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Bioactive and Structural Metabolites of Pseudomonas and Burkholderia Species Causal Agents of Cultivated Mushrooms Diseases

机译:假单胞菌和伯克霍尔德菌种的致病菌的生物活性和结构代谢产物

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Pseudomonas tolaasii, P. reactans and Burkholderia gladioli pv. agaricicola, are responsible of diseases on some species of cultivated mushrooms. The main bioactive metabolites produced by both Pseudomonas strains are the lipodepsipeptides (LDPs) tolaasin I and II and the so called White Line Inducing Principle (WLIP), respectively, LDPs which have been extensively studied for their role in the disease process and for their biological properties. In particular, their antimicrobial activity and the alteration of biological and model membranes (red blood cell and liposomes) was established. In the case of tolaasin I interaction with membranes was also related to the tridimensional structure in solution as determined by NMR combined with molecular dynamic calculation techniques. Recently, ?ve news minor tolaasins, tolaasins A-E, were isolated from the culture ?ltrates of P. tolaasii and their chemical structure was determined by extensive use of NMR and MS spectroscopy. Furthermore, their antimicrobial activity was evaluated on target micro-organisms (fungi—including the cultivated mushroomsAgaricus bisporus, Lentinus edodes, and Pleurotus spp.—chromista, yeast and bacteria). The Gram positive bacteria resulted the most sensible and a signi? cant structure-activity relationships was apparent. The isolation and structure determination of bioactive metabolites produced by B. gladioli pv. agaricicola are still in progress but preliminary results indicate their peptide nature. Furthermore, the exopolysaccharide (EPS) from the culture ?ltrates of B. gladioli pv. agaricicola, as well as the O-chain and lipid A, from the lipo-polysaccharide (LPS) of the three bacteria, were isolated and the structures determined.
机译:假单胞菌(Pseudomonas tolaasii),P.reactans和glakolilia pv。琼脂菌是造成某些栽培蘑菇疾病的原因。两种假单胞菌菌株产生的主要生物活性代谢物分别是脂蛋白肽(LDPs)tolaasin I和II和所谓的“白线诱导原理”(WLIP),已经对其LDP在疾病过程中的作用及其生物学特性进行了广泛研究。属性。特别是,确定了它们的抗菌活性以及生物膜和模型膜(红细胞和脂质体)的变化。在tolaasin I的情况下,与膜的相互作用也与溶液的三维结构有关,这是通过NMR与分子动力学计算技术结合确定的。近来,从土生假单胞菌的培养滤液中分离出五种次要的松弛素,即松弛素A-E,并通过广泛使用NMR和MS光谱测定了它们的化学结构。此外,还评估了它们对目标微生物(真菌-包括栽培的蘑菇双孢蘑菇,香菇和侧耳菌-色霉菌,酵母和细菌)的抗菌活性。革兰氏阳性细菌引起的最明智和显着性。不能建立构效关系。剑兰芽孢杆菌生产的生物活性代谢产物的分离与结构测定。琼脂菌仍在进行中,但初步结果表明它们的肽性质。此外,来自剑兰芽孢杆菌PV的培养物的胞外多糖(EPS)。从这三种细菌的脂多糖(LPS)中分离出了琼脂杆菌,O链和脂质A,并确定了结构。

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