proton emission were determined. In addition, energy spectra for delayed protons below 2 MeV were established. Our findings for P26 agree with results of previous experiments. In the case of S27, however, the observed probability of delayed proton emission is an order of magnitude larger than reported in literature. Two new strong proton transitions were identified representing decays of the first two excited states of P27 to the ground state of Si26. The probability ratio of γ-to-proton emission from these states is discussed.
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2.
  • Mentel, Marek, et al. (författare)
  • Transfer of genetic material between pathogenic and food-borne yeasts
  • 2006
  • Ingår i: Applied and Environmental Microbiology. - 0099-2240. ; 72:7, s. 5122-5125
  • Tidskriftsartikel (refereegranskat)abstract
    • Many pathogenic yeast species are asexual and therefore not involved in intra- or interspecies mating. However, high-frequency transfer of plasmid DNA was observed when pathogenic and food-borne yeasts were grown together. This property could play a crucial role in the spread of virulence and drug resistance factors among yeasts.
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3.
  • Poláková, Silvia, et al. (författare)
  • Formation of new chromosomes as a virulence mechanism in yeast Candida glabrata.
  • 2009
  • Ingår i: Proceedings of the National Academy of Sciences. - : Proceedings of the National Academy of Sciences. - 1091-6490 .- 0027-8424. ; 106:8, s. 2688-2693
  • Tidskriftsartikel (refereegranskat)abstract
    • In eukaryotes, the number and rough organization of chromosomes is well preserved within isolates of the same species. Novel chromosomes and loss of chromosomes are infrequent and usually associated with pathological events. Here, we analyzed 40 pathogenic isolates of a haploid and asexual yeast, Candida glabrata, for their genome structure and stability. This organism has recently become the second most prevalent yeast pathogen in humans. Although the gene sequences were well conserved among different strains, their chromosome structures differed drastically. The most frequent events reshaping chromosomes were translocations of chromosomal arms. However, also larger segmental duplications were frequent and occasionally we observed novel chromosomes. Apparently, this yeast can generate a new chromosome by duplication of chromosome segments carrying a centromere and subsequently adding novel telomeric ends. We show that the observed genome plasticity is connected with antifungal drug resistance and it is likely an advantage in the human body, where environmental conditions fluctuate a lot.
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