Hefnawy M A, Abou-Zeid A M
Faculty of Science, Menoufia University, Shebin El-Kom, Egypt.
Acta Microbiol Pol. 2003;52(1):53-64.
Aspergillus chevalieri and Penicillium expansum were able to tolerate sucrose concentrations in the growth media up to 80% (w/v). At 50% sucrose the growth rate is approximately 1.4 and 1.2 times, respectively, higher than in the control. While at 80% sucrose it drops to 35% and 45% of the control level for both fungi. Lipids and proteins in plasma membranes increased with increasing sucrose concentrations in the growth medium. Phospholipid content in membranes of both organisms being also increased, phosphatidyl glycerol was the major detected phospholipid and represented the highest increase. The fatty acid composition of fraction enriched plasma membrane of both fungi changed when they were grown in high sucrose concentrations. Some fatty acids which had not been detected in control cultures were present and the proportions of other fatty acids changed. At 50% sucrose the unsaturation index of membranes decreased by 20-25% in both fungi, indicating that the plasma membrane is less fluid at this concentration. At 80% sucrose a similar trend was observed for P. expansum but for A. chevalieri the unsaturation index was little changed compared with the control. The fluorescence polarization values of 1,6-diphenyl 1,3,5-hexatriene (DPH) in membranes of both fungi grown at 80% sucrose increased, indicating a decrease in membrane fluidity. At 50% sucrose the increase in saturation of membrane fatty acids would tend to reduce membrane fluidity but in A. chevalieri at 80% sucrose fatty acids did not become more saturated. In this case the marked increase in sterols at this sucrose concentration may be responsible for low membrane fluidity.
谢瓦曲霉和扩展青霉能够耐受生长培养基中蔗糖浓度高达80%(w/v)。在50%蔗糖浓度下,生长速率分别比对照高约1.4倍和1.2倍。而在80%蔗糖浓度下,两种真菌的生长速率均降至对照水平的35%和45%。随着生长培养基中蔗糖浓度的增加,质膜中的脂质和蛋白质含量增加。两种生物膜中的磷脂含量也增加,磷脂酰甘油是检测到的主要磷脂,且增加幅度最大。当两种真菌在高蔗糖浓度下生长时,富含质膜部分的脂肪酸组成发生了变化。在对照培养物中未检测到的一些脂肪酸出现了,其他脂肪酸的比例也发生了变化。在50%蔗糖浓度下,两种真菌膜的不饱和度指数均下降了20 - 25%,这表明在此浓度下质膜流动性降低。在80%蔗糖浓度下,扩展青霉观察到类似趋势,但谢瓦曲霉的不饱和度指数与对照相比变化不大。在80%蔗糖浓度下生长的两种真菌膜中1,6 - 二苯基 - 1,3,5 - 己三烯(DPH)的荧光偏振值增加,表明膜流动性降低。在50%蔗糖浓度下,膜脂肪酸饱和度的增加倾向于降低膜流动性,但在80%蔗糖浓度下的谢瓦曲霉中,脂肪酸并未变得更加饱和。在这种情况下,此蔗糖浓度下固醇的显著增加可能是膜流动性低的原因。