de Boer Wietse, Wagenaar Anne-Marieke, Klein Gunnewiek Paulien J A, van Veen Johannes A
Netherlands Institute of Ecology (NIOO-KNAW), Centre for Terrestrial Ecology, ZG Heteren, The Netherlands.
FEMS Microbiol Ecol. 2007 Jan;59(1):177-85. doi: 10.1111/j.1574-6941.2006.00197.x.
We hypothesized that apparently non-antagonistic soil bacteria may contribute to suppression of fungi during competitive interactions with other bacteria. Four soil bacteria (Brevundimonas sp., Luteibacter sp., Pedobacter sp. and Pseudomonas sp.) that exhibited little or no visible antifungal activity on different agar media were prescribed. Single and mixed strains of these species were tested for antagonism on a nutrient-poor agar medium against the plant pathogenic fungi Fusarium culmorum and Rhizoctonia solani and the saprotrophic fungus Trichoderma harzianum. Single bacterial strains caused little to moderate growth reduction of fungi (quantified as ergosterol), most probably due to nutrient withdrawal from the media. Growth reduction of fungi by the bacterial mixture was much stronger than that by the single strains. This appeared to be mostly due to competitive interactions between the Pseudomonas and Pedobacter strains. We argue that cohabitation of these strains triggered antibiotic production via interspecific interactions and that the growth reduction of fungi was a side-effect caused by the sensitivity of the fungi to bacterial secondary metabolites. Induction of gliding behavior in the Pedobacter strain by other strains was also observed. Our results indicate that apparently non-antagonistic soil bacteria may be important contributors to soil suppressiveness and fungistasis when in a community context.
我们推测,在与其他细菌的竞争相互作用中,看似无拮抗作用的土壤细菌可能有助于抑制真菌。我们挑选了四种在不同琼脂培养基上几乎没有或没有明显抗真菌活性的土壤细菌(短波单胞菌属、黄杆菌属、Pedobacter菌属和假单胞菌属)。测试了这些菌种的单菌株和混合菌株在营养贫瘠的琼脂培养基上对植物病原真菌禾谷镰刀菌和立枯丝核菌以及腐生真菌哈茨木霉的拮抗作用。单个细菌菌株对真菌生长的抑制作用较小至中等(以麦角甾醇定量),这很可能是由于从培养基中摄取营养所致。细菌混合物对真菌生长的抑制作用比单个菌株要强得多。这似乎主要是由于假单胞菌属和Pedobacter菌属菌株之间的竞争相互作用。我们认为,这些菌株的共同存在通过种间相互作用引发了抗生素的产生,而真菌生长的减少是真菌对细菌次生代谢产物敏感所导致的副作用。还观察到其他菌株诱导Pedobacter菌株产生滑动行为。我们的结果表明,在群落环境中,看似无拮抗作用的土壤细菌可能是土壤抑制性和抑真菌作用的重要贡献者。