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Rhizosphere Competence and Biocontrol Effect of Pseudomonas sp. RU47 Independent from Plant Species and Soil Type at the Field Scale

机译:假单胞菌(Pseudomonas sp。)的根际能力和生物防治作用。 RU47在田间尺度上独立于植物物种和土壤类型

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摘要

Biocontrol inoculants often show inconsistency in their efficacy at field scale and the reason for this remains often unclear. A high rhizosphere competence of inoculant strains is assumed to be a key factor for successful biocontrol effects as the biocontrol strain has to compete with the indigenous microbial community in the rhizosphere. It is known that many factors, among them plant species and soil type shape the rhizosphere microbial community composition. However, microbial community composition in the rhizosphere can also be influenced by the presence of a pathogen. We hypothesized that plant species, soil type, and a pathogen affect the rhizosphere competence of a biocontrol strain and its biocontrol effect against a soil-borne pathogen. To test the hypothesis, we used an experimental plot system with three soil types (diluvial sand, alluvial loam, loess loam) kept under similar agricultural management at the same field site for 12 years. We investigate the rhizosphere competence of Pseudomonas sp. RU47 in two plant species (potato and lettuce) and its biocontrol effect against Rhizoctonia diseases. The colonization density of a rifampicin resistant mutant of RU47 in the rhizosphere of both crops was evaluated by plate counts. Bacterial community compositions were analyzed by denaturing gradient gel electrophoresis (DGGE) of 16S rRNA gene fragments amplified from total community DNA. The inoculant RU47 was able to colonize the rhizosphere of both model crops in a sufficient density and to reduce disease severity of black scurf on potato and bottom rot on lettuce in all three soils. DGGE indicated that RU47 affected the bacterial community composition stronger in the rhizosphere of lettuce than in the potato rhizosphere. In contrast, the effect of the pathogen Rhizoctonia solani on the bacterial community was much stronger in the rhizosphere of potato than in the lettuce rhizosphere. A significant effect of RU47 on the Pseudomonas-specific gacA fingerprints of the rhizosphere was only observed in lettuce in alluvial soil. The soil type and plant species independent biocontrol effects of RU47 and its minor influence on the indigenous bacterial community composition might be important criteria for the registration and use of RU47 as biocontrol strain.
机译:生物防治接种剂在田间规模上常常表现出不一致的效果,其原因通常仍然不清楚。接种菌株的高根际能力被认为是成功的生物防治效果的关键因素,因为该生物防治菌株必须与根际中的原生微生物群落竞争。已知许多因素,其中包括植物种类和土壤类型影响根际微生物群落组成。但是,病原体的存在也会影响根际中的微生物群落组成。我们假设植物种类,土壤类型和病原体会影响生物防治菌株的根际能力及其对土壤传播病原体的生物防治作用。为了检验该假设,我们使用了一种试验样地系统,将三种土壤类型(冲积砂,冲积壤土,黄土壤土)在相似的农业管理下保持在相同的田地中长达12年。我们调查假单胞菌属的根际能力。两种植物(马铃薯和生菜)中的RU47及其对根瘤菌病的生物防治作用。通过板计数来评估两种作物的根际中对RU47的利福平抗性突变体的定植密度。通过变性梯度凝胶电泳(DGGE)对从总群落DNA中扩增出的16S rRNA基因片段进行细菌群落组成分析。孕育剂RU47能够以足够的密度在两种模式作物的根际定植,并降低了这三种土壤中马铃薯上的黑头屑和生菜上的腐烂病的严重程度。 DGGE指出,RU47对生菜根际的细菌群落组成的影响要强于马铃薯根际。相反,在马铃薯的根际中,病原体solani solani对细菌群落的影响比在莴苣根际中强得多。仅在冲积土壤中的生菜中观察到RU47对根际假单胞菌特异性gacA指纹的显着影响。 RU47的土壤类型和植物物种非生物控制作用及其对本地细菌群落组成的较小影响可能是注册和使用RU47作为生物控制菌株的重要标准。

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