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Biocontrol of late blight and plant growth promotion in tomato using rhizobacterial isolates

机译:根瘤菌对番茄晚疫病和植物生长的生物防治

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Seven bacterial isolates (viz., AB05, AB10, AB11, AB12, AB14, AB15, and AB17) were derived from the rhizosphere and evaluated in terms of plant growth-promoting activities and the inhibition of Phytophthora infestans affecting tomatoes in Korea. According to 16S rDNA sequencing, a majority of the isolates are members of Bacillus, and a single isolate belongs to Paenibacillus. All seven isolates inhibited P. infestans by more than 60% in vitro. However, AB15 was the most effective, inhibiting mycelial growth of the pathogen by more than 80% in vitro and suppressing disease by 74% compared with control plants under greenhouse conditions. In a PGPR assay, all of the bacterial isolates were capable of enhancing different growth parameters (shoot/root length, fresh biomass, dry matter, and chlorophyll content) in comparison with non-inoculated control plants. AB17-treated plants in particular showed the highest enhancement in fresh biomass with 18% and 26% increments in the root and shoot biomass, respectively. However, isolate AB10 showed the highest shoot and root growth with 18% and 26% increments, respectively. Moreover, the total chlorophyll content was 14%~19% higher in treated plants.
机译:来自根际的七个细菌分离株(即,AB05,AB10,AB11,AB12,AB14,AB15和AB17)从植物生长促进活性和对影响番茄的疫霉疫霉的抑制作用方面进行了评估。根据16S rDNA测序,大多数分离株是芽孢杆菌属,单个分离株属于芽孢杆菌。所有七个分离株在体外均能抑制致病疫霉菌超过60%。然而,AB15是最有效的,与温室条件下的对照植物相比,在体外抑制病原体的菌丝体生长超过80%,在疾病中抑制病菌的74%。在PGPR分析中,与未接种的对照植物相比,所有细菌分离株均能够增强不同的生长参数(枝条/根长,新鲜生物量,干物质和叶绿素含量)。尤其是,用AB17处理的植物在鲜生物量方面表现出最高的增强,根和茎生物量分别增加18%和26%。但是,分离株AB10的芽和根生长最高,分别增长18%和26%。此外,处理后的植物中总叶绿素含量提高了14%〜19%。

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