Anderson A J
Can J Microbiol. 1980 Dec;26(12):1422-7. doi: 10.1139/m80-237.
Bacteriophage 12P caused lysis of Pseudomonas phaseolicola but not other pathogenic or saprophytic pseudomonads. Specificity of the bacteriophage may depend on recognition of some unique feature of the P. phaseolicola cell surface polysaccharides. Exopolysaccharide (EPS) and lipopolysaccharide (LPS) from P. phaseolicola were more efficient at inhibiting bacteriophage attachment than were identically prepared extracts from five other pseudomonad species. Mutants of P. phaseolicola with bacteriophage resistance produced EPS and LPS different in amount and composition from those of the parental strain. Thus, in some manner the EPS and LPS structures of P. phaseolicola are distinct from those of other plant pathogenic and saprophytic species. The difference may prevent recognition and initiation of resistance events when P. phaseolicola challenges its susceptible host plant, bean.
噬菌体12P可导致菜豆假单胞菌裂解,但不会使其他致病或腐生假单胞菌裂解。该噬菌体的特异性可能取决于对菜豆假单胞菌细胞表面多糖某些独特特征的识别。与从其他五种假单胞菌属物种中制备的相同提取物相比,菜豆假单胞菌的胞外多糖(EPS)和脂多糖(LPS)在抑制噬菌体附着方面更有效。具有噬菌体抗性的菜豆假单胞菌突变体产生的EPS和LPS在数量和组成上与亲本菌株不同。因此,菜豆假单胞菌的EPS和LPS结构在某种程度上与其他植物致病和腐生物种的结构不同。当菜豆假单胞菌挑战其易感寄主植物豆类时,这种差异可能会阻止识别和引发抗性反应。