Svercel Miroslav, Christen Danilo, Moënne-Loccoz Yvan, Duffy Brion, Défago Geneviève
Plant Pathology, Institute of Integrative Biology, Zürich, Switzerland.
FEMS Microbiol Ecol. 2009 Apr;68(1):25-36. doi: 10.1111/j.1574-6941.2009.00649.x. Epub 2009 Feb 5.
The impact of repeated culture of perennial plants (i.e. in long-term monoculture) on the ecology of plant-beneficial bacteria is unknown. Here, the influence of extremely long-term monocultures of grapevine (up to 1603 years) on rhizosphere populations of fluorescent pseudomonads carrying the biosynthetic genes phlD for 2,4-diacetylphloroglucinol and/or hcnAB for hydrogen cyanide was determined. Soils from long-term and adjacent short-term monoculture vineyards (or brushland) in four regions of Switzerland were baited with grapevine or tobacco plantlets, and rhizosphere pseudomonads were studied by most probable number (MPN)-PCR. Higher numbers and percentages of phlD(+) and of hcnAB(+) rhizosphere pseudomonads were detected on using soil from long-term vineyards. On focusing on phlD, restriction fragment length polymorphism profiling of the last phlD-positive MPN wells revealed seven phlD alleles (three exclusively on tobacco, thereof two new ones). Higher numbers of phlD alleles coincided with a lower prevalence of the allele displayed by the well-studied biocontrol strain Pseudomonas fluorescens F113. The prevalence of this allele was 35% for tobacco in long-term monoculture soils vs. >60% in the other three cases. We conclude that soils from long-term grapevine monocultures represent an untapped resource for isolating novel biocontrol Pseudomonas strains when tobacco is used as bait.
多年生植物的反复种植(即长期单一栽培)对植物有益细菌生态的影响尚不清楚。在此,我们测定了葡萄极长期单一栽培(长达1603年)对携带2,4-二乙酰基间苯三酚生物合成基因phlD和/或氰化氢生物合成基因hcnAB的荧光假单胞菌根际种群的影响。在瑞士四个地区,用葡萄或烟草幼苗诱捕长期和相邻短期单一栽培葡萄园(或灌丛)的土壤,并通过最大可能数(MPN)-PCR研究根际假单胞菌。使用长期葡萄园土壤时,检测到phlD(+)和hcnAB(+)根际假单胞菌的数量和百分比更高。聚焦于phlD,对最后一个phlD阳性MPN孔进行限制性片段长度多态性分析,发现了7个phlD等位基因(3个仅在烟草上,其中2个是新的)。phlD等位基因数量较多与研究充分的生防菌株荧光假单胞菌F113所显示的等位基因较低的流行率相吻合。在长期单一栽培土壤中,烟草上该等位基因的流行率为35%,而在其他三种情况下则>60%。我们得出结论,当使用烟草作为诱饵时,长期葡萄单一栽培的土壤是分离新型生防假单胞菌菌株的未开发资源。