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Sporulation in Hansenula wingei is induced by nitrogen starvation in maltose-containing media

Insights

Maltose and other disaccharides promote sporulation in the yeast Hansenula wingei, unlike in Saccharomyces cerevisiae. Optimal conditions include high cell density, pH 5, and 25°C, enabling genetic studies.

Area of Science:

  • * Mycology
  • * Yeast genetics
  • * Cellular biology

Background:

  • * Hansenula wingei, a sexually agglutinative yeast, is found with bark beetles on coniferous trees.
  • * Sporulation in yeasts is a critical process for genetic exchange and survival.

Purpose of the Study:

  • * To investigate the nutritional and environmental factors inducing sporulation in Hansenula wingei.
  • * To identify specific carbon sources and conditions that optimize ascosporogenesis for genetic research.

Main Methods:

  • * Yeast cultures were subjected to various media compositions, including different carbon sources (disaccharides, monosaccharides, ethanol, glycerol), nitrogen sources, salts, vitamins, and trace elements.
  • * Environmental parameters such as pH, temperature, oxygen availability, and cell density were systematically varied.
  • * Sporulation efficiency was quantified by observing asci and tetrad formation.

Main Results:

  • * Disaccharides (maltose, sucrose, cellobiose) were found to be superior inducers of sporulation compared to monosaccharides or respiratory substrates.
  • * Sporulation was dependent on a carbon source and oxygen, but inhibited by low concentrations of ammonium sulfate.
  • * Optimal sporulation (approx. 30% asci) was achieved at high cell density (10(9) cells/ml), pH 5, and 25°C in malt extract broth.

Conclusions:

  • * Disaccharide utilization appears crucial for H. wingei sporulation, potentially linked to disaccharidase induction.
  • * Optimal conditions have been established for routine induction of sporulation in H. wingei.
  • * These findings facilitate future genetic studies on cell recognition in this yeast.

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