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Influence of Green Manure Crops on the Dynamics of Nitrogen in a Typic Haplustert of Valle del Cauca, Colombia

机译:哥伦比亚Valle del Cauca的典型Haplustert绿肥作物对氮动力学的影响

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This study provided knowledge about the agro-ecosystem N dynamics mediated by the use of agroecological practices such as GM. GM is established as legume its symbiotic action with soil rhizobia and arbuscular mycorrhiza formation, allows the cycling of nitrogen and phosphorus, among others. This study aimed at evaluating the influence of GM in the nitrogen dynamics of a Typic Haplustert located in the municipality of Candelaria (Colombia). In completely randomized blocks design with six replications, the GM coming from the intercropping Mucuna pruriens var utilis - Zea mays L. var. ICA 305 was established as T1 treatment and the native arvense Rottboellia cochinchinensis L. as T2, during the second half of year 2011. During the stage of preflowering of M. pruriens the content of organic C (OC) was evaluated as well as total N (TN), nitrate, ammonium, number of copies of amoA gene of ammoniaoxidizing bacteria, total porosity filled with water (TPW), temperature, flow of greenhouse gases: methane (CH4), carbon dioxide (CO2) and nitrous oxide (N2O), as well as the dry matter (DM) and the contents of C, N and P in plant tissues. Significantly higher concentrations (p 0.05) of CO, NT, ammonium and nitrate, were recorded in T2. The number of oxidizing bacteria of ammonium was significantly higher in T1 which coincided with the higher TPW and the lower soil temperature. The emission of atmospheric CO2 was significantly lower in T1, in contrast to the CH4 and N2O which scored the highest values. At the end of the trial, the GM in T1 provided about 4 t MS / ha, 1668.3 kg C / ha, 78.7 kg N / ha and 11.0 kg P / ha, with social economic benefit of 9.2 t corn/ha.
机译:这项研究提供了关于利用农业生态实践(例如转基因)介导的农业生态系统氮动力学的知识。 GM被认为是一种豆科植物,它与土壤根瘤菌和丛枝菌根形成共生作用,可以使氮和磷循环。这项研究旨在评估GM对位于坎德拉里亚(哥伦比亚)市的Typic Haplustert氮动力学的影响。在六个重复的完全随机区组设计中,GM来自间作的Mucuna pruriens var utilis-Zea mays L. var。在2011年下半年,将ICA 305确立为T1处理,将原生的拟南芥(Rottboellia cochinchinensis L.)确立为T2。在紫薇的预花阶段,评估了有机碳(OC)的含量以及总氮(TN),硝酸盐,铵,氨氧化细菌amoA基因的拷贝数,充满水的总孔隙度(TPW),温度,温室气体流量:甲烷(CH4),二氧化碳(CO2)和一氧化二氮(N2O) ,以及植物组织中的干物质(DM)和C,N和P的含量。 T2中记录到的CO,NT,铵和硝酸盐浓度明显较高(p <0.05)。在T1中,铵的氧化细菌数量显着增加,这与较高的TPW和较低的土壤温度相吻合。与CH4和N2O得分最高的地区相比,T1大气中的CO2排放量显着降低。在试验结束时,T1的转基因作物提供了约4 t MS / ha,1668.3 kg C / ha,78.7 kg N / ha和11.0 kg P / ha,社会经济效益为9.2 t玉米/公顷。

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