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1 = 0, p < sub>2 = 50 and p < sub>3 = 100 kg ha-1) and vermicompost (V1 = 0, V2 = 5 and V3 = 10 tons ha-1) layout based on a randomized complete block design with 18 treatments and three replications. Also, one plot was allocated to control in each replication and only chemical fertilizers (use of 90 kg ha-1 of fertilizer of urea, triple super phosphate 90 kg ha-1 and potassium sulfate 90 kg ha-1) and data obtained from control plot, mycorrhizal, phosphate biofertilizers, and vermicompost were used based on a randomized complete block. Results According to the results of this experiment, the highest number of leaf yield, essential oil percentage, biological yield, essential oil yield, total chlorophyll and carotenoids in inoculation with mycorrhiza was obtained. The application of 100 kg of phosphate biofertilizers had a significant effect on all measured biofertilizers. Fertilizer treatment of 100 kg ha-1 had the best result in all measured traits. Also, the best result was obtained with the use of 10 tons of vermicompost per hectare in biological yield (4808.2 kg ha-1), essential oil (0.13%), and total chlorophyll (1.54 mg gr-1FW). There were positive and synergic interactions between factors. For example, positive interaction between inoculation of mycorrhiza and phosphate biofertilizers on leaf yield and essential oil yield, and synergic interaction between mycorrhiza and vermicompost on biological yield were obsereved. Discussion The results of this study show that the treatment of inoculums with mycorrhiza, consumption of 100 kg of phosphate biofertilizers and 10 tons of vermicompost per hectare could provide the best situation to achieve the highest quantitative (5290 kg ha-1) and qualitative yield (0.26% essential oil) of lemon balm in a sustainable agricultural system.]]>
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