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首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Modelling development of broccoli (Brassica oleracea L. var. italica) from transplanting to head initiation
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Modelling development of broccoli (Brassica oleracea L. var. italica) from transplanting to head initiation

机译:西兰花(Brassica oleracea L. var。italica)从移植到头部萌发的模型发育

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A model is suggested to predict head initiation in broccoli. Head initiation is defined as the time when the apex diameter reaches 0.6 mm and predictions are made from observations of air temperature. The model is constructed from three years of field experiments with three cultivars and four plantings per year. No juvenile phase after transplanting could be estimated and the model consists only of a head induction phase starting at transplanting. The rate of head induction is modelled by a piecewise linear temperature response function with a base, optimum, and maximum temperature. At optimum temperature the duration of the head induction phase is shortest. The estimates for base, optimum, and maximum temperature are 9.9 deg C, 16.1 deg C and 22.3 deg C, respectively. The estimates for cultivar dependent thermal time requirements are 49 day-degrees, 55 day-degrees, and 38 day-degrees for cvs Caravel, Shogun and Emperor, respectively. The three cultivars were anticipated to have the same cardinal temperatures for head induction. The model of the head induction phases can account for 68% of the variation in the observed durations from transplanting to head initiation. A model of leaf appearance is used to standardize transplant size to four visible leaves at planting. The leaf appearance rate is described by a linear relationship to number of leaves and air temperature and the model can account for 89% of the variation in time from transplanting to appearance of a certain number of leaves. The temperature response of leaf appearance rate had a base temperature of about 2 to 3 deg C, depending on cultivar, and showed no indications of having a temperature optimum below 20 deg C. The leaf appearance rate at 15 deg C range from 0.2 leaves per day for plants with four visible leaves to 0.4 leaves per day for plants with 14 visible leaves.
机译:建议使用一种模型来预测西兰花中的头部起始。头的起始时间定义为顶点直径达到0.6 mm的时间,并根据观察到的气温进行预测。该模型是根据三年的田间试验构建而成的,每年进行三个品种和四个种植。无法估计移植后的幼年期,该模型仅包含从移植开始的头部诱导期。磁头感应率由分段线性温度响应函数建模,具有基础温度,最佳温度和最高温度。在最佳温度下,磁头感应阶段的持续时间最短。基准温度,最佳温度和最高温度的估计分别为9.9摄氏度,16.1摄氏度和22.3摄氏度。栽培种Caravel,Shogun和Emperor的依赖于品种的热时间需求的估计分别为49天度,55天度和38天度。预计三个品种具有相同的基本温度以诱导头部。头部诱导阶段的模型可以解释从移植到头部植入期间观察到的持续时间变化的68%。叶子外观模型用于在种植时将移植大小标准化为四个可见叶子。叶子的出现率通过与叶子数量和气温的线性关系来描述,该模型可以解释从移植到一定数量的叶子出现的时间变化的89%。根据栽培品种的不同,叶片出现率的温度响应的基础温度约为2至3摄氏度,并且没有迹象表明温度低于20摄氏度时的最佳温度。15摄氏度时叶片出现率的范围为每片0.2叶片。带有四片可见叶的植物的每日天数,至一天有0.4片叶的植物,则为0.4天。

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