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首页> 外文期刊>Acta Horticulturae >Modeling the Influence of Cyclical Plant Growth and Nutrient Storage on N, P, and K Absorption by Hydroponically Grown Cut Flower Roses
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Modeling the Influence of Cyclical Plant Growth and Nutrient Storage on N, P, and K Absorption by Hydroponically Grown Cut Flower Roses

机译:模拟水培切花月季植物生长和养分贮藏对氮,磷和钾吸收的影响

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Previous research found that a model using growth of new rose flower stems as the driving force for nutrient absorption did not adequately predict nutrient absorption of a whole plant. The objective of the current project was to develop a nutrient absorption model to take into account the dynamic nature (change in growth, nutrient demand, storage, and reallocation) of perennial plant parts on nitrogen (N), phosphorous (P), and potassium (K) absorption by roses. In this model we separate the plant into four organs: shoots, base leaves, base stems, and roots. Each organ exerts a relative influence on plant demand for a specific nutrient based on its degree of depletion for that nutrient which influences root nutrient absorption activity. Overall plantdemand for the nutrient is expressed using the summation of each organ's relative contribution to plant demand. Nutrient absorption at the root level is expressed using Michaelis-Menten kinetics. Allocation of absorbed and stored nutrients takes place based on relative organ nutrient demand. A sequential harvest experiment was conducted using one-year old Rosa hybrida 'Kardinal' plants growing in solution culture to calibrate the model and a simulation was developed to compare predicted nutrient uptakeand allocation with measured values from the calibration data set. The simulation demonstrates the importance of accounting for storage and mobilization of phloem mobile nutrients in predicting nutrient uptake dynamics in roses.
机译:先前的研究发现,使用新的玫瑰花朵茎的生长作为养分吸收驱动力的模型不能充分预测整株植物的养分吸收。当前项目的目的是开发一种养分吸收模型,以考虑多年生植物部分在氮(N),磷(P)和钾上的动态特性(生长,养分需求,存储和重新分配的变化) (K)被玫瑰吸收。在此模型中,我们将植物分为四个器官:芽,基叶,基茎和根。每个器官根据其对某种营养素的消耗程度来影响植物对特定营养素的需求,从而影响根系营养素的吸收活性。营养素的总植物需求用每个器官对植物需求的相对贡献的总和表示。使用Michaelis-Menten动力学表示根系水平的营养吸收。吸收和储存的养分的分配是根据相对器官养分的需求进行的。使用在溶液培养中生长的一年生罗莎杂种'Kardinal'植物进行了连续收获实验,以校准模型,并开发了一个模拟以将预测的养分吸收和分配与来自校准数据集的测量值进行比较。该模拟表明,在预测玫瑰中养分吸收动态时,应对韧皮部流动养分的存储和动员非常重要。

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