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首页> 外文期刊>Microbes and Environments >Biocontrol Potential of an Endophytic Streptomyces sp Strain MBCN152-1 against Alternaria brassicicola on Cabbage Plug Seedlings
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Biocontrol Potential of an Endophytic Streptomyces sp Strain MBCN152-1 against Alternaria brassicicola on Cabbage Plug Seedlings

机译:内腔肌肉SP菌株MBCN152-1对白菜塞蛋白胶囊的生物控制潜力

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摘要

In the present study, 77 strains of endophytic actinomycetes isolated from cabbage were screened in order to assess their biocontrol potential against Alternaria brassicicola on cabbage seedlings. In the first and second screening trials, cabbage seedlings pretreated with mycelial suspensions of each isolate were spray-inoculated with A. brassicicola. Strain MBCN152-1, which exhibited the best protection in screening trials and had no adverse effects on seedling growth, was selected for the greenhouse trial. In the greenhouse trial, cabbage seedlings, which had been grown in plug trays filled with soil mix containing spores of MBCN152-1 (1x10(8) spores g(-1) of soil mix), were spray-inoculated with A. brassicicola and grown in greenhouse conditions. MBCN152-1 reduced disease incidence and significantly increased the number of viable seedlings. The efficacy of MBCN152-1 against damping-off caused by seed-borne A. brassicicola was then evaluated. Cabbage seeds, artificially infested with A. brassicicola, were sown in soil mix containing MBCN152-1 spores. The disease was completely suppressed when infested seeds were sown in a soil mix blended with MBCN152-1 at 1.5x10(7) spores g(-1) of soil mix. These results strongly suggest that MBCN152-1 has the potential to control A. brassicicola on cabbage plug seedlings. MBCN152-1 was identified as a Streptomyces humidus-related species based on 16S rDNA sequencing. Scanning electron microscopy showed that the hyphae of MBCN152-1 multiplied on the surface of the seedlings and penetrated their epidermal cells. In conclusion, strain MBCN152-1 is a promising biocontrol agent against A. brassicicola on cabbage plug seedlings.
机译:在本研究中,筛查了77株从卷心菜中分离的内生外形菌,以评估它们对白菜幼苗的alterararia brassicicola的生物控制潜力。在第一和第二和第二次筛选试验中,用每分离物的菌丝体悬浮液预处理的白菜幼苗被A. Brassicicola喷涂。为温室试验选择了筛选试验中的最佳保护,在筛选试验中表现出最佳保护,对幼苗生长没有不利影响。在温室试验中,在填充有含有土壤混合物的塞盘托盘中的白菜幼苗(1×10(8)孢子G(-1)的土壤混合物),用A. Brassicicola及其喷雾接种在温室的条件下成长。 MBCN152-1降低疾病发病率并显着增加了可行的幼苗的数量。然后评价MBCN152-1对抑制抑制的抑制效果。白菜种子,用A. Brassicicola人工侵染,在含有MBCN152-1孢子的土壤混合物中播种。当侵染的种子在与MBC152-1的土壤混合物中播种时,这种疾病被完全抑制了1.5×10(7)孢子G(-1)的土壤混合物。这些结果强烈表明MBCN152-1具有控制甘蓝塞幼苗上的A. Brassicicola。基于16S rdNA测序,将MBCN152-1鉴定为与Hupidus相关的物种进行鉴定为嗜毒血清相关物种。扫描电子显微镜显示MBCN152-1的菌丝乘以幼苗表面并穿透其表皮细胞。总之,菌株MBCN152-1是对A. Brassicicola的有前途的生物控制剂在白菜塞幼苗上。

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