Woo Sheri, Fogliano Vincenzo, Scala Felice, Lorito Matteo
Dip Ar Bo Pa Ve, Università di Napoli Federico II, Portici, Italy.
Antonie Van Leeuwenhoek. 2002 Aug;81(1-4):353-6. doi: 10.1023/a:1020540818163.
The interactions between biocontrol fungi and bacteria may play a key role in the natural process of biocontrol, although the molecular mechanisms involved are still largely unknown. Synergism can occur when different agents are applied together, and cell wall degrading enzymes (CWDEs) produced by fungi can increase the efficacy of bacteria. Pseudomonas spp. produce membrane-disrupting lipodepsipeptides (LDPs) syringotoxins (SP) and syringomycins (SR). SR are considered responsible for the antimicrobial activity, and SP for the phytotoxicity. CWDEs of Trichoderma spp. synergistically increased the toxicity of SP25-A or SRE purified from P. syringae against fungal pathogens. For instance, the fungal enzymes made Botrytis cinerea and other phytopathogenic fungi, normally resistant to SP25-A alone, more susceptible to this antibiotic. Pseudomonas produced CWDEs in culture conditions that allow the synthesis of the LDPs. Purified bacterial enzymes and metabolites were also synergistic against fungal pathogens, although this mixture was less powerful than the combination with the Trichoderma CWDEs. The positive interaction between LDPs and CWDEs may be part of the biocontrol mechanism in some Pseudomonas strains, and co-induction of different antifungal compounds in both biocontrol bacteria and fungi may occur.
生防真菌与细菌之间的相互作用可能在生物防治的自然过程中发挥关键作用,尽管其中涉及的分子机制仍大多未知。当同时施用不同的生防制剂时可能会产生协同作用,真菌产生的细胞壁降解酶(CWDEs)可提高细菌的防治效果。假单胞菌属产生破坏细胞膜的脂环肽(LDPs)丁香毒素(SP)和丁香霉素(SR)。SR被认为具有抗菌活性,而SP具有植物毒性。木霉属的CWDEs可协同增强从丁香假单胞菌中纯化得到的SP25 - A或SRE对真菌病原体的毒性。例如,这些真菌酶使通常单独对SP25 - A具有抗性的灰葡萄孢和其他植物病原真菌对这种抗生素更敏感。假单胞菌在允许合成LDPs的培养条件下产生CWDEs。纯化的细菌酶和代谢产物对真菌病原体也具有协同作用,尽管这种混合物的效力低于与木霉CWDEs的组合。LDPs与CWDEs之间的正向相互作用可能是某些假单胞菌菌株生物防治机制的一部分,并且在生防细菌和真菌中可能会共同诱导产生不同的抗真菌化合物。