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Selection of Streptomyces against soil borne fungal pathogens by a standardized dual culture assay and evaluation of their effects on seed germination and plant growth

机译:通过标准双重培养测定法筛选抗土壤传播真菌病原体的链霉菌并评估其对种子发芽和植物生长的影响

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Background In the search for new natural resources for crop protection, streptomycetes are gaining interest in agriculture as plant growth promoting bacteria and/or biological control agents. Because of their peculiar life cycle, in which the production of secondary metabolites is synchronized with the development of aerial hyphae and sporulation, the commonly used methods to screen for bacterial antagonists need to be adapted. Results The dual culture assay was standardized in terms of inoculation timing of Streptomyces antagonist and pathogen, and growth rate of different fungal pathogens. In case of fast-growing fungi, inoculation of the antagonist 2 or 3?days prior to the pathogen resulted in significantly stronger inhibition of mycelium growth. One hundred and thirty Streptomyces strains were evaluated against six destructive soil borne pathogens. The activity of strains varied from broad-spectrum to highly specific inhibition of individual pathogens. All strains inhibited at least one tested pathogen. Three strains, which combined the largest broad-spectrum with the highest inhibition activity, were selected for further characterization with four vegetable species. All of them were able to colonize seed surface of all tested vegetable crops. They mostly improved radicle and hypocotyl growth in vitro, although no statistically significant enhancement of biomass weight was observed in vivo. Occasionally, transient negative effects on germination and plant growth were observed. Conclusions The adapted dual culture assay allowed us to compare the inhibition of individual Streptomyces strains against six fungal soil borne pathogens. The best selected strains were able to colonize the four vegetable crops and have a potential to be developed into biocontrol products. Although they occasionally negatively influenced plant growth, these effects did not persist during the further development. Additional in vivo studies are needed to confirm their potential as biological control or plant growth promoting agents.
机译:背景技术在寻找用于保护作物的新的自然资源时,链霉菌作为用于植物生长的细菌和/或生物防治剂而在农业中引起了人们的兴趣。由于它们独特的生命周期,其中次级代谢产物的产生与气生菌丝和孢子形成的发展同步,因此需要对筛选细菌拮抗剂的常用方法进行调整。结果根据链霉菌拮抗剂和病原体的接种时机以及不同真菌病原体的生长速度对双重培养法进行了标准化。在真菌快速生长的情况下,在病原体前2或3天接种拮抗剂会明显抑制菌丝体的生长。对130种链霉菌菌株进行了针对六种破坏性土壤传播病原体的评估。菌株的活性从广谱到对单个病原体的高度特异性抑制不等。所有菌株均抑制至少一种测试的病原体。选择了三个菌株,它们结合了最大的广谱光谱和最高的抑制活性,用于进一步鉴定四种蔬菜。他们所有人都能够在所有试验蔬菜作物的种子表面定殖。尽管在体内没有观察到生物量重量的统计学显着增加,但它们在体外主要改善了胚根和下胚轴的生长。偶尔会观察到对发芽和植物生长的短暂负面影响。结论适应性双重培养法使我们能够比较单个链霉菌菌株对六种真菌土传病原体的抑制作用。最佳选择的菌株能够在四种蔬菜作物上定殖,并有可能被开发为生物防治产品。尽管它们偶尔会对植物的生长产生负面影响,但这些影响在进一步发展中并未持续。需要进行其他体内研究,以确认其作为生物防治或植物生长促进剂的潜力。

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