首页> 外文期刊>Journal of the Indian Society of Soil Science >Soil Enzyme Activities, Organic Carbon and Microbial Population as Influenced by Integrated Nitrogen Management for Banana
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Soil Enzyme Activities, Organic Carbon and Microbial Population as Influenced by Integrated Nitrogen Management for Banana

机译:香蕉综合氮管理对土壤酶活性,有机碳和微生物种群的影响

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摘要

Soil enzyme activities, organic carbon (OC) and microbial population were assessed periodically in banana plantation imposed by integrated nitrogen (N) management treatments on Inceptisol during 2005-06. The treatment comprising substitution of N through farmyard manure (FYM), neem cake and vermicompost in 25, 50 and 33% proportion along with recommended dose of fertilizers (RDF). The OC content of soil was increased significantly by the application of inorganic fertilizers and organic manures viz.,FYM, neem cake and vermicompost except the treatment received only RDF. The magnitude of increase in OC was significantly higher in the treatment receiving FYM, neem cake and vermicompost. The population of soil actinomycetes, bacteria and fungi were increased consistently up to 240 days after planting of banana. Higher population of actinomycetes (118x10s g"1 soil), fungal (141 xlO4 g1 soil) and bacteria (159xl06 g"1 soil) were recorded with the application of organics. Soil urease and dehydrogenase activity was increased consistently up to 120 days after planting, whereas acid phosphatase activity increased up to 165 days after planting of banana. Significantly highest urease activity (44.8 mg NH4-N lOOg1 soil h1) was obtained in soils receiving 50%N through FYM and 50% N through RDF followed by 100% N through FYM, vermicompost and neem cake (42.8 mg NH4-N lOOg1 soil h"1) at 120 days after planting, whereas significantly higher soil acid phosphatase activity (6.01 uMP g"1 soil h1) and dehydrogenaseactivity (85.0 ug TPF g"1 soil 24h') were recorded with application of 100% N in equal proportion through FYM, neem cake and vermicompost. However, application of inorganic fertilizers as per soil test to banana resulted in lower magnitude of urease, acid phosphatase and dehydrogenase activity.
机译:在2005-06年间,通过对Inceptisol进行综合氮(N)管理处理,对香蕉种植园中的土壤酶活性,有机碳(OC)和微生物种群进行了定期评估。该处理包括通过农家肥(FYM),印em饼和ver堆肥以25%,50%和33%的比例替代N以及建议的肥料用量(RDF)。通过施用无机肥料和有机肥料,即FYM,印em饼和com堆肥,除仅接受RDF处理外,土壤的OC含量显着增加。在接受FYM,印em蛋糕和ver堆肥的处理中,OC的增加幅度明显更高。种植香蕉后直至240天,土壤放线菌,细菌和真菌的数量持续增加。通过使用有机物,记录到放线菌(118x10s g“ 1土壤),真菌(141x104 g1土壤)和细菌(159x1006 g” 1土壤)的种群数量增加。种植后直至120天,土壤脲酶和脱氢酶活性持续增加,而种植香蕉后,酸性磷酸酶活性持续增加至165天。在通过FYM接受50%N,通过RDF接受50%N,然后通过FYM,ver粉和印em饼接受100%N的土壤中获得最高的脲酶活性(44.8 mg NH4-N 100g1土壤h1)(42.8 mg NH4-N 100g1土壤种植后120天时的h“ 1),而以等比例施用100%的氮时,土壤酸性磷酸酶活性(6.01 uMP g” 1土壤h1)和脱氢酶活性(85.0 ug TPF g“ 1土壤24h')明显更高通过FYM,印em饼和ver堆肥,但是,根据土壤测试,对香蕉施用无机肥料会降低尿素酶,酸性磷酸酶和脱氢酶的活性。

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