von der Weid I, Alviano D S, Santos A L S, Soares R M A, Alviano C S, Seldin L
Departamento de Microbiologia Geral, Instituto de Microbiologia Prof Paulo de Góes, Centro de Ciências da Saúde, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil.
J Appl Microbiol. 2003;95(5):1143-51. doi: 10.1046/j.1365-2672.2003.02097.x.
To investigate the potential antagonistic activity of Paenibacillus peoriae strain NRRL BD-62 against phytopathogenic micro-organisms and to determine the physiological and biochemical characteristics of the antimicrobial compound produced by this strain.
Strain NRRL BD-62 showed a broad inhibition spectrum with activity against various phytopathogenic bacteria and fungi. Physico-chemical characterization of the antimicrobial activity showed that it was stable during heat treatment and was retained even after autoclave at 121 degrees C for 10 min. The compound was also stable after the treatment with organic solvents, hydrolytic enzymes and its activity was preserved at a wide range of pH. The partial purification carried out by Sephadex G25 gel filtration showed two profiles of inhibition against the indicator strains tested, suggesting at least two different substances with distinct molecular weight.
CONCLUSIONS, SIGNIFICANCE AND IMPACT OF THE STUDY: This is the first report on the production of antimicrobial substances in P. peoriae. Besides the antimicrobial inhibition capability, the strain NRRL BD-62 is also able to effectively fix molecular nitrogen, and produce chitinases and proteases as well, suggesting that further studies should be addressed to use P. peoriae strain NRRL BD-62 as a plant growth promoter and/or as a biocontrol agent in field experiments.
研究皮奥里亚芽孢杆菌NRRL BD - 62菌株对植物病原微生物的潜在拮抗活性,并确定该菌株产生的抗菌化合物的生理生化特性。
NRRL BD - 62菌株表现出广泛的抑制谱,对多种植物病原细菌和真菌具有活性。抗菌活性的理化特性表明,其在热处理过程中稳定,即使在121℃高压灭菌10分钟后仍能保持活性。该化合物在经过有机溶剂、水解酶处理后也很稳定,并且在很宽的pH范围内都能保持其活性。通过Sephadex G25凝胶过滤进行的部分纯化显示,对测试的指示菌株有两种抑制谱,表明至少有两种分子量不同的不同物质。
研究的结论、意义和影响:这是关于皮奥里亚芽孢杆菌产生抗菌物质的首次报道。除了具有抗菌抑制能力外,NRRL BD - 62菌株还能够有效地固定分子氮,并且还能产生几丁质酶和蛋白酶,这表明应该进一步开展研究,以便在田间试验中将皮奥里亚芽孢杆菌NRRL BD - 62菌株用作植物生长促进剂和/或生物防治剂。