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首页> 外文期刊>Archives of Agronomy and Soil Science >Nutrient management options modulating soil physico-chemical and biological properties under direct-seeded rice-based cropping systems
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Nutrient management options modulating soil physico-chemical and biological properties under direct-seeded rice-based cropping systems

机译:水稻直播制下土壤理化生物学特性的养分管理方案

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ABSTRACT To achieve higher system productivity and better soil health under rice‒based cropping systems, this study was conducted to ascertain the best agricultural and nutrient management strategies. The study involved four cropping systems (CS) comprising direct seeded basmati rice (DSBR)‒wheat (CS1), DSBR‒wheat‒greengram (CS2), DSBR‒cabbage‒greengram (CS3) and DSBR‒cabbage‒onion (CS4) under different nutrient management strategies (NMS) comprising of control (NS0), 100 recommended dose of N, P and K fertilizers (RDF-NPK) (NS1), 50 RDF + 25 recommended dose of nitrogen (RDN) through leaf compost (LC) + biofertilizer (NS2), 50 RDF + 25 RDN through vermicompost (VC) + biofertilizer (NS3) and was carried out for two consecutive years. At the end of study, soil carbon fractions, bulk density and water stable aggregates were significantly (p < 0.05) higher under integrated NMS as compared to control and RDF alone. Soil biological parameters such as dehydrogenase, alkaline phosphatase and microbial biomass carbon increased significantly (p < 0.05) in all three seasons (rainy, winter and summer) under integrated NMS (NS2 and NS3) plots, as compared to NS0 and NS1. Inclusion of greengram in rice–based cropping systems and combined use of inorganic and organic nutrient sources resulted in positive influence on soil health parameters and sustaining system productivity.
机译:摘要 为提高水稻种植制度的系统生产力和土壤健康水平,本研究旨在确定最佳的农业和养分管理策略。该研究涉及四种种植系统(CS),包括直播印度香米(DSBR)u2012小麦(CS1)、DSBRu2012小麦(CS2)、DSBRu2012卷心菜(CS3)和DSBRu2012甘蓝u2012洋葱(CS4),采用不同的养分管理策略(NMS),包括对照(NS0)、100%推荐剂量的氮、磷和钾肥(RDF-NPK)(NS1)、50%RDF+25%推荐剂量的氮(RDN)通过叶片堆肥(LC)+生物肥料(NS2), 50% RDF + 25% RDN 通过蚯蚓粪 (VC) + 生物肥料 (NS3) 连续两年进行。在研究结束时,与单独使用对照组和RDF相比,综合NMS组的土壤碳组分、容重和水稳定团聚体显著高(p < 0.05)。与NS0和NS1相比,在综合NMS(NS2和NS3)样地下,土壤脱氢酶、碱性磷酸酶和微生物生物量碳等3个季节(雨季、冬季和夏季)的土壤生物参数均显著增加(p < 0.05)。在水稻种植系统中加入绿蕊,并结合使用无机和有机养分来源,对土壤健康参数和维持系统生产力产生了积极影响。

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