Ström Katrin, Schnürer Johan, Melin Petter
Department of Microbiology, Swedish University of Agricultural Sciences, P.O. Box 7025, SE-750 07 Uppsala, Sweden.
FEMS Microbiol Lett. 2005 May 1;246(1):119-24. doi: 10.1016/j.femsle.2005.03.047.
The fungal inhibitory effects of strain Lactobacillus plantarum MiLAB 393, producing broad-spectrum antifungal compounds, were evaluated. A co-cultivation method was set up to monitor effects on fungal growth and protein expression of growing Aspergillus nidulans with L. plantarum MiLAB 393. The effects of inhibitory metabolites produced by L. plantarum MiLAB 393, cyclo(l-Phe-l-Pro), lactic acid and 3-phenyllactic acid, were also investigated by addition of pure compounds to the growth medium of A. nidulans. The co-cultivation strongly affected the morphology of the fungal mycelium and decreased the biomass to 36% of control. Co-cultivation with Lactobacillus coryniformis MiLAB 123 gave only marginal morphological changes and minor biomass reduction, suggesting specific effects of L. plantarum MiLAB 393. The amount of several A. nidulans-proteins was increased during co-cultivation and by all of the inhibiting substances. This study shows that the growth of A. nidulans is inhibited during co-cultivation with L. plantarum MiLAB 393 and that the expression of fungal proteins is altered.
对产广谱抗真菌化合物的植物乳杆菌MiLAB 393菌株的真菌抑制作用进行了评估。建立了一种共培养方法,以监测植物乳杆菌MiLAB 393对构巢曲霉生长和蛋白质表达的影响。还通过向构巢曲霉生长培养基中添加纯化合物,研究了植物乳杆菌MiLAB 393产生的抑制性代谢产物环(L-苯丙氨酸-L-脯氨酸)、乳酸和3-苯乳酸的作用。共培养强烈影响了真菌菌丝体的形态,并使生物量降至对照的36%。与棒状乳杆菌MiLAB 123共培养仅产生轻微的形态变化和少量生物量减少,表明植物乳杆菌MiLAB 393具有特定作用。共培养期间以及所有抑制物质处理后,几种构巢曲霉蛋白质的含量均增加。本研究表明,与植物乳杆菌MiLAB 393共培养期间构巢曲霉的生长受到抑制,且真菌蛋白质的表达发生了改变。