首页> 外文期刊>FEMS Microbiology Ecology >Genetic diversity and biocontrol potential of fluorescent pseudomonads producing phloroglucinols and hydrogen cyanide from Swiss soils naturally suppressive or conducive to Thielaviopsis basicola-mediated black root rot of tobacco
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Genetic diversity and biocontrol potential of fluorescent pseudomonads producing phloroglucinols and hydrogen cyanide from Swiss soils naturally suppressive or conducive to Thielaviopsis basicola-mediated black root rot of tobacco

机译:从瑞士土壤中天然产生或抑制烟草的根腐病菌介导的烟草黑根腐烂的荧光假单胞菌的遗传多样性和生物防治潜力,这些荧光假单胞菌产生于瑞士土壤中的间苯三酚和氰化氢。

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摘要

Pseudomonas populations producing the biocontrol compounds 2,4-diacetylphloroglucinol (Phl) and hydrogen cyanide (HCN) were found in the rhizosphere of tobacco both in Swiss soils suppressive to Thielaviopsis basicola and in their conducive counterparts. In this study, a collection of Phl(+) HCN+ Pseudomonas isolates from two suppressive and two conducive soils were used to assess whether suppressiveness could be linked to soil-specific properties of individual pseudomonads. The isolates were compared based on restriction analysis of the biocontrol genes phlD and hcnBC, enterobacterial repetitive intergenic consensus (ERIC)-PCR profiling and their biocontrol ability. Restriction analyses of phlD and hcnBC yielded very concordant relationships between the strains, and suggested significant population differentiation occurring at the soil level, regardless of soil suppressiveness status. This was corroborated by high strain diversity (ERIC-PCR) within each of the four soils and among isolates harboring the same phlD or hcnBC alleles. No correlation was found between the origin of the isolates and their biocontrol activity in vitro and in planta. Significant differences in T. basicola inhibition were however evidenced between the isolates when they were grouped according to their biocontrol alleles. Moreover, two main Pseudomonas lineages differing by the capacity to produce pyoluteorin were evidenced in the collection. Thus, Phl(+) HCN+ pseudomonads from suppressive soils were not markedly different from those from nearby conducive soils. Therefore, as far as biocontrol pseudomonads are concerned, this work yields the hypothesis that the suppressiveness of Swiss soils may rely on the differential effects of environmental factors on the expression of key biocontrol genes in pseudomonads rather than differences in population structure of biocontrol Pseudomonas subcommunities or the biocontrol potential of individual Phl(+) HCN+ pseudomonad strains.
机译:在瑞士的土壤中,对碱性硫杆菌的抑制及其有益的同伴都在烟草的根际中发现了产生生物防治化合物2,4-二乙酰基间苯三酚(Phl)和氰化氢(HCN)的假单胞菌种群。在这项研究中,从两种抑制性土壤和两种有益土壤中分离的Phl(+)HCN +假单胞菌分离物用于评估抑制性是否可能与个别假单胞菌的土壤特异性相关。根据对生物控制基因phlD和hcnBC的限制性分析,肠细菌重复基因间共有序列(ERIC)-PCR分析及其生防能力,对分离物进行了比较。对phlD和hcnBC的限制性分析在菌株之间产生了非常一致的关系,并且表明在土壤水平上发生了显着的种群分化,而与土壤抑制状态无关。在四种土壤中的每一种中,以及在具有相同phlD或hcnBC等位基因的分离株中,高菌株多样性(ERIC-PCR)证实了这一点。在分离株的来源与其体外和植物中的生物防治活性之间未发现相关性。但是,根据生防等位基因对这些分离株进行分组后,可以证明它们之间的碱性杆菌抑制作用存在显着差异。此外,在该集合中还发现了两个主要的假单胞菌谱系,它们的生产能力不同。因此,来自抑制性土壤的Phl(+)HCN +假单胞菌与附近的有益土壤没有明显的不同。因此,就生物防治假单胞菌而言,这项工作提出了一个假设,即瑞士土壤的抑制性可能取决于环境因素对假单胞菌关键生物防治基因表达的不同影响,而不是生物防治假单胞菌亚社区或种群的种群结构差异。单个Phl(+)HCN +假单胞菌菌株的生防潜力。

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