Keel Christoph, Ucurum Zöhre, Michaux Patrick, Adrian Marc, Haas Dieter
Laboratoire de Biologie Microbienne, Université de Lausanne, Switzerland.
Mol Plant Microbe Interact. 2002 Jun;15(6):567-76. doi: 10.1094/MPMI.2002.15.6.567.
Many biotic and abiotic factors affect the persistence and activity of beneficial pseudomonads introduced into soil to suppress plant diseases. One such factor may be the presence of virulent bacteriophages that decimate the population of the introduced bacteria, thereby reducing their beneficial effect. We have isolated a lytic bacteriophage (phi)GP100) that specifically infects the biocontrol bacterium Pseudomonas fluorescens CHA0 and some closely related Pseudomonas strains. phiGP100 was found to be a double-stranded-DNA phage with an icosahedral head, a stubby tail, and a genome size of approximately 50 kb. Replication of phiGP100 was negatively affected at temperatures higher than 25 degrees C. phiGP100 had a negative impact on the population size and the biocontrol activity of P. fluorescens strain CHA0-Rif (a rifampicin-resistant variant of CHA0) in natural soil microcosms. In the presence of phiGP100, the population size of strain CHA0-Rif in soil and on cucumber roots was reduced more than 100-fold. As a consequence, the bacterium's capacity to protect cucumber against a root disease caused by the pathogenic oomycete Pythium ultimum was entirely abolished. In contrast, the phage affected neither root colonization and nor the disease suppressive effect of a phiDGP100-resistant variant of strain CHA0-Rif. To our knowledge, this study is the first to illustrate the potential of phages to impair biocontrol performance of beneficial bacteria released into the natural soil environment.
许多生物和非生物因素会影响引入土壤中用于抑制植物病害的有益假单胞菌的存活和活性。其中一个因素可能是有毒噬菌体的存在,它会大量减少引入细菌的数量,从而降低其有益效果。我们分离出了一种裂解性噬菌体(phi)GP100,它能特异性感染生防细菌荧光假单胞菌CHA0以及一些密切相关的假单胞菌菌株。发现phiGP100是一种双链DNA噬菌体,具有二十面体头部、短粗尾部,基因组大小约为50 kb。在高于25摄氏度的温度下,phiGP100的复制受到负面影响。在天然土壤微宇宙中,phiGP100对荧光假单胞菌CHA0-Rif(CHA0的利福平抗性变体)的种群数量和生防活性有负面影响。在存在phiGP100的情况下,土壤中和黄瓜根上CHA0-Rif菌株的种群数量减少了100倍以上。因此,该细菌保护黄瓜免受致病卵菌终极腐霉引起的根病的能力完全丧失。相比之下,该噬菌体对CHA0-Rif菌株的phiDGP100抗性变体的根定殖和病害抑制效果均无影响。据我们所知,本研究首次阐明了噬菌体削弱释放到天然土壤环境中的有益细菌生防性能的可能性。