Rezzonico Fabio, Zala Marcello, Keel Christoph, Duffy Brion, Moënne-Loccoz Yvan, Défago Geneviève
Phytopathology Group, Institute of Integrative Biology, Swiss Federal Institute of Technology (ETH), Universitätstrasse 2, CH-8092 Zürich, Switzerland.
SafeCrop Center, c/o Agroscope ACW Changins-Wädenswil, CH-8820 Wädenswil, Switzerland.
New Phytol. 2007;173(4):861-872. doi: 10.1111/j.1469-8137.2006.01955.x.
The antifungal compound 2,4-diacetylphloroglucinol (Phl) contributes to biocontrol in pseudomonads, but whether or not Phl(+) biocontrol pseudomonads display higher plant-protecting activity than Phl(-) biocontrol pseudomonads remains to be demonstrated. This issue was addressed by assessing 230 biocontrol fluorescent pseudomonads selected from a collection of 3132 bacterial isolates obtained from 63 soils worldwide. One-third of the biocontrol pseudomonads were Phl(+) and almost all Phl(+) isolates also produced hydrogen cyanide (HCN). The only Phl(+) HCN(-) strain did harbor hcn genes, but with the deletion of a 134 bp hcnC fragment corresponding to an ADP-binding motif. Statistical analysis of biocontrol isolate distributions indicated that Phl production ability was associated with superior disease suppression activity in the Pythium-cucumber and Fusarium-tomato pathosystems, but this was also the case with HCN production ability. However, HCN significance was not as strong, as indicated both by the comparison of Phl(-) HCN(+) and Phl(-) HCN(-) strains and by correlation analyses. This is the first population-level demonstration of the higher plant-protecting activity of Phl(+) biocontrol pseudomonads in comparison with Phl(-) biocontrol pseudomonads.
抗真菌化合物2,4-二乙酰基间苯三酚(Phl)有助于假单胞菌发挥生物防治作用,但Phl(+)生物防治假单胞菌是否比Phl(-)生物防治假单胞菌具有更高的植物保护活性仍有待证明。通过评估从全球63种土壤中获得的3132株细菌分离物中筛选出的230株生物防治荧光假单胞菌,解决了这个问题。三分之一的生物防治假单胞菌为Phl(+),几乎所有Phl(+)分离物也产生氰化氢(HCN)。唯一的Phl(+) HCN(-)菌株确实含有hcn基因,但缺失了一个对应于ADP结合基序的134 bp的hcnC片段。生物防治分离物分布的统计分析表明,在腐霉菌-黄瓜和镰刀菌-番茄病害系统中,Phl的产生能力与优异的病害抑制活性相关,HCN的产生能力也是如此。然而,通过比较Phl(-) HCN(+)和Phl(-) HCN(-)菌株以及相关性分析表明,HCN的重要性没有那么强。这是首次在种群水平上证明Phl(+)生物防治假单胞菌比Phl(-)生物防治假单胞菌具有更高的植物保护活性。