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A novel method of supplying nutrients permits predictable shoot growth and root: Shoot ratios of pre-transplant bedding plants

机译:一种提供养分的新方法可以预测芽的生长和根系:植入前被褥植物的芽比率

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Background and Aims Growth of bedding plants, in small peat plugs, relies on nutrients in the irrigation solution. The object of the study was to find a way of modifying the nutrient supply so that good-quality seedlings can be grown rapidly and yet have the high root : shoot ratios essential for efficient transplanting. Methods A new procedure was devised in which the concentrations of nutrients in the irrigation solution were modified during growth according to changing plant demand, instead of maintaining the same concentrations throughout growth. The new procedure depends on published algorithms for the dependence of growth rate and optimal plant nutrient concentrations on shoot dry weight W-s (g m(-2)), and on measuring evapotranspiration rates and shoot dry weights at weekly intervals. Pansy, Viola tricola 'Universal plus yellow' and petunia, Petunia hybrida 'Multiflora light salmon vein' were grown in four independent experiments with the expected optimum nutrient concentration and fractions of the optimum. Root and shoot weights were measured during growth. Key Results For each level of nutrient supply W, increased with time (t) in days, according to the equation Delta W-s/Delta t = K2Ws/1(100 + W-s) in which the growth rate coefficient (K-2) remained approximately constant throughout growth. The value of K-2 for the optimum treatment was defined by incoming radiation and temperature. The value of K-2 for each sub-optimum treatment relative to that for the optimum treatment was logarithmically related to the sub-optimal nutrient supply. Provided the aerial environment was optimal, R-sb/R-o approximate to W-o/W-sb where R is the root : shoot ratio, W is the shoot dry weight, and sb and o indicate sub-optimum and optimum nutrient supplies, respectively. Sub-optimal nutrient concentrations also depressed shoot growth without appreciably affecting root growth when the aerial environment was non-limiting. Conclusion The new procedure can predict the effects of nutrient supply, incoming radiation and temperature on the time course of shoot growth and the root : shoot ratio for a range of growing conditions.
机译:背景和目的小型泥炭堵塞中的垫层植物的生长依赖于灌溉溶液中的养分。该研究的目的是找到一种改变养分供应的方法,从而使优质苗木能够快速生长,并且具有高根茎比,这对于有效移植至关重要。方法设计了一种新的程序,其中根据植物需求的变化在生长过程中修改灌溉溶液中养分的浓度,而不是在整个生长过程中保持相同的浓度。新程序取决于已发布的算法,该算法取决于生长速率和最佳植物养分浓度对枝干重W-s(g m(-2))的依赖性,并取决于每周间隔的蒸散速率和枝干重的测量。在四个独立的实验中,分别以预期的最佳养分浓度和最佳分数进行了三色堇三色堇“ Universal plus yellow”中的堇菜和矮牵牛“ Multiflora light鲑鱼脉”的矮牵牛生长。在生长过程中测量根和芽的重量。关键结果根据公式Delta Ws / Delta t = K2Ws / 1(100 + Ws),对于营养物供应W的每个水平,其天数都随着时间(t)的增加而增加,其中增长率系数(K-2)保持大约在整个增长过程中保持不变。最佳处理的K-2值由入射辐射和温度定义。相对于最优处理,每个次优处理的K-2值与次优养分供应量呈对数关系。如果空中环境最佳,则R-sb / R-o近似于W-o / W-sb,其中R是根:苗比率,W是枝干重量,sb和o分别表示次优和最佳养分供应。当空中环境不受限制时,次优营养素浓度也会抑制枝条生长,而不会显着影响根系生长。结论该新方法可以预测养分供应,入射辐射和温度对枝条生长时间过程以及根系:枝条比率在一系列生长条件下的影响。

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