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首页> 外文期刊>Communications in Soil Science and Plant Analysis >Microbial Activity in Paddy Soil and Water-Use Efficiency of Rice as Affected by Irrigation Method and Nitrogen Level
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Microbial Activity in Paddy Soil and Water-Use Efficiency of Rice as Affected by Irrigation Method and Nitrogen Level

机译:灌溉方式和氮水平对稻田土壤微生物活性和水稻水分利用效率的影响

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摘要

The thin-shallow-wet-dry irrigation (TIR) method is one of water-saving irrigation methods of rice cultivation. The effects of TIR method on water-use efficiency (WUE) of rice and soil microbial activities were investigated under three rates of nitrogen (N) compared to conventional flood irrigation. The TIR method decreased total water consumption (21.7-23.5%) and increased rice WUE (17.8-27.2%). At high N level, the TIR method significantly increased the number of nitrifying bacteria; the activities of catalase, invertase, and urease in soil at the jointing, booting, and milky stages; and the number of denitrifying bacteria at the milky stage. Increased N rate increased grain yield and water consumption simultaneously, and middle N level increased microbial biomass carbon (MBC) and N, the number of nitrifying and denitrifying bacteria, and the activities of catalase, urease, and invertase. Thus the TIR method at the middle N level can effectively improve rice WUE and soil MBC and enzyme activity.
机译:浅浅干湿灌溉是水稻栽培的节水灌溉方法之一。与常规洪水灌溉相比,在三种氮(N)速率下,研究了TIR方法对水稻水分利用效率(WUE)和土壤微生物活性的影响。 TIR方法减少了总耗水量(21.7-23.5%),增加了水稻的WUE(17.8-27.2%)。在高氮水平下,TIR方法显着增加了硝化细菌的数量。在拔节,孕穗和乳白色阶段过氧化氢酶,转化酶和脲酶在土壤中的活动;以及乳白色阶段的反硝化细菌数量。氮素含量的增加同时增加了谷物产量和耗水量,中等氮素含量增加了微生物生物量碳(MBC)和氮素,硝化反硝化细菌的数量以及过氧化氢酶,脲酶和转化酶的活性。因此,在中氮水平上的TIR方法可以有效提高水稻的水分利用效率和土壤MBC和酶活性。

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