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Sporulation in Hansenula wingei is induced by nitrogen starvation in maltose-containing media
Abstract:
The sexually agglutinative yeast Hansenula wingei lives in association with bark beetles that inhabit coniferous trees. This yeast was induced to sporulate by malt extract, which contains a high percentage of maltose (50%) and a low percentage of nitrogen (0.5%). A solution of 1.5% maltose without any growth factors also induced ascosporogenesis in H. wingei. Thus, only a carbon source is required for sporulation as in Saccharomyces. However, potassium acetate did not induce sporulation in H. wingei as it does in S. cerevisiae. Instead, disaccharides (such as maltose, sucrose, or cellobiose) promote sporulation better than either monosaccharides (such as dextrose, fructose, or mannose) or respiratory substrates (such as ethanol or glycerol). The specificity of disaccharides in promoting sporulation in H. wingei may be considered an adaptation since these disaccharides are present in the natural environment of this yeast. In addition, the specificity of disaccharides may be related to the induction of the disaccharidase because cells precultured on dextrose sporulate well on maltose, but cells precultured on maltose sporulate poorly on maltose. When (NH(4))(2)SO(4) was added at a low concentration (3 mM) to synthetic sporulation medium (1.5% maltose solution), sporulation was abolished, whereas other salts and nitrogen sources inhibited to a lesser extent and vitamins and trace elements had no effect. Oxygen was required for sporulation, as expected for an obligate aerobe. Maximal sporulation was achieved in 2% malt extract broth at high cell density (10(9) cells per ml), pH 5, and 25 degrees C. By using these optimal physiological conditions and hybrid strains selected from an extensive genetic breeding program, about 30% asci (10% tetrads) were obtained routinely. Thus, the genetics of cell recognition in this yeast can now be studied.
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.