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Soil fertility management in apple orchard with microbial biofertilizers

机译:微生物生物元体苹果园土壤肥力管理

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Intensification of horticulture in Russia involves planting of new high-density orchards with drip irrigation and fertigation as well as intensification of the exploitation of traditional orchards. This approach involves an increase in mineral fertilizer application imposing the risk of soil fertility loss. For several reasons, the use of traditional organic fertilizers like manure in orchards is currently marginal. Although bacteria-based biofertilizers cannot substitute mineral fertilizers completely, they can significantly reduce the need for mineral fertilizer application. The effect of microbial biofertilizers of the brands “Azotovit” ( Azotobacter chroococcum ), “Phosphatovit” ( Bacillus mucilaginosus ), as well as a mixture of bacteria and the fungus, “Organic” ( Azotobacter chroococcum , Bacillus subtilis , Bacillus megaterium , Trichoderma harzian ) was studied in two field experiments. In the experiment #1, the preparations “Azotovit” and “Phosphatovit” were delivered through a drip irrigation system in various combinations with mineral fertilizers. In experiment #2, the preparation “Organic” was also applied to the soil with irrigation water, also in combination with the mineral fertilizer. When solely applied, none of the studied preparations changed significantly the soil nutrient content and yield as compared with the variant fertilized by the mineral fertilizer at the maximum studied application rate. The combination of the microbial biofertilizer and mineral fertilizers applied at a low rate ensured the yield commensurate to that obtained under high-rate application of the mineral fertilizer.
机译:俄罗斯园艺的加剧涉及用滴灌和施肥种植新的高密度果园,以及传统果园的剥削的强化。这种方法涉及矿物肥料应用的增加,施加土壤肥力损失的风险。由于几个原因,使用果园里的粪肥等传统有机肥的使用目前是边缘的。虽然基于细菌的生物元素不能完全替代矿物肥料,但它们可以显着降低对矿物肥料的需求。品牌的微生物生物元素的效果“azotovit”(偶氮杆菌),“磷酸甘油胺”(Bacillus mucilaginosus),以及细菌和真菌,“有机”(无喉杆菌,枯草芽孢杆菌,Bacillus megillium,Trichoderma harzian) )在两个现场实验中研究。在实验#1中,制剂“Azotovit”和“磷酸梭绒法”通过滴灌系统以各种组合的矿物肥料提供。在实验#2中,制备“有机”也用灌溉水施用于土壤,也与矿物肥料组合。仅应用时,除了由矿物肥料施肥的最大申请率相比,没有学习的制剂无明显改变土壤养分含量和产量。微生物生物元度器和矿物肥料以低速率施加的组合确保了与在矿物肥料的高速施用下获得的产率相称。

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