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A Simple and Accurate Equation for Estimating Individual Leaf Area of Eggplant from Linear Measurements

机译:通过线性测量估算茄子单个叶面积的简单而精确的方程式

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Simple, accurate and non-destructive equations determining leaf area of plants are important for many experimental comparisons. Determining the individual leaf area (LA) of eggplant (Solomon melongena L.) involves measurements of leaf parameters [length (L) and width (W)]. Two year investigation were carried out during 2005 (on five cultivars) and 2006 (on one cultivar) under open field and greenhouse conditions, respectively to test whether a equation could be developed to estimate leaf area acrosscultivars. Regression analyses of LA versus L and W revealed several equations that could be used for estimating the area of individual eggplant leaves. A linear equation having LW as the independent variable provided the most accurate estimate (R2 = 0.97, MSE = 89) of eggplant LA, but double the time required for leaf measurement. The quadratic equation (LA = 0.763 L + 0.340 L2) exhibited a high accuracy and precision (R2 = 0.92, MSE = 220) in estimating individual eggplant LA. We preferred this equation because of its simplicity and convenience, as it only involves one variable. Validation of the quadratic equation having L of leaves rneasured in the 2006 experiment under greenhouse conditions showed that the correlation between calculated and measured areas was very high.
机译:确定植物叶片面积的简单,准确且无损的方程式对于许多实验比较而言都很重要。确定茄子(Solomon melongena L.)的单个叶面积(LA)涉及测量叶片参数[长度(L)和宽度(W)]。在开阔田间和温室条件下,分别于2005年(对五个品种)和2006年(对一个品种)进行了为期两年的调查,以检验是否可以建立方程式来估计不同品种的叶面积。 LA与L和W的回归分析揭示了几个可用于估计单个茄子叶面积的方程。以LW为自变量的线性方程式可对茄子LA进行最准确的估算(R2 = 0.97,MSE = 89),但叶片测量所需的时间却增加了一倍。在估计单个茄子LA时,二次方程(LA = 0.763 L + 0.340 L2)显示出高精度和高精度(R2 = 0.92,MSE = 220)。我们首选此方程式,因为它简单易用,因为它仅涉及一个变量。在温室条件下,2006年的实验中对L叶片进行过二次处理的二次方程式的验证表明,计算面积与测量面积之间的相关性非常高。

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