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首页> 外文期刊>Archives of Agronomy and Soil Science >Effect of organic and inorganic sources of nutrients on soil microbial activity and soil organic carbon build-up under rice in west coast of India
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Effect of organic and inorganic sources of nutrients on soil microbial activity and soil organic carbon build-up under rice in west coast of India

机译:营养素对印度西海岸稻米微生物活性和土壤有机碳堆积的影响

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The effect of medium-term (5 years) application of organic and inorganic sources of nutrients (as mineral or inorganic fertilizers) on soil organic carbon (SOC), SOC stock, carbon (C) build-up rate, microbial and enzyme activities in flooded rice soils was tested in west coast of India. Compared to the application of vermicompost, glyricidia (Glyricidia maculate) (fresh) and eupatorium (Chromolaena adenophorum) (fresh) and dhaincha (Sesbania rostrata) (fresh), the application of farmyard manure (FYM) and combined application of paddy straw (dry) and water hyacinth (PsWh) (fresh) improved the SOC content significantly (p < 0.05). The lowest (p < 0.05) SOC content (0.81%) was observed in untreated control. The highest (p < 0.05) SOC stock (23.7 Mg C ha(-1)) was observed in FYM-treated plots followed by recommended dose of mineral fertilizer (RDF) (23.2 Mg C ha(-1)) and it was lowest (16.5 Mg C ha(-1)) in untreated control. Soil microbial biomass carbon (C-mb) (246 mu g g(-1) soil) and C-mb/SOC (1.92%) were highest (p < 0.05) in FYM-treated plot. The highest (p < 0.05) value of metabolic quotient (qCO(2)) was recorded under RDF (19.7 mu g CO2-C g(-1) C-mb h(-1)) and untreated control (19.6 mu g CO2-C g(-1) C-mb h(-1)). Application of organic and inorganic sources of nutrients impacted soil enzyme activities significantly (p < 0.05) with FYM causing highest dehydrogenase (20.5 mu g TPF g(-1) day(-1)), phosphatase (659 mu g PNP g(-1) h(-1)) and urease (0.29 mu g urea g(-1) h(-1)) activities. Application of organic source of nutrients especially FYM improved the microbial and enzyme activities in flooded and transplanted rice soils. Although the grain yield was higher with the application of RDF, but the use of FYM as an organic agricultural practice is more useful when efforts are intended to conserve more SOC and improved microbial activity.
机译:中期(5年)营养和无机营养素(作为矿物或无机肥料)在土壤有机碳(SOC),SOC库存,碳(C)积聚率,微生物和酶活性中被淹没的米土壤在印度西海岸进行了测试。与蛭石编曲的应用相比,糖苷(糖苷色糖)(新鲜)和eUpatorium(Chromolaena adoophorum)(新鲜)和Dhaincha(Sesbania rostrata)(新鲜),麦田粪(FYM)的应用以及水稻秸秆的综合应用(干燥)和水葫芦(PSWH)(新鲜)显着改善SoC内容(P <0.05)。在未处理的对照中观察到最低(P <0.05)SOC含量(0.81%)。最高(P <0.05)SOC库存(23.7mg C HA(-1))在发酵粉状地板中观察到,随后推荐剂量的矿物肥料(RDF)(23.2mg C ha(-1)),最低(15.5mg C ha(-1))在未处理的控制中。土壤微生物碳(C-MB)(246μg(-1)土壤)和C-MB / SOC(1.92%)在FYM处理的图中最高(P <0.05)。在RDF(19.7μgCO2-C-1(-1)C-MB H(-1))和未处理对照(19.6μgco2)下记录最高(p <0.05)的代谢商(qco(2))值-C g(-1)C-MB H(-1))。有机和无机营养素的应用抗冲击土壤酶活性显着(p <0.05),导致最高脱氢酶(20.5μgtpf g(-1)天(-1)),磷酸酶(659μgpnp g(-1 )H(-1))和脲酶(0.29μg尿素G(-1)H(-1))活性。有机营养素的应用尤其是FYM改善了淹水和移植稻土中的微生物和酶活性。虽然RDF的应用谷物产量较高,但是当努力旨在节约更多的SOC和改善的微生物活动时,FYM作为有机农业实践的使用更有用。

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