Guo Yanbin, Zheng Hui, Yang Yiling, Wang Huimin
Department of Plant Pathology, China Agricultural University, 100094 Beijing, China.
Curr Microbiol. 2007 Sep;55(3):247-53. doi: 10.1007/s00284-007-0120-3. Epub 2007 Jul 25.
In an attempt to obtain biologic control agents for grey mildew of tomato, a total of 628 bacterial strains were isolated from agricultural soil samples in Beijing, China, and screened for in vitro antibiosis toward Botrytis cinerea. Strain P94 exhibited the most obvious antagonistic activity. It P94 had no pathogenicity and was identified as Pseudomonas corrugata by the Biolog identification system combined with 16S rDNA sequence analysis and biochemical and physiologic characteristics. The specific products of polymerase chain reaction with two pairs of specific primers indicated that P94 belonged to P. corrugata genomic group II. Strain P94 inhibited the growth of a number of phytopathogenic fungal and bacterial species and showed inhibition activity to tomato grey mildew by tomato leaf testing in vitro. Strain P94 showed a positive reaction for HCN, protease, phosphatase, and indole acetic acid tests and a negative reaction for siderophore-, chitinase-, and cellulase-production tests. Therefore, the secondary metabolites producing novel P. corrugata strain P94 exhibited an innate potential of biocontrol activities in vitro.
为了获得防治番茄灰霉病的生物防治剂,从中国北京的农业土壤样本中总共分离出628株细菌菌株,并对其进行体外抗灰葡萄孢菌的筛选。菌株P94表现出最明显的拮抗活性。P94无致病性,通过Biolog鉴定系统结合16S rDNA序列分析以及生化和生理特性被鉴定为皱缩假单胞菌。用两对特异性引物进行聚合酶链反应的特异性产物表明P94属于皱缩假单胞菌基因组II。菌株P94抑制多种植物病原真菌和细菌的生长,并通过体外番茄叶片试验对番茄灰霉病表现出抑制活性。菌株P94在HCN、蛋白酶、磷酸酶和吲哚乙酸试验中呈阳性反应,在铁载体、几丁质酶和纤维素酶产生试验中呈阴性反应。因此,产生次生代谢产物的新型皱缩假单胞菌菌株P94在体外表现出生物防治活性的内在潜力。