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首页> 外文期刊>Scientia horticulturae >Modeling individual leaf area of ginger (Zingiber officinale Roscoe) using leaf length and width
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Modeling individual leaf area of ginger (Zingiber officinale Roscoe) using leaf length and width

机译:使用叶的长度和宽度来模拟姜(Zingiber officinale Roscoe)的单个叶面积

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摘要

Leaf a rea estimation is an important biometrical observation one has to do for comparing plant growth in field and pot experiments. In this study, a leaf area estimation model was developed for ginger (Zingiber officinale Roscoe). using linear measurements of leaf length (L) and maximum width (W). Leaves from five ginger varieties (Varada, Rejatha, Mahima, Maran and Himachal) were used to develop the model in 2006-2007 The actual leaf area (LA) was measured with a leaf area meter (LI-3100, LI-COR, Lincoln, NE, USA) and taken as reference LA. The linear measurements were used to build linear (LA = a + b x L x W) and power models (LA = alpha x (L x W)(beta)) for each variety, as the modeling among variety were not different from each other, data for all five varieties have been pooled and compared with earlier models by graphical procedures and statistical criteria such as Mean Square Error(MSE), Root Mean Square Error (RMSE) and Chi-square (X-2). The selected model was validated during 2007-2008. The validation data set was used to produce a validation model for each variety by re-estimating the model parameters to develop the estimation model and the models were compared for consistency. The predicted LA (PLA) was compared with observed LA (OLA) by graphical procedures and lack of agreement was evaluated by Calculating the relative bias, estimated by the mean of differences (d) and the standard deviation (SD) of the differences. Normality test was carried out by Spearman's rank correlation coefficient (r(s)) and residuals were normally distributed. Finally, the proposed model for leaf area estimation of ginger is LA = -0.0146 + 0.6621 x L x W, R-2 = 0.997. This model can be reliably used for estimating leaf area of ginger non-destructively. The same equation can be extrapolated to all varieties and land races of ginger as it is vegetatively propagated crop with narrow genetic variability.
机译:叶面积估计是一项重要的生物统计学观察,用于比较田间和盆栽实验中的植物生长。在这项研究中,开发了姜的叶面积估计模型(Zingiber officinale Roscoe)。使用叶片长度(L)和最大宽度(W)的线性测量。在2006年至2007年间,使用了来自五个生姜品种(瓦拉达,里贾萨,马希马,玛拉和喜马al尔邦)的叶子来开发该模型。使用叶子面积计(LI-3100,LI-COR,林肯)测量了实际叶子面积(LA) ,NE,美国),并作为参考LA。线性测量用于建立每个品种的线性(LA = a + bx L x W)和功率模型(LA = alpha x(L x W)β),因为品种之间的建模互不相同,已汇总了所有五个品种的数据,并通过图形化程序和统计标准(例如均方误差(MSE),均方根误差(RMSE)和卡方(X-2))与早期模型进行了比较。所选模型在2007-2008年期间得到验证。验证数据集用于通过重新估计模型参数以开发估计模型来生成每个品种的验证模型,并比较模型的一致性。通过图形化程序将预测的LA(PLA)与观察到的LA(OLA)进行比较,并通过计算相对偏差(通过差异的平均值(d)和差异的标准偏差(SD)估算)来评估不一致的情况。通过Spearman秩相关系数(r(s))进行正态性检验,残差呈正态分布。最后,提出的生姜叶面积估计模型为LA = -0.0146 + 0.6621 x L x W,R-2 = 0.997。该模型可以可靠地用于无损估计姜的叶面积。相同的方程式可以推论到姜的所有品种和陆生种,因为它是营养繁殖的作物,遗传变异窄。

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