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Effect of nitrogen on growth, quality and nutrient uptake of cabbages grown in sand culture

机译:氮素对砂培养白菜生长,品质和养分吸收的影响

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The effect of nitrogen (N) application level on head yield and quality, growth and nutrient uptake of cabbages (cv. Rampo) was investigated in a sand culture experiment. Plants were harvested at a minimum of 2-week intervals over a 13-week period and N levels (2, 7, 14, 29 and 43 mmol/L as nitrate) were applied each day in a complete nutrient solution which was formulated to provide a stable and balanced nutrient supply. A gamma cubic response surface model fitted actual growth and nutrient uptake data quite precisely (R2 > 0.99) over the range 2-43 mmolb N. This model was used to derive the predicted plant growth and nutrient uptake rates. Head maturity occurred 12 weeks after transplanting when increases in the level of applied N, up to 14 mmol/L, increased the dry weight of roots, stem, leaf and head, and the fresh weight of head. Higher N levels reduced the weight of plant parts. Heads with the lowest percentage of dry matter were produced over the 7-14 mmol/L N application range. Growth rate of tops was low during the 4-week period after transplanting. It then increased rapidly to the maximum predicted value of 43 g/plant.week which was calculated to occur 9 weeks after transplanting at an N application level of 21 mmo/L. Similar growth rates were recorded over the 14-29 mmol/L N application range. Growth rates declined slightly at higher N levels and declined at later growth stages. Predicted nutrient uptake rates followed a similar response pattern to growth rates. The maximum uptake rates (g/plant.week), calculated to occur 8 weeks after transplanting at an N application level of 21 mmol/L, were: N, 1.30; potassium, 2.50; phosphorus, 0.23; calcium, 0.71; magnesium, 0.14; and sulfur, 0.60. We conclude that on low fertility soils, in order to achieve optimum nutrition and hence maximum growth rates and quality of cabbages under field conditions, the application rates of N and K fertilisers need to be flexible to meet the high nutrient demand which occurs after head formation and before final harvest.
机译:通过砂培养实验研究了氮(N)施用水平对甘蓝(cv。Rampo)的头产量和品质,生长和养分吸收的影响。在13周的时间内至少每两周间隔收获一次植物,并在完整的营养液中每天施用N水平(硝酸盐浓度分别为2、7、14、29和43 mmol / L),配制后可提供稳定均衡的营养供应。一个伽马立方响应面模型非常精确地拟合了2-43 mmolb N范围内的实际生长和养分吸收数据(R2> 0.99)。该模型用于得出预测的植物生长和养分吸收率。头部成熟发生在移植后12周,这时氮的施用量增加至14 mmol / L,增加了根,茎,叶和头的干重以及头的新鲜重。较高的氮含量降低了植物部位的重量。在7-14 mmol / L N的应用范围内,生产出干物质百分比最低的喷头。移植后4周内,毛条的生长速率较低。然后它迅速增加至最大预测值43 g /植物·周,计算出在移植后9周,N施肥水平为21 mmo / L。在14-29 mmol / L N的施用范围内,记录了相似的增长率。在较高的氮水平下,增长率略有下降,而在后期的生长阶段则下降。预测的养分吸收率对生长速率的响应方式相似。计算得出的最大吸收速率(克/株。周)为:移植后8周,氮素施用量为21 mmol / L时为:N,1.30;钾2.50;磷0.23;钙0.71;镁,0.14;硫0.60我们得出结论,在低肥力的土壤上,为了在田间条件下获得最佳营养并因此获得最大的白菜生长速度和质量,氮肥和钾肥的施用量应灵活适应头形成后出现的高养分需求在最后收获之前

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    《Animal Production Science》 |1989年第6期|p.875-881|共7页
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