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Nitrogen Uptake and Utilization by No-Tillage Rice under Different Soil Moisture Conditions – A Model Study under Simulated Soil Conditions

机译:不同土壤水分条件下氮耕稻氮吸收和利用 - 模拟土壤条件下的模型研究

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Most of the existing studies regarding water-saving cultivation on rice are based on tillage rice, rather than no-tillage rice. The purpose of this study was to quantify the effects of nitrogen fertilizer on no-tillage rice cultivation under various soil moisture conditions, in order to determine the suitable soil moisture content for rice production by no-tillage cultivation. Pot experiments were conducted in the early seasons of 2010 and 2011. In each season, a hybrid rice cultivar, Jiyou716, was planted under the soil moisture contents of 95 – 100% (W100), 80 – 85% (W85) and 65 – 70% (W70). 15N was used as the nitrogen fertilizer. Yield, dry matter accumulation, nitrogen concentration and 15N abundance of maturity were determined for each sample. The nitrogen loss of basal N-fertilizer (BF) and tillering N-fertilizer (TF) in W70 was 22 – 24% and 18 – 45% larger than in W100, respectively, resulting in reduction in nitrogen uptake and total nitrogen accumulation in plants. The yield of rice by no-tillage in W70 was 47 – 42% lower in 2011 and 2010. There was no significant difference between W85 and W100 in yield, nitrogen uptake and utilization in no-tillage cultivation. It was concluded that the N uptake and yield were decreased by decreasing soil moisture contents to 70% of saturation in no-tillage cultivation. Soil content of around 85% was proposed as a suitable condition without a large reduction in the yield and N use in water-saving cultivation, although a field test is essential for practical use.
机译:大多数关于水稻节水栽培的研究是基于耕作稻,而不是脱盐米饭。本研究的目的是量化氮肥对各种土壤水分条件下无耕作水稻培养的影响,以确定无耕作栽培水稻生产的合适土壤水分含量。在2010年和2011年的早期季节进行了盆栽实验。在每季,杂交水稻品种jiyou716在土壤水分含量为95-100%(W100),80-85%(W85)和65 - 70%(W70)。 15N用作氮肥。针对每个样品测定产量,干物质积累,氮浓度和15N丰度的成熟度。基础N-肥料(BF)的氮气损失和分蘖N-肥料(TF)分别大于W100的22-24%和18-45%,导致植物中的氮气吸收和总氮积累的降低。在2011年和2010年,W70中的No-Tilmage的水稻产量为47-22%。W85和W100的产量,氮气吸收和培养中的利用不显着差异。得出结论是,通过将土壤水分含量降低至70%在无耕作培养中,降低了N吸收和产率。虽然田间测试对于实际使用是必不可少的,但是在没有大幅降低的情况下,提出了约85%的土壤含量,而不会降低水 - 节水培养。

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