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Impact of Long-Term Application of Organics, Biological, and Inorganic Fertilizers on Microbial Activities in Rice-Based Cropping System

机译:有机物,生物和无机肥对大米种植体系中微生物活性的影响

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摘要

Organics, biological, and inorganic fertilizers play a crucial role for improving crop yield and soil properties. Accordingly, we assessed their impact on yield, microbial activities, and transformations of carbon (C), nitrogen (N), phosphorus (P), and sulfur (S) in soils under a 12-year-old intensively cultivated rice (Oriza sativa L.), mustard (Brassica juncea L.), sesame (Sesamum indicum L.) system with sole inorganic (NPK); NPK + farmyard manure (NPKF); NPK + green manure (NPKG) (Sesbania sesban L.), and NPK + green manure + bio-fertilizer (NPKGB) (Azotobacter chroococcum + pseudomonas putida) treatments in sub-tropical India. The system yield was much higher with NPKF (23%) and NPKGB (18%) than that with NPK. Organic supplementation had a favorable influence on soil microbial biomass C (Cmic), N (Nmic), and activities of extracellular enzymes. Results of principal component and multiple regression analyses showed significant influence of Cmic on system yield (R-2 = 91, p = 0.001) and S availability (R-2 = 62, p = 0.001). Similarly, mineralizable N and acid phosphatase could predict significantly soil available N (R-2 = 85, p = 0.001) and P (R-2 = 51; p = 0.001), respectively. Results thus indicated that integrated nutrient management (NPKF/G) improved system yield, nutrient accumulation, and microbial activities in soils.
机译:有机物,生物和无机肥料在改善作物产量和土壤性质方面发挥着至关重要的作用。因此,我们在12岁肠培养的水稻下评估了它们对碳(C),氮(C),氮(C),氮(N),磷(N),磷(P)和硫的转化的影响(Oriza Sativa L.),芥菜(Brassica Juncea L.),芝麻(Sesamum Indicum L.)系统具有唯一无机(NPK); NPK + Farmyard Manure(NPKF); NPK +绿色粪便(NPKG)(Sesbania Sesban L.)和NPK + Green Manure +生物肥(NPKGB)(偶氮杆菌Chroococcum +假鼠Pieudomonas pirida)治疗在潜水印度。与NPK的NPKF(23%)和NPKGB(18%)的系统产量高得多。有机补充对土壤微生物生物量C(CMIC),N(NMIC)和细胞外酶活性具有有利影响。主成分和多元回归分析的结果表明CMIC对系统产量的显着影响(R-2 = 91,P = 0.001)和S可用性(R-2 = 62,P = 0.001)。类似地,可融集的N和酸性磷酸酶可以预测可用的明显土壤(R-2 = 85,P = 0.001)和P(R-2 = 51; p = 0.001)。因此,结果表明,综合营养管理(NPKF / g)改善了土壤中的系统产量,营养积累和微生物活性。

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