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Isolation and Characterization of Actinomycete Antagonists of a Fungal Root Pathogen

机译:真菌根病原菌放线菌拮抗剂的分离与鉴定

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摘要

By use of selective media, 267 actinomycete strains were isolated from four rhizosphere-associated and four non-rhizosphere-associated British soils. Organic media with low nutrient concentrations were found to be best for isolating diverse actinomycetes while avoiding contamination and overgrowth of isolation media by eubacteria and fungi. While all isolates grew well at pHs 6.5 to 8.0, a few were unable to grow at pH 6.0 and a significant number failed to grow at pH 5.5. Eighty-two selected isolates were screened for in vitro antagonism towards Pythium ultimum by use of a Difco cornmeal agar assay procedure. Five isolates were very strong antagonists of the fungus, four were strong antagonists, and ten others were weakly antagonistic. The remaining isolates showed no antagonism by this assay. Additional studies showed that several of the P. ultimum antagonists also strongly inhibited growth of other root-pathogenic fungi. Twelve isolates showing antifungal activity in the in vitro assay were also tested for their effects on the germination and short-term growth of lettuce plants in glasshouse pot studies in the absence of pathogens. None of the actinomycetes prevented seed germination, although half of the isolates retarded seed germination and outgrowth of the plants by 1 to 3 days. During 18-day growth experiments, biomass yields of some actinomycete-inoculated plants were reduced in comparison with untreated control plants, although all plants appeared healthy and well rooted. None of the actinomycetes significantly enhanced plant growth over these short-term experiments. For some, but not all, actinomycetes, some correlations between delayed seed germination and reduced 18-day plant biomass yields were seen. For others, plant biomass yields were not reduced despite an actinomycete-associated delay in seed germination and plant outgrowth. Preliminary glasshouse experiments indicated that some of the actinomycetes protect germinating lettuce seeds against damping-off caused by P. ultimum.
机译:通过使用选择性培养基,从四种与根际相关的土壤和四种与非根际相关的英国土壤中分离了267种放线菌菌株。发现低养分浓度的有机培养基最适合分离各种放线菌,同时避免真细菌和真菌对分离培养基的污染和过度生长。尽管所有分离株在6.5至8.0的pH值下均生长良好,但有一些在pH 6.0的条件下无法生长,而在pH 5.5的条件下却无法生长。通过使用Difco玉米面琼脂测定方法,筛选了82种选择的分离物对终生腐霉的体外拮抗作用。五株分离物是真菌的非常强的拮抗剂,四株是强拮抗剂,另外十种是弱拮抗物。通过该测定,其余分离物未显示出拮抗作用。其他研究表明,几种P. ultimum拮抗剂也强烈抑制其他根致病真菌的生长。在没有病原体的温室盆栽研究中,还测试了十二种在体外试验中显示出抗真菌活性的分离物对生菜植物发芽和短期生长的影响。放线菌都没有阻止种子发芽的作用,尽管一半的分离株将植物的种子发芽和生长延迟了1-3天。在18天的生长实验中,与未处理的对照植物相比,一些放有放线菌的植物的生物量产量降低了,尽管所有植物都看起来健康且根深蒂固。在这些短期实验中,没有放线菌能够显着增强植物的生长。对于一些但不是全部放线菌,观察到延迟的种子发芽与减少的18天植物生物量产量之间的某些相关性。对于其他植物,尽管放线菌相关的种子发芽和植物生长延迟,但植物生物量的产量并未降低。初步的温室实验表明,一些放线菌可以保护发芽的生菜种子免受终极疟原虫引起的衰减。

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